Location History:
- Hyogo, JP (2004 - 2007)
- Kobe, JP (2011)
Company Filing History:
Years Active: 2004-2011
Title: Naoyuki Takaishi: Innovator in Electronic Control Devices
Introduction
Naoyuki Takaishi is a prominent inventor based in Hyogo, Japan. He has made significant contributions to the field of electronic control devices, holding a total of 3 patents. His work focuses on enhancing the functionality and safety of electronic systems, particularly in automotive applications.
Latest Patents
One of Takaishi's latest patents is an electronic control device that includes an arithmetic device, such as a microcomputer, equipped with a watchdog timer circuit and a runaway monitoring circuit. This innovative device monitors the arithmetic device for operational failures by receiving pulse outputs, ensuring reliability through the detection of failure states based on an indication signal.
Another notable patent is for a vehicle-presence notifying apparatus and method. This apparatus is designed to notify the presence of a vehicle to its surroundings. It includes a control unit that operates an operating unit to generate an operation sound, a judging unit that determines the necessity of notifying the vehicle's presence, and a notifying unit that communicates this presence using the operation sound when required.
Career Highlights
Naoyuki Takaishi is currently employed at Fujitsu Ten Limited, where he continues to innovate and develop advanced electronic control systems. His work has been instrumental in improving vehicle safety and operational efficiency.
Collaborations
Throughout his career, Takaishi has collaborated with notable colleagues, including Masahiro Maekawa and Chie Shigenaga. These collaborations have contributed to the advancement of technology in their respective fields.
Conclusion
Naoyuki Takaishi is a distinguished inventor whose work in electronic control devices has made a significant impact on automotive technology. His innovative patents reflect his commitment to enhancing safety and functionality in electronic systems.