Tokyo, Japan

Kazuyuki Onoe

USPTO Granted Patents = 6 

Average Co-Inventor Count = 2.1

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 2013-2025

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6 patents (USPTO):Explore Patents

Title: Kazuyuki Onoe: Innovator in Semiconductor Technology

Introduction

Kazuyuki Onoe is a prominent inventor based in Tokyo, Japan. He has made significant contributions to the field of semiconductor technology, holding a total of 6 patents. His work focuses on the development of advanced semiconductor devices and optical elements.

Latest Patents

Onoe's latest patents include innovative designs for semiconductor devices and methods for their manufacturing. One notable patent describes a semiconductor device that features a main part consisting of a semiconductor substrate, a first cladding layer, an active layer, and a second cladding layer. This design incorporates both flat and mesa parts, enhancing the device's functionality. Another patent details a semiconductor optical element that includes a first cladding layer, a ridge-shaped second cladding layer, and an optical confinement layer. This configuration is designed to effectively propagate light, showcasing Onoe's expertise in optical integration.

Career Highlights

Kazuyuki Onoe is currently employed at Mitsubishi Electric Corporation, where he continues to push the boundaries of semiconductor technology. His work has been instrumental in advancing the capabilities of semiconductor devices, making them more efficient and effective for various applications.

Collaborations

Throughout his career, Onoe has collaborated with notable colleagues, including Kenichiro Kurahashi and Hidetoshi Koyama. These collaborations have fostered a creative environment that has led to numerous innovations in the semiconductor field.

Conclusion

Kazuyuki Onoe's contributions to semiconductor technology are significant and impactful. His innovative patents and collaborations with esteemed colleagues highlight his dedication to advancing this critical field. His work continues to influence the future of semiconductor devices and optical elements.

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