Hamamatsu, Japan

Yoshiki Terada


Average Co-Inventor Count = 4.0

ph-index = 3

Forward Citations = 34(Granted Patents)


Company Filing History:


Years Active: 2004-2015

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3 patents (USPTO):Explore Patents

Title: Yoshiki Terada: Innovator in Strain Sensors and Probe Units

Introduction

Yoshiki Terada is a distinguished inventor from Hamamatsu, Japan, known for his contributions to flexible strained sensors and probe units. With a total of three patents to his name, he has made significant strides in enhancing the functionality and durability of these technologies.

Latest Patents

One of Terada's recent innovations is the "Flexible Strained Sensor with Protective Coating." This strain sensor features a flexible substrate, a carbon nanotube (CNT) film constituted of multiple aligned CNT fibers, and a pair of electrodes positioned at opposite ends. The protective coat made from a resin, water-based emulsion, or oil-based emulsion enhances the sensor's durability by preventing damage to the CNT film and safeguarding against foreign matter infiltrating the gaps between CNT fibers. This innovation marks a significant advancement in maintaining adequate sensing functionality.

Another notable patent is the "Probe Unit and Its Manufacture." This inventive probe unit is designed for attachment to a probe device used to test the functions of a test body. It consists of a substrate with probe pins formed through lithography that make contact with the electrodes of the test body. Additionally, a positioning member, also created using lithography, facilitates precise alignment of the substrate concerning the probe device.

Career Highlights

Yoshiki Terada's career includes impactful tenure at reputable organizations such as Yamaha Corporation and Shizuoka University. His experiences in these institutions have helped refine his expertise in sensor technology and enhance his innovative capabilities.

Collaborations

Throughout his journey as an inventor, Terada has collaborated with notable professionals in the field, including Atsuo Hattori and Shuichi Sawada. These collaborations not only reflect the cooperative spirit of the innovation community but also fostered the development of critical technologies under their joint efforts.

Conclusion

Yoshiki Terada's contributions to the fields of strain sensors and probe units underline his role as a valuable inventor. His ability to invent and improve upon existing technologies demonstrates a commitment to advancing innovation. With his ongoing work, the future prospects for sensor technology remain promising.

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