Hefei, China

ZhiMin Liu


Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: ZhiMin Liu: Innovator in Energy Absorption Verification Technology

Introduction

ZhiMin Liu is a prominent inventor based in Hefei, China. He has made significant contributions to the field of direct-current high-voltage surge suppression. His innovative work focuses on developing devices that enhance the performance and reliability of energy absorption systems.

Latest Patents

ZhiMin Liu holds a patent for a "Distributed capacitance energy absorption verification device." This device is designed to simulate and verify the performance of energy absorption systems in high-voltage applications. The device includes a direct-current high-voltage generator, a high-voltage switch, a high-voltage capacitor bank, an isolation transformer, an energy absorption device, and a high-voltage sphere gap short-circuit switch. The high-voltage capacitor bank simulates distributed capacitance, while the sphere gap switch simulates short-circuit faults, allowing for accurate performance verification. The advantages of this device include adjustable verification voltage, adjustable pulse capacitor bank capacity, and quantitative analysis, making it a reliable tool for evaluating energy absorption devices during their design and manufacturing processes.

Career Highlights

ZhiMin Liu is affiliated with the Chinese Academy of Sciences, where he conducts research and development in high-voltage technology. His work has been instrumental in advancing the understanding and application of energy absorption systems in various industries.

Collaborations

ZhiMin Liu collaborates with fellow researcher CaiChao Jiang, contributing to the development of innovative solutions in the field of energy absorption verification.

Conclusion

ZhiMin Liu's contributions to the field of energy absorption verification technology highlight his role as an influential inventor. His patented device represents a significant advancement in ensuring the reliability and performance of high-voltage systems.

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