This inventor holds 3 USPTO granted patents and 2 published patent applications. Top assignee: Higgstec Inc.. Active years: 2012-2013.
Company Filing History:
Years Active: 2012-2013
Title: Yi-Ta Chen: Innovator in Touch Panel Technology
Introduction
Yi-Ta Chen is a prominent inventor based in Hsinchu, Taiwan. He has made significant contributions to the field of touch panel technology, holding a total of 3 patents. His innovative designs focus on enhancing the functionality and efficiency of touch panels through advanced micro-electrode matrices.
Latest Patents
Yi-Ta Chen's latest patents include a micro-electrode matrix and a touch panel with a micro-electrode matrix. This invention relates to a touch panel that is formed by multiple x-axis and y-axis scanning lines, creating a micro-electrode matrix defined by these scanning lines. The micro-electrode matrix consists of several micro-electrode series connected to the scanning lines, with each micro-electrode chain composed of multiple micro-electrodes and series resistances.
Another notable patent is the touch panel with parallel electrodes. This design features a pair of parallel electrodes in both the x-axis and y-axis, forming a ring structure through a series connection of eight corner resistances. This improvement in electrode design is implemented on the conductive layer of the touch panel, enhancing touch detection capabilities through the voltage support provided by the corner electrodes.
Career Highlights
Yi-Ta Chen is currently employed at Higgstec Inc., where he continues to develop innovative technologies in the field of touch panels. His work has significantly impacted the industry, leading to advancements in user interface technology.
Collaborations
One of his notable collaborators is Herng-Ming Yeh, with whom he has worked on various projects to enhance touch panel technology.
Conclusion
Yi-Ta Chen's contributions to touch panel technology through his innovative patents demonstrate his expertise and commitment to advancing the field. His work continues to influence the development of more efficient and effective touch interfaces.