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Comparison Deye SUN-5K-SG04LP3-EU vs Deye SUN-5K-SG03LP1-EU

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Deye SUN-5K-SG04LP3-EU
Deye SUN-5K-SG03LP1-EU
Deye SUN-5K-SG04LP3-EUDeye SUN-5K-SG03LP1-EU
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Device typehybrid inverterhybrid inverter
Network type1 phase (230 V)/3 phase (400 V)1 phase (230 V)
Maximum efficiency97.6 %97.6 %
Euro efficiency97 %96.5 %
AC input / output
Rated power5500 VA5500 VA
Rated power5000 W5000 W
Peak power10000 W10000 W
Rated AC current7.2 A21.7 A
Maximum AC power8 А23.9 А
Output waveformpure sinepure sine
Batteries and DC charging
Connection voltage48 В48 В
Number of battery inputs1 шт1 шт
Maximum charge current120 А120 А
Solar PV panels
Max. power6.5 kW6.5 kW
Operating voltage PV200 – 650 В370 В
Short circuit current34 А34 А
Controller2xMMPT2xMMPT
Number of strings11
Features and control
Control interfaces
RS485
Wi-Fi
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 level55 dB30 dB
Casing protection classIP65IP65
Operating temperature-40 °C ~ +60 °C-40 °C ~ +60 °C
Dimensions422x658x254 mm330x580x232 mm
Weight38 kg20.5 kg
Added to E-Catalogjanuary 2024may 2023
Glossary

Network type

Single-phase (230 V). Single-phase power is well known from classic 230 V household sockets. However, this also often includes models for other alternating voltage values - for example, 110 V.

Three-phase (400 V). Three-phase power supply with a voltage of 400 V is used mainly for energy-hungry devices for which 230 V networks do not provide enough power. This option can be used both for private households and in the industrial sector.

— Single-phase / three-phase. Models with the ability to connect to both single-phase power supply at 230 V and three-phase power supply at 400 V. This allows them to be used with both household and industrial networks - depending on which option is more convenient at the moment.

DC (constant voltage). This category usually includes a few inverters for campers (motorhomes) (see “Device Type”). They are designed for operation in automotive networks with a constant voltage of 12/24 V.

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 AC current

The current strength that the device is capable of stably and safely delivering when operating in rated mode (i.e. for the longest possible time without the risk of overloads and failures). The indicator is expressed in Amperes (A).

Maximum AC power

The maximum current in amperes (A) that the inverter, when operating, is capable of outputting without overloads or failures.

Operating voltage PV

The operating range of the inverter is usually located between the starting voltage and the maximum voltage. This interval is indicated in volts.

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.

Noise level

The noise level in decibels (dB) produced by the inverter during operation. The lower this indicator, the more comfortable the use of the equipment will be, which is especially important for residential premises.

Note that decibels are a non-linear quantity, so the easiest way to assess the noise level is to use comparative tables. Here is a simplified table for the range that most modern inverters fall into:

35 dB – conversation in muted tones;
40 dB – quiet conversation; maximum noise level allowed in residential premises during the daytime;
45 – 50 dB – conversation in a normal tone;
55 dB - background noise in an office without special noise sources;
60 dB - loud conversation;
65 dB - city street with average traffic intensity;
70 dB - a conversation between several people in a raised voice.
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