Location History:
- Chiayi County, TW (2021)
- Taoyuan, TW (2022)
Company Filing History:
Years Active: 2021-2022
Title: Yi-Wen Chiu: Innovator in Touch Sensor Technology
Introduction
Yi-Wen Chiu is a prominent inventor based in Taoyuan, Taiwan. He has made significant contributions to the field of touch sensor technology, holding a total of four patents. His innovative work focuses on stacking structures that enhance the functionality and efficiency of touch sensors.
Latest Patents
Yi-Wen Chiu's latest patents include a stacking structure and touch sensor that utilizes a unique design. The first patent describes a stacking structure that consists of a substrate, a silver nanowire layer on top of the substrate, and a metal layer above the silver nanowire layer. This silver nanowire layer contains multiple silver nanowires and an indium tin oxide (ITO) coating. The overall thickness of the silver nanowire layer is designed to be 2.35 to 24 times thicker than the ITO layer. Additionally, a touch sensor incorporating this stacking structure is also disclosed. The second patent outlines a stack structure that includes a substrate, a copper layer, a migration-proof layer on the copper layer, and a silver-nanowire layer on the migration-proof layer. The migration-proof layer is composed of materials that fall between copper and silver in the galvanic series, and a touch sensor is also included in this patent.
Career Highlights
Yi-Wen Chiu is currently employed at Cambrios Film Solutions Corporation, where he continues to develop innovative technologies in the field of touch sensors. His work has garnered attention for its potential applications in various electronic devices.
Collaborations
Some of Yi-Wen Chiu's notable coworkers include Chung-Chin Hsiao and Siou-Cheng Lien, who contribute to the collaborative environment at Cambrios Film Solutions Corporation.
Conclusion
Yi-Wen Chiu's contributions to touch sensor technology through his innovative patents highlight his role as a leading inventor in the field. His work continues to influence advancements in electronic device functionality and design.