Anyone measured actual battery degradation after a full year of daily cycling?

Battery chemistry, pack design, BMS, runtime, charging/swapping, and keeping actuators from cooking themselves.
karen.chen3
Posts: 189
Joined: Mon Mar 10, 2025 1:30 pm

Anyone measured actual battery degradation after a full year of daily cycling?

Post by karen.chen3 »

Been lurking on this one for a while, finally decided to ask. 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. 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. 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. Open to being corrected on the specifics.
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emilyperez
Posts: 246
Joined: Mon Oct 28, 2024 8:03 pm

Re: Anyone measured actual battery degradation after a full year of daily cycling?

Post by emilyperez »

@karen.chen3 This matches what I've seen too. 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.
sven.smith4
Posts: 60
Joined: Sat Feb 28, 2026 3:48 pm

Re: Anyone measured actual battery degradation after a full year of daily cycling?

Post by sven.smith4 »

Short answer: 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. 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.
Opinions my own, not my employer's.
green28
Posts: 109
Joined: Sun May 11, 2025 2:06 am

Re: Anyone measured actual battery degradation after a full year of daily cycling?

Post by green28 »

Ran into exactly this myself. 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.
matthew.yamamoto0
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Joined: Sun Dec 14, 2025 8:43 pm

Re: Anyone measured actual battery degradation after a full year of daily cycling?

Post by matthew.yamamoto0 »

@green28 I'd take that specific number with a grain of salt, honestly. 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. 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.
"Torque is a lifestyle."
ethan.lewis5
Posts: 65
Joined: Sat Apr 04, 2026 7:35 pm

Re: Anyone measured actual battery degradation after a full year of daily cycling?

Post by ethan.lewis5 »

@matthew.yamamoto0 Not to derail, but this reminds me of something adjacent: 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.
Opinions my own, not my employer's.
barbara50
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Joined: Thu Dec 19, 2024 12:19 pm

Re: Anyone measured actual battery degradation after a full year of daily cycling?

Post by barbara50 »

@ethan.lewis5 I'd frame this differently. 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.
Opinions my own, not my employer's.
camila.jackson0
Posts: 225
Joined: Wed Oct 09, 2024 1:27 am

Re: Anyone measured actual battery degradation after a full year of daily cycling?

Post by camila.jackson0 »

I'd take that specific number with a grain of salt, honestly. 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. Kind of makes me think about how different this all looked even three years ago.
Building > buying.
vyoung
Posts: 51
Joined: Thu Mar 26, 2026 12:05 pm

Re: Anyone measured actual battery degradation after a full year of daily cycling?

Post by vyoung »

@camila.jackson0 Short answer: 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. Totally unrelated but has anyone else noticed how fast component costs are dropping this year.
thomas65
Posts: 59
Joined: Sat Feb 14, 2026 11:59 am

Re: Anyone measured actual battery degradation after a full year of daily cycling?

Post by thomas65 »

@vyoung Here's what I know on this: 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. 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.
Watching this space closely since 2019.
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