This inventor holds 2 USPTO granted patents. Top assignee: International Rectifier Corporation. Active years: 2003-2005.
Location History:
- Newport, GB (2003)
- Gwent, GB (2005)
Company Filing History:
Years Active: 2003-2005
Title: Innovations of Richard Bullock in Thin Film Transistors
Introduction
Richard Bullock is a notable inventor based in Gwent, GB. He has made significant contributions to the field of thin film transistors, holding a total of 2 patents. His work focuses on enhancing the performance and efficiency of electronic devices through innovative methods.
Latest Patents
Bullock's latest patents include a method of fabricating a gate dielectric layer for a thin film transistor. This invention describes a procedure for creating a composite gate dielectric layer, which involves thermally growing a thin silicon oxide gate dielectric layer on an active semiconductor layer, such as polysilicon. The process includes a first anneal procedure that improves parametric integrity. Additionally, a thicker silicon oxide gate dielectric layer is thermally deposited, resulting in a densified composite layer. Another patent details a conductive black matrix layer for liquid crystal display devices, which incorporates an array of opaque conductive elements positioned above each thin film transistor. This design minimizes the impact on planarity while ensuring effective connectivity.
Career Highlights
Richard Bullock is currently employed at International Rectifier Corporation, where he continues to innovate in the field of electronics. His work has been instrumental in advancing technologies related to thin film transistors and liquid crystal displays.
Collaborations
Bullock collaborates with David Paul Jones, contributing to the development of cutting-edge technologies in their field.
Conclusion
Richard Bullock's contributions to the field of thin film transistors and liquid crystal displays demonstrate his commitment to innovation and excellence. His patents reflect a deep understanding of semiconductor technology and its applications in modern electronics.
