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Advanced Battery Solutions Diverse Robotic Applications

Our LEAD-WIN battery solutions are designed for a wide range of robotic applications, providing high performance, long-lasting power, and an intelligent management system to ensure efficient operation in diverse environments and tasks.
Whether in automation, security, healthcare support, education, or cleaning, our lithium batteries meet the growing needs of these industries, driving innovation and development in robotics technology.

Main Product Categories

24V Robot Lithium Battery
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48V Robot Lithium Battery
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72V Robot Lithium Battery
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Professional Certificates

All our products undergo more than 20 different testing procedures, with 100% inspection before leaving the factory, and complete testing records are provided. We focus on robot-grade batteries and strictly adhere to ISO 9001, UL, IEC certification standards, as well as CB, CE, and FCC certifications.
A meticulous attitude and advanced quality management are the core driving forces behind the rapid technological development in this field. We always regard quality as the lifeline of the company and continuously optimize our internal quality management. Furthermore, we have passed ISO9001 and IATF16949 authoritative quality management system certifications.
ISO9001

ISO9001

UL

UL

IEC

IEC

CB

CB

CE

CE

Why choose LEAD-WIN robot lithium batteries?

LEAD-WIN specializes in high-performance lithium battery solutions for AGVs, AMRs, and various mobile robots. From cell selection and structural design to BMS management, we offer comprehensive customization to truly meet the high-power, long-endurance, and high-reliability operational needs of robots.

Choosing our robot lithium batteries means choosing a more stable, safer, and more worry-free power solution.

Do your batteries match my robot model?

Our lithium batteries are perfectly compatible with the vast majority of mobile robots, AGVs/AMRs. Simply provide the following information, and we can quickly confirm compatibility and recommend the most suitable model:

1. Required robot voltage (e.g., 24V/48V/72V)

2. Battery installation dimensions (L × W × H)

3. Continuous discharge current / Maximum current

4. Required runtime

5. Communication interface (CAN/RS485) and charging interface type. We support full customization of voltage, capacity, interface, and communication protocol to ensure complete compatibility with your robot chassis, control system, and charger—ready to use immediately after installation.

Can your robot's battery withstand extreme temperatures?

Our robot lithium batteries are specifically designed for harsh industrial environments, exhibiting excellent high and low temperature tolerance.

Low Temperature Performance: Utilizing low-temperature resistant cells and a low-temperature BMS, they can still discharge normally at -20℃, ensuring stable operation of robots in cold storage and outdoor low-temperature scenarios.

High Temperature Performance: Supports continuous operation in environments up to +50℃, coupled with comprehensive over-temperature protection and thermal management design to avoid bulging, degradation, or safety risks at high temperatures.

All-Scenario Stability: Reliable power supply from frigid outdoor environments to high-temperature workshops, from cold storage AGVs to outdoor inspection robots.

High Safety: The BMS monitors cell temperature in real time, with automatic over-temperature protection, fundamentally eliminating the risk of thermal runaway.

Are your robot batteries safe in industrial environments?

Absolutely. Our robot lithium batteries are specifically designed for harsh industrial environments, meeting industrial-grade safety standards with comprehensive protection from the cell and structure to the BMS.

Can you customize to our needs?

We offer OEM/ODM services, providing custom designs based on size, power, and interfaces to ensure compatibility and reliability.

What is the process for custom robot battery packs?

1. Consultation – The client provides requirements such as voltage, capacity, size, and operating environment.

2. Prototype Development – ​​The engineering team designs and tests prototypes, typically completed within 6-12 weeks.

3. Certification – Testing and certification are conducted according to UL, CE, IEC, and UN 38.3 standards.

4. Mass Production and Delivery – Scalable production is carried out in an ISO 9001 certified facility with comprehensive quality control to ensure consistent results.
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