This inventor holds 8 USPTO granted patents and 2 published patent applications. Top assignee: National Applied Research Laboratories. Active years: 2012-2026.
Company Filing History:
Years Active: 2012-2026
Title: Innovations of Chung-Che Chou
Introduction
Chung-Che Chou is a prominent inventor based in Taipei, Taiwan. He has made significant contributions to the field of seismic wave technology and energy dissipation systems. With a total of 8 patents to his name, his work has the potential to enhance safety measures during seismic events.
Latest Patents
Chou's latest patents include a high-power seismic wave early warning method and system. This innovative method utilizes the earliest-arriving seismic wave to estimate the maximum power value of a later-arriving high-power seismic wave for a target site. When the estimated maximum power value exceeds a predetermined warning threshold, an earthquake early warning is transmitted to an early warning device located at the target site. Another notable patent is an energy dissipation device, which consists of a primary core module, a housing module, and various components designed to dissipate kinetic energy generated by external forces. This device effectively generates a retarding force during relative movement, thereby enhancing structural resilience.
Career Highlights
Chung-Che Chou is affiliated with the National Applied Research Laboratories, where he continues to develop innovative solutions in his field. His work is instrumental in advancing technologies that address critical safety concerns related to earthquakes and energy management.
Collaborations
Chou has collaborated with notable colleagues, including Ping-Ting Chung and Wen-Jing Tsai, contributing to a dynamic research environment that fosters innovation and development.
Conclusion
Chung-Che Chou's contributions to seismic wave technology and energy dissipation systems highlight his role as a leading inventor in Taiwan. His innovative patents not only advance scientific understanding but also enhance public safety during seismic events.