Location History:
- Shiga, JP (2018 - 2019)
- Tokyo, JP (2018 - 2019)
Company Filing History:
Years Active: 2018-2019
Title: Daichi Nemoto: Innovator in Passenger Safety Technology
Introduction
Daichi Nemoto is a prominent inventor based in Tokyo, Japan, known for his contributions to passenger safety technology. With a total of six patents to his name, he has made significant advancements in the design and functionality of seat belts and restraint systems.
Latest Patents
Among his latest patents are innovative designs for a webbing for passenger restraint belts and a seat belt retractor. The webbing is designed to form a long passenger restraint belt that effectively restrains vehicle passengers. It incorporates warp and weft yarns woven orthogonally, with the warp yarn containing both conductive and non-conductive yarns. Notably, the non-conductive yarn is thicker than the conductive yarn. Additionally, his seat belt retractor and device aim to enhance occupant-restraining properties and energy absorption characteristics. This design features a spool that winds up the webbing, a shaft, and a locking base that can switch between rotating and non-rotating states. An energy absorption device is included to adjust the energy absorption amount based on the relative rotation speed between the spool and the shaft.
Career Highlights
Daichi Nemoto has worked with notable companies in the automotive safety industry, including Joyson Safety Systems Japan K.K. and Takata Corporation. His experience in these organizations has allowed him to develop and refine his innovative ideas in passenger safety.
Collaborations
Throughout his career, Daichi has collaborated with talented individuals such as Hayato Uchibori and Sadayuki Shimazaki. These partnerships have contributed to the successful development of his patented technologies.
Conclusion
Daichi Nemoto's work in passenger safety technology exemplifies his commitment to innovation and improvement in vehicle safety systems. His patents reflect a deep understanding of the complexities involved in designing effective restraint systems.