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Adopt efficient power management chip to ensure safe and stable operation of battery, optimize battery charging and discharging efficiency and extend service life.
Support the integration of multiple functional modules, such as battery monitoring, temperature management, charging control and power control, reduce the number of circuit boards and reduce system complexity.
Built-in powerful data processing capabilities, real-time monitoring of battery status, temperature, charging status, etc., timely processing and analysis of data to ensure vehicle safety and performance.
Support CAN, LIN, Ethernet and other communication protocols to achieve fast data exchange with other electronic control units of the vehicle to ensure efficient coordination of the overall system.
Adopt materials and designs that adapt to high temperature and humid environments to ensure long-term stable use of PCB under extreme conditions and meet automotive industry standards.
Comply with automotive electronic safety standards such as ISO 26262 to ensure that PCB meets the strict requirements of new energy vehicles in terms of safety and reliability.
The design supports modularization, so that users can easily upgrade and expand new functions in the later technological development process.

Adopt efficient power management chip to ensure safe and stable operation of battery, optimize battery charging and discharging efficiency and extend service life.
Support the integration of multiple functional modules, such as battery monitoring, temperature management, charging control and power control, reduce the number of circuit boards and reduce system complexity.
Built-in powerful data processing capabilities, real-time monitoring of battery status, temperature, charging status, etc., timely processing and analysis of data to ensure vehicle safety and performance.
Support CAN, LIN, Ethernet and other communication protocols to achieve fast data exchange with other electronic control units of the vehicle to ensure efficient coordination of the overall system.
Adopt materials and designs that adapt to high temperature and humid environments to ensure long-term stable use of PCB under extreme conditions and meet automotive industry standards.
Comply with automotive electronic safety standards such as ISO 26262 to ensure that PCB meets the strict requirements of new energy vehicles in terms of safety and reliability.
The design supports modularization, so that users can easily upgrade and expand new functions in the later technological development process.