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| Parameter | Details |
|---|---|
| Model | 6.5kW-48-PV9055-TWIN |
| Phase | Single Phase |
| Rated Output Power | 6500W |
| PV + Battery Output | 8000W |
| Max PV Input Power | 4500W x 2 |
| Max PV Input Current | 2x22A |
| PV Voltage Range | 120–430VDC |
| Nominal DC Voltage | 48VDC |
| Max Solar Charging Current | 150A |
| AC Charging Current | 120A |
| Surge Power | 13000VA |
| Output Voltage | 220/230/240 VAC |
| Output Waveform | Pure Sine Wave |
| Transfer Time | 10ms (PCs), 20ms (Home Appliances) |
| Efficiency | DC-AC: 93% / MPPT: 95% |
| Communication Ports | USB, RS232, RS485, WiFi, Dry-contact |
| Dimensions (D x W x H) | 140 x 295 x 468 mm |
| Net Weight | 13.5 kg |
| Operating Temp. | -10°C to 50°C |
| Humidity | 0 ~ 90% RH (non-condensing) |
| Certifications | IEC 62109-1/-2, IEC 61683, LVD 2014/35/EU |
This is a 51.2V LiFePO₄ wall-mounted battery designed for:
Home solar storage
Hybrid inverter backup
Commercial/industrial UPS-style use
The main model shown is:
More storage in a compact wall-mounted box — good for indoor installs.
Advertised:
6000 cycles @ 80% DoD
That’s solid. In real life, that can mean 10–15 years depending on usage.
Up to 1C–1.5C
For the 100Ah model:
1C = 100A
1.5C = 150A peak
Meaning it can support high-load appliances better than weak batteries.
Includes:
Cell balancing
Overcharge / overdischarge protection
Temperature and short-circuit safety
This is essential for lithium systems.
Very normal for LiFePO₄ — good for solar storage.
This is actually better than many indoor-only batteries.
Protected from dust + water splashes
Useful in garages, utility rooms, and humid climates.
Nice bonus for monitoring:
SOC (battery %)
Voltage/current
Errors/alarms
Can connect multiple packs in parallel.
Poster says:
Up to 8 units parallel
So max storage:
8 × 5.12 kWh = 40.96 kWh
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