Artificial Intelligence and Humanoid Robot Battery Application

Challenges Facing Battery Design for Artificial Intelligence and Humanoid Robots

Power Stability Design Under Transient High Power Consumption in Humanoid Robots

Humanoid robots possess dozens of degrees of freedom (DoF) dexterous joints. When performing running, jumping, heavy lifting, or complex balance control, the motors must instantly output extremely high torque. This requires batteries to have exceptional high-rate discharge and pulse current tolerance capabilities. How to maintain voltage stability under instantaneous high bursts to prevent system logic "brownout" or rebooting due to excessive voltage drop is the primary electronic design challenge.

The Ultimate Trade-off Between Lightweighting and High Energy Density

The internal structure of a humanoid robot is extremely compact, and it is highly sensitive to its own weight. Achieving the ultimate volumetric energy density (Wh/L) and lightweight matching within the extremely limited torso or thigh compartments directly determines the upper limit of the robot's battery life.

Superposition of Heat Sources from High-Density Joints and Thermal Management Bottlenecks

Humanoid robots integrate high-computing-power edge AI chips and multiple high-power-density servo drives inside, creating an extremely severe internal thermal environment during continuous heavy-load operations. The battery itself also generates heat during high-rate charging and discharging. This superposition of internal heat sources easily triggers temperature protection mechanisms that force the robot to "frequency throttle" or shut down, posing strict requirements on the power battery's heat dissipation structure.

 

Artificial Intelligence and Humanoid Robot Battery Solutions

To address the above challenges, we provide comprehensive, one-stop OEM and ODM battery solutions for artificial intelligence and humanoid robots. From battery form factor design and high energy density cell selection to algorithm-level BMS customization, we meet the specific requirements of various AI forms and humanoid robots.

Technical Specifications:
ItemParameter
Battery TypeNCM Lithium-ion Battery / LiFePO4 Lithium Iron Phosphate
Voltage48V / 58V / 72V (Customizable)
Capacity 20Ah - 100Ah (Customizable)
Cycle Life> 2000 cycles (Capacity Retention ≥ 80%)
Protection SystemSmart BMS
Protection RatingIP65 Waterproof and Dustproof
Operating Temperature-20°C ~ +60°C Wide Temperature Range
ApplicationFull-size Humanoid Robots, Quadruped Robots, Service Robots, Industrial Humanoid Robots
CertificationCE, UL2580, IEC62133, UN38.3, RoHS

Solution Advantages

  • icon High-Energy-Density Cell System
  • icon High Discharge Rate & Low Internal Resistance Design
  • icon Smart Battery Management System
  • icon Custom Structure & Heat Dissipation

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