This inventor holds 1 USPTO granted patent. Top assignee: Motorola Corporation. Active years: 2002.
Company Filing History:
Years Active: 2002
Title: Pradipto Mukherjee: Innovator in Semiconductor Routing Technology
Introduction
Pradipto Mukherjee is a notable inventor based in Austin, TX, who has made significant contributions to the field of semiconductor technology. His innovative approach to routing semiconductor nets has garnered attention in the industry, particularly for its potential to enhance the performance of integrated circuits.
Latest Patents
Mukherjee holds a patent for an "Iterative, noise-sensitive method of routing semiconductor nets using a delay noise threshold." This invention introduces a novel method for guiding the routing of nets in an integrated circuit model. The process begins with an approximate routing of all nets, similar to Steiner routing. It identifies victim nets that experience functional delay noise above predetermined thresholds. Each victim net is then detail routed, selecting a set of least noise aggressive neighboring nets. The segments of these neighboring nets are assigned tracks adjacent to the victim net, maximizing the utilization of neighboring tracks and minimizing noise interference. This iterative process continues until no additional victim nets remain, at which point the remaining nets are detail routed.
Career Highlights
Pradipto Mukherjee is currently employed at Motorola Corporation, where he applies his expertise in semiconductor technology. His work has been instrumental in advancing the methodologies used in integrated circuit design, particularly in noise management and routing efficiency.
Collaborations
Mukherjee has collaborated with notable colleagues, including David R. Bearden and Aurobindo Dasgupta. These partnerships have contributed to the development and refinement of his innovative routing methods.
Conclusion
Pradipto Mukherjee's contributions to semiconductor routing technology exemplify the impact of innovation in the field. His patented methods not only enhance the performance of integrated circuits but also pave the way for future advancements in semiconductor design.
