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Specification | Value |
Input Power | AC380V ±10%, 50Hz, Three-Phase Four-Wire |
Maximum Efficiency | Up to 90% (Regenerative) |
Charge Voltage Range | 30V - 150V (Multiple configurations available) |
Current Range | 10A - 500A (Multiple configurations available) |
Channel Paralleling | Supported, up to 500A maximum current |
Voltage & Current Accuracy | ±0.05% F.S. ±0.05% R.D. |
Operating Modes | CC, CV, CP, CR, CC-CV, DCIR Test, Power Pulse, Driving Cycle Simulation |
Power Factor | ≥99% |
THDi (Current) | ≤5% |
BMS Communication Interface | CAN Bus, RS485 |
Auxiliary Channels | Supported for individual cell voltage and temperature monitoring |
System Communication | TCP/IP Protocol |
Protection Features | Comprehensive list including: Insulation Protection, Disconnection Protection, Reverse Polarity, Over-Voltage, Over-Current, Over-Temperature, Smoke Detector Interface, Emergency Stop |
Key Features:
High-Voltage & Power Capability: Engineered to test large battery packs and modules with a wide voltage range up to 150V and high currents up to 500A (via channel paralleling), ideal for EV and energy storage applications.
90% Regenerative Efficiency: Features a state-of-the-art regenerative system that recovers up to 90% of the energy during discharge, leading to massive reductions in electricity consumption and facility cooling requirements.
Advanced BMS Communication: Natively supports CAN and RS485 communication protocols, allowing for seamless, real-time data exchange with the battery pack’s internal Battery Management System (BMS) for comprehensive health monitoring.
Comprehensive High-Voltage Safety: Designed with multi-layered safety protocols specifically for high-energy systems, including insulation protection, disconnection detection, smoke alarm integration, and a full suite of electrical safeguards.
Flexible & Data-Rich Testing: Supports auxiliary channels to monitor individual cell voltages and temperatures within a pack. The proven BTSDA software allows for complex test creation, deep data analysis, and easy exporting.
Modular and Scalable Design: The modular ACDC-DCDC architecture allows for easy customization and future expansion, ensuring the system can adapt to evolving testing needs for various battery pack sizes and specifications.