Bidirectional operation with integrated source and sink functions
Output voltage up to 2250 V and scalable power up to 2 MW
Regenerative efficiency up to 95% for energy recovery
High power density: 18 kW in compact 3U rack form factor
Seamless transition between sourcing and sinking modes
Built-in arbitrary waveform generator and LIST mode support
Advanced protection: OVP, ±OCP, ±OPP, OTP, anti-islanding
Multiple interfaces: USB, LAN, CAN, digital I/O (optional GPIB/RS232)
EV battery testing and battery cycler systems
Bidirectional DC-DC converter validation
Power conversion systems (PCS) testing
Solar inverter and photovoltaic (PV) simulation
Energy storage system (ESS) testing
Automotive electronics validation (LV123, LV148, ISO standards)
R&D laboratories and high-power electronics testing
Voltage range: 0 – 2250 V
Current range: Up to 2040 A (single cabinet) ; Up to 8000 A (parallel configuration)
Power rating: Up to 144 kW (stand-alone); Up to 2 MW (parallel system)
Regenerative efficiency: up to 95%
Power density: up to 18 kW / 3U
Operation modes: CC, CV, CP with priority setting
Data logging: minimum sampling interval 10 μs
Dynamic profile: up to 10,000,000 points
Interfaces: USB, LAN, CAN, digital I/O (optional GPIB, RS232)
The IT6000C Bidirectional Programmable DC Power Supply is engineered for high-performance energy testing applications requiring both sourcing and sinking capabilities within a single platform. Based on third-generation SiC technology, it provides high efficiency, fast transient response, and seamless switching between charge and discharge modes without overshoot.
This system supports output voltages up to 2250 V and scalable power up to 2 MW through master-slave parallel operation, making it suitable for high-power validation environments. Its regenerative design returns absorbed energy back to the grid with up to 95% efficiency, significantly reducing energy consumption and thermal management requirements.
The IT6000C is designed for demanding industrial and laboratory applications, including EV battery testing, power conversion systems (PCS), bidirectional DC-DC modules, and renewable energy systems. The integrated waveform generator and high-speed data logging enable dynamic simulation profiles, including complex battery charge/discharge cycles and photovoltaic I-V curve simulation.
With multiple communication interfaces (USB, LAN, CAN, digital I/O) and optional GPIB/RS232, the system integrates easily into automated test setups. Built-in protections and compliance with automotive and industrial test standards ensure reliable and safe operation.






AV-TEK / Houston Office
4123 Hollister, Suite G
Houston, TX, 77080
AV-TEK / San Marcos Office
900 Barnes Dr. Suite 200
San Marcos, TX, 78666