This inventor holds 4 USPTO granted patents. Top assignee: Omron Corporation. Active years: 2024-2026.
Company Filing History:
Years Active: 2024-2026
Title: Mamoru Sueki: Innovator in Semiconductor Protection Circuits
Introduction
Mamoru Sueki is a prominent inventor based in Kyoto, Japan. He has made significant contributions to the field of semiconductor technology, particularly in the area of overcurrent protection circuits. With a total of 4 patents to his name, Sueki continues to push the boundaries of innovation in his field.
Latest Patents
One of his latest patents is titled "Switching Circuit and Power Converter." This invention focuses on an overcurrent protection circuit designed to protect semiconductor devices from overcurrent at high speeds. The circuit includes a first transistor with an emitter connected to a control voltage and a second transistor that plays a crucial role in the protection mechanism. When the control voltage exceeds a specified threshold, both transistors activate, leading to a decrease in the control voltage and initiating a protection operation to turn off a switching element. The circuit also incorporates a first diode and an element circuit that can include a second diode and a resistor, enhancing its functionality.
Career Highlights
Mamoru Sueki is currently employed at Omron Corporation, a leading company in automation and control technology. His work at Omron has allowed him to develop innovative solutions that address critical challenges in semiconductor protection.
Collaborations
Throughout his career, Sueki has collaborated with notable colleagues, including Wataru Okada and Satoshi Iwai. These partnerships have fostered a creative environment that has led to the development of groundbreaking technologies.
Conclusion
Mamoru Sueki's contributions to semiconductor technology, particularly through his innovative patents, highlight his role as a key figure in the industry. His work continues to influence advancements in overcurrent protection circuits, ensuring the reliability and efficiency of semiconductor devices.
