Power Aging Test Equipment

High-Precision Integrated Burn-in Solutions

Batterlution delivers an integrated, high-precision architecture engineered specifically for rigorous burn-in environments. By leveraging advanced metrology and ultra-stable monitoring, our solutions ensure uncompromising measurement accuracy, which is the cornerstone of validating component reliability.

  • Absolute Test Integrity: Our high-resolution data acquisition eliminates measurement drift, ensuring that every thermal and electrical stress test yields consistent, repeatable results.

  • Mission-Critical Reliability: Designed for the most demanding burn-in protocols, our systems provide the precision necessary to detect latent defects early, safeguarding the quality of your power supply and semiconductor manufacturing.

Technical Specifications & Power Modules

Batterlution offers a versatile range of power modules engineered to meet diverse burn-in and testing requirements. Our scalable architecture allows for precise configuration across a wide spectrum of voltage and current demands.

Output Voltage (V)

Output Current (A) 

Rated Power (kW/W) 

Core Applications

20V

65A

1.3kW

High-current low-voltage testing

60V

13A

780W

Standard DC-DC converter burn-in

100V

62.5A

2.5kW

High-density power system stress tests

200V

50A

1.25kW / 2.5kW

Industrial & e-mobility power testing

500V

30A

2.5kW / 15kW

High-voltage semiconductor aging

Why Choose Batterlution for Your Burn-in Testing Needs?

Maximize Efficiency with Regenerative Energy Recovery

  • Choosing Batterlution means investing in a burn-in system architecture engineered for sustainability. Our regenerative discharge energy design recycles energy back to the utility mains in the most energy-efficient manner possible. This not only significantly saves electricity but also reduces your facility’s thermal footprint, providing a high-performance green solution that minimizes environmental impact.

Unmatched Versatility in Channel Configuration

  • Our systems empower your production line with multiple independent channels, allowing for dedicated discharge tests with discrete characteristics tailored to each unit. Whether you need a high channel count for mass production or high-current testing for heavy-duty components, our channels can be easily paralleled. This modularity offers the ultimate flexibility to scale your testing capacity as your requirements evolve.

Streamlined Automation without Complex Programming

  • We simplify your workflow through a powerful software suite designed for rapid test development. Our flexible programming functions allow you to create everything from simple to complex discharge profile tests for individual channels or groups. By integrating thermal chamber control directly into the profile—triggered by time or real-time test results—we provide a dynamic testing environment. Our intuitive interface eliminates the need for tedious scripting or specialized software engineering, accelerating your time-to-market.

Why Choose Batterlution for Your Burn-in Testing Needs?

Power Aging Test Equipment factory
  • Regenerative Energy Recovery: High-efficiency regenerative discharge design recycles energy back to the utility, saving electricity, reducing heat output, and supporting environmental protection.

  • Versatile Discharge Modes: Supports Constant Current (CC), Constant Voltage (CV), and Constant Power (CP) to meet diverse testing requirements.

  • Flexible Scalability: Multiple independent channels can be paralleled for higher currents, providing the ultimate balance between high channel count and high-power testing.

  • Integrated Control & Safety: Features advanced Thermal Chamber Control, real-time temperature monitoring, and robust data recovery protection after power failure.

  • Power Quality: Ensures superior stability with Total Harmonic Distortion (THD) less than 5% of rated power.

FAQ

What are the primary benefits of using a regenerative burn-in system?

Our systems utilize Regenerative Energy Recovery technology, which recycles discharge energy back to the utility grid with peak efficiency. This architecture significantly reduces electricity consumption, lowers the facility’s thermal footprint, and provides a sustainable, eco-friendly solution for industrial manufacturing.

Which discharge modes are supported by your testing equipment?

Batterlution equipment is designed for high-precision testing and supports multiple versatile discharge modes, including Constant Current (CC), Constant Voltage (CV), and Constant Power (CP). This ensures absolute test integrity for semiconductors, power supplies, and high-density power systems.

Can I test high-current devices with this system?

Yes. The system features multiple independent channels that can be easily paralleled to support higher current requirements. This modular design offers the ultimate flexibility between high-channel-count production and high-power specialized testing.

How does the system ensure data safety during power failures?

Our architecture includes robust data recovery protection. In the event of an unexpected power failure, the system ensures that critical test data and progress are preserved, preventing loss of vital aging test results.

Can thermal chamber control be synchronized with the aging test?

Absolutely. Our flexible programming functions allow for integrated Thermal Chamber Control. You can trigger environmental changes based on real-time test results or elapsed time, creating a dynamic and fully automated testing profile.

What is the power quality and stability of the regenerative feedback?

The system ensures superior grid stability with a Total Harmonic Distortion (THD) of less than 5% of the rated power. This maintains clean energy feedback and protects your facility’s electrical infrastructure during large-scale burn-in operations.

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