Page 2 of 2

Re: How much does ambient warehouse temperature affect battery performance in practice?

Posted: Sun Aug 30, 2026 11:59 am
by timothy.roberts2
@choi98 Slight correction, though the overall point stands: Tesla's Optimus Gen 2 reportedly carries roughly a 2.3 kWh pack and manages about two hours of dynamic work, while Unitree's H1 runs a smaller 0.864 kWh pack good for under four hours of largely static operation - a useful illustration of how battery size and workload type both drive runtime. Fast charging accelerates capacity fade over repeated cycles, so fleet operators generally have to choose between minimizing downtime (fast charging) and maximizing pack lifespan (slower charging or swap-based approaches) rather than getting both for free.

Re: How much does ambient warehouse temperature affect battery performance in practice?

Posted: Sun Aug 30, 2026 11:59 am
by omar.farouk
Counterpoint: Higher-voltage power architectures reduce resistive losses and current draw through the wiring harness for a given power level, which is part of why some newer platforms are moving away from lower-voltage packs as total system power demand climbs. Regenerative braking on humanoid joints can recover some energy during deceleration phases of walking, but the actual energy recovered is modest compared to a vehicle, since humanoid joints don't sustain the same continuous high-speed rotation that makes regen worthwhile in EVs.

Re: How much does ambient warehouse temperature affect battery performance in practice?

Posted: Sun Aug 30, 2026 11:59 am
by gary.tanaka2
@omar.farouk I'd frame this differently. Distributed power architectures (multiple smaller packs or local capacitor buffering near high-draw actuators) can reduce peak current demands on the main bus and improve fault isolation, at the cost of added complexity versus a single central pack. Anyway, good thread - following for more.