Tokyo, Japan

Susumu Maniwa


Average Co-Inventor Count = 1.5

ph-index = 1


Company Filing History:


Years Active: 2024-2025

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4 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Susumu Maniwa

Introduction

Susumu Maniwa, an accomplished inventor based in Tokyo, Japan, holds three patents that reflect his significant contributions to the field of high-frequency technology. With a focus on advancing electronic components, Maniwa's work has paved the way for innovative solutions in modern electronics.

Latest Patents

Maniwa's most recent patents include the "Glass core wiring substrate incorporating high-frequency filter," the "high-frequency module using the same," and the "method of manufacturing glass core wiring substrate incorporating high-frequency filter." The glass core wiring substrate is noted for its exceptional high-frequency characteristics, allowing for more efficient conductor arrangements within the glass substrate. Additionally, his modular design and manufacturing methods illustrate a novel approach to integrating high-frequency filters into electronic components, enhancing overall performance.

Career Highlights

Maniwa is associated with Toppan Inc., a prestigious company known for its advancements in printing and electronics. His impressive portfolio of patents showcases his expertise and dedication to innovating high-frequency solutions that are crucial for contemporary electronic devices.

Collaborations

Throughout his career, Maniwa has collaborated with notable colleagues, including Masashi Sawadaishi and Noriko Kanou. This teamwork has enabled the development of cutting-edge technologies and has contributed to the success of his innovative projects.

Conclusion

In conclusion, Susumu Maniwa's inventive spirit and technical acumen have made a significant impact on the electronics industry. Through his patents and collaborations at Toppan Inc., he continues to drive innovation in high-frequency technology, showcasing his role as a pivotal figure in the advancement of modern electronic components.

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