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		<title>SUN-125K-SG02HP3</title>
		<link>https://deyenergie.com/en/product/sun-125k-sg02hp3/</link>
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		<pubDate>Sun, 21 Jun 2026 20:25:38 +0000</pubDate>
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					<description><![CDATA[Download datasheet (PDF) Deye SUN-125K-SG02HP3 – 125 kW three-phase high-voltage hybrid inverter for commercial and industrial systems The Deye SUN-125K-SG02HP3]]></description>
										<content:encoded><![CDATA[<p><a href="https://deyenergie.com/wp-content/uploads/products/SUN-125K-SG02HP3/DatasheetSUN-100-125K-SG02HP3-EU-GM10.pdf" target="_blank" rel="noopener">Download datasheet (PDF)</a></p>
<p class="font-claude-response-body break-words whitespace-normal">
<h2 class="text-text-100 mt-3 -mb-1 text-[1.375rem] font-bold">Deye SUN-125K-SG02HP3 – 125 kW three-phase high-voltage hybrid inverter for commercial and industrial systems</h2>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-125K-SG02HP3</strong> (SUN-125K-SG02HP3-EU-GM10) is a 125 kW rated, three-phase, high-voltage (HV) <strong>hybrid inverter</strong> designed for high-energy-demand commercial and industrial (C&#038;I) systems. With 10 independent MPPTs and high-voltage battery support, it seamlessly manages solar panels, storage, and the three-phase grid – ideal for powering factories, warehouses, logistics centers, and complex solar farms. Thanks to its IP65 protection, it can be installed outdoors, and with up to 10 units in parallel, large-scale systems can be built.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Why choose the Deye SUN-125K-SG02HP3 inverter?</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-125K-SG02HP3 inverter</strong> operates with up to 98.7% maximum efficiency, ensuring economical operation even at high power. The 10 MPPT controllers enable precise optimization of individual string performance, which is particularly important for large solar arrays with different orientations. The 100% asymmetric (unbalanced) output adapts to real industrial loads where individual phase loads can differ significantly, and the UPS function ensures seamless switchover in case of grid failure. With 6 programmable daily time periods, the charge/discharge strategy can be tailored to tariffs, peak shaving, or aggregator cooperation.   </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Key advantages of the Deye SUN-125K-SG02HP3</h3>
<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3">
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High power</strong> – 125 kW rated AC power, 135 kVA apparent power</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>10 MPPT controllers</strong> – up to 200 kW PV input, for complex, multi-orientation arrays</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High-voltage battery support</strong> – 160–1000 V, 2 battery inputs, 100+100 A charge/discharge</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>100% asymmetric output</strong> – precise adaptation to real, unbalanced industrial loads</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High efficiency</strong> – up to 98.7% max. and &gt;99% MPPT efficiency </li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Scalability</strong> – up to 10 units can be paralleled in on-grid and off-grid modes</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>AC-coupled retrofit</strong> – existing solar systems can be expanded with storage</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Outdoor design</strong> – IP65 protection, intelligent air cooling</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Flexible monitoring</strong> – GPRS / Wi-Fi / Bluetooth / 4G / LAN, RS485/RS232/CAN, LCD+LED</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Long lifespan and reliable support</strong> – up to 10 years warranty</li>
</ul>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Applications</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-125K-SG02HP3 inverter</strong> is ideal for high-energy-demand commercial and industrial projects: factories, warehouses, logistics centers, and larger solar farms. It is excellent for maximizing self-consumption, peak shaving, and increasing grid independence when paired with high-voltage batteries. Thanks to diesel generator energy storage support and AC-coupled expandability, it is also well-suited for complex, multi-component energy systems and retrofitting existing installations with storage.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Deye SUN-125K-SG02HP3 technical specifications</h3>
<div class="overflow-x-auto w-full px-2 mb-6">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
<tr>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Parameter</th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Value</th>
</tr>
</thead>
<tbody>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Model</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">SUN-125K-SG02HP3-EU-GM10</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">three-phase, high-voltage hybrid inverter</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">125,000 W (125 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. AC apparent power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">135,000 VA</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC current (380/400 V)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">189.4 / 181.2 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. AC current (380/400 V)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">204.6 / 195.7 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC voltage / range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">220/380 V, 230/400 V; 0.85–1.1 Un</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid frequency / range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">50 Hz (45–55) / 60 Hz (55–65)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid connection</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">3L + N + PE</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. continuous AC pass-through (grid→load)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">250 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Power factor range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">0.8 capacitive – 0.8 inductive</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV input power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">200,000 W (200 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV access power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">250,000 W (250 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">1000 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">150–850 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated PV voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">650 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Start-up voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">180 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Number of MPPTs / strings</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">10 MPPTs / 2 strings per MPPT (20 strings)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. operating PV current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">42 A / MPPT</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. short-circuit current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">63 A / MPPT</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">lithium-ion</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">160–1000 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Number of battery inputs</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. charge/discharge current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">100+100 A (200 A total)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Charging strategy</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">self-adaptive to BMS</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">98.7%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Euro efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">98.1%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">&gt;99%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Parallel capability</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">up to 10 units (on-grid and off-grid)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Operating temperature</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">−40 – +60 °C (derating above &gt;45 °C)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Humidity</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">0–100%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Altitude</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">3,000 m</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Noise level</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">≤65 dB(A)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Protection rating</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IP65</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Cooling</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">intelligent air cooling</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Monitoring</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">GPRS / Wi-Fi / Bluetooth / 4G / LAN (optional)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Communication</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">RS485, RS232, CAN</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Display</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">LCD + LED</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Surge protection</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Type II (DC), Type II (AC)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Dimensions (W × H × D)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">734 × 1091 × 344 mm</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Weight</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">161.7 kg</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Warranty</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">5 years / 10 years (depending on installation location)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid standards</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IEC 61727, IEC 62116, CEI 0-21, EN 50549, NRS 097, RD 140, UNE 217002, OVE R25, G99, VDE-AR-N 4105</td>
</tr>
</tbody>
</table>
</div>
<p class="font-claude-response-body break-words whitespace-normal"><em>Protection functions include: DC reverse polarity, AC overcurrent and overvoltage protection, AC short-circuit protection, thermal protection, DC component monitoring, insulation resistance and current protection, anti-islanding protection, DC disconnect, and optional AFCI (arc fault protection).</em></p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Frequently asked questions about the Deye SUN-125K-SG02HP3 inverter</h3>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What do the SUN-125K-SG02HP3 and GM10 designations mean?</strong><br />
The &#8220;125K&#8221; refers to the 125 kW rated power, &#8220;SG02HP3&#8221; to the three-phase, high-voltage (HV) hybrid platform, and &#8220;GM10&#8221; to the 10 MPPT controllers (there is also an 8 MPPT, GM8 version, typically for the 100 kW model).</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>How many solar panels and what size battery can be connected to the SUN-125K-SG02HP3?</strong><br />
The inverter accepts up to 200 kW PV power through 10 MPPTs and has two high-voltage (160–1000 V) battery inputs with a total charge/discharge current of up to 200 A.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>Can the Deye SUN-125K-SG02HP3 be installed outdoors?</strong><br />
Yes, thanks to its IP65 protection and intelligent air cooling, it is suitable for outdoor installation, with an operating temperature range of −40 to +60 °C (with derating above 45 °C).</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>Can the system be expanded with multiple inverters?</strong><br />
Yes, up to 10 units can be paralleled in on-grid and off-grid modes, enabling large-scale C&#038;I systems; AC-coupled mode also allows retrofitting existing solar systems with storage.</p>
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		<title>SUN-100K-SG02HP3</title>
		<link>https://deyenergie.com/en/product/sun-100k-sg02hp3/</link>
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		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Sun, 21 Jun 2026 20:25:36 +0000</pubDate>
				<guid isPermaLink="false">https://deyenergie.com/product/sun-100k-sg02hp3/</guid>

					<description><![CDATA[Download datasheet (PDF) Deye SUN-100K-SG02HP3 – 100 kW three-phase high-voltage hybrid inverter for commercial and industrial systems The Deye SUN-100K-SG02HP3]]></description>
										<content:encoded><![CDATA[<p><a href="https://deyenergie.com/wp-content/uploads/products/SUN-100K-SG02HP3/DatasheetSUN-100-125K-SG02HP3-EU-GM10.pdf" target="_blank" rel="noopener">Download datasheet (PDF)</a></p>
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<h2 class="text-text-100 mt-3 -mb-1 text-[1.375rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="2">Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="7">SUN-100K-SG02HP3 – 100 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="33">three-phase high-voltage </span><span class="_animating_6ta1u_10" data-newtext-seq="61">hybrid inverter </span><span class="_animating_6ta1u_10" data-newtext-seq="77">for commercial and industrial </span><span class="_animating_6ta1u_10" data-newtext-seq="99">systems</span></h2>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-100K-SG02HP3</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> (SUN-100K-SG02HP3-EU-GM10) is a 100 kW rated, three-phase, high-voltage (HV) </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">hybrid inverter</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> designed for high-energy-demand commercial and industrial (C&#038;I) systems. Thanks to its 10 independent MPPTs and high-voltage battery support, it manages solar panels, storage, and the three-phase grid in a coordinated manner – ideal for powering factories, warehouses, logistics centers, and larger solar parks. With IP65 protection, it can be installed outdoors, and by paralleling up to 10 units, large-</span><span class="_animating_6ta1u_10" data-newtext-seq="587">scale systems can be built.</span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Why choose the Deye SUN-100K-SG02HP3 </span><span class="_animating_6ta1u_10" data-newtext-seq="33">inverter?</span></h3>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-100K-SG02HP3 inverter</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> operates with up to </span><span class="_animating_6ta1u_10" data-newtext-seq="42">98.7% maximum efficiency, </span><span class="_animating_6ta1u_10" data-newtext-seq="82">ensuring economical </span><span class="_animating_6ta1u_10" data-newtext-seq="120">operation even at high power. The 10 MPPT controllers </span> <span class="_animating_6ta1u_10" data-newtext-seq="158">enable precise </span><span class="_animating_6ta1u_10" data-newtext-seq="191">optimization of individual string </span><span class="_animating_6ta1u_10" data-newtext-seq="215">performance, which is particularly important for </span><span class="_animating_6ta1u_10" data-newtext-seq="255">large solar arrays with different orientations. </span><span class="_animating_6ta1u_10" data-newtext-seq="294">The 100% asymmetric </span><span class="_animating_6ta1u_10" data-newtext-seq="318">(unbalanced) output adapts to real industrial </span><span class="_animating_6ta1u_10" data-newtext-seq="358">loads, where the load on individual </span><span class="_animating_6ta1u_10" data-newtext-seq="394">phases can differ significantly, </span><span class="_animating_6ta1u_10" data-newtext-seq="433">and the UPS function ensures </span><span class="_animating_6ta1u_10" data-newtext-seq="468">seamless switchover </span><span class="_animating_6ta1u_10" data-newtext-seq="497">in case of grid failure. With 6 </span> <span class="_animating_6ta1u_10" data-newtext-seq="526">programmable daily time periods, the </span><span class="_animating_6ta1u_10" data-newtext-seq="558">charge/discharge strategy can be </span><span class="_animating_6ta1u_10" data-newtext-seq="587">adapted to tariffs, peak shaving, </span><span class="_animating_6ta1u_10" data-newtext-seq="627">or aggregator cooperation.</span><span class="_animating_6ta1u_10" data-newtext-seq="666"></span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Key benefits of the Deye SUN-100K-SG02HP3</span><span class="_animating_6ta1u_10" data-newtext-seq="27"></span></h3>
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<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3">
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">High power</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="26">100 kW rated AC power, 110 </span><span class="_animating_6ta1u_10" data-newtext-seq="63">kVA apparent power</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="96">10 MPPT controllers</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="96"> – up to 160 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="131">PV input, for complex, multi-orientation </span><span class="_animating_6ta1u_10" data-newtext-seq="167">arrays</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="180">High-voltage battery support</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="180"> – 160–1000 V, 2 battery inputs, 100+100 </span><span class="_animating_6ta1u_10" data-newtext-seq="257">A charge/discharge</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="278">100% asymmetric output</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="278"> – precise </span><span class="_animating_6ta1u_10" data-newtext-seq="316">adaptation to real, unbalanced industrial </span><span class="_animating_6ta1u_10" data-newtext-seq="356">loads</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="356">High efficiency</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="356"> – up to </span><span class="_animating_6ta1u_10" data-newtext-seq="396">98.7% max. and &gt;99% MPPT efficiency</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="433">Scalability</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="433"> – up to 10 units </span><span class="_animating_6ta1u_10" data-newtext-seq="466">can be paralleled in on-grid and off-grid </span><span class="_animating_6ta1u_10" data-newtext-seq="503">mode</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="503">AC-coupled retrofit</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="503"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="538">existing solar systems can be expanded </span><span class="_animating_6ta1u_10" data-newtext-seq="575">with storage</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="575">Outdoor design</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="575"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="609">IP65 protection, intelligent air cooling</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="650">Flexible monitoring</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="650"> – GPRS / Wi-Fi </span><span class="_animating_6ta1u_10" data-newtext-seq="687">/ Bluetooth / 4G / LAN, </span><span class="_animating_6ta1u_10" data-newtext-seq="711">RS485/RS232/CAN, LCD+LED</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="740">Long lifespan and reliable support</span></strong> <span class="_animating_6ta1u_10" data-newtext-seq="777">– up to 10 years warranty</span></li>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Application </span><span class="_animating_6ta1u_10" data-newtext-seq="17">areas</span></h3>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-100K-SG02HP3 inverter</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> is ideal for </span><span class="_animating_6ta1u_10" data-newtext-seq="42">high-energy-demand commercial and industrial </span><span class="_animating_6ta1u_10" data-newtext-seq="78">projects: factories, </span><span class="_animating_6ta1u_10" data-newtext-seq="111">warehouses, logistics centers, </span><span class="_animating_6ta1u_10" data-newtext-seq="150">and larger solar parks. It is excellently </span> <span class="_animating_6ta1u_10" data-newtext-seq="188">suited for maximizing self-consumption, </span><span class="_animating_6ta1u_10" data-newtext-seq="216">peak shaving, </span><span class="_animating_6ta1u_10" data-newtext-seq="250">and </span><span class="_animating_6ta1u_10" data-newtext-seq="284">increasing grid independence </span><span class="_animating_6ta1u_10" data-newtext-seq="318">when paired with high-voltage batteries. </span><span class="_animating_6ta1u_10" data-newtext-seq="349">Thanks to support for diesel generator </span>  <span class="_animating_6ta1u_10" data-newtext-seq="389">energy storage and </span><span class="_animating_6ta1u_10" data-newtext-seq="424">AC-coupled expandability, </span><span class="_animating_6ta1u_10" data-newtext-seq="464">it is also well-suited for complex, multi-component </span><span class="_animating_6ta1u_10" data-newtext-seq="490">energy systems and retrofitting existing </span><span class="_animating_6ta1u_10" data-newtext-seq="522">installations with storage.</span><span class="_animating_6ta1u_10" data-newtext-seq="561"></span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="8">SUN-100K-SG02HP3 technical specifications</span></h3>
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<div class="overflow-x-auto w-full px-2 mb-6">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
<tr>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col"><span class="_animating_6ta1u_10" data-newtext-seq="2">Parameter</span></th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col"><span class="_animating_6ta1u_10" data-newtext-seq="2">Value</span></th>
</tr>
</thead>
<tbody>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="2">Model </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="41">SUN-100K-SG02HP3-EU-GM10</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="41">Type</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="80">three-phase, high-voltage hybrid </span><span class="_animating_6ta1u_10" data-newtext-seq="116">inverter</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="116">Rated AC power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="156">100,000 W (100 kW)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="156">Max. AC </span><span class="_animating_6ta1u_10" data-newtext-seq="187">apparent power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="187">110,000 VA</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="228"> Rated AC current (380/400 V)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="228">151.6 </span><span class="_animating_6ta1u_10" data-newtext-seq="266">/ 145.0 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="266">Max. AC current (380/400 V) </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="305">166.7 / 159.5 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="305">Rated AC </span><span class="_animating_6ta1u_10" data-newtext-seq="339">voltage / range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="339">220/380 V, </span><span class="_animating_6ta1u_10" data-newtext-seq="375">230/400 V; 0.85–1.1 Un</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="375">Grid </span><span class="_animating_6ta1u_10" data-newtext-seq="411">frequency / range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="411">50 Hz (45–55) </span><span class="_animating_6ta1u_10" data-newtext-seq="450">/ 60 Hz (55–65)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="450">Grid </span><span class="_animating_6ta1u_10" data-newtext-seq="479">connection</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="479">3L + N + PE</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="479">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="514">continuous AC pass-through </span><span class="_animating_6ta1u_10" data-newtext-seq="538">(grid→load)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="538">250 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="569">Power factor range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="569">0.8 </span><span class="_animating_6ta1u_10" data-newtext-seq="605">capacitive – 0.8 inductive</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="605">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="639">PV input power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="639">160,000 W </span><span class="_animating_6ta1u_10" data-newtext-seq="676">(160 kW)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="676">Max. PV access </span><span class="_animating_6ta1u_10" data-newtext-seq="709">power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="709">200,000 W (200 kW)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="747">Max. PV voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="747">1000 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="779">MPPT voltage range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="779">150–850 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="819"> Rated PV voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="819">650 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="855">Start-up voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="855">180 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="855">Number of MPPTs </span><span class="_animating_6ta1u_10" data-newtext-seq="894">/ strings</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="894">10 MPPTs / 2 strings </span><span class="_animating_6ta1u_10" data-newtext-seq="932">per MPPT (20 strings)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="932">Max. operating </span><span class="_animating_6ta1u_10" data-newtext-seq="970">PV current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="970">42 A / MPPT</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="970">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="1001">short-circuit current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1001">63 A / MPPT</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1037">Battery type</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1037">lithium-ion</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1073">Battery voltage range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1073">160–1000 V </span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1112">Number of battery inputs</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1112">2</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1112">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="1149">charge/discharge current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1149">100+100 A (total </span><span class="_animating_6ta1u_10" data-newtext-seq="1189">200 A)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1189">Charging strategy</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1220">self-adaptive to BMS</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1220">Max. efficiency </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1259">98.7%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1259">Euro efficiency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1259">98.1%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1297">MPPT efficiency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1297">&gt;99%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1322">Parallel capability</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1322">up to 10 units </span><span class="_animating_6ta1u_10" data-newtext-seq="1359">(on-grid and off-grid)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1359">Operating </span><span class="_animating_6ta1u_10" data-newtext-seq="1391">temperature</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1391">−40 – +60 °C (&gt;from 45 °C </span><span class="_animating_6ta1u_10" data-newtext-seq="1430">derating)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1430">Humidity </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1470">0–100%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1470">Altitude </span><span class="_animating_6ta1u_10" data-newtext-seq="1503">above sea level</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1503">3000 m</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1503">Noise level</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1503">≤65 </span><span class="_animating_6ta1u_10" data-newtext-seq="1540">dB(A)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1540">Protection rating</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1540">IP65</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1540">Cooling</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1579">intelligent air cooling</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1579">Monitoring</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1617">GPRS / Wi-Fi / Bluetooth / 4G / LAN </span><span class="_animating_6ta1u_10" data-newtext-seq="1653">(optional)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1653">Communication</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1653">RS485, </span><span class="_animating_6ta1u_10" data-newtext-seq="1692">RS232, CAN</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1692">Display</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1692">LCD + LED</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1731">Surge protection</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1731">Type II (DC), </span><span class="_animating_6ta1u_10" data-newtext-seq="1769">Type II (AC)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1769">Dimensions (W × H × D) </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1808">734 × 1091 × 344 mm</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1808">Weight</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1808">161.7 </span><span class="_animating_6ta1u_10" data-newtext-seq="1848">kg</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1848">Warranty</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1848">5 years / 10 years (depending </span><span class="_animating_6ta1u_10" data-newtext-seq="1882">on installation location)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1918">Grid standards</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1918">IEC 61727, IEC </span><span class="_animating_6ta1u_10" data-newtext-seq="1955">62116, CEI 0-21, EN 50549, NRS 097, RD </span><span class="_animating_6ta1u_10" data-newtext-seq="1994">140, UNE 217002, OVE R25, G99, VDE-AR-N </span><span class="_animating_6ta1u_10" data-newtext-seq="2034">4105</span></td>
</tr>
</tbody>
</table>
</div>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><em><span class="_animating_6ta1u_10" data-newtext-seq="1">Protection functions include: DC reverse polarity, AC overcurrent and overvoltage protection, AC short-circuit protection, thermal protection, DC component monitoring, insulation resistance and current protection, anti-islanding protection, DC disconnect, and optional AFCI (arc fault protection).</span></em></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Frequently asked questions about the </span><span class="_animating_6ta1u_10" data-newtext-seq="31">Deye SUN-100K-SG02HP3 inverter</span></h3>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">What do the SUN-100K-SG02HP3 and GM10 designations mean?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">The &#8220;100K&#8221; refers to the 100 kW rated </span><span class="_animating_6ta1u_10" data-newtext-seq="80">power, the &#8220;SG02HP3&#8221; to the </span><span class="_animating_6ta1u_10" data-newtext-seq="111">three-phase, high-voltage (HV) </span><span class="_animating_6ta1u_10" data-newtext-seq="145">hybrid platform, and &#8220;GM10&#8221; to the 10 </span><span class="_animating_6ta1u_10" data-newtext-seq="184">MPPT controllers (an 8 </span><span class="_animating_6ta1u_10" data-newtext-seq="218">MPPT, GM8 version also exists).</span></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">How many solar panels and what size battery can be connected to the SUN-100K-SG02HP3?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="78">The inverter accepts up to 160 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="105">PV power through 10 MPPTs </span><span class="_animating_6ta1u_10" data-newtext-seq="138">and has two high-voltage </span><span class="_animating_6ta1u_10" data-newtext-seq="172">(160–1000 V) battery inputs </span><span class="_animating_6ta1u_10" data-newtext-seq="200">with a total of up to 200 A </span><span class="_animating_6ta1u_10" data-newtext-seq="233">charge/discharge current.</span></p>
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<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">What is the difference between the SUN-100K and SUN-125K SG02HP3?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">Both </span><span class="_animating_6ta1u_10" data-newtext-seq="68">models are built on the same GM10 </span><span class="_animating_6ta1u_10" data-newtext-seq="87">(10 MPPT) </span><span class="_animating_6ta1u_10" data-newtext-seq="97">platform and housing; </span><span class="_animating_6ta1u_10" data-newtext-seq="123">the main difference is the </span><span class="_animating_6ta1u_10" data-newtext-seq="138">rated AC </span><span class="_animating_6ta1u_10" data-newtext-seq="150">power (100 kW vs </span><span class="_animating_6ta1u_10" data-newtext-seq="174">125 kW) and the </span><span class="_animating_6ta1u_10" data-newtext-seq="188">corresponding AC </span><span class="_animating_6ta1u_10" data-newtext-seq="205">current and </span><span class="_animating_6ta1u_10" data-newtext-seq="214">PV access values. The 125K </span><span class="_animating_6ta1u_10" data-newtext-seq="245">handles larger, up to 200 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="266">PV input and 250 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="289">PV access.</span></p>
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<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">Can the Deye SUN-100K-SG02HP3 be installed outdoors?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">Yes, </span><span class="_animating_6ta1u_10" data-newtext-seq="62">thanks to IP65 protection and </span><span class="_animating_6ta1u_10" data-newtext-seq="86">intelligent air cooling, </span><span class="_animating_6ta1u_10" data-newtext-seq="110">it is suitable for outdoor </span><span class="_animating_6ta1u_10" data-newtext-seq="131">installation </span><span class="_animating_6ta1u_10" data-newtext-seq="146">with an operating </span><span class="_animating_6ta1u_10" data-newtext-seq="167">temperature range of −40 to +60 </span><span class="_animating_6ta1u_10" data-newtext-seq="184">°C (with derating </span><span class="_animating_6ta1u_10" data-newtext-seq="207">above </span><span class="_animating_6ta1u_10" data-newtext-seq="214">45 °C).</span></p>
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		<title>SUN-80K-SG02HP3</title>
		<link>https://deyenergie.com/en/product/sun-80k-sg02hp3/</link>
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		<pubDate>Sun, 21 Jun 2026 20:25:35 +0000</pubDate>
				<guid isPermaLink="false">https://deyenergie.com/product/sun-80k-sg02hp3/</guid>

					<description><![CDATA[Download datasheet (PDF) Deye SUN-80K-SG02HP3 – 80 kW three-phase high-voltage hybrid inverter for commercial and industrial systems The Deye SUN-80K-SG02HP3]]></description>
										<content:encoded><![CDATA[<p><a href="https://deyenergie.com/wp-content/uploads/products/SUN-80K-SG02HP3/datasheet_sun-60-80k-sg02hp3-eu-em6.pdf" target="_blank" rel="noopener">Download datasheet (PDF)</a></p>
<h2 class="text-text-100 mt-3 -mb-1 text-[1.375rem] font-bold">Deye SUN-80K-SG02HP3 – 80 kW three-phase high-voltage hybrid inverter for commercial and industrial systems</h2>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-80K-SG02HP3</strong> (SUN-80K-SG02HP3-EU-EM6) is an 80 kW rated, three-phase, high-voltage (HV) <strong>hybrid inverter</strong> designed for medium and large commercial and industrial (C&#038;I) systems. Thanks to its 6 independent MPPTs and high-voltage battery support, it manages solar panels, storage, and the three-phase grid in harmony – ideal for powering factories, warehouses, agricultural facilities, and larger prosumer projects. With IP65 protection it can be installed outdoors, and by paralleling up to 10 units, even larger systems can be built.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Why choose the Deye SUN-80K-SG02HP3 inverter?</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-80K-SG02HP3 inverter</strong> operates with up to 97.6% maximum and &gt;99% MPPT efficiency, ensuring economical operation even at high power. The 6 MPPT controllers enable precise optimization of individual string performance, which is particularly important for large solar arrays with different orientations. The 100% asymmetric (unbalanced) output adapts to real industrial loads, while the built-in backup function ensures continuous supply with only 8 ms switchover time in case of grid failure. With 6 programmable daily time periods, the charge/discharge strategy can be tailored to tariffs, peak shaving, or aggregator cooperation.   </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Key advantages of the Deye SUN-80K-SG02HP3</h3>
<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3">
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High power</strong> – 80 kW rated three-phase AC power</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>6 MPPT controllers</strong> – up to 160 kW PV input, for complex, multi-orientation arrays</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High-voltage battery support</strong> – 160–1000 V, 2 battery inputs, 80+80 A charge/discharge</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>100% asymmetric output</strong> – precise adaptation to real, unbalanced industrial loads</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High efficiency</strong> – up to 97.6% max. and &gt;99% MPPT efficiency </li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Fast backup</strong> – 8 ms switchover time during grid failure</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Scalability</strong> – up to 10 units can be paralleled in on-grid and off-grid modes</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>AC-coupled retrofit and generator support</strong> – existing solar systems can be expanded with storage; diesel generator energy can also be stored</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Outdoor design</strong> – IP65 protection, intelligent air cooling, color touchscreen</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Flexible monitoring</strong> – GPRS / Wi-Fi / Bluetooth / 4G / LAN, RS485/RS232/CAN</li>
</ul>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Applications</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-80K-SG02HP3 inverter</strong> is ideal for medium and large energy-demand commercial and industrial projects: factories, warehouses, agricultural facilities, and larger solar parks. It is excellent for maximizing self-consumption, peak shaving, and increasing grid independence when paired with high-voltage batteries. At sites with weak or unstable grids, the built-in backup function maintains power supply, and thanks to AC-coupled expandability, existing installations can be retrofitted with storage.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Deye SUN-80K-SG02HP3 technical specifications</h3>
<div class="overflow-x-auto w-full px-2 mb-6">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
<tr>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Parameter</th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Value</th>
</tr>
</thead>
<tbody>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Model</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">SUN-80K-SG02HP3-EU-EM6</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">three-phase, high-voltage hybrid inverter</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">80,000 W (80 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">121.3 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">220/380 V, 230/400 V; 3L + N + PE</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid frequency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">50 / 60 Hz</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Output asymmetry</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">100% (up to 50% of rated per phase)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV input power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">160,000 W (160 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">1000 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">150–850 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Start-up voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">~180 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Number of MPPTs / strings</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">6 MPPTs / 2 strings per MPPT (12 strings)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. operating PV current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">36 A / MPPT</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. short-circuit current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">54 A / MPPT</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">lithium-ion (high-voltage)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">160–1000 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Number of battery inputs</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. charge/discharge current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">80+80 A (160 A total)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Charging strategy</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">self-adaptive to BMS</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">97.6%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Euro efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">97.0%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">&gt;99%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Backup switchover time</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">8 ms</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Parallel capability</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">up to 10 units (on-grid and off-grid)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Operating temperature</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">−40 – +60 °C (derating above &gt;45 °C)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Humidity</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">0–100%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Noise level</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">≤65 dB(A)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Protection rating</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IP65</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Cooling</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">intelligent air cooling</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Monitoring</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">GPRS / Wi-Fi / Bluetooth / 4G / LAN (optional); color touchscreen</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Communication</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">RS485, RS232, CAN</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Surge protection</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Type II (DC), Type II (AC)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Dimensions (W × H × D)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">606 × 927 × 314 mm</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Weight</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">97.5 kg</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Warranty</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">5 years (extendable)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid standards</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IEC 61727, IEC 62116, EN 50549 and other international regulations</td>
</tr>
</tbody>
</table>
</div>
<p class="font-claude-response-body break-words whitespace-normal"><em>Protection functions include: DC reverse polarity, AC overcurrent and overvoltage protection, short-circuit and thermal protection, DC insulation resistance monitoring, residual current protection (RCD), anti-islanding protection, DC disconnect, and optional AFCI (arc-fault protection).</em></p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Frequently asked questions about the Deye SUN-80K-SG02HP3 inverter</h3>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What does the SUN-80K-SG02HP3-EU-EM6 designation mean?</strong><br />
The &#8220;80K&#8221; refers to the 80 kW rated power, &#8220;SG02HP3&#8221; to the three-phase, high-voltage (HV) hybrid platform, and &#8220;EM6&#8221; to the 6 MPPT controller version (the series includes models from 60 to 80 kW).</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>How many solar panels and what size battery can be connected to the SUN-80K-SG02HP3?</strong><br />
The inverter accepts up to 160 kW PV power through 6 MPPTs and has two high-voltage (160–1000 V) battery inputs with a total of up to 160 A charge/discharge current.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>Can the Deye SUN-80K-SG02HP3 be installed outdoors?</strong><br />
Yes, thanks to IP65 protection and intelligent air cooling, it is suitable for outdoor installation, with an operating temperature range of −40 to +60 °C (with power derating above 45 °C).</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>Does it work without a battery?</strong><br />
Yes, the inverter can be used with or without a battery; the high-voltage battery can be added later, and in AC-coupled mode, existing solar systems can also be expanded with storage.</p>
<hr class="border-border-200 border-t-0.5 my-3 mx-1.5">
<p class="font-claude-response-body break-words whitespace-normal"><strong>Suggested image alt text:</strong> &#8220;Deye SUN-80K-SG02HP3-EU-EM6 80 kW three-phase high-voltage hybrid inverter&#8221;</p>
<p class="font-claude-response-body break-words whitespace-normal">If you provide the webshop platform (Shoprenter, WooCommerce, Shopify), I will adapt the fields accordingly and can also prepare them in Word or HTML format. For the 60/70/75 kW models in the &#8220;EM6&#8221; series, you can also request separate descriptions, or I can compile a unified comparison table of all Deye inverters and batteries to date. </p>
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		<title>SUN-50K-SG01HP3</title>
		<link>https://deyenergie.com/en/product/sun-50k-sg01hp3/</link>
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		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Sun, 21 Jun 2026 20:25:31 +0000</pubDate>
				<guid isPermaLink="false">https://deyenergie.com/product/sun-50k-sg01hp3/</guid>

					<description><![CDATA[Download datasheet (PDF) Deye SUN-50K-SG01HP3 – 50 kW three-phase high-voltage hybrid inverter for larger residential and C&#038;I systems The Deye]]></description>
										<content:encoded><![CDATA[<p><a href="https://deyenergie.com/wp-content/uploads/products/SUN-50K-SG01HP3/datasheet_sun-29.9-50k-sg01hp3-eu-bm4.pdf" target="_blank" rel="noopener">Download datasheet (PDF)</a></p>
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<h2 class="text-text-100 mt-3 -mb-1 text-[1.375rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="2">Deye SUN-50K-SG01HP3 – </span><span class="_animating_6ta1u_10" data-newtext-seq="25">50 kW three-phase high-voltage </span><span class="_animating_6ta1u_10" data-newtext-seq="59">hybrid inverter for larger residential and </span><span class="_animating_6ta1u_10" data-newtext-seq="96">C&#038;I systems</span></h2>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-50K-SG01HP3</span></strong> <span class="_animating_6ta1u_10" data-newtext-seq="27">(SUN-50K-SG01HP3-EU-BM4) is a 50 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="62">rated, three-phase, </span><span class="_animating_6ta1u_10" data-newtext-seq="99">high-voltage (HV) </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="99">hybrid inverter</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="137"> designed for larger residential, </span><span class="_animating_6ta1u_10" data-newtext-seq="168">commercial and industrial solar </span><span class="_animating_6ta1u_10" data-newtext-seq="200">systems. With 4 </span> <span class="_animating_6ta1u_10" data-newtext-seq="236">independent MPPTs and high-voltage </span><span class="_animating_6ta1u_10" data-newtext-seq="276">(160–800 V) battery support, it </span><span class="_animating_6ta1u_10" data-newtext-seq="313">manages solar panels, storage and the three-phase </span><span class="_animating_6ta1u_10" data-newtext-seq="350">grid in a coordinated manner. The compact, high </span><span class="_animating_6ta1u_10" data-newtext-seq="390">power density design enables a 1.3 </span> <span class="_animating_6ta1u_10" data-newtext-seq="417">DC/AC ratio, reducing </span><span class="_animating_6ta1u_10" data-newtext-seq="456">capital </span><span class="_animating_6ta1u_10" data-newtext-seq="495">cost, </span><span class="_animating_6ta1u_10" data-newtext-seq="508">and thanks to its </span><span class="_animating_6ta1u_10" data-newtext-seq="519">IP65 protection, it can also be </span><span class="_animating_6ta1u_10" data-newtext-seq="538">installed </span><span class="_animating_6ta1u_10" data-newtext-seq="557">outdoors.</span><span class="_animating_6ta1u_10" data-newtext-seq="569"></span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Why choose the </span><span class="_animating_6ta1u_10" data-newtext-seq="11">Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="16">SUN-50K-SG01HP3 inverter?</span><span class="_animating_6ta1u_10" data-newtext-seq="42"></span></h3>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-50K-SG01HP3 inverter</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> operates with up to </span><span class="_animating_6ta1u_10" data-newtext-seq="41">97.6% maximum </span><span class="_animating_6ta1u_10" data-newtext-seq="60">and 99.9% </span><span class="_animating_6ta1u_10" data-newtext-seq="72">MPPT efficiency, </span><span class="_animating_6ta1u_10" data-newtext-seq="98">ensuring </span><span class="_animating_6ta1u_10" data-newtext-seq="107">economical operation even at high </span><span class="_animating_6ta1u_10" data-newtext-seq="125">power levels. The 4 </span><span class="_animating_6ta1u_10" data-newtext-seq="143"></span> <span class="_animating_6ta1u_10" data-newtext-seq="157">MPPT controllers enable </span><span class="_animating_6ta1u_10" data-newtext-seq="182">precise </span><span class="_animating_6ta1u_10" data-newtext-seq="197">optimization of individual </span><span class="_animating_6ta1u_10" data-newtext-seq="206">string </span><span class="_animating_6ta1u_10" data-newtext-seq="230">performance, while the 100% </span><span class="_animating_6ta1u_10" data-newtext-seq="257">asymmetric </span><span class="_animating_6ta1u_10" data-newtext-seq="271">(unbalanced) output </span><span class="_animating_6ta1u_10" data-newtext-seq="297">adapts to real-world, </span><span class="_animating_6ta1u_10" data-newtext-seq="312">phase-varying </span><span class="_animating_6ta1u_10" data-newtext-seq="331">loads. The </span><span class="_animating_6ta1u_10" data-newtext-seq="343"></span> <span class="_animating_6ta1u_10" data-newtext-seq="355">high-voltage  </span><span class="_animating_6ta1u_10" data-newtext-seq="371">battery platform delivers higher  </span><span class="_animating_6ta1u_10" data-newtext-seq="401">system efficiency and lower  </span><span class="_animating_6ta1u_10" data-newtext-seq="430">thermal stress,  </span><span class="_animating_6ta1u_10" data-newtext-seq="454">while 6  </span><span class="_animating_6ta1u_10" data-newtext-seq="458">programmable daily  </span><span class="_animating_6ta1u_10" data-newtext-seq="477">time periods allow the  </span><span class="_animating_6ta1u_10" data-newtext-seq="496">charge/discharge strategy  </span><span class="_animating_6ta1u_10" data-newtext-seq="523">to be tailored to tariffs  </span><span class="_animating_6ta1u_10" data-newtext-seq="536">and  </span><span class="_animating_6ta1u_10" data-newtext-seq="541">peak shaving. The  </span><span class="_animating_6ta1u_10" data-newtext-seq="569">  </span><span class="_animating_6ta1u_10" data-newtext-seq="584">inverter  </span><span class="_animating_6ta1u_10" data-newtext-seq="593">also supports energy storage from  </span><span class="_animating_6ta1u_10" data-newtext-seq="615">diesel generators and  </span><span class="_animating_6ta1u_10" data-newtext-seq="639">wind turbines. </span><span class="_animating_6ta1u_10" data-newtext-seq="657"> </span><span class="_animating_6ta1u_10" data-newtext-seq="660"></span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Key advantages of the </span><span class="_animating_6ta1u_10" data-newtext-seq="5">Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="10">SUN-50K-SG01HP3</span><span class="_animating_6ta1u_10" data-newtext-seq="29"></span></h3>
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<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3">
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">High power</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> – 50 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="32">rated </span><span class="_animating_6ta1u_10" data-newtext-seq="41">three-phase AC </span><span class="_animating_6ta1u_10" data-newtext-seq="56">output, 55 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="76">max.</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="85">4 MPPT controllers</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="85"> – up to </span><span class="_animating_6ta1u_10" data-newtext-seq="112">65 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="118">PV input, </span><span class="_animating_6ta1u_10" data-newtext-seq="130">for complex, </span><span class="_animating_6ta1u_10" data-newtext-seq="141">multi-orientation </span><span class="_animating_6ta1u_10" data-newtext-seq="154">arrays</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="167">High-voltage battery support</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="167"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="209">160–800 V, 2 </span><span class="_animating_6ta1u_10" data-newtext-seq="222">battery inputs, 50+50 A </span><span class="_animating_6ta1u_10" data-newtext-seq="243">charge/discharge</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="262">100% asymmetric output</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="262"> – precise </span><span class="_animating_6ta1u_10" data-newtext-seq="300">adaptation to real-world, </span><span class="_animating_6ta1u_10" data-newtext-seq="318">unbalanced loads</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="350">High efficiency</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="350"> – up to 97.6% </span><span class="_animating_6ta1u_10" data-newtext-seq="380">max. and 99.9% </span><span class="_animating_6ta1u_10" data-newtext-seq="394">MPPT efficiency</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="394">Scalability</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="394"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="430">up to 10 units </span><span class="_animating_6ta1u_10" data-newtext-seq="445">can be paralleled in on-grid and </span><span class="_animating_6ta1u_10" data-newtext-seq="473">off-grid mode</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="493">AC-coupled retrofit and generator/wind turbine support</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="493"> – existing </span><span class="_animating_6ta1u_10" data-newtext-seq="560">solar systems can be expanded </span><span class="_animating_6ta1u_10" data-newtext-seq="589">with storage</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="589">Outdoor, wall-mounted design</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="624"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="629">IP65 protection, intelligent </span><span class="_animating_6ta1u_10" data-newtext-seq="657">cooling, compact 80 </span><span class="_animating_6ta1u_10" data-newtext-seq="675">kg enclosure</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="689">Flexible communication</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="689"> – RS485, </span><span class="_animating_6ta1u_10" data-newtext-seq="722">CAN</span></li>
</ul>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Applications</span></h3>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-50K-SG01HP3 inverter</span></strong> <span class="_animating_6ta1u_10" data-newtext-seq="36">is ideal for higher energy demand </span><span class="_animating_6ta1u_10" data-newtext-seq="58">residential, </span><span class="_animating_6ta1u_10" data-newtext-seq="69">commercial and industrial </span><span class="_animating_6ta1u_10" data-newtext-seq="91">projects: </span><span class="_animating_6ta1u_10" data-newtext-seq="113">large family </span><span class="_animating_6ta1u_10" data-newtext-seq="126">homes, farms, </span><span class="_animating_6ta1u_10" data-newtext-seq="151">factories and smaller </span><span class="_animating_6ta1u_10" data-newtext-seq="171">solar parks. It is excellent </span> <span class="_animating_6ta1u_10" data-newtext-seq="198">for maximizing </span><span class="_animating_6ta1u_10" data-newtext-seq="215">self-consumption, </span><span class="_animating_6ta1u_10" data-newtext-seq="226">reducing </span><span class="_animating_6ta1u_10" data-newtext-seq="246">peak demand </span><span class="_animating_6ta1u_10" data-newtext-seq="260">(peak </span><span class="_animating_6ta1u_10" data-newtext-seq="280">shaving) and </span><span class="_animating_6ta1u_10" data-newtext-seq="294">increasing grid independence, </span><span class="_animating_6ta1u_10" data-newtext-seq="316">when paired with </span><span class="_animating_6ta1u_10" data-newtext-seq="328">high-voltage </span><span class="_animating_6ta1u_10" data-newtext-seq="344">batteries. The </span> <span class="_animating_6ta1u_10" data-newtext-seq="372">built-in </span><span class="_animating_6ta1u_10" data-newtext-seq="382">backup function </span><span class="_animating_6ta1u_10" data-newtext-seq="397">maintains power to </span><span class="_animating_6ta1u_10" data-newtext-seq="427">critical loads </span><span class="_animating_6ta1u_10" data-newtext-seq="445">(motor-driven </span><span class="_animating_6ta1u_10" data-newtext-seq="454">equipment, refrigerators, </span><span class="_animating_6ta1u_10" data-newtext-seq="475">air conditioners, machinery) </span><span class="_animating_6ta1u_10" data-newtext-seq="490">during outages, and thanks to AC-coupled </span><span class="_animating_6ta1u_10" data-newtext-seq="515">expandability, </span><span class="_animating_6ta1u_10" data-newtext-seq="544">existing </span><span class="_animating_6ta1u_10" data-newtext-seq="558">installations can be retrofitted </span><span class="_animating_6ta1u_10" data-newtext-seq="580">with </span><span class="_animating_6ta1u_10" data-newtext-seq="595">storage.</span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="8">SUN-50K-SG01HP3 technical </span><span class="_animating_6ta1u_10" data-newtext-seq="32">specifications</span></h3>
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<div class="overflow-x-auto w-full px-2 mb-6">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
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<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col"><span class="_animating_6ta1u_10" data-newtext-seq="1">Parameter</span></th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col"><span class="_animating_6ta1u_10" data-newtext-seq="12">Value</span></th>
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</thead>
<tbody>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="12">Model</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="43">SUN-50K-SG01HP3-EU-BM4</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="43">Type</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="76">three-phase, </span><span class="_animating_6ta1u_10" data-newtext-seq="91">high-voltage hybrid </span><span class="_animating_6ta1u_10" data-newtext-seq="114">inverter</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="114">Rated </span><span class="_animating_6ta1u_10" data-newtext-seq="136">AC output</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="152">50,000 W (50 </span><span class="_animating_6ta1u_10" data-newtext-seq="167">kW)</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="167">Max. AC </span><span class="_animating_6ta1u_10" data-newtext-seq="183">output</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="183">55,000 W</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="207">Rated AC current </span><span class="_animating_6ta1u_10" data-newtext-seq="228">(380/400 V)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="242">75.8 / 72.5 A</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="242">Max. AC </span><span class="_animating_6ta1u_10" data-newtext-seq="268">current (380/400 V)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="285">83.4 / 79.7 A</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="305">Max. three-phase </span><span class="_animating_6ta1u_10" data-newtext-seq="322">asymmetric output </span><span class="_animating_6ta1u_10" data-newtext-seq="345">current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="345">83.3 A</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="363">Rated AC voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="388">220/380 V, 230/400 V; 3L / N </span><span class="_animating_6ta1u_10" data-newtext-seq="417">/ PE</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="417">Grid frequency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="448">50 / 60 Hz</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="448">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="468">continuous AC pass-through </span><span class="_animating_6ta1u_10" data-newtext-seq="492">(grid→load)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="492">200 A</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="523">Peak power (off-grid, </span><span class="_animating_6ta1u_10" data-newtext-seq="552">10 s)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="552">1.5× rated</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="580">Power factor range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="580">0.8 </span><span class="_animating_6ta1u_10" data-newtext-seq="616">capacitive – 0.8 inductive</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="616">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="650">PV input power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="677">65,000 W (65 kW)</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="698">Max. PV voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="719">1000 V</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="730">MPPT voltage range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="730">150–850 V</span></td>
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<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="770">Full load </span><span class="_animating_6ta1u_10" data-newtext-seq="788">DC voltage range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="788">450–850 V</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="826">Rated </span><span class="_animating_6ta1u_10" data-newtext-seq="836">PV voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="836">600 V</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="862">Start-up voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="884">180 V</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="884">Number of MPPTs / </span><span class="_animating_6ta1u_10" data-newtext-seq="903">strings</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="903">4 MPPTs </span><span class="_animating_6ta1u_10" data-newtext-seq="927">/ 2 strings </span><span class="_animating_6ta1u_10" data-newtext-seq="938">per MPPT (8 strings)</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="964">PV input current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="964">36 A / </span><span class="_animating_6ta1u_10" data-newtext-seq="990">MPPT</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="990">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="1004">short-circuit current (Isc)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1004">55 A </span><span class="_animating_6ta1u_10" data-newtext-seq="1035">/ MPPT</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1046">Battery type</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1046">lithium-ion </span><span class="_animating_6ta1u_10" data-newtext-seq="1078">(high-voltage)</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1078">Battery </span><span class="_animating_6ta1u_10" data-newtext-seq="1105">voltage range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1105">160–800 V</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1142">Number of battery inputs</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1142">2</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1142">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="1175">charge/discharge current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1175">50+50 A </span><span class="_animating_6ta1u_10" data-newtext-seq="1203">(100 A total)</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1203">Charging </span><span class="_animating_6ta1u_10" data-newtext-seq="1232">strategy</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1232">self-adaptive to </span><span class="_animating_6ta1u_10" data-newtext-seq="1257">BMS</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1257">Max. efficiency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1285">97.6%</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1295">Euro efficiency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1295">97.0%</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1321">MPPT efficiency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1321">99.9%</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1321">THD</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1321">&lt;3%</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1361">Parallel capability</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1361">up to 10 units </span><span class="_animating_6ta1u_10" data-newtext-seq="1398">(on-grid and off-grid)</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1424">Operating temperature</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1424">−40 – +60 </span><span class="_animating_6ta1u_10" data-newtext-seq="1454">°C (derating above &gt;</span>45 °C)<span class="_animating_6ta1u_10" data-newtext-seq="1469"></span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1469">Noise level</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1507">&lt;65 dB</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1507">Cooling</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1524">intelligent cooling</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1548">Communication (BMS)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1548">RS485; </span><span class="_animating_6ta1u_10" data-newtext-seq="1576">CAN</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1584">Overvoltage category</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1584">DC Type II / </span><span class="_animating_6ta1u_10" data-newtext-seq="1623">AC Type III</span></td>
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<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1623">Protection rating</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1649">IP65</span></td>
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<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1649">Installation</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1672">wall mounting</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1672">Dimensions </span><span class="_animating_6ta1u_10" data-newtext-seq="1698">(W × H × D)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1698">527 × 894 × </span><span class="_animating_6ta1u_10" data-newtext-seq="1726">294 mm</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1726">Weight</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1726">80 kg</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1754">Warranty</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1754">5 years</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1775">Grid standards</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1775">VDE4105, </span><span class="_animating_6ta1u_10" data-newtext-seq="1806">IEC61727/62116, VDE0126, AS4777.2, CEI </span><span class="_animating_6ta1u_10" data-newtext-seq="1845">0-21, EN50549-1, G98, G99, C10-11, </span><span class="_animating_6ta1u_10" data-newtext-seq="1880">UNE217002, NBR16149/16150</span></td>
</tr>
</tbody>
</table>
</div>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><em><span class="_animating_6ta1u_10" data-newtext-seq="1">Protection functions include: anti-islanding protection, PV string reverse polarity protection, insulation resistance monitoring, residual current protection (RCD), output overcurrent and short-circuit protection, and overvoltage protection.</span></em></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Frequently asked </span><span class="_animating_6ta1u_10" data-newtext-seq="20">questions about the Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="36">SUN-50K-SG01HP3 inverter</span></h3>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">What does the SUN-50K-SG01HP3-EU-BM4 designation mean?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">The &#8220;50K&#8221; refers to the 50 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="66">rated output, </span><span class="_animating_6ta1u_10" data-newtext-seq="94">&#8220;SG01HP3&#8221; to the first-generation three-phase, </span><span class="_animating_6ta1u_10" data-newtext-seq="119">high-voltage (HV) hybrid platform, </span><span class="_animating_6ta1u_10" data-newtext-seq="156">and </span><span class="_animating_6ta1u_10" data-newtext-seq="178">&#8220;BM4&#8221; to the 4 </span><span class="_animating_6ta1u_10" data-newtext-seq="194">MPPT controller version.</span></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">What is the difference between the SG01HP3 and SG02HP3 platforms?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">The </span><span class="_animating_6ta1u_10" data-newtext-seq="64">SG01HP3 is the first-generation </span><span class="_animating_6ta1u_10" data-newtext-seq="80">HV hybrid platform </span><span class="_animating_6ta1u_10" data-newtext-seq="110">(typically 160–800 V </span><span class="_animating_6ta1u_10" data-newtext-seq="132">battery voltage, 4 MPPTs on the </span><span class="_animating_6ta1u_10" data-newtext-seq="158">50K), while the newer </span><span class="_animating_6ta1u_10" data-newtext-seq="181">SG02HP3 series </span><span class="_animating_6ta1u_10" data-newtext-seq="197">offers a wider 160–1000 V </span><span class="_animating_6ta1u_10" data-newtext-seq="219">battery range and more MPPTs. The choice depends on the </span><span class="_animating_6ta1u_10" data-newtext-seq="249">solar array and </span><span class="_animating_6ta1u_10" data-newtext-seq="270">planned battery </span><span class="_animating_6ta1u_10" data-newtext-seq="287">parameters.</span><span class="_animating_6ta1u_10" data-newtext-seq="309"></span></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">How many solar panels and what size battery can be connected to the SUN-50K-SG01HP3?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="80">The inverter accepts up to 65 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="103">PV input across 4 MPPTs, </span><span class="_animating_6ta1u_10" data-newtext-seq="135">and has two </span><span class="_animating_6ta1u_10" data-newtext-seq="153">high-voltage (160–800 V) </span><span class="_animating_6ta1u_10" data-newtext-seq="181">battery inputs </span><span class="_animating_6ta1u_10" data-newtext-seq="209">with a total of up to 100 A </span><span class="_animating_6ta1u_10" data-newtext-seq="229">charge/discharge current.</span></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">Can the Deye SUN-50K-SG01HP3 be installed outdoors?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">Yes, thanks to </span><span class="_animating_6ta1u_10" data-newtext-seq="61">IP65 protection and </span><span class="_animating_6ta1u_10" data-newtext-seq="85">intelligent cooling, it is </span><span class="_animating_6ta1u_10" data-newtext-seq="106">suitable for outdoor wall </span><span class="_animating_6ta1u_10" data-newtext-seq="133">mounting, with an operating temperature range between −40 </span><span class="_animating_6ta1u_10" data-newtext-seq="162">and +60 °C </span><span class="_animating_6ta1u_10" data-newtext-seq="180">(with derating </span><span class="_animating_6ta1u_10" data-newtext-seq="201">above 45 °C).</span><span class="_animating_6ta1u_10" data-newtext-seq="216"></span></p>
</div>
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		<title>SUN-30K-SG02HP3</title>
		<link>https://deyenergie.com/en/product/sun-30k-sg02hp3/</link>
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		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Sun, 21 Jun 2026 20:25:31 +0000</pubDate>
				<guid isPermaLink="false">https://deyenergie.com/product/sun-30k-sg02hp3/</guid>

					<description><![CDATA[Download datasheet (PDF) Deye SUN-30K-SG02HP3 – 30 kW three-phase high-voltage hybrid inverter with Co-pilot AI energy manager The Deye SUN-30K-SG02HP3]]></description>
										<content:encoded><![CDATA[<p><a href="https://deyenergie.com/wp-content/uploads/products/SUN-30K-SG02HP3/Datasheet_SUN-25-30K-SG02HP3-EU-AM3.pdf" target="_blank" rel="noopener">Download datasheet (PDF)</a></p>
<h2 class="text-text-100 mt-3 -mb-1 text-[1.375rem] font-bold">Deye SUN-30K-SG02HP3 – 30 kW three-phase high-voltage hybrid inverter with Co-pilot AI energy manager</h2>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-30K-SG02HP3</strong> (SUN-30K-SG02HP3-EU-AM3) is a 30 kW rated, three-phase, high-voltage (HV) <strong>hybrid inverter</strong> designed for larger residential, commercial, and agricultural solar systems. Thanks to 3 independent MPPTs and high-voltage (160–700 V) battery support, it manages solar panels, storage, and the three-phase grid in harmony. Its outstanding power density is evident in delivering 30 kW at just 46 kg – one of the best power-to-weight ratios in its class.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Why choose the Deye SUN-30K-SG02HP3 inverter?</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-30K-SG02HP3 inverter</strong> operates with up to 98.5% maximum and &gt;99% MPPT efficiency. Its key innovation is the natively integrated <strong>Deye Co-pilot</strong> – the first artificial intelligence-based energy management system (EMS) designed specifically for Deye inverters, which automatically optimizes the balance between self-consumption, storage, and grid feed-in by analyzing production data from the 3 MPPTs, consumption patterns, and weather forecasts in real time. In the event of a power outage, the inverter switches to island mode in <strong>less than 4 ms</strong>, allowing servers, payment terminals, industrial controllers, and other critical equipment to continue operating without interruption.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Key advantages of the Deye SUN-30K-SG02HP3</h3>
<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3">
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High power density</strong> – 30 kW in just 46 kg for simple, fast installation</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>3 MPPT controllers</strong> – up to 48 kWp PV input for complex, multi-orientation arrays</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High-voltage battery support</strong> – 160–700 V, up to 75 A charge/discharge, with self-adaptation to BMS</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Deye Co-pilot AI EMS</strong> – predictive, self-learning energy flow optimization</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Ultra-fast backup</strong> – &lt;4 ms UPS switchover for critical loads</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>100% unbalanced output</strong> – precise adaptation to real, unbalanced loads</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High efficiency</strong> – up to 98.5% max. and &gt;99% MPPT efficiency </li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Quiet, robust design</strong> – IP65 protection, ≤55 dB noise level, up to 3000 m altitude</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Scalability</strong> – up to 10 units can be paralleled in on-grid and off-grid modes</li>
</ul>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Applications</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-30K-SG02HP3 inverter</strong> is ideal for larger residential, commercial, and agricultural projects with higher energy demands: large family homes, shops, farms, and facilities with complex electrical infrastructure. It is excellent for maximizing self-consumption, peak shaving, and increasing grid independence when paired with a high-voltage battery – the reference battery is the Deye BOS-G40 Pro (40.96 kWh), designed specifically for this inverter. The low noise level and altitude tolerance make it suitable for noise-sensitive and high-altitude locations as well.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Deye SUN-30K-SG02HP3 technical specifications</h3>
<div class="overflow-x-auto w-full px-2 mb-6">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
<tr>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Parameter</th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Value</th>
</tr>
</thead>
<tbody>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Model</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">SUN-30K-SG02HP3-EU-AM3</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">three-phase, high-voltage hybrid inverter</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">30,000 W (30 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. AC apparent power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">33,000 VA</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC current (approx.)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">~43.3 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">230/400 Vac, three-phase (3L/N/PE)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV input power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">48,000 Wp (48 kWp)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">1000 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">150–850 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Number of MPPTs / strings</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">3 MPPTs / 2 strings per MPPT (6 strings)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">PV current per MPPT</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">36 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">lithium-ion (high-voltage)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">160–700 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Number of battery inputs</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">1</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. charge/discharge current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">75 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Charging strategy</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">self-adaptive to BMS (CAN / RS485)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Reference battery</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Deye BOS-G40 Pro (40.96 kWh)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">98.5%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Euro efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">97.0%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">&gt;99%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Backup switchover time</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">&lt;4 ms</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Energy management</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Deye Co-pilot (integrated AI EMS)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Output asymmetry</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">100%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Programmable time periods</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">6</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Parallel capability</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">up to 10 units (on-grid and off-grid)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Altitude</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">3,000 m</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Noise level</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">≤55 dB</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Protection rating</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IP65</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Weight</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">46 kg</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Warranty</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">according to Deye warranty terms (typically 5/10 years)</td>
</tr>
</tbody>
</table>
</div>
<p class="font-claude-response-body break-words whitespace-normal"><em>Exact mechanical dimensions, warranty period, and complete protection list may vary by region/version; please verify final values with the current Deye SUN-25/29.9/30K-SG02HP3-EU-AM3 datasheet in your possession.</em></p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Frequently asked questions about the Deye SUN-30K-SG02HP3 inverter</h3>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What does the SUN-30K-SG02HP3-EU-AM3 designation mean?</strong><br />
The &#8220;30K&#8221; refers to the 30 kW rated power, &#8220;SG02HP3&#8221; to the three-phase, high-voltage (HV) hybrid platform, and &#8220;AM3&#8221; to the latest version with 3 MPPTs and Co-pilot AI EMS (25 and 29.9 kW variants are also available in the series).</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What is Deye Co-pilot?</strong><br />
Co-pilot is the first artificial intelligence-based energy management system designed specifically for Deye inverters, which automatically optimizes energy flow and the 6 programmable time periods in advance by analyzing production, consumption, and weather forecasts for maximum return on investment.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What size battery and solar array can be connected to the SUN-30K-SG02HP3?</strong><br />
The inverter accepts up to 48 kWp PV power through 3 MPPTs and features a high-voltage (160–700 V) battery input with up to 75 A charge/discharge current; the reference battery is the Deye BOS-G40 Pro.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>Is it suitable for powering critical loads?</strong><br />
Yes, thanks to the &lt;4 ms UPS switchover, servers, payment terminals, industrial controllers, and other sensitive equipment continue to operate without interruption in the event of a power outage.</p>
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		<title>SUN-20K-SG05LP3</title>
		<link>https://deyenergie.com/en/product/sun-20k-sg05lp3/</link>
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		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Sun, 21 Jun 2026 20:25:29 +0000</pubDate>
				<guid isPermaLink="false">https://deyenergie.com/product/sun-20k-sg05lp3/</guid>

					<description><![CDATA[Download datasheet (PDF) Deye SUN-20K-SG05LP3 – 20 kW three-phase low-voltage (48 V) hybrid inverter for larger residential and small commercial]]></description>
										<content:encoded><![CDATA[<p><a href="https://deyenergie.com/wp-content/uploads/products/SUN-20K-SG05LP3/DatasheetSUN-14-20K-SG05LP3-EU-SM2.pdf" target="_blank" rel="noopener">Download datasheet (PDF)</a></p>
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<h2 class="text-text-100 mt-3 -mb-1 text-[1.375rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="2">Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="7">SUN-20K-SG05LP3 – 20 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="31">three-phase </span><span class="_animating_6ta1u_10" data-newtext-seq="43">low-voltage (48 V) hybrid </span><span class="_animating_6ta1u_10" data-newtext-seq="77">inverter for larger residential </span><span class="_animating_6ta1u_10" data-newtext-seq="104">and small </span><span class="_animating_6ta1u_10" data-newtext-seq="111">commercial systems</span></h2>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-20K-SG05LP3</span></strong> <span class="_animating_6ta1u_10" data-newtext-seq="27">(SUN-20K-SG05LP3-EU-SM2) is a 20 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="62">rated </span><span class="_animating_6ta1u_10" data-newtext-seq="71">power, three-phase, </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="101">low-voltage (48 V)</span></strong> <strong><span class="_animating_6ta1u_10" data-newtext-seq="132">hybrid inverter</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="132">, the </span><span class="_animating_6ta1u_10" data-newtext-seq="160">highest-power </span><span class="_animating_6ta1u_10" data-newtext-seq="194">member </span><span class="_animating_6ta1u_10" data-newtext-seq="219">of the SG05LP3-EU-SM2 (14–20 kW) series. Thanks to its robust, </span> <span class="_animating_6ta1u_10" data-newtext-seq="239">transformer-isolated </span><span class="_animating_6ta1u_10" data-newtext-seq="269">design, it is </span><span class="_animating_6ta1u_10" data-newtext-seq="298">compatible with the most common 48 V </span><span class="_animating_6ta1u_10" data-newtext-seq="322">batteries (lithium-ion or </span><span class="_animating_6ta1u_10" data-newtext-seq="356">lead-acid), </span><span class="_animating_6ta1u_10" data-newtext-seq="367">while the 2 independent MPPTs </span><span class="_animating_6ta1u_10" data-newtext-seq="400">optimize generation even on </span><span class="_animating_6ta1u_10" data-newtext-seq="422">roofs with different orientations. </span><span class="_animating_6ta1u_10" data-newtext-seq="460">It combines </span><span class="_animating_6ta1u_10" data-newtext-seq="492">on-grid and </span><span class="_animating_6ta1u_10" data-newtext-seq="524">off-grid operation in a single unit, making it </span><span class="_animating_6ta1u_10" data-newtext-seq="561">ideal for larger family homes, </span><span class="_animating_6ta1u_10" data-newtext-seq="592">farms, and small businesses </span><span class="_animating_6ta1u_10" data-newtext-seq="627">energy supply.</span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Why choose the Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="16">SUN-20K-SG05LP3 inverter?</span></h3>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-20K-SG05LP3 inverter</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> operates with up to </span><span class="_animating_6ta1u_10" data-newtext-seq="41">97.6% maximum and &gt;99% </span> <span class="_animating_6ta1u_10" data-newtext-seq="71">MPPT efficiency, with low, </span><span class="_animating_6ta1u_10" data-newtext-seq="107">&lt;3% harmonic distortion (THD). </span> <span class="_animating_6ta1u_10" data-newtext-seq="144">During the day, solar energy first </span><span class="_animating_6ta1u_10" data-newtext-seq="174">supplies the loads, with the surplus </span><span class="_animating_6ta1u_10" data-newtext-seq="213">charging the battery and </span><span class="_animating_6ta1u_10" data-newtext-seq="246">feeding into the grid; in case of power outage, </span><span class="_animating_6ta1u_10" data-newtext-seq="284">the inverter automatically switches to battery </span><span class="_animating_6ta1u_10" data-newtext-seq="324">operation. The 100% unbalanced </span> <span class="_animating_6ta1u_10" data-newtext-seq="361">output adapts to </span><span class="_animating_6ta1u_10" data-newtext-seq="390">different loads per phase, and in off-grid mode </span><span class="_animating_6ta1u_10" data-newtext-seq="426">the inverter can deliver </span><span class="_animating_6ta1u_10" data-newtext-seq="461">twice the rated power for 10 seconds, </span><span class="_animating_6ta1u_10" data-newtext-seq="501">enabling high-inrush </span><span class="_animating_6ta1u_10" data-newtext-seq="536">equipment to start. The series&#8217; </span> <span class="_animating_6ta1u_10" data-newtext-seq="569">highest, up to 350 A </span><span class="_animating_6ta1u_10" data-newtext-seq="595">charge/discharge current ensures fast battery charging </span><span class="_animating_6ta1u_10" data-newtext-seq="635">and strong discharge performance.</span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Key advantages of the Deye SUN-20K-SG05LP3</span></h3>
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<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3">
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">48 V battery compatibility</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="35">transformer-isolated </span><span class="_animating_6ta1u_10" data-newtext-seq="65">design, for lithium-ion and lead-acid </span><span class="_animating_6ta1u_10" data-newtext-seq="101">batteries, up to 350 A </span><span class="_animating_6ta1u_10" data-newtext-seq="130">charge/discharge</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="130">2 MPPT controllers</span></strong> <span class="_animating_6ta1u_10" data-newtext-seq="169">– wide, 160–650 V MPPT range </span><span class="_animating_6ta1u_10" data-newtext-seq="207">for roofs with different orientations</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="239">100% unbalanced output</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="239"> – precise </span><span class="_animating_6ta1u_10" data-newtext-seq="277">adaptation to real, unbalanced </span><span class="_animating_6ta1u_10" data-newtext-seq="311">loads</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="327">Strong starting power</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="327"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="358">in off-grid mode, 2× rated for 10 s</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="400">High efficiency</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="400"> – up to 97.6% max. and </span><span class="_animating_6ta1u_10" data-newtext-seq="438">&gt;99% MPPT efficiency, &lt;3% THD</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="470">Scalability</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="470"> – up to 10 units </span><span class="_animating_6ta1u_10" data-newtext-seq="503">can be paralleled in on-grid and off-grid </span><span class="_animating_6ta1u_10" data-newtext-seq="540">mode</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="551">AC-coupled retrofit and generator support</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="551"> – existing solar systems </span><span class="_animating_6ta1u_10" data-newtext-seq="624">can be expanded with storage; diesel generator </span><span class="_animating_6ta1u_10" data-newtext-seq="661">energy can also be stored</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="688">Outdoor design</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="688"> – IP65 protection, </span><span class="_animating_6ta1u_10" data-newtext-seq="724">touchscreen LCD, Wi-Fi + Bluetooth </span><span class="_animating_6ta1u_10" data-newtext-seq="763">included in the package</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="763">Flexible monitoring</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="763"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="803">RS485, RS232, CAN; GPRS / 4G / LAN </span><span class="_animating_6ta1u_10" data-newtext-seq="838">optional</span></li>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Applications</span></h3>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-20K-SG05LP3 inverter</span></strong> <span class="_animating_6ta1u_10" data-newtext-seq="36">is ideal for larger, three-phase </span><span class="_animating_6ta1u_10" data-newtext-seq="65">energy-demand residential and small </span><span class="_animating_6ta1u_10" data-newtext-seq="96">commercial projects: large family </span><span class="_animating_6ta1u_10" data-newtext-seq="136">homes, farms, and small </span><span class="_animating_6ta1u_10" data-newtext-seq="170">businesses where flexible and </span><span class="_animating_6ta1u_10" data-newtext-seq="205">reliable energy management is </span><span class="_animating_6ta1u_10" data-newtext-seq="241">needed with 48 V battery </span><span class="_animating_6ta1u_10" data-newtext-seq="271">storage. It helps maximize self-</span> <span class="_animating_6ta1u_10" data-newtext-seq="311">consumption, acts as a backup power source </span><span class="_animating_6ta1u_10" data-newtext-seq="348">during power outages, and with 6 </span><span class="_animating_6ta1u_10" data-newtext-seq="381">programmable charge/discharge </span><span class="_animating_6ta1u_10" data-newtext-seq="412">periods enables off-peak </span><span class="_animating_6ta1u_10" data-newtext-seq="448">charging and peak-time </span><span class="_animating_6ta1u_10" data-newtext-seq="483">discharge. Thanks to AC-coupled expandability, </span> <span class="_animating_6ta1u_10" data-newtext-seq="523">existing solar </span><span class="_animating_6ta1u_10" data-newtext-seq="554">systems can also be retrofitted </span><span class="_animating_6ta1u_10" data-newtext-seq="590">with storage.</span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Deye SUN-20K-SG05LP3 </span><span class="_animating_6ta1u_10" data-newtext-seq="24">technical specifications</span></h3>
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<div class="overflow-x-auto w-full px-2 mb-6">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
<tr>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col"><span class="_animating_6ta1u_10" data-newtext-seq="1"> Parameter</span></th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col"><span class="_animating_6ta1u_10" data-newtext-seq="1">Value</span></th>
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</thead>
<tbody>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1">Model</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="43">SUN-20K-SG05LP3-EU-SM2</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="43">Type</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="78">three-phase, low-voltage (48 V) </span><span class="_animating_6ta1u_10" data-newtext-seq="118">hybrid inverter</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="118">Rated AC </span><span class="_animating_6ta1u_10" data-newtext-seq="150">power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="150">20,000 W (20 kW)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="186">Max. AC apparent power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="186">22,</span><span class="_animating_6ta1u_10" data-newtext-seq="224">000 VA</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="224">Rated AC current (380/400 V) </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="264">30.4 / 29.0 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="264">Max. AC current </span><span class="_animating_6ta1u_10" data-newtext-seq="297">(380/400 V)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="297">~33.4 / 31.9 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="330">Rated AC voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="330">220/380 V, </span><span class="_animating_6ta1u_10" data-newtext-seq="366">230/400 V; 3L + N + PE</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="366">Grid </span><span class="_animating_6ta1u_10" data-newtext-seq="402">frequency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="402">50 / 60 Hz</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="402">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="435">continuous AC pass-through </span><span class="_animating_6ta1u_10" data-newtext-seq="459">(grid→load)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="459">70 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="489">Peak power (off-grid, 10 s)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="526">2× rated</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="544">Power factor range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="544">0.8 </span><span class="_animating_6ta1u_10" data-newtext-seq="580">capacitive – 0.8 inductive</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="580">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="614">PV input power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="614">27,000 W </span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="653">Max. PV voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="653">800 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="688">MPPT voltage range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="688">160–650 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="728"> Rated PV voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="728">550 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="764">Start-up voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="764">160 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="764">Number of MPPTs </span><span class="_animating_6ta1u_10" data-newtext-seq="803">/ strings</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="803">2 MPPT / 2+1 string </span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="842">Max. operating PV current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="842">36+20 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="879">Max. short-circuit current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="879">54+30 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="916">Battery type</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="916">lead-acid or </span><span class="_animating_6ta1u_10" data-newtext-seq="952">lithium-ion (48 V)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="952">Battery </span><span class="_animating_6ta1u_10" data-newtext-seq="979">voltage range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="979">40–60 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1014">Number of battery inputs</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1014">2</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1014">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="1047">charge/discharge current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1047">350 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1047">Charging </span><span class="_animating_6ta1u_10" data-newtext-seq="1085">strategy</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1085">self-adaptive to BMS</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1122">Max. efficiency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1122">97.6%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1122">Euro efficiency </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1162">97.0%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1162">MPPT efficiency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1162">&gt;99%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1199">THD</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1199">&lt;3%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1199">Parallel capability</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1235">up to 10 units (on-grid and off-grid)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1275"> Operating temperature</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1275">−40 – +60 °C (derating above &gt;45 </span><span class="_animating_6ta1u_10" data-newtext-seq="1314">°C)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1348">Altitude</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1348">3000 m</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1389"> Noise level</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1389">≤60 dB</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1389">Protection rating</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1424">IP65</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1424">Cooling</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1424">intelligent air cooling</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1465"> Monitoring</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1465">Wi-Fi + Bluetooth </span><span class="_animating_6ta1u_10" data-newtext-seq="1497">(included); GPRS / 4G / LAN </span><span class="_animating_6ta1u_10" data-newtext-seq="1526">(optional)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1526">Communication</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1526">RS485, </span><span class="_animating_6ta1u_10" data-newtext-seq="1565">RS232, CAN</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1565">Surge protection</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1604">Type II (DC), Type II (AC)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1604">Weight</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1604">~</span><span class="_animating_6ta1u_10" data-newtext-seq="1644">51.9 kg</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1644">Warranty</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1644">5 years / 10 years (depending on </span><span class="_animating_6ta1u_10" data-newtext-seq="1683">installation location)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1719">Grid standards</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1719">IEC 61727, IEC </span><span class="_animating_6ta1u_10" data-newtext-seq="1756">62116, CEI 0-21, EN 50549, NRS 097, RD </span><span class="_animating_6ta1u_10" data-newtext-seq="1795">140, UNE 217002, OVE R25, G99, VDE-AR-N </span><span class="_animating_6ta1u_10" data-newtext-seq="1835">4105</span></td>
</tr>
</tbody>
</table>
</div>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><em><span class="_animating_6ta1u_10" data-newtext-seq="1">The max. AC current and max. PV power may vary depending on model variant/region; please verify exact dimensions and parallel unit count with your current Deye SUN-14/15/16/18/20K-SG05LP3-EU-SM2 datasheet. Protection functions include: AC/DC overvoltage and overcurrent protection, short-circuit protection, insulation resistance and residual current protection (RCD), ground fault monitoring, anti-islanding protection, DC disconnect, and optional AFCI. </span></em></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Frequently asked </span><span class="_animating_6ta1u_10" data-newtext-seq="20">questions about the Deye SUN-20K-SG05LP3 </span><span class="_animating_6ta1u_10" data-newtext-seq="52">inverter</span></h3>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">What does the SUN-20K-SG05LP3-EU-SM2 designation mean?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">The &#8220;20K&#8221; refers to the 20 kW rated </span><span class="_animating_6ta1u_10" data-newtext-seq="74">power, the &#8220;SG05LP3&#8221; to the </span><span class="_animating_6ta1u_10" data-newtext-seq="105">three-phase, low-voltage (48 </span><span class="_animating_6ta1u_10" data-newtext-seq="142">V battery) hybrid platform; </span><span class="_animating_6ta1u_10" data-newtext-seq="180">the 20 kW is the highest member of the 14–20 kW sub-series.</span></p>
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<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">What is the difference between the SUN-15K and SUN-20K SG05LP3?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">Both models </span><span class="_animating_6ta1u_10" data-newtext-seq="73">are built on the same platform; </span><span class="_animating_6ta1u_10" data-newtext-seq="91">the main difference is the </span><span class="_animating_6ta1u_10" data-newtext-seq="112">rated power </span><span class="_animating_6ta1u_10" data-newtext-seq="134">(15 kW vs 20 kW), the </span><span class="_animating_6ta1u_10" data-newtext-seq="154">corresponding AC </span><span class="_animating_6ta1u_10" data-newtext-seq="171">current, the higher </span><span class="_animating_6ta1u_10" data-newtext-seq="187">PV input power, </span><span class="_animating_6ta1u_10" data-newtext-seq="216">and the maximum </span><span class="_animating_6ta1u_10" data-newtext-seq="237">charge/discharge current (280 A vs 350 </span><span class="_animating_6ta1u_10" data-newtext-seq="269">A).</span></p>
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<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">What battery does the Deye SUN-20K-SG05LP3 work with?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">It is </span><span class="_animating_6ta1u_10" data-newtext-seq="60">compatible with the most common 48 V (40–60 </span><span class="_animating_6ta1u_10" data-newtext-seq="91">V) </span><span class="_animating_6ta1u_10" data-newtext-seq="94">batteries, </span><span class="_animating_6ta1u_10" data-newtext-seq="125">whether </span><span class="_animating_6ta1u_10" data-newtext-seq="135">lithium-ion or lead-acid, </span><span class="_animating_6ta1u_10" data-newtext-seq="162">with up to 350 A </span><span class="_animating_6ta1u_10" data-newtext-seq="173">charge/discharge current – the series&#8217; </span><span class="_animating_6ta1u_10" data-newtext-seq="209">highest current rating.</span></p>
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<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">Can the Deye SUN-20K-SG05LP3 be installed outdoors?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">Yes, thanks to </span><span class="_animating_6ta1u_10" data-newtext-seq="61">IP65 protection and </span><span class="_animating_6ta1u_10" data-newtext-seq="85">intelligent air cooling, </span><span class="_animating_6ta1u_10" data-newtext-seq="109">it is suitable for </span><span class="_animating_6ta1u_10" data-newtext-seq="130">outdoor installation, </span><span class="_animating_6ta1u_10" data-newtext-seq="155">with an operating </span><span class="_animating_6ta1u_10" data-newtext-seq="169">temperature range of </span><span class="_animating_6ta1u_10" data-newtext-seq="183">−40 to +60 °C (&gt;45 °C </span><span class="_animating_6ta1u_10" data-newtext-seq="206">above </span><span class="_animating_6ta1u_10" data-newtext-seq="213">with derating).</span></p>
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		<title>SUN-15K-SG05LP3</title>
		<link>https://deyenergie.com/en/product/sun-15k-sg05lp3/</link>
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		<pubDate>Sun, 21 Jun 2026 20:25:27 +0000</pubDate>
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					<description><![CDATA[Download datasheet (PDF) Deye SUN-15K-SG05LP3 – 15 kW three-phase low-voltage (48 V) hybrid inverter for larger residential and small commercial]]></description>
										<content:encoded><![CDATA[<p><a href="https://deyenergie.com/wp-content/uploads/products/SUN-15K-SG05LP3/DatasheetSUN-14-20K-SG05LP3-EU-SM2.pdf" target="_blank" rel="noopener">Download datasheet (PDF)</a></p>
<h2 class="text-text-100 mt-3 -mb-1 text-[1.375rem] font-bold">Deye SUN-15K-SG05LP3 – 15 kW three-phase low-voltage (48 V) hybrid inverter for larger residential and small commercial systems</h2>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-15K-SG05LP3</strong> (SUN-15K-SG05LP3-EU-SM2) is a 15 kW rated power, three-phase, <strong>low-voltage (48 V)</strong> <strong>hybrid inverter</strong>, part of the higher-power SG05LP3-EU-SM2 (14–20 kW) series. Thanks to its robust transformer-isolated design, it is compatible with the most common 48 V batteries (lithium-ion or lead-acid), while the 2 independent MPPTs optimize production even on roofs with different orientations. It combines on-grid and off-grid operation in a single unit, making it ideal for powering larger family homes, farms, and small businesses.</p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Why choose the Deye SUN-15K-SG05LP3 inverter?</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-15K-SG05LP3 inverter</strong> operates with up to 97.6% maximum and &gt;99% MPPT efficiency, with low &lt;3% harmonic distortion (THD). During the day, solar energy first supplies the loads, with surplus charging the battery and feeding the grid; in case of power outage, the inverter automatically switches to battery operation. The 100% unbalanced output adapts to different loads per phase, and in off-grid mode the inverter can deliver twice the rated power for 10 seconds, allowing high-inrush machines to start. The high charge/discharge current of up to 280 A ensures fast battery charging and strong discharge performance.</p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Key advantages of the Deye SUN-15K-SG05LP3</h3>
<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3">
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>48 V battery compatibility</strong> – transformer-isolated design, for lithium-ion and lead-acid batteries, up to 280 A charge/discharge</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>2 MPPT controllers</strong> – wide 160–650 V MPPT range for roofs with different orientations</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>100% unbalanced output</strong> – precise adaptation to real, unbalanced loads</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Strong starting power</strong> – 2× rated power for 10 s in off-grid mode</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High efficiency</strong> – up to 97.6% max. and &gt;99% MPPT efficiency, &lt;3% THD</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Scalability</strong> – up to 10 units can be paralleled in on-grid and off-grid modes</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>AC-coupled retrofit and generator support</strong> – existing solar systems can be expanded with storage; diesel generator energy can also be stored</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Outdoor design</strong> – IP65 protection, touchscreen LCD, Wi-Fi + Bluetooth included in package</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Flexible monitoring</strong> – RS485, RS232, CAN; GPRS / 4G / LAN optionally</li>
</ul>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Applications</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-15K-SG05LP3 inverter</strong> is ideal for larger three-phase residential and small commercial projects: large family homes, farms, and small businesses where flexible and reliable energy management is needed with 48 V battery storage. It helps maximize self-consumption, acts as a backup power source during outages, and with 6 programmable charge/discharge periods enables off-peak charging and peak-time discharge. Thanks to AC-coupled expandability, existing solar systems can also be retrofitted with storage.</p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Deye SUN-15K-SG05LP3 technical specifications</h3>
<div class="overflow-x-auto w-full px-2 mb-6">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
<tr>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Parameter</th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Value</th>
</tr>
</thead>
<tbody>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Model</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">SUN-15K-SG05LP3-EU-SM2</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">three-phase, low-voltage (48 V) hybrid inverter</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">15,000 W (15 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. AC apparent power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">16,500 VA</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC current (380/400 V)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">22.8 / 21.8 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. AC current (380/400 V)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">~25 / 23.9 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">220/380 V, 230/400 V; 3L + N + PE</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid frequency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">50 / 60 Hz</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. continuous AC pass-through (grid→load)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">70 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Peak power (off-grid, 10 s)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2× rated</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Power factor range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">0.8 capacitive – 0.8 inductive</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV input power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">24,000 W</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">800 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">160–650 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated PV voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">550 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Start-up voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">160 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Number of MPPTs / strings</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2 MPPT / 2+1 string</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. operating PV current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">36+20 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. short-circuit current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">54+30 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">lead-acid or lithium-ion (48 V)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">40–60 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Number of battery inputs</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. charge/discharge current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">280 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Charging strategy</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">self-adaptive to BMS</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">97.6%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Euro efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">97.0%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">&gt;99%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">THD</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">&lt;3%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Parallel capability</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">up to 10 units (on-grid and off-grid)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Operating temperature</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">−40 – +60 °C (derating above &gt;45 °C)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Altitude</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">3,000 m</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Noise level</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">≤60 dB</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Protection rating</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IP65</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Cooling</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">intelligent air cooling</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Monitoring</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Wi-Fi + Bluetooth (included); GPRS / 4G / LAN (optional)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Communication</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">RS485, RS232, CAN</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Surge protection</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Type II (DC), Type II (AC)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Weight</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">~51.9 kg</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Warranty</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">5 years / 10 years (depending on installation location)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid standards</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IEC 61727, IEC 62116, CEI 0-21, EN 50549, NRS 097, RD 140, UNE 217002, OVE R25, G99, VDE-AR-N 4105</td>
</tr>
</tbody>
</table>
</div>
<p class="font-claude-response-body break-words whitespace-normal"><em>The max. AC current and max. PV power may vary depending on model variant/region; please verify the exact dimensions and parallel connection quantity with the current Deye SUN-14/15/16/18/20K-SG05LP3-EU-SM2 datasheet you have. Protection functions include: AC/DC overvoltage and overcurrent protection, short-circuit protection, insulation resistance and residual current protection (RCD), ground fault monitoring, anti-islanding protection, DC disconnect, and optional AFCI. </em></p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Frequently asked questions about the Deye SUN-15K-SG05LP3 inverter</h3>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What does the SUN-15K-SG05LP3-EU-SM2 designation mean?</strong><br />
The &#8220;15K&#8221; refers to the 15 kW rated power, the &#8220;SG05LP3&#8221; to the three-phase, low-voltage (48 V battery) hybrid platform; the 15 kW is part of the higher-power 14–20 kW sub-series.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What battery does the Deye SUN-15K-SG05LP3 work with?</strong><br />
Thanks to its transformer-isolated design, it is compatible with the most common 48 V (40–60 V) batteries, whether lithium-ion or lead-acid, with up to 280 A charge/discharge current.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>How many solar panels can be connected to the Deye SUN-15K-SG05LP3?</strong><br />
The inverter has 2 MPPTs with a wide 160–650 V MPPT range, up to 800 V PV voltage and significant PV oversizing, so larger roof areas can also be utilized.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>Can the Deye SUN-15K-SG05LP3 be installed outdoors?</strong><br />
Yes, thanks to IP65 protection and intelligent air cooling, it is suitable for outdoor installation, with an operating temperature range of −40 to +60 °C (with derating above &gt;45 °C).</p>
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		<title>SUN-12K-SG05LP3</title>
		<link>https://deyenergie.com/en/product/sun-12k-sg05lp3/</link>
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		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Sun, 21 Jun 2026 20:25:25 +0000</pubDate>
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					<description><![CDATA[Download datasheet (PDF) Deye SUN-12K-SG05LP3 – 12 kW three-phase low-voltage (48 V) hybrid inverter for residential and small commercial systems]]></description>
										<content:encoded><![CDATA[<p><a href="https://deyenergie.com/wp-content/uploads/products/SUN-12K-SG05LP3/DatasheetSUN-5-12K-SG04LP3.pdf" target="_blank" rel="noopener">Download datasheet (PDF)</a></p>
<h2 class="text-text-100 mt-3 -mb-1 text-[1.375rem] font-bold">Deye SUN-12K-SG05LP3 – 12 kW three-phase low-voltage (48 V) hybrid inverter for residential and small commercial systems</h2>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-12K-SG05LP3</strong> (SUN-12K-SG05LP3-EU-SM2) is a 12 kW rated power, three-phase, <strong>low-voltage (48 V)</strong> <strong>hybrid inverter</strong>, the highest-power member of the popular SG05LP3 series. Thanks to its transformer-isolated design, it is compatible with the most common 48 V batteries (lithium-ion or lead-acid), while the 2 independent MPPTs optimize production even on roofs with different orientations. It combines on-grid and off-grid operation in a single unit, making it a flexible solution for powering larger family homes and small businesses.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Why choose the Deye SUN-12K-SG05LP3 inverter?</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-12K-SG05LP3 inverter</strong> operates with up to 97.6% maximum and &gt;99% MPPT efficiency, and optimizes energy use and storage with intelligent algorithms. During the day, solar energy first supplies the loads, with surplus charging the battery and feeding the grid; in case of power outage, the inverter automatically switches to battery operation. The 100% unbalanced output adapts to phase-by-phase varying loads, and in off-grid mode the inverter can deliver twice the rated power for 10 seconds, allowing high-inrush motors to start. The series&#8217; highest charge/discharge current of up to 240 A ensures fast battery charging and strong discharge performance.   </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Key advantages of the Deye SUN-12K-SG05LP3</h3>
<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3">
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>48 V battery compatibility</strong> – transformer-isolated design, for lithium-ion and lead-acid batteries, up to 240 A charge/discharge</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>2 MPPT controllers</strong> – up to 18 kW PV input, for roofs with different orientations</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>100% unbalanced output</strong> – precise adaptation to real, unbalanced loads</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Strong starting power</strong> – 2× rated power for 10 s in off-grid mode</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>High efficiency</strong> – up to 97.6% max. and &gt;99% MPPT efficiency </li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Scalability</strong> – up to 10 units can be paralleled in on-grid and off-grid modes</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>AC-coupled retrofit and generator support</strong> – existing solar systems can be expanded with storage; diesel generator energy can also be stored</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Compact, outdoor design</strong> – IP65 protection, only 35.2 kg, ≤55 dB, touchscreen LCD</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Flexible monitoring</strong> – GPRS / Wi-Fi / Bluetooth / 4G / LAN, RS485/RS232/CAN</li>
</ul>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Applications</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-12K-SG05LP3 inverter</strong> is ideal for larger family homes, farms, and small businesses where three-phase, flexible, and reliable energy management is needed with 48 V battery storage. It helps maximize self-consumption, acts as a backup power source during outages, and with 6 programmable charge/discharge periods enables off-peak charging and peak-time discharge. Thanks to AC-coupled expandability, existing solar systems can also be retrofitted with storage.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Deye SUN-12K-SG05LP3 technical specifications</h3>
<div class="overflow-x-auto w-full px-2 mb-6">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
<tr>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Parameter</th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Value</th>
</tr>
</thead>
<tbody>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Model</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">SUN-12K-SG05LP3-EU-SM2</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">three-phase, low-voltage (48 V) hybrid inverter</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">12,000 W (12 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. AC apparent power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">13,200 VA</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC current (380/400 V)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">18.2 / 17.4 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. AC current (380/400 V)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">20.0 / 19.2 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC voltage / range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">220/380 V, 230/400 V; 0.85–1.1 Un</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid frequency / range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">50 Hz (45–55) / 60 Hz (55–65)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid connection</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">3L + N + PE</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. continuous AC pass-through (grid→load)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">45 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Peak power (off-grid, 10 s)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2× rated</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Power factor range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">0.8 capacitive – 0.8 inductive</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV input power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">18,000 W (18 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV access power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">24,000 W (24 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">800 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">200–650 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated PV voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">550 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Start-up voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">160 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Number of MPPTs / strings</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2 MPPTs / 1 string per MPPT</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. operating PV current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">20+20 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. short-circuit current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">30+30 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">lead-acid or lithium-ion (48 V)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">40–60 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Number of battery inputs</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">1</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. charge/discharge current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">240 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Charging strategy</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">self-adaptive to BMS</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">97.6%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Euro efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">97.0%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">&gt;99%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">THDi</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">&lt;3%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Parallel capability</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">up to 10 units (on-grid and off-grid)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Operating temperature</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">−40 – +60 °C (derating above &gt;45 °C)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Humidity</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">0–100%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Altitude</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">3,000 m</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Noise level</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">≤55 dB</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Protection rating</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IP65</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Cooling</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">intelligent air cooling</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Monitoring</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">GPRS / Wi-Fi / Bluetooth / 4G / LAN (optional)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Communication</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">RS485, RS232, CAN</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Surge protection</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Type II (DC), Type II (AC)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Dimensions (W × H × D)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">386 × 660 × 250 mm</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Weight</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">35.2 kg</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Warranty</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">5 years / 10 years (depending on installation location)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid standards</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IEC 61727, IEC 62116, CEI 0-21, EN 50549, NRS 097, RD 140, UNE 217002, OVE R25, G99, VDE-AR-N 4105</td>
</tr>
</tbody>
</table>
</div>
<p class="font-claude-response-body break-words whitespace-normal"><em>Protection functions include: DC reverse polarity, AC overcurrent and overvoltage protection, short-circuit and thermal protection, DC component monitoring, insulation resistance and residual current protection (RCD), anti-islanding protection, DC disconnect, and optional AFCI (arc fault protection).</em></p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Frequently asked questions about the Deye SUN-12K-SG05LP3 inverter</h3>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What does the SUN-12K-SG05LP3-EU-SM2 designation mean?</strong><br />
The &#8220;12K&#8221; refers to the 12 kW rated power, &#8220;SG05LP3&#8221; to the three-phase, low-voltage (48 V battery) hybrid platform; the 12 kW is the largest member of the series.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What is the difference between the SUN-10K and SUN-12K SG05LP3?</strong><br />
Both models are built on the same platform and housing; the main differences are the rated power (10 kW vs 12 kW), the corresponding AC current, the higher PV input (15 kW vs 18 kW), and the maximum charge/discharge current (210 A vs 240 A).</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What battery does the Deye SUN-12K-SG05LP3 work with?</strong><br />
It is compatible with the most common 48 V (40–60 V) batteries, whether lithium-ion or lead-acid, with up to 240 A charge/discharge current.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>Can the Deye SUN-12K-SG05LP3 be installed outdoors?</strong><br />
Yes, thanks to IP65 protection and intelligent air cooling, it is suitable for outdoor installation, with an operating temperature range of −40 to +60 °C (with derating above &gt;45 °C).</p>
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		<title>SUN-10K-SG05LP3</title>
		<link>https://deyenergie.com/en/product/sun-10k-sg05lp3/</link>
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		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Sun, 21 Jun 2026 20:25:23 +0000</pubDate>
				<guid isPermaLink="false">https://deyenergie.com/product/sun-10k-sg05lp3/</guid>

					<description><![CDATA[Download datasheet (PDF) Deye SUN-10K-SG05LP3 – 10 kW three-phase low-voltage (48 V) hybrid inverter for residential and small commercial systems]]></description>
										<content:encoded><![CDATA[<p><a href="https://deyenergie.com/wp-content/uploads/products/SUN-10K-SG05LP3/DatasheetSUN-5-12K-SG04LP3.pdf" target="_blank" rel="noopener">Download datasheet (PDF)</a></p>
<div class="_chunkWrapper_6ta1u_30">
<h2 class="text-text-100 mt-3 -mb-1 text-[1.375rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="2">Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="7">SUN-10K-SG05LP3 – 10 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="31">three-phase </span><span class="_animating_6ta1u_10" data-newtext-seq="43">low-voltage (48 V) </span><span class="_animating_6ta1u_10" data-newtext-seq="70">hybrid inverter </span><span class="_animating_6ta1u_10" data-newtext-seq="86">for residential and small </span><span class="_animating_6ta1u_10" data-newtext-seq="103">commercial </span><span class="_animating_6ta1u_10" data-newtext-seq="116">systems</span></h2>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The  </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-10K-SG05LP3</span></strong> <span class="_animating_6ta1u_10" data-newtext-seq="27">(SUN-10K-SG05LP3-EU-SM2) is a 10 kW  </span><span class="_animating_6ta1u_10" data-newtext-seq="62">rated  </span><span class="_animating_6ta1u_10" data-newtext-seq="71">power,  </span><span class="_animating_6ta1u_10" data-newtext-seq="86">three-phase,  </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="101">low-voltage (48 V)</span></strong> <strong><span class="_animating_6ta1u_10" data-newtext-seq="132">hybrid inverter</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="132"> designed for  </span><span class="_animating_6ta1u_10" data-newtext-seq="159">residential and small  </span><span class="_animating_6ta1u_10" data-newtext-seq="176">commercial solar  </span><span class="_animating_6ta1u_10" data-newtext-seq="199">systems </span><span class="_animating_6ta1u_10" data-newtext-seq="213">. The   </span><span class="_animating_6ta1u_10" data-newtext-seq="233">transformer-isolated </span><span class="_animating_6ta1u_10" data-newtext-seq="250">design </span><span class="_animating_6ta1u_10" data-newtext-seq="263">makes it </span><span class="_animating_6ta1u_10" data-newtext-seq="292">compatible with the most common 48 V </span><span class="_animating_6ta1u_10" data-newtext-seq="316">batteries </span><span class="_animating_6ta1u_10" data-newtext-seq="333">(lithium-ion or </span><span class="_animating_6ta1u_10" data-newtext-seq="350">lead-acid), </span><span class="_animating_6ta1u_10" data-newtext-seq="361">while the 2 </span><span class="_animating_6ta1u_10" data-newtext-seq="379">independent MPPTs </span><span class="_animating_6ta1u_10" data-newtext-seq="400">optimize </span><span class="_animating_6ta1u_10" data-newtext-seq="407">production even on roofs with different </span><span class="_animating_6ta1u_10" data-newtext-seq="427">orientations and </span><span class="_animating_6ta1u_10" data-newtext-seq="450">string configurations. It </span><span class="_animating_6ta1u_10" data-newtext-seq="466">combines </span> <span class="_animating_6ta1u_10" data-newtext-seq="486">on-grid </span><span class="_animating_6ta1u_10" data-newtext-seq="498">and </span><span class="_animating_6ta1u_10" data-newtext-seq="509">off-grid </span><span class="_animating_6ta1u_10" data-newtext-seq="526">operation in a </span><span class="_animating_6ta1u_10" data-newtext-seq="541">single </span><span class="_animating_6ta1u_10" data-newtext-seq="564">unit, providing a </span><span class="_animating_6ta1u_10" data-newtext-seq="578">flexible </span><span class="_animating_6ta1u_10" data-newtext-seq="587">solution for increasing </span><span class="_animating_6ta1u_10" data-newtext-seq="604">self-consumption </span><span class="_animating_6ta1u_10" data-newtext-seq="626">and </span><span class="_animating_6ta1u_10" data-newtext-seq="631">backup power.</span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Why choose the </span><span class="_animating_6ta1u_10" data-newtext-seq="11">Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="16">SUN-10K-SG05LP3 </span><span class="_animating_6ta1u_10" data-newtext-seq="32">inverter?</span></h3>
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<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-10K-SG05LP3 inverter</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> operates with up to </span><span class="_animating_6ta1u_10" data-newtext-seq="41">97.6% </span><span class="_animating_6ta1u_10" data-newtext-seq="50">maximum and </span><span class="_animating_6ta1u_10" data-newtext-seq="63">&gt;99% </span> <span class="_animating_6ta1u_10" data-newtext-seq="71">MPPT efficiency, </span><span class="_animating_6ta1u_10" data-newtext-seq="97">and uses intelligent </span><span class="_animating_6ta1u_10" data-newtext-seq="112">algorithms </span><span class="_animating_6ta1u_10" data-newtext-seq="128">to optimize energy </span><span class="_animating_6ta1u_10" data-newtext-seq="153">use and </span><span class="_animating_6ta1u_10" data-newtext-seq="171">storage. During the day, </span>  <span class="_animating_6ta1u_10" data-newtext-seq="191">solar energy first </span><span class="_animating_6ta1u_10" data-newtext-seq="210">powers the </span><span class="_animating_6ta1u_10" data-newtext-seq="225">loads, </span><span class="_animating_6ta1u_10" data-newtext-seq="237">with the surplus </span><span class="_animating_6ta1u_10" data-newtext-seq="254">charging the battery </span><span class="_animating_6ta1u_10" data-newtext-seq="267">or feeding </span><span class="_animating_6ta1u_10" data-newtext-seq="284">the grid; </span><span class="_animating_6ta1u_10" data-newtext-seq="301">in case of a power outage, </span><span class="_animating_6ta1u_10" data-newtext-seq="322">the inverter </span><span class="_animating_6ta1u_10" data-newtext-seq="334">automatically switches to battery </span><span class="_animating_6ta1u_10" data-newtext-seq="362">mode, </span><span class="_animating_6ta1u_10" data-newtext-seq="375">ensuring continuous </span><span class="_animating_6ta1u_10" data-newtext-seq="399">supply. The 100% </span> <span class="_animating_6ta1u_10" data-newtext-seq="419">unbalanced output adapts to </span><span class="_animating_6ta1u_10" data-newtext-seq="443">different loads per </span><span class="_animating_6ta1u_10" data-newtext-seq="462">phase, </span><span class="_animating_6ta1u_10" data-newtext-seq="484">and in off-grid mode the </span><span class="_animating_6ta1u_10" data-newtext-seq="507">inverter can deliver </span><span class="_animating_6ta1u_10" data-newtext-seq="519">twice the rated </span><span class="_animating_6ta1u_10" data-newtext-seq="542">power </span><span class="_animating_6ta1u_10" data-newtext-seq="567">for 10 </span><span class="_animating_6ta1u_10" data-newtext-seq="579">seconds, enabling high </span><span class="_animating_6ta1u_10" data-newtext-seq="596">inrush-current appliances </span><span class="_animating_6ta1u_10" data-newtext-seq="614">(pumps, refrigerators, air conditioners) </span><span class="_animating_6ta1u_10" data-newtext-seq="642">to start.</span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Key benefits of the Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="10">SUN-10K-SG05LP3</span></h3>
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<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3">
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">48 V battery compatibility</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="4"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="35">transformer-isolated </span><span class="_animating_6ta1u_10" data-newtext-seq="65">design, for lithium-ion </span><span class="_animating_6ta1u_10" data-newtext-seq="88">and lead-acid </span><span class="_animating_6ta1u_10" data-newtext-seq="101">batteries, up to 210 A </span><span class="_animating_6ta1u_10" data-newtext-seq="130">charge/discharge</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="149">2 MPPT controllers</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="149"> – up to 15 </span><span class="_animating_6ta1u_10" data-newtext-seq="179">kW </span><span class="_animating_6ta1u_10" data-newtext-seq="182">PV input, for roofs with different </span><span class="_animating_6ta1u_10" data-newtext-seq="201">orientations</span><span class="_animating_6ta1u_10" data-newtext-seq="210"></span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="223">100% unbalanced output</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="223"> – precise </span><span class="_animating_6ta1u_10" data-newtext-seq="261">adaptation to real, </span><span class="_animating_6ta1u_10" data-newtext-seq="279">unbalanced </span><span class="_animating_6ta1u_10" data-newtext-seq="295">loads</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="311">Strong surge power</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="311"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="342">in off-grid mode, 2× rated for </span><span class="_animating_6ta1u_10" data-newtext-seq="366">10 s</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="384">High efficiency</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="384"> – up to </span><span class="_animating_6ta1u_10" data-newtext-seq="408">97.6% max. and &gt;99% </span><span class="_animating_6ta1u_10" data-newtext-seq="427">MPPT efficiency</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="427">Scalability</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="458"> – up to 10 </span><span class="_animating_6ta1u_10" data-newtext-seq="471">units can be paralleled </span><span class="_animating_6ta1u_10" data-newtext-seq="495">in on-grid and </span><span class="_animating_6ta1u_10" data-newtext-seq="506">off-grid mode</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="526">AC-coupled retrofit and generator support</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="526"> – existing </span><span class="_animating_6ta1u_10" data-newtext-seq="580">solar systems can be </span><span class="_animating_6ta1u_10" data-newtext-seq="599">expanded </span><span class="_animating_6ta1u_10" data-newtext-seq="609">with storage; diesel generator </span><span class="_animating_6ta1u_10" data-newtext-seq="636">energy can also be stored</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="663">Compact, outdoor design</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="663"> – </span><span class="_animating_6ta1u_10" data-newtext-seq="692">IP65 protection, only 35.2 </span><span class="_animating_6ta1u_10" data-newtext-seq="723">kg, ≤55 dB, </span><span class="_animating_6ta1u_10" data-newtext-seq="735">touchscreen LCD</span></li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong><span class="_animating_6ta1u_10" data-newtext-seq="759">Flexible monitoring</span></strong><span class="_animating_6ta1u_10" data-newtext-seq="759"> – GPRS / </span><span class="_animating_6ta1u_10" data-newtext-seq="790">Wi-Fi / Bluetooth / </span><span class="_animating_6ta1u_10" data-newtext-seq="810">4G / LAN, </span><span class="_animating_6ta1u_10" data-newtext-seq="820">RS485/RS232/CAN</span></li>
</ul>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Applications</span></h3>
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<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><span class="_animating_6ta1u_10" data-newtext-seq="0">The </span><strong><span class="_animating_6ta1u_10" data-newtext-seq="4">Deye SUN-10K-SG05LP3 inverter</span></strong> <span class="_animating_6ta1u_10" data-newtext-seq="36">is ideal for family </span><span class="_animating_6ta1u_10" data-newtext-seq="52">homes, farms, and </span><span class="_animating_6ta1u_10" data-newtext-seq="79">small </span><span class="_animating_6ta1u_10" data-newtext-seq="86">businesses where </span><span class="_animating_6ta1u_10" data-newtext-seq="109">three-phase, flexible, and </span><span class="_animating_6ta1u_10" data-newtext-seq="134">reliable </span><span class="_animating_6ta1u_10" data-newtext-seq="145">energy management is needed </span><span class="_animating_6ta1u_10" data-newtext-seq="178">with 48 V battery </span><span class="_animating_6ta1u_10" data-newtext-seq="200">storage. It helps </span> <span class="_animating_6ta1u_10" data-newtext-seq="218">maximize </span><span class="_animating_6ta1u_10" data-newtext-seq="240">self-consumption, </span><span class="_animating_6ta1u_10" data-newtext-seq="253">acts as a backup power source </span><span class="_animating_6ta1u_10" data-newtext-seq="285">during outages, and with 6 </span><span class="_animating_6ta1u_10" data-newtext-seq="310">programmable charge/discharge </span><span class="_animating_6ta1u_10" data-newtext-seq="341">periods enables </span><span class="_animating_6ta1u_10" data-newtext-seq="369">off-peak </span><span class="_animating_6ta1u_10" data-newtext-seq="385">charging and </span><span class="_animating_6ta1u_10" data-newtext-seq="398">peak-time discharge. </span> <span class="_animating_6ta1u_10" data-newtext-seq="425">AC-coupled </span><span class="_animating_6ta1u_10" data-newtext-seq="436">expandability means </span><span class="_animating_6ta1u_10" data-newtext-seq="465">existing solar </span><span class="_animating_6ta1u_10" data-newtext-seq="483">systems can be </span><span class="_animating_6ta1u_10" data-newtext-seq="504">retrofitted with storage.</span></p>
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<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="8">SUN-10K-SG05LP3 technical specifications</span></h3>
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<div class="_chunkWrapper_6ta1u_30">
<div class="overflow-x-auto w-full px-2 mb-6">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
<tr>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col"><span class="_animating_6ta1u_10" data-newtext-seq="1"> Parameter </span></th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col"><span class="_animating_6ta1u_10" data-newtext-seq="12">Value</span></th>
</tr>
</thead>
<tbody>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="12">Model </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="43">SUN-10K-SG05LP3-EU-SM2</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="43">Type</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="78">three-phase, </span><span class="_animating_6ta1u_10" data-newtext-seq="91">low-voltage (48 V) </span><span class="_animating_6ta1u_10" data-newtext-seq="118">hybrid inverter</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="137"> Rated </span><span class="_animating_6ta1u_10" data-newtext-seq="147">AC </span><span class="_animating_6ta1u_10" data-newtext-seq="150">power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="150">10,000 W </span><span class="_animating_6ta1u_10" data-newtext-seq="174">(10 kW)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="186">Max. AC </span><span class="_animating_6ta1u_10" data-newtext-seq="194">apparent power </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="219">11,000 </span><span class="_animating_6ta1u_10" data-newtext-seq="228">VA</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="228">Rated </span><span class="_animating_6ta1u_10" data-newtext-seq="244">AC current </span><span class="_animating_6ta1u_10" data-newtext-seq="252">(380/400 V)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="252">15.2 </span><span class="_animating_6ta1u_10" data-newtext-seq="271">/ 14.5 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="284">Max. AC current </span><span class="_animating_6ta1u_10" data-newtext-seq="297">(380/400 V)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="297">16.7 / </span><span class="_animating_6ta1u_10" data-newtext-seq="318">16.0 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="329">Rated AC </span><span class="_animating_6ta1u_10" data-newtext-seq="341">voltage / range </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="364">220/380 V, </span><span class="_animating_6ta1u_10" data-newtext-seq="377">230/400 V; </span><span class="_animating_6ta1u_10" data-newtext-seq="388">0.85–1.1 Un</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="404">Grid frequency / </span><span class="_animating_6ta1u_10" data-newtext-seq="426">range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="426">50 Hz </span><span class="_animating_6ta1u_10" data-newtext-seq="444">(45–55) / 60 Hz </span><span class="_animating_6ta1u_10" data-newtext-seq="460">(55–65)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="472">Grid connection</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="495">3L + N + PE</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="510"> Max. continuous </span><span class="_animating_6ta1u_10" data-newtext-seq="527">AC pass-through </span><span class="_animating_6ta1u_10" data-newtext-seq="540">(grid→load)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="540">45 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="570">Surge power (off-grid, 10 </span><span class="_animating_6ta1u_10" data-newtext-seq="602">s)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="602">2× </span><span class="_animating_6ta1u_10" data-newtext-seq="616">rated</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="625">Power factor range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="625">0.8 </span><span class="_animating_6ta1u_10" data-newtext-seq="661">capacitive – 0.8 inductive</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="690">Max. PV input </span><span class="_animating_6ta1u_10" data-newtext-seq="707">power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="707">15,000 W (15 kW) </span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="739">Max. PV access </span><span class="_animating_6ta1u_10" data-newtext-seq="763">power</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="763">20,000 W (20 kW)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="798"> Max. PV voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="798">800 </span><span class="_animating_6ta1u_10" data-newtext-seq="824">V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="830">MPPT voltage range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="830">200–650 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="870"> Rated PV voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="870">550 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="906">Start-up voltage</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="906">160 V</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="938">Number of MPPTs / strings </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="962">2 MPPTs / 1 string </span><span class="_animating_6ta1u_10" data-newtext-seq="982">per MPPT</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="982">Max. operating </span><span class="_animating_6ta1u_10" data-newtext-seq="1008">PV current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1008">20+20 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1008">Max. </span><span class="_animating_6ta1u_10" data-newtext-seq="1035">short-circuit current</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1035">30+30 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1067">Battery type</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1067">lead-acid or </span><span class="_animating_6ta1u_10" data-newtext-seq="1103">lithium-ion (48 V)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1103">Battery </span><span class="_animating_6ta1u_10" data-newtext-seq="1130">voltage range</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1130">40–60 V </span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1161">Number of battery inputs</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1161">1</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1192"> Max. charge/discharge current </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1216">210 A</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1216">Charging </span><span class="_animating_6ta1u_10" data-newtext-seq="1236">strategy</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1236">self-adaptive to BMS</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1273">Max. efficiency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1273">97.6%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1299">Euro efficiency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1299">97.0%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1325">MPPT efficiency</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1325">&gt;99%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1325">THDi</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1325">&lt;3% </span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1361">Parallel capability</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1361">up to </span><span class="_animating_6ta1u_10" data-newtext-seq="1392">10 units (on-grid and </span><span class="_animating_6ta1u_10" data-newtext-seq="1414">off-grid)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1414">Operating </span><span class="_animating_6ta1u_10" data-newtext-seq="1434">temperature</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1434">−40 – +60 °C (&gt;45 </span><span class="_animating_6ta1u_10" data-newtext-seq="1466">°C) </span><span class="_animating_6ta1u_10" data-newtext-seq="1473">derating above</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1473">Humidity </span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1513">0–100%</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1526">Altitude</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1557">3000 m</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1557">Noise level</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1557">≤55 </span><span class="_animating_6ta1u_10" data-newtext-seq="1583">dB</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1583">Protection rating</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1602">IP65</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1602">Cooling</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1602">intelligent </span><span class="_animating_6ta1u_10" data-newtext-seq="1631">air cooling</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1644">Monitoring</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1644">GPRS / Wi-Fi / </span><span class="_animating_6ta1u_10" data-newtext-seq="1672">Bluetooth / 4G / LAN (optional) </span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1706">Communication</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1706">RS485, </span><span class="_animating_6ta1u_10" data-newtext-seq="1732">RS232, CAN</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1747">Surge protection</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1747">Type II (DC), </span><span class="_animating_6ta1u_10" data-newtext-seq="1785">Type II (AC)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1785">Dimensions </span><span class="_animating_6ta1u_10" data-newtext-seq="1810">(W × H × D)</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1810">386 × 660 × </span><span class="_animating_6ta1u_10" data-newtext-seq="1838">250 mm</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1838">Weight</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1838">35.2 </span><span class="_animating_6ta1u_10" data-newtext-seq="1862">kg</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1862">Warranty</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1862">5 years / </span><span class="_animating_6ta1u_10" data-newtext-seq="1887">10 years (depending on </span><span class="_animating_6ta1u_10" data-newtext-seq="1906">installation location)</span></td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1932">Grid standards</span></td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top"><span class="_animating_6ta1u_10" data-newtext-seq="1932">IEC 61727, </span><span class="_animating_6ta1u_10" data-newtext-seq="1965">IEC 62116, CEI 0-21, EN </span><span class="_animating_6ta1u_10" data-newtext-seq="1989">50549, NRS 097, RD 140, </span><span class="_animating_6ta1u_10" data-newtext-seq="2013">UNE 217002, OVE R25, G99, </span><span class="_animating_6ta1u_10" data-newtext-seq="2039">VDE-AR-N 4105</span></td>
</tr>
</tbody>
</table>
</div>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><em><span class="_animating_6ta1u_10" data-newtext-seq="1">Protection functions include: DC reverse polarity, AC overcurrent and overvoltage protection, short-circuit and thermal protection, DC component monitoring, insulation resistance and residual current protection (RCD), anti-islanding protection, DC disconnect, and optional AFCI (arc fault protection).</span></em></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold"><span class="_animating_6ta1u_10" data-newtext-seq="3">Frequently asked </span><span class="_animating_6ta1u_10" data-newtext-seq="20">questions about the Deye </span><span class="_animating_6ta1u_10" data-newtext-seq="36">SUN-10K-SG05LP3 inverter</span></h3>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">What does the SUN-10K-SG05LP3-EU-SM2 designation mean?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">The &#8220;10K&#8221; refers to the 10 kW </span><span class="_animating_6ta1u_10" data-newtext-seq="65">rated power, </span><span class="_animating_6ta1u_10" data-newtext-seq="93">&#8220;SG05LP3&#8221; to the three-phase, </span><span class="_animating_6ta1u_10" data-newtext-seq="118">low-voltage (48 V </span><span class="_animating_6ta1u_10" data-newtext-seq="147">battery, &#8220;Low Power/LV&#8221;) hybrid </span><span class="_animating_6ta1u_10" data-newtext-seq="185">platform; the series </span><span class="_animating_6ta1u_10" data-newtext-seq="212">includes models from 3–12 kW</span><span class="_animating_6ta1u_10" data-newtext-seq="236">.</span></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">What battery does the Deye SUN-10K-SG05LP3 work with?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">Thanks to the </span><span class="_animating_6ta1u_10" data-newtext-seq="60">transformer-isolated </span><span class="_animating_6ta1u_10" data-newtext-seq="90">design, it is </span><span class="_animating_6ta1u_10" data-newtext-seq="119">compatible with the most common 48 V (40–60 V) </span><span class="_animating_6ta1u_10" data-newtext-seq="153">batteries</span><span class="_animating_6ta1u_10" data-newtext-seq="170">, whether </span><span class="_animating_6ta1u_10" data-newtext-seq="194">lithium-ion or lead-acid, with up to </span><span class="_animating_6ta1u_10" data-newtext-seq="226">210 A </span><span class="_animating_6ta1u_10" data-newtext-seq="232">charge/discharge current.</span></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">What is the difference between the SG05LP3 (LV) and SG01/SG02HP3 (HV) inverters?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">The</span><span class="_animating_6ta1u_10" data-newtext-seq="80"> SG05LP3 </span><span class="_animating_6ta1u_10" data-newtext-seq="89">is designed for low-voltage, 48 V </span><span class="_animating_6ta1u_10" data-newtext-seq="118">batteries (for residential </span><span class="_animating_6ta1u_10" data-newtext-seq="154">and small commercial </span><span class="_animating_6ta1u_10" data-newtext-seq="174">scale), while the HP3 series is for </span><span class="_animating_6ta1u_10" data-newtext-seq="204">high-voltage (HV) </span><span class="_animating_6ta1u_10" data-newtext-seq="225">batteries, typically for </span><span class="_animating_6ta1u_10" data-newtext-seq="254">larger commercial and industrial </span><span class="_animating_6ta1u_10" data-newtext-seq="284">systems. The choice depends on the </span><span class="_animating_6ta1u_10" data-newtext-seq="313">planned </span><span class="_animating_6ta1u_10" data-newtext-seq="323">battery and </span><span class="_animating_6ta1u_10" data-newtext-seq="343">system size.</span></p>
</div>
<div class="_chunkWrapper_6ta1u_30">
<p class="font-claude-response-body break-words whitespace-normal"><strong><span class="_animating_6ta1u_10" data-newtext-seq="2">Can the Deye SUN-10K-SG05LP3 be installed outdoors?</span></strong><br />
<span class="_animating_6ta1u_10" data-newtext-seq="2">Yes, thanks to its </span><span class="_animating_6ta1u_10" data-newtext-seq="61">IP65 protection rating and </span><span class="_animating_6ta1u_10" data-newtext-seq="85">intelligent air cooling, </span><span class="_animating_6ta1u_10" data-newtext-seq="109">it is suitable for outdoor </span><span class="_animating_6ta1u_10" data-newtext-seq="130">installation </span><span class="_animating_6ta1u_10" data-newtext-seq="155">with an operating </span><span class="_animating_6ta1u_10" data-newtext-seq="169">temperature range of </span><span class="_animating_6ta1u_10" data-newtext-seq="183">−40 to +60 °C (with </span><span class="_animating_6ta1u_10" data-newtext-seq="213">power derating above 45 °C).</span></p>
</div>
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		<title>SUN-BK250-2.56KWH All-in-one</title>
		<link>https://deyenergie.com/en/product/sun-bk250-2-56kwh-all-in-one/</link>
					<comments>https://deyenergie.com/en/product/sun-bk250-2-56kwh-all-in-one/#respond</comments>
		
		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Sun, 21 Jun 2026 20:25:22 +0000</pubDate>
				<guid isPermaLink="false">https://deyenergie.com/product/sun-bk250-2-56kwh-all-in-one/</guid>

					<description><![CDATA[<strong>Deye SUN-BK250-2.56KWH-EU-AM4 – 2.5kW All-in-One Micro Hybrid Energy Storage System</strong>

The Deye SUN-BK250-2.56KWH-EU-AM4 is a compact all-in-one micro hybrid energy storage system that combines a <strong>2.5kW hybrid inverter</strong>, <strong>2.56kWh LiFePO₄ battery</strong>, and intelligent energy management into a single plug-and-play solution. Designed for balcony solar systems, apartments, homes, and small off-grid applications, it offers an easy way to increase solar self-consumption, reduce electricity costs, and provide reliable backup power.

Powered by a <strong>2.56kWh lithium iron phosphate (LiFePO₄) battery</strong>, the system delivers exceptional safety, long cycle life, and reliable daily energy storage. The integrated Battery Management System (BMS) continuously monitors battery performance and automatically optimizes charging based on battery conditions, ensuring maximum efficiency and long-term reliability.

The SUN-BK250 features <strong>four independent MPPT trackers</strong>, allowing up to <strong>5.76kW PV input</strong> and supporting multiple solar panel orientations for maximum energy harvest. With <strong>up to 2.5kW AC output</strong>, it is perfectly suited for powering everyday household appliances while seamlessly switching between grid, battery, and solar power.

Designed for maximum flexibility, the system supports <strong>grid-tied, off-grid, and AC-coupled operation</strong>, with an ultra-fast <strong>4ms transfer time</strong> for uninterrupted backup power during grid failures. Multiple units can also be connected in parallel, allowing system expansion as energy demands grow.

Its compact <strong>IP65-rated enclosure</strong> enables both indoor and outdoor installation, while built-in <strong>Wi-Fi, Bluetooth, and LoRa communication</strong> provide real-time monitoring and remote system management through Deye's smart energy platform.

<strong>Key Features:</strong>
<ul>
 	<li>All-in-one system with integrated 2.5kW hybrid inverter and 2.56kWh LiFePO₄ battery</li>
 	<li>Plug-and-play installation for balcony PV and residential solar systems</li>
 	<li>Four independent MPPT trackers</li>
 	<li>Supports up to <strong>5.76kW</strong> PV input</li>
 	<li>Up to <strong>2.5kW</strong> AC output power</li>
 	<li>Grid-tied, off-grid, and AC-coupled operating modes</li>
 	<li>Ultra-fast <strong>4ms</strong> backup switching</li>
 	<li>Intelligent BMS with adaptive lithium battery charging</li>
 	<li>Expandable with parallel operation (up to 3 units)</li>
 	<li>Built-in Wi-Fi, Bluetooth, and LoRa connectivity</li>
 	<li>IP65-rated enclosure for indoor and outdoor installation</li>
 	<li>10-year manufacturer warranty</li>
</ul>
Choose the <strong>Deye SUN-BK250-2.56KWH-EU-AM4</strong> for a compact, intelligent, and future-ready energy storage solution that combines solar generation, battery storage, and backup power in one easy-to-install system, delivering greater energy independence and long-term savings.]]></description>
										<content:encoded><![CDATA[<p><a href="https://deyenergie.com/wp-content/uploads/products/SUN-BK250-2.56KWH-All-in-one/SUN-BK80-250-2.56KWH-EU-AM4-18-32L.pdf" target="_blank" rel="noopener">Download datasheet (PDF)</a></p>
<h2 class="text-text-100 mt-3 -mb-1 text-[1.375rem] font-bold">Deye SUN-BK250 2.56 kWh – all-in-one micro-hybrid energy storage system (balcony power plant with storage)</h2>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-BK250</strong> is a &#8220;3-in-1&#8221; micro-hybrid energy storage system that combines a micro-inverter and a 2.56 kWh LFP battery in a single compact unit. The <strong>SUN-BK250</strong> flexibly switches between hybrid (grid-tied), off-grid, and AC-coupled modes, making it suitable for reducing energy costs, outdoor power supply, and upgrading an existing balcony solar system with smart storage. It features up to 2.5 kW AC output and 4 independent MPPT channels, and thanks to its IP65 rating, it can be installed outdoors.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Why choose the Deye SUN-BK250 system?</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-BK250 energy storage</strong> is based on safe LiFePO4 (lithium iron phosphate) cell chemistry, with a lifespan of over 6000 cycles. The system operates with up to 96.5% DC-AC efficiency, provides UPS-level uninterruptible supply with ≤4 ms grid/island switching, and thanks to its plug-and-play design, can be connected to any standard outlet. Through the Deye Cloud app, up to 6 programmable charge/discharge periods can be set to avoid peak tariffs, while the Deye Copilot function automatically selects the most favorable times based on dynamic electricity prices.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Key advantages of the Deye SUN-BK250</h3>
<ul class="[li_&amp;]:mb-0 [li_&amp;]:mt-1 [li_&amp;]:gap-1 [&amp;:not(:last-child)_ul]:pb-1 [&amp;:not(:last-child)_ol]:pb-1 list-disc flex flex-col gap-1 pl-8 mb-3">
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>3-in-1 flexibility</strong> – hybrid, off-grid, and AC-coupled modes in a single unit</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Strong performance</strong> – up to 2.5 kW rated AC power, peak power twice the rated (10 s)</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>4 independent MPPTs</strong> – flexible PV input, 18L version up to 4400 W, 32L version up to 5760 W PV power</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>UPS-level backup</strong> – ≤4 ms grid/island switching</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>IP65 protection</strong> – dust and waterproof, for outdoor installation</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Smart energy management</strong> – 6 programmable periods, intelligent load control, wireless zero-export, Deye Cloud App</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Expandable storage</strong> – with AE-F2.56 battery packs up to 5 modules vertically (12.8 kWh), total of 40 packs (102.4 kWh)</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Wide compatibility</strong> – for 80–250 W micro-inverters, AC-coupled connection to most European balcony micro-inverters</li>
<li class="font-claude-response-body whitespace-normal break-words pl-2"><strong>Long lifespan and solid backing</strong> – >6000 cycles and 10-year warranty</li>
</ul>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Applications</h3>
<p class="font-claude-response-body break-words whitespace-normal">The <strong>Deye SUN-BK250 micro-hybrid energy storage</strong> is ideal in three scenarios: as a compact balcony solar power plant to increase self-consumption and reduce bills, as a portable power source for camping and outdoor activities, and as a reliable home backup power source during outages. The 2.56 kWh storage is sufficient to cover evening consumption, run backup devices, and still have capacity left for the next morning. Compatible with devices ≤2500 W – such as smaller kitchen and household appliances, lighting, routers, and entertainment electronics.  </p>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Deye SUN-BK250-2.56KWH technical specifications</h3>
<div class="overflow-x-auto w-full px-2 mb-6">
<table class="min-w-full border-collapse text-sm leading-[1.7] whitespace-normal">
<thead class="text-left">
<tr>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Parameter</th>
<th class="text-text-100 border-b-0.5 border-[hsl(var(--border-300)/0.6)] py-2 pr-4 align-top font-bold" scope="col">Value</th>
</tr>
</thead>
<tbody>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">System type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">micro-hybrid energy storage (integrated micro-inverter + LFP battery)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Operating modes</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">hybrid (grid-tied), off-grid, AC-coupled</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC input/output power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2500 W</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. AC input/output power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2750 W</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. off-grid power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2500 W</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Peak power (off-grid, 10 s)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2× rated</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">AC frequency / voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">50 Hz (45–55) / 60 Hz (55–65), 220/230 Vac, L+N+PE</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated AC current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">11.4 A / 10.9 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. AC current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">12.5 A / 12 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Inverter parallelization</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">max. 3 units (up to 7.5 kW)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV power</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">4400 W (18L) / 5760 W (32L)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT / strings</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">4 independent MPPTs / 4 strings</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. PV operating current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">18+18+18+18 A (18L) / 32+32+32+32 A (32L)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Rated PV voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">42.5 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Start-up voltage</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">25 Vdc</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">20–55 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery type</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">LiFePO4</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery rated energy capacity</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2560 Wh (2.56 kWh)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Battery voltage range</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">44.8–57.6 V</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. charge/discharge current</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">50 A</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Cycle life</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">≥6000 (25±2 °C, 70% EOL)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Expandability</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">AE-F2.56 packs, max. 5 stacks (12.8 kWh), max. 40 packs (102.4 kWh)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Max. efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">96.5%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">MPPT efficiency</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">>99%</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Communication</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Wi-Fi, Bluetooth, LoRa</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Operating temperature</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">−10–55 °C (power derating above 45 °C; optional heating −20–55 °C)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Humidity</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">0–95% (non-condensing)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Altitude</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">2000 m</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Protection rating</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IP65</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Surge protection</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Type II (DC), Type II (AC)</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Dimensions (W × H × D)</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">560 × 330 × 210 mm</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Weight</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">30 kg</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Warranty</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">10 years</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Certifications</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">IEC 62619 / UN38.3 / IEC-EN 62109-1/-2 / IEC-EN 61000-6-1/2/3/4</td>
</tr>
<tr>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">Grid standards</td>
<td class="border-b-0.5 border-[hsl(var(--border-300)/0.3)] py-2 pr-4 align-top">VDE 4105, IEC 61727/62116, VDE 0126, AS 4777.2, CEI 0-21, EN 50549-1, G98, C10-11, UNE 217002</td>
</tr>
</tbody>
</table>
</div>
<h3 class="text-text-100 mt-3 -mb-1 text-[1.125rem] font-bold">Frequently asked questions about the Deye SUN-BK250 system</h3>
<p class="font-claude-response-body break-words whitespace-normal"><strong>What does the SUN-BK250 designation and 18L/32L mean?</strong><br />
The &#8220;250&#8221; refers to the maximum 2500 W AC power (the series consists of 80/160/200/250 W models, i.e., 800–2500 W). The &#8220;18L&#8221; and &#8220;32L&#8221; indicate the PV input capacity: the 18L version accepts up to 4400 W, the 32L version up to 5760 W PV power – both with the same 2.56 kWh LFP storage and 4 MPPT channels.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>Can the Deye SUN-BK250 storage capacity be expanded?</strong><br />
Yes. Compatible with AE-F2.56 battery packs: up to 5 modules (12.8 kWh) can be stacked vertically, and a total of up to 40 packs (102.4 kWh) can be connected, with the same control unit, app, and 10-year warranty. </p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>Can the Deye SUN-BK250 be installed outdoors?</strong><br />
Yes, thanks to its IP65 rating it is dust and waterproof, so it can be used outdoors, on balconies; with optional heating it operates down to −20 °C.</p>
<p class="font-claude-response-body break-words whitespace-normal"><strong>Can it be used with an existing balcony solar system?</strong><br />
Yes. In AC-coupled mode it can be connected to most European balcony micro-inverters without rewiring – so an existing balcony power plant can be upgraded with smart storage. </p>
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