Location History:
- Susono, JP (2017)
- Kanagawa, JP (2018)
- Shizuoka, JP (2018)
- Yokosuka, JP (2018)
Company Filing History:
Years Active: 2017-2018
Title: Noritaka Taguchi: Innovator in Power Transmission Technology
Introduction
Noritaka Taguchi is a prominent inventor based in Kanagawa, Japan, known for his contributions to power transmission technology. With a total of four patents to his name, Taguchi has made significant advancements in the field, particularly in non-contact power receiving devices and impedance control systems.
Latest Patents
One of Taguchi's latest patents is a power transmitting communication unit. This invention features a coupling electrode of a communication coupler that is strategically positioned at an opening of a substrate. The design ensures that, when viewed from an orthogonal direction to the coil axial direction of a power transmission coil, the coupling electrode is located closer to the substrate than the coil end portion. This innovative arrangement enhances the efficiency of power transmission. Another notable patent is the impedance control device and vehicular non-contact power receiving device. This device includes a diode bridge rectifier circuit and a controller that adjusts the capacitance of variable units based on the impedance of a connected battery, optimizing performance and reliability.
Career Highlights
Throughout his career, Taguchi has worked with esteemed companies such as Yazaki Corporation and Toyota Motor Corporation. His experience in these leading automotive firms has allowed him to develop and refine his innovative ideas in power transmission technology.
Collaborations
Taguchi has collaborated with notable colleagues, including Shingo Tanaka and Satoru Horiuchi. Their combined expertise has contributed to the successful development of advanced technologies in their respective fields.
Conclusion
Noritaka Taguchi's work in power transmission technology exemplifies the impact of innovation in modern engineering. His patents reflect a commitment to enhancing efficiency and performance in power systems.