This inventor holds 23 USPTO granted patents and 2 published patent applications. Top assignees: Computech International Ventures Limited, Cts Computer Technology System Corporation, Info Point Enterprises Limited. Active years: 1995-2005.
Location History:
- Nei-Hu Dist., Taipei City, TW (1995)
- Taipei City, TW (2001 - 2004)
- Taipei, TW (2001 - 2005)
Company Filing History:
Years Active: 1995-2005
Title: Innovator Ming-Tung Shen: Pioneering Semiconductor Technology in Taipei
Introduction
Ming-Tung Shen is a renowned inventor based in Taipei, Taiwan. With a portfolio of 23 patents, he has made significant contributions to the field of semiconductor technology. His expertise lies in developing innovative solutions that enhance the functionality and efficiency of semiconductor devices.
Latest Patents
Among his latest inventions is a "Contact-forming method" for semiconductor devices. This patent describes a sophisticated arrangement of metal and dielectric layers, enabling better access to solder pads while ensuring electrical isolation. Another notable patent is the "Semiconductor chip module," which details a design that incorporates a chip-mounting member with circuit traces and plated through holes, ultimately enhancing the electrical connectivity of semiconductor chips.
Career Highlights
Ming-Tung has previously worked at CTS Computer Technology System Corporation, where he collaborated on various innovative projects in semiconductor technology. His engineering expertise and forward-thinking approach have played an essential role in advancing the company's research and development goals.
Collaborations
Throughout his career, Ming-Tung has worked alongside fellow inventor I-Ming Chen. Their collaboration has led to groundbreaking advancements in the semiconductor industry, further solidifying their status as leading innovators in the field.
Conclusion
Ming-Tung Shen continues to push the boundaries of semiconductor technology through his numerous patents and collaborations. As technology evolves, his contributions remain vital in shaping the future of electronic devices and systems.