At full power this inverter draws 46.7 A from a 24 V bank and 93 A during a 2,000 W surge. That figure divides 1,000 W by 25.2 V under load and by 85 % efficiency, not the 85 % on the datasheet, because peak efficiency is not what you get at full load.
It is pure sine, so compressors, pumps and a CPAP machine run on it without the heating a modified-sine output causes.
Idle it consumes 14.4 W, which is 346 Wh a day if you leave it on around the clock. To a lithium bank, a battery cable of 0.5 m needs 10 with a 60 A fuse and 1.5 m needs 10 AWG with a 60 A Class T fuse; the fuse is the smallest rating above 1.25 × the draw that still protects the wire (ABYC E-11).
Smallest battery bank that carries it
| Battery | In parallel | Bank | Limited by |
|---|---|---|---|
| Epoch Batteries 24V 230Ah V2 Elite Series LiFePO4 (C24230A) | 1 | 230 Ah | continuous |
| Battle Born Batteries BB5024 50Ah 24V LiFePO4 | 2 | 100 Ah | continuous |
Datasheet
| Field | Value |
|---|---|
| Continuous / surge | 1,000 W / 2,000 W |
| Input | 24 V (21.4–33.0 V) |
| Waveform | pure-sine |
| Efficiency (published) | 85 % |
| Idle draw | 14.4 W |
Source: manufacturer documentation
Where to buy
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How this page was computed
Published efficiency is a peak figure, so current is computed at 85 %. Cable and fuse follow the checker: ABYC E-11 ampacity, 3 % drop, fuse ≥ 1.25 × draw and ≤ the wire rating, Class T for lithium.
- Manufacturer documentation verified 2026-09-15
- Battery datasheets BMS continuous and peak
The formulas are the same open engine the checker runs; the methodology page lists every constant.
These results are for reference. Wiring must be installed by a qualified electrician. Mobile installations follow ABYC E-11; stationary ones NEC 690/706.