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).

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Smallest battery bank that carries it

Continuous: draw ≤ 85 % of the total BMS rating. Surge: surge draw ≤ total BMS peak, where both are published.
BatteryIn parallelBankLimited by
Epoch Batteries 24V 230Ah V2 Elite Series LiFePO4 (C24230A)1230 Ahcontinuous
Battle Born Batteries BB5024 50Ah 24V LiFePO42100 Ahcontinuous

Datasheet

FieldValue
Continuous / surge1,000 W / 2,000 W
Input24 V (21.4–33.0 V)
Waveformpure-sine
Efficiency (published)85 %
Idle draw14.4 W

Source: manufacturer documentation

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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.

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.