Company Filing History:
Years Active: 2025
Title: Chou Har Wu: Innovator in Power-Generating Insoles
Introduction
Chou Har Wu is a notable inventor based in Hong Kong, CN. He has made significant contributions to the field of wearable technology, particularly with his innovative approach to power generation through fabric integration. His work exemplifies the intersection of functionality and comfort in modern footwear.
Latest Patents
Chou Har Wu holds a patent for an "Integrated fabric based power-generating insole and method of manufacturing the same." This invention discloses a power-generating insole that comprises a power-generating insole body, a detachable outer layer, and an electronic module. The insole features a first friction component, a second friction component, and a fabric composite component. The first friction component is composed of a first electrode layer and a first polymer material, which are integrally formed with the fabric composite component. The second friction component wraps around the middle part of the fabric composite component, integrating seamlessly with the other components. The detachable outer layer covers the surface of the insole body, while the electronic module connects to it. This invention boasts a long service life, good flexibility, plasticity, and is resistant to washing, ensuring stability in various conditions.
Career Highlights
Chou Har Wu is associated with Calson Investment Limited, where he continues to develop innovative solutions in the field of wearable technology. His work has garnered attention for its practical applications and potential impact on the industry.
Collaborations
Chou has collaborated with talented individuals such as Bingang Xu and Meiqi Li, contributing to a dynamic work environment that fosters creativity and innovation.
Conclusion
Chou Har Wu's contributions to the field of power-generating insoles highlight his innovative spirit and dedication to advancing wearable technology. His patent reflects a significant step forward in integrating power generation into everyday items, showcasing the potential for future developments in this area.