Products
3kw 5kw Solar Inverter
# Parallel Function up to maximum 9 units : Enlarge More Loads .
# Communication option: External WIFI, Supervise at Any Time.
# Slim Body, Convenient Installation And Transportation, Cheaper Freight by Air,Sea and Land.
# PF1.0, High Efficiency, Lower consumption : Energy Conservation/Environmental Protection/Electricity Saving/Cost Saving.
3kw 5kw solar inverter
Feature:
# Parallel Function up to maximum 9 units : Enlarge More Loads .
# Communication option: External WIFI, Supervise at Any Time.
# Slim Body, Convenient Installation And Transportation, Cheaper Freight by Air,Sea and Land.
# PF1.0, High Efficiency, Lower consumption : Energy Conservation/Environmental Protection/Electricity Saving/Cost Saving.
# Support working without battery:Reduce solar system cost and save money.
# High precision of output voltage,±5%,take care of your appliances.
Product Parameters:
| BWGA 3kw 5kw solar inverter | ||||
| Model | GA3024ML | GA3024MH | GA5048MH | |
| Input | Phase | L+N+PE | ||
| Nominal Voltage | 208/220/230/240VAC | |||
| Voltage Range | 154-264VAC±3V(Normal Mode) 185-264VAC±3V(UPS Mode) | |||
| Frequency Range | 50Hz/60Hz(Adaptive) | |||
| Output | Rated Power | 3000W | 3000W | 5000W |
| Output Voltage(AC) | 208/220/230/240VAC±5% | |||
| Output Frequency | 50/60Hz±0.1% | |||
| Waveform | Pure sine wave | |||
| Transfer Time( Optional) | 10ms for computer , 20ms for home appliances | |||
| Peak power | 6000VA | 6000VA | 10000VA | |
| Overload | Battery Mode: 1min@102%~110% Load 10s@110%~130% Load 3s@130%~150% Load 200ms@>150% Load | |||
| Peak efficiency (battery mode) | >94% | >94% | >94% | |
| Battery | Rated voltage | 24Vdc | 24Vdc | 48Vdc |
| Constant voltage charging voltage (Optional) | 28.2Vdc | 28.2Vdc | 56.4Vdc | |
| Floating charge voltage (Optional) | 27Vdc | 27Vdc | 54Vdc | |
| charger | PV charging method | MPPT | MPPT | MPPT |
| PV max input power | 1500W | 3500W | 5500W | |
| MPPT tracking range | 30~115Vdc | 120~430Vdc | 120~430Vdc | |
| Max PV input voltage | 145Vdc | 450Vdc | 450Vdc | |
| Max PV charging current | 60A | 60A | 80A | |
| Max AC charging current | 60A | 60A | 80A | |
| Max charging current | 120A | 60A | 80A | |
| Display | LCD display | Operating mode/load/input/output, etc. | ||
| Communication port | RS232 | 5PIN/Pitch2.0mm, baud rate 2400 | ||
| Expansion & configuration port | 2×5PIN/Pitch2.54mm, lithium battery BMS communication card, WIFI card, dry contact card, etc. | |||
| Parallel interface | No | Yes | ||
| Environmental parameters | Operating environment temperature | 0~40℃ | ||
| Operating environment humidity | 20%~95%(Non condensing) | |||
| Storage temperature | -15~60℃ | |||
| Altitude | The altitude should not exceed 1000m, derating above 1000m, up to 4000m, refer to IEC62040 | |||
| Noise | ≤50db | |||
| Certifications | EN-IEC 60335-1, EN-IEC 60335-2-29, IEC 62109-1 | |||





WHAT ARE INVERTERS?
An inverter is one of the most important pieces of equipment in a solar energy system. It’s a device that converts direct current (DC) electricity, which is what a solar panel generates, to alternating current (AC) electricity, which the electrical grid uses. In DC, electricity is maintained at constant voltage in one direction. In AC, electricity flows in both directions in the circuit as the voltage changes from positive to negative. Inverters are just one example of a class of devices called power electronics that regulate the flow of electrical power.
Fundamentally, an inverter accomplishes the DC-to-AC conversion by switching the direction of a DC input back and forth very rapidly. As a result, a DC input becomes an AC output. In addition, filters and other electronics can be used to produce a voltage that varies as a clean, repeating sine wave that can be injected into the power grid. The sine wave is a shape or pattern the voltage makes over time, and it’s the pattern of power that the grid can use without damaging electrical equipment, which is built to operate at certain frequencies and voltages.
The first inverters were created in the 19th century and were mechanical. A spinning motor, for example, would be used to continually change whether the DC source was connected forward or backward. Today we make electrical switches out of transistors, solid-state devices with no moving parts. Transistors are made of semiconductor materials like silicon or gallium arsenide. They control the flow of electricity in response to outside electrical signals.
If you have a household solar system, your inverter probably performs several functions. In addition to converting your solar energy into AC power, it can monitor the system and provide a portal for communication with computer networks. Solar-plus–battery storage systems rely on advanced inverters to operate without any support from the grid in case of outages, if they are designed to do so.
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