Bidirectional DC Power Supply + Regenerative Load

Chroma 62000D

6kW/12kW/18kW/36kW/45kW

0~100V/600V/1200V/1800V/2000V

0~540A

The Chroma 62000D Bidirectional DC Power Supply + Regenerative Load combines a programmable bidirectional DC power supply and regenerative load into a single high-performance test platform for modern power electronics. Designed for EV power testing, bidirectional battery testing, renewable energy systems, and battery simulation, the 62000D features two-quadrant operation, regenerative energy feedback, and precision source and load capabilities, making it an ideal battery simulator for validating bidirectional converters, on-board chargers, batteries, and power conversion systems.

High Speed Regenerative DC Load System

Chroma 63700H

80kW & 120kW

80V & 1,000V

Up to 2,650A

The Chroma 63700H High Speed Regenerative DC Load System is engineered for demanding AI server power testing, delivering high-speed dynamic load performance for power racks, rack-mounted power systems, and DC-to-DC power applications. This high-speed DC electronic load combines advanced regenerative load system technology with up to 80% energy recovery efficiency, making it ideal for EDPP testing, transient response validation, and long-duration reliability testing while reducing energy consumption and operating costs.

Programmable AC Electronic Load

Chroma 63800

1800W/3600W/4500W

50V~350Vrms

Up to 45Arms

The Chroma 63800 Programmable AC Electronic Load simulates a wide range of real-world AC load conditions for power supply and UPS testing. As a programmable AC load for power supply testing, the AC electronic load 63800 replaces bulky resistive banks and functions as a precise UPS test load. This programmable AC electronic load reproduces inrush, harmonics, and power-factor conditions that a traditional AC load bank cannot.

Regenerative AC Electronic Load

Chroma 63800R

9kVA, 12kVA, 15kVA

30Vrms - 350Vrms

30Hz - 100Hz

The Chroma Regenerative AC Electronic Load recycles absorbed energy back to the grid, cutting cooling and power costs during testing. As an energy-recycling AC load and grid-tied electronic load, it provides a four-quadrant AC load ideal as a regenerative load for inverter testing. This regenerative AC load bank delivers sustainable, high-efficiency testing for inverters, UPS systems, and AC power sources.

Benchtop DC Electronic Load

Chroma 63000

250W, 350W

0~150V

up to 60A

The Chroma 63000 Series Benchtop DC Electronic Load is a programmable solution designed for accurate DC power supply testing, battery discharge testing, and DC/DC converter testing. Ideal for research, product development, and production environments, it delivers precise load simulation for switching power supplies, adapters, batteries, chargers, and other DC power electronic devices.

Modular DC Electronic Load

Chroma 63600

100W, 300W, 400W

0~600V

Up to 80A per module

The Chroma 63600 Series Modular DC Electronic Load is a programmable solution designed for accurate DC power supply testing, battery testing, and DC/DC converter testing. Its scalable architecture delivers the flexibility engineers need for research, product development, manufacturing, and quality assurance applications.

Modular DC Electronic Load LED Simulator

Chroma 6310/A

200W/30W & 250W/300W/600W/1200W

0~500V

0~20A

The Chroma 6310A Series Modular DC Electronic Load LED Simulator is a programmable solution designed for accurate LED driver testing, PWM dimming testing, and multi-output power supply testing. Combining advanced LED simulation capabilities with the flexibility of a programmable DC electronic load, it enables engineers to evaluate LED drivers, AC/DC power supplies, DC/DC converters, chargers, and other power electronic components with precision throughout development and production.

Regenerative DC Electronic Load

Chroma 63700

6kW, 12kW, 18kW

600V, 1,200V, 1,800V

Up to 120A

The Chroma 63700 Series Regenerative DC Electronic Load provides an energy-efficient solution for high-power regenerative load testing across EV batteries, fuel cells, power supplies, energy storage systems, and DC charging equipment. Featuring advanced energy recovery DC electronic load technology, the 63700 Series returns up to 93% of absorbed energy back to the grid, reducing heat generation, lowering operating costs, and improving efficiency during EV battery discharge testing, power supply burn-in testing, and other demanding power electronics applications.

High Power DC Electronic Loads

Chroma 63200A

2kW~24kW, up to 240kW

0~20V / 0~150V / 0~600V / 0~1200V

up to 2000A

The Chroma 63200A Series High Power DC Electronic Loads provide precise, programmable load control for demanding DC load testing applications. Designed for power supply testing, battery discharge testing, fuel cells, EV power electronics, and renewable energy systems, these programmable DC electronic loads deliver high current capability, multiple operating modes, and exceptional dynamic performance for validating today’s DC power systems.

AI GPU and FPGA Load Simulator

Pactiv-R + Orac

<25 ns

1,800A /1.5 kW

20 x 4 Vsense

The PactivR Orac is a unified, high-performance AI GPU and FPGA Load Simulator that combines Pactiv transient/DC load hardware with the Orac AI-enhanced controller to help engineers perform GPU load simulation, FPGA load testing, and power delivery network (PDN) testing faster and more accurately. Designed for AI servers, accelerators, and advanced computing hardware, it enables chip and board designers to validate and characterize PDNs with greater ease than conventional test approaches.

Ultra-Low Voltage DC Electronic Load

Chroma 63202A-20-2000

2000W

0~20V

up to 2000A

The Chroma 63202A Series Ultra-Low Voltage DC Electronic Load is designed for accurate high current DC electronic load applications, including VRM testing, POL converter testing, and CPU and GPU power testing. Engineered for today’s low-voltage, high-current power architectures, it enables engineers to validate voltage regulators, embedded DC-DC converters, and AI computing platforms with exceptional precision and dynamic response.