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Chroma 17040E-1700V Regenerative Battery Pack Test System (1700V)

Manufacturer part number: 17040E-1700V
The Chroma Regenerative Battery Pack Test System (also searchable as Chroma Battery Tester 1700V, Chroma 1700 V battery test system, or Chroma EV battery test) is a high-voltage, bidirectional test platform designed for advanced validation of large battery packs used in electric vehicles, energy storage systems, and renewable energy applications.
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Available Configurations

OPTIONS
NamePurchase
IPC for Battery Test System$0.00
Battery Simulator SoftPanel$0.00
Battery Pro Software - Battery Pro$0.00
CAN Bus Interface Card$0.00
VDE protection function$0.00
Insulation resistance protection function$0.00

The Chroma Regenerative Battery Pack Test System (1700V)—also known as Chroma 1700V Battery Tester/ 17040E, 17040E-1700V, Chroma Battery Test Platform, or Chroma EV Pack Testing System—delivers high-precision, high-power bidirectional energy testing for today’s most demanding battery technologies.

Capable of handling voltages up to 1700 VDC and scalable in power output, this regenerative battery test platform is engineered for testing large-format lithium-ion battery packs commonly found in electric vehicles (EVs), energy storage systems (ESS), and aerospace applications. Its advanced regeneration feature allows energy discharged from the battery to be safely and efficiently fed back to the grid, significantly lowering energy consumption and operating costs.

Chroma’s battery test software enables automated testing routines such as charge/discharge cycling, capacity testing, BMS validation, thermal response profiling, and state of health monitoring. The system supports full integration with BMS protocols, and includes comprehensive safety features such as overvoltage, overcurrent, and overtemperature protection.

With its advanced measurement accuracy and high-speed control loop response, the system delivers reliable results for product development, quality assurance, and regulatory compliance environments.

  • High-voltage EV battery pack testing

  • Battery cycle life and charge/discharge testing

  • Energy storage system (ESS) battery validation

  • Aerospace and defense battery testing

  • Battery management system (BMS) communication and safety testing

  • Grid-tied battery simulation for smart energy systems

  • R&D labs testing advanced lithium-ion battery chemistries

  • Production QA for battery pack manufacturing lines

  • Overcharge, short circuit, and thermal behavior analysis

  • Renewable energy backup and hybrid system battery validation

  • Voltage Range: Up to 1700 VDC

  • Power Range: Scalable from 30 kW to 1 MW+

  • Current Range: Up to 1000 A (model dependent)

  • Energy Recovery Efficiency: >90%

  • Voltage Accuracy: ±0.05% F.S.

  • Current Accuracy: ±0.05% F.S.

  • Communication Interfaces: CAN, Modbus, Ethernet, USB

  • Operating Modes: Constant Current (CC), Constant Voltage (CV), Constant Power (CP), and Constant Resistance (CR)

  • Safety Features: OVP, OCP, OTP, Emergency Stop, Relay Interlocks

  • Cooling: Air or liquid-cooled depending on model

  • Software: Chroma Battery Pro Software Suite

  • Compliance: CE, RoHS, and applicable safety certifications

Description

The Chroma Regenerative Battery Pack Test System (1700V)—also known as Chroma 1700V Battery Tester/ 17040E, 17040E-1700V, Chroma Battery Test Platform, or Chroma EV Pack Testing System—delivers high-precision, high-power bidirectional energy testing for today’s most demanding battery technologies.

Capable of handling voltages up to 1700 VDC and scalable in power output, this regenerative battery test platform is engineered for testing large-format lithium-ion battery packs commonly found in electric vehicles (EVs), energy storage systems (ESS), and aerospace applications. Its advanced regeneration feature allows energy discharged from the battery to be safely and efficiently fed back to the grid, significantly lowering energy consumption and operating costs.

Chroma’s battery test software enables automated testing routines such as charge/discharge cycling, capacity testing, BMS validation, thermal response profiling, and state of health monitoring. The system supports full integration with BMS protocols, and includes comprehensive safety features such as overvoltage, overcurrent, and overtemperature protection.

With its advanced measurement accuracy and high-speed control loop response, the system delivers reliable results for product development, quality assurance, and regulatory compliance environments.