Milliampere Level Test System
Milliampere Level Test System

Milliampere Level Test System

BTS-5V100mA80CH is a high-precision, multi-channel battery test system designed for comprehensive battery research, including pulse charge and discharge testing, DCIR measurements, and long-term cycle life evaluation. It supports up to 80 customizable channels, allowing simultaneous testing of multiple cells or modules, and provides ultra-accurate voltage and current control with microvolt and nanoamp resolution. The system is equipped with fast response times and precise recording capabilities, making it suitable for advanced research in battery materials, electrochemical analysis, and energy storage devices. With support for CC, CV, CP, CC-CV, CR, Pulse, PITT, GITT, and differential capacity (dQ/dV, dV/dQ) testing modes, BTS-5V100mA80CH ensures versatile functionality for laboratories, universities, and industrial R&D centers engaged in battery development and quality assurance. Its robust design, high stability, and programmable operation via software interfaces enable efficient, repeatable, and safe battery testing under diverse experimental conditions.

Key System Parameters

Model BTS-5V100mA80CH
Max Power 80 W
Channels Quantity 80 CH (Customizable)

Voltage Parameters

Output Voltage Range -5 V ~ 5 V
Voltage Accuracy ±0.01% F.S.
Voltage Resolution 0.001 mV

Current Parameters

Output Current Range -100 mA ~ 100 mA
Current Range Options 0.1 mA / 1 mA / 10 mA / 100 mA
Current Accuracy ±0.02% F.S. (per current gear)
Current Resolution 0.001 μA

Charge and Discharge Test Parameters

Rising Time ≤ 100 μs
Switching Time ≤ 1 ms
Minimum Recording Time 1 ms / 0.001 mV / 0.001 μA
Charge-Discharge Operation Modes CC, CV, CP, CC-CV, CR, DCIR, Pulse, etc.
Advanced Test Functions PITT, GITT, dQ/dV, dV/dQ, etc.

The BTS-5V100mA80CH offers high-speed, high-precision control of voltage and current, enabling detailed electrochemical analysis and research on battery materials, performance, and lifetime. Its customizable multi-channel design ensures flexible testing for different battery sizes and research requirements.