High Power Programmable DC-DC Source Electronic Load Battery Inspection Test

Electronic Load Solutions
November 03, 2025
Category Connection: Electronic Load Solutions
Brief: Discover the 1600W Programmable Electronic Load, designed for high-power DC-DC source and battery testing. With a 3~60Vdc range and 24-bit AD sampling, this device offers precision and flexibility for battery inspection, charging, and discharging tests. Ideal for energy-efficient, programmable control in industrial applications.
Related Product Features:
  • Energy-efficient design with >93% efficiency for environmentally friendly testing.
  • Programmable control via RS485 or CAN communication for flexible charging/discharging.
  • Supports multiple modes including CC, CV, CP charging and CC, CR, CP discharging.
  • High precision with 24-bit AD industrial-grade sampling and DSP chip for accurate control.
  • Comprehensive protection features including over temperature, current, voltage, and power.
  • Full digital control and monitoring for enhanced performance tracking.
  • Durable shell structure with advanced heat dissipation for long-lasting use.
  • Cost-effective solution offering high-quality performance at competitive pricing.
Faqs:
  • What is the voltage range of the 1600W Programmable Electronic Load?
    The voltage range is 3~60Vdc, making it suitable for a wide variety of battery and DC-DC source testing applications.
  • What communication interfaces does the electronic load support?
    It supports RS485 and CAN communication interfaces for flexible and programmable control of charging and discharging processes.
  • What protection features are included in the electronic load?
    The device includes over temperature, current, voltage, and power protection to ensure safe and reliable operation during testing.
  • How efficient is the electronic load in energy conversion?
    The electronic load boasts >93% efficiency, making it an energy-efficient and environmentally friendly choice for testing multiple products and battery packs simultaneously.