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Catalog   /   Home & Renovation   /   Autonomous Power Supply   /   Inverters & Controllers

Comparison Deye SUN-8K-SG05LP1-EU vs Deye SUN-8K-SG01LP1-EU

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Deye SUN-8K-SG05LP1-EU
Deye SUN-8K-SG01LP1-EU
Deye SUN-8K-SG05LP1-EUDeye SUN-8K-SG01LP1-EU
Compare prices 13Compare prices 154
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Device typehybrid inverterhybrid inverter
Network type1 phase (230 V)1 phase (230 V)
Maximum efficiency97.6 %97.6 %
Euro efficiency96.5 %97 %
AC input / output
Rated power8000 VA8800 VA
Rated power8000 W8000 W
Peak power12000 W16000 W
Rated AC current34.8 A34.8 A
Maximum AC power38.3 А38.3 А
Output waveformpure sinepure sine
Batteries and DC charging
Connection voltage48 В48 В
Number of battery inputs1 шт1 шт
Maximum charge current190 А190 А
Solar PV panels
Max. power10.4 kW10.4 kW
Operating voltage PV150 – 425 В150 – 425 В
Short circuit current68 А88 А
Controller2xMMPT2xMMPT
Number of strings22
Features and control
Functions
parallel connection
built-in monitoring
 
Control interfaces
LAN (RJ45)
RS485
RS485
Protection
reverse polarity protection
short circuit protection
↑ or ↓ battery voltage protection
overload protection
overheat protection
reverse polarity protection
short circuit protection
↑ or ↓ battery voltage protection
overload protection
overheat protection
General
Displaycolourcolour
Coolingactive (fans)active (fans)
Noise level30 dB30 dB
Casing protection classIP65IP65
Operating temperature-40 °C ~ +60 °C-40 °C ~ +60 °C
Dimensions580x330x232 mm420x670x233 mm
Weight24 kg32 kg
Added to E-Catalognovember 2023may 2023
Glossary

Euro efficiency

The European inverter efficiency is measured based on several load values (e.g. 10%, 30%, 50%, 100%), which better reflects the actual operating conditions of the device. Indeed, in fact, inverters rarely operate at full power in constant mode. To calculate the Euro index, the weighted average of the inverter efficiency at different load levels is taken into account. Note that there is no single generally accepted formula here - it may vary depending on the specific standard or equipment manufacturer. Nevertheless, Euro efficiency allows you to more accurately assess the efficiency of the inverter under conditions of partial and full power use

Rated power

The rated output power of the inverter, expressed in volt-amperes (VA). Essentially, this value is equivalent to power in watts (W).

This parameter refers to the power that the device can continuously deliver to consumers. When choosing based on this parameter, ensure that the rated power of the inverter exceeds the expected load power by approximately 15-20%. Additionally, keep in mind that some electrical appliances (particularly those with electric motors, such as vacuum cleaners, refrigerators, etc.) consume significantly more energy at startup than during regular operation. For such loads, it's important to check the peak power of the inverter (see the relevant paragraph) — it should be higher than the starting power of the load.

Peak power

The highest total output power in watts (W) that the inverter can deliver to a load for a relatively short period of time, on the order of 2 to 3 seconds. As a rule, this power is 30 - 50% more than the rated power (see above). The peak load value can be useful when calculating how the inverter works together with appliances that consume a lot of energy at start-up (vacuum cleaners, borehole pumps, power tools, etc.). The rule here is simple - the peak power of the inverter must not be lower than the starting power of the load.

Short circuit current

The maximum solar panel short circuit current that the inverter can accept without the risk of breakdown or emergency shutdown. The parameter is usually indicated in amperes.

Functions

UPS function. Inverters with a UPS function automatically switch to battery-powered mode when there is insufficient power generation from solar panels or in cases where the main power source is disconnected. This ensures load redundancy. Note that switching may not occur instantly, but with a certain delay (about 10-30 ms).

Connecting the generator. Inverters that support the generator connection function significantly increase the reliability and efficiency of autonomous solar energy systems. In practice, the function can be implemented in several basic ways. First, the system can automatically turn the generator on and off depending on the battery charge level or current power consumption, ensuring efficient use of resources and minimizing fuel consumption. Secondly, switching the load to the generator can be carried out when there is a shortage of electricity generation from solar panels. And thirdly, the generator can be used to maintain an optimal battery charge level so that the system is in full readiness at any time.

Parallel connection. The inverter has special connectors through which two or more devices can be connected to a single electrical network. Parallel connection is used when one inverter is not able to pull the entire load from solar panels and the input power exceeds the capabilities of the device itself.

...href="/en/list/598/pr-50306/">Built-in monitoring. The presence of a built-in monitoring module on board the inverter, which collects information about the productivity of solar panels, allows you to monitor energy production and consumption, as well as monitor the performance of the system as a whole. Moreover, these parameters can often be viewed and controlled in real time (including through a mobile application for a smartphone). The monitoring module is usually connected to the Internet via a Wi-Fi network.

Control interfaces

Connection interfaces provided in the inverter design for solar panels.

- RS232. A specialized communication interface used to directly connect the inverter to a computer. As a rule, the interface provides the ability to monitor solar generation systems around the clock using a local network. Also, the RS232 connector can be used to communicate several inverters with each other, or, less often, for software updates or service testing.

- RS485. A connector often used to connect several inverters to a central hub, which, in turn, connects to a computer. This connection can be useful for setting up a solar generation system or sending monitoring data over the network.

- USB. A standard USB port is often used for configuring equipment via a wired connection to a computer or for inverter firmware updates.

- LAN (RJ45). The presence of a LAN connector (RJ45) in the inverter design. Such ports are standardly used for wired connections in computer networks using a twisted pair cable.

- Wi-Fi. Wi-Fi communication module for wireless connection of the inverter to a computer, laptop or mobile phone. Using specialized software, you can receive monitoring data from the inverter directly “over the air” - transmitting information over a Wi-Fi network...eliminates the fuss with wires.

Bluetooth. Option to wirelessly pair the inverter with smartphones, tablets or laptops via Bluetooth. Thanks to data synchronization, the user will be able to monitor equipment performance and remotely control the inverter within range of the Bluetooth wireless network.
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