What connector types are people using for high-current swap interfaces?

Battery chemistry, pack design, BMS, runtime, charging/swapping, and keeping actuators from cooking themselves.
johnrossi
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Joined: Thu Jun 19, 2025 2:39 am

What connector types are people using for high-current swap interfaces?

Post by johnrossi »

Curious what people here think about this. Idle/standing power draw is often surprisingly close to a meaningful fraction of active walking power draw once you account for onboard compute, sensors, and balance-holding torque - 'doing nothing' still costs real energy on a humanoid. 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. Happy to be told I'm wrong on any of this.
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servosan90
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Re: What connector types are people using for high-current swap interfaces?

Post by servosan90 »

@johnrossi Speaking from personal experience here, Best-in-class lithium-ion cells used in humanoids are currently landing around 280-300 Wh/kg, which is respectable but still leaves battery mass as one of the largest single contributors to total robot weight. DC-DC conversion losses across all the individual actuator drivers add up across a whole robot - it's a less glamorous efficiency question than battery chemistry, but power electronics efficiency meaningfully affects real-world runtime too.
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chenperez
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Re: What connector types are people using for high-current swap interfaces?

Post by chenperez »

@servosan90 Yeah, this tracks with what I've read as well. Hot-swappable battery packs solve the runtime bottleneck for continuous operations (like a 24/7 warehouse shift) without needing a much bigger, heavier pack, but they add mechanical complexity, a failure-prone connector interface, and logistics overhead for managing spare packs. Makes me wonder how this looks in another five years.
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jchen
Posts: 70
Joined: Fri Dec 19, 2025 2:19 pm

Re: What connector types are people using for high-current swap interfaces?

Post by jchen »

Respectfully, I think this undersells it a bit. 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.
"The best actuator is the one that doesn't overheat."
matthew43
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Joined: Wed Nov 06, 2024 9:18 am

Re: What connector types are people using for high-current swap interfaces?

Post by matthew43 »

Not to derail, but this reminds me of something adjacent: A BMS (battery management system) has to guard against transient current spikes from sudden gait changes or lifting motions, not just steady-state draw - peak current headroom and fast-acting protection logic matter as much as total capacity for real-world duty cycles. 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.
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benjaminsanchez
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Re: What connector types are people using for high-current swap interfaces?

Post by benjaminsanchez »

@matthew43 Slight correction, though the overall point stands: Thermal margin in a densely packed humanoid chassis is often the real limiting factor on sustained performance, not raw motor power - actuators get thermally throttled well before they'd hit their absolute torque limits, especially during repeated high-load cycles like continuous lifting. There's no widely standardized safety certification specific to humanoid battery packs yet in most jurisdictions - deployments generally lean on adapted versions of existing standards for industrial battery systems and electrical safety rather than a purpose-built humanoid standard.
samuel.adams
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Joined: Fri Mar 20, 2026 3:21 am

Re: What connector types are people using for high-current swap interfaces?

Post by samuel.adams »

Minor factual note: 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. The average humanoid in 2026 carries under 2.5 kWh of battery capacity, with real-world runtimes clustering between two and four hours depending on how dynamic the workload is - static, low-motion tasks stretch runtime much further than continuous walking or lifting.
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sarah.santos3
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Re: What connector types are people using for high-current swap interfaces?

Post by sarah.santos3 »

@samuel.adams Thanks for laying this out, genuinely useful. Solid-state battery claims from platforms like XPeng's IRON, GAC's GoMate, and EngineAI's T800 are genuinely promising on paper for energy density and safety margins, but independent, large-scale field validation of those runtime claims is still fairly limited as of 2026 - it's real progress, not yet fully proven at scale. Battery placement (torso-centered vs backpack vs distributed through the limbs) is a real tradeoff between center-of-mass/balance considerations and thermal/cooling access - a torso-centered pack helps balance but is harder to cool than a more exposed backpack placement.
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emilyperez
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Joined: Mon Oct 28, 2024 8:03 pm

Re: What connector types are people using for high-current swap interfaces?

Post by emilyperez »

@sarah.santos3 Pretty much this. One thing to add: 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. Thermal margin in a densely packed humanoid chassis is often the real limiting factor on sustained performance, not raw motor power - actuators get thermally throttled well before they'd hit their absolute torque limits, especially during repeated high-load cycles like continuous lifting.
nicole10
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Joined: Wed Sep 10, 2025 9:48 am

Re: What connector types are people using for high-current swap interfaces?

Post by nicole10 »

Worth being a little skeptical of the marketing angle here. Hot-swappable battery packs solve the runtime bottleneck for continuous operations (like a 24/7 warehouse shift) without needing a much bigger, heavier pack, but they add mechanical complexity, a failure-prone connector interface, and logistics overhead for managing spare packs. Battery placement (torso-centered vs backpack vs distributed through the limbs) is a real tradeoff between center-of-mass/balance considerations and thermal/cooling access - a torso-centered pack helps balance but is harder to cool than a more exposed backpack placement.
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