1000V-1500V High Voltage High Current Battery Testing System - Precision Testing Solutions from China Suppliers and Factory
Its innovative dual closed-loop architecture integrates constant current (CC) and constant voltage (CV) sources, enabling seamless collaboration between power modes for exceptional stability and rapid dynamic response. A standout innovation lies in its one-step simulation capability, allowing continuous charge-discharge switching within a single workflow without manual intervention—dramatically improving testing efficiency while reducing energy waste. Designed for next-gen EV batteries, energy storage systems, and industrial R&D, this system redefines precision control and operational agility in high-power battery testing scenarios.
Dual Closed-Loop Architecture
Integrates constant current (CC) and constant voltage (CV) sources, enabling seamless collaboration between power modes for exceptional stability and rapid dynamic response.
One-Step Simulation
Allows continuous charge-discharge switching within a single workflow without manual intervention—dramatically improving testing efficiency while reducing energy waste.
Next-Gen Applications
Specifically designed for next-gen EV batteries, energy storage systems, and industrial R&D, redefining precision control and operational agility.
Frequently Asked Questions
What is the dual closed-loop architecture?
The dual closed-loop architecture integrates constant current (CC) and constant voltage (CV) sources. This design allows for seamless collaboration between power modes, providing exceptional stability and rapid dynamic response during battery testing.
How does the one-step simulation capability benefit battery testing?
The one-step simulation capability enables continuous charge-discharge switching within a single workflow. Because it operates without manual intervention, it dramatically improves testing efficiency and significantly reduces energy waste.
What industries and applications is this system designed for?
This system is specifically engineered for high-power battery testing scenarios, including next-generation electric vehicle (EV) batteries, energy storage systems (ESS), and industrial research and development (R&D).
Does the system require manual control during charge and discharge transitions?
No, the system features a workflow automation that allows for continuous charge-discharge switching in a single step without requiring manual intervention.
How does this testing system improve operational agility?
By redefining precision control and integrating seamless power mode transitions with automated workflows, the system delivers unmatched operational agility and response speed in demanding testing scenarios.





