Kaohsiung, Taiwan

Hsiao-Hsuan Shen

USPTO Granted Patents = 1 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Hsiao-Hsuan Shen: Innovator in Battery Regeneration Technology

Hsiao-Hsuan Shen is a notable inventor based in Kaohsiung, Taiwan. He has made significant contributions to the field of battery technology, particularly in the regeneration of batteries containing fluid electrolytes. His innovative approach addresses the challenges associated with battery maintenance and longevity.

Latest Patents

Hsiao-Hsuan Shen holds a patent for a "Method and apparatus for regenerating battery containing fluid electrolyte." This patent reveals a method that includes several steps: removing the case of a battery to expose its core, immersing the core in a functional electrolyte suitable for removing the solid electrolyte interface (SEI) layer formed on the surface of active materials, and measuring the characteristic parameters of the functional electrolyte during immersion. The method further involves adjusting the concentration and electric conductivity of the functional electrolyte by adding other suitable electrolytes based on the measured parameters until both values are within the normal range for batteries. This innovative process allows for the regeneration and re-packaging of the core to form a regenerated battery.

Career Highlights

Hsiao-Hsuan Shen is associated with BGT Materials Limited, where he applies his expertise in battery technology. His work focuses on enhancing the efficiency and sustainability of battery systems, which is crucial in today's technology-driven world.

Collaborations

Some of his coworkers include Kuo-Hsin Chang and Chung-Ping Lai, who contribute to the collaborative efforts in advancing battery regeneration technologies.

Conclusion

Hsiao-Hsuan Shen's innovative work in battery regeneration technology showcases his commitment to improving energy storage solutions. His patent reflects a significant advancement in the field, potentially leading to more sustainable battery usage in various applications.

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