CT/CE-5000 Series

SMBUS/I2C communication ability for laptops, tablets, smartphones battery

This series is equipped with SMBus/I2C communication functions, with a measurement accuracy of up to 0.02%F.S. and a response time ≤10ms.

It is widely used in fields such as university research, power battery testing, and energy storage battery supporting, providing users with efficient and intelligent battery testing solutions.

Why Choose NEWARE CT/CE-5000 Series?

High-precision battery testing solutions, specially designed for electrochemical, new energy, and consumer digital fields.

  • High-precision measurement: it adopts advanced energy-saving inverter technology, with a measurement accuracy of up to 0.02% F.S., it supports high-precision current and voltage testing of ±0.05% of F.S., ensuring the accuracy and reliability of data.
  • Multi-range design: supports customization of multiple ranges, meeting the testing needs of different battery packs. It is suitable for small-current cell testing and high-current scenarios.
  • Intelligent communication function: equipped with SMBUS/I2C communication interfaces, it supports data recording and analysis, enabling seamless connection with PCs or other devices to improve testing efficiency and automation levels.
  • High efficiency and energy saving: integrating energy-saving inverter technology, it can save 30% energy consumption compared with traditional equipment, reducing users' operating costs while complying with environmental requirements.
*CT/CE: Battery charging-discharging test system. "E" indicates that this equipment is equipped with energy feedback function.
Why Choose NEWARE CT/CE-5000 Series?

High-Efficiency Energy Feedback System

It features significant energy feedback capabilities, enabling efficient recycling and reuse of energy generated during testing, thus achieving the goal of energy conservation and emission reduction.

  • High-efficiency energy conversion and feedback:the series adopts advanced four-quadrant energy feedback technology, which can efficiently convert the electrical energy generated during testing and feed it back to the power grid or system. This reduces energy waste, lowers testing costs, and significantly improves energy utilization⁠.
  • Fast dynamic response speed: the system features a high dynamic response speed with a response time ≤10ms, enabling it to quickly adapt to power changes during battery charging and discharging. This ensures the stability and efficiency of energy feedback.
  • Multi-channel independent control: the system supports multi-channel independent control, allowing each channel to independently perform charging and discharging tests while achieving efficient energy feedback.⁠
High-Efficiency Energy Feedback System

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