Location History:
- Kanagawa, JP (2012)
- Tokyo, JP (2021 - 2023)
Company Filing History:
Years Active: 2012-2023
Title: Naoya Ota: Innovator in Semiconductor Technology
Introduction
Naoya Ota is a prominent inventor based in Tokyo, Japan. He has made significant contributions to the field of semiconductor technology, holding a total of 3 patents. His work focuses on enhancing the efficiency and functionality of electronic devices through innovative semiconductor solutions.
Latest Patents
Ota's latest patents include a semiconductor device, an electronic device, and an electronic system. The semiconductor device features a holding circuit that includes a buffer designed to obtain heat stress information with temperature dependency at predetermined intervals. It also incorporates a stress counter that accumulates this heat stress information, maintaining a cumulative stress count value. Additionally, a control circuit with an operation determination threshold value and a wireless communication circuit allows for the wireless transmission of cumulative heat stress information while minimizing power consumption. Another patent details a semiconductor device with a module that has a specific function, an error information acquisition circuit, and a stress acquisition circuit. This device is designed to store analysis data for evaluating the state of the semiconductor device, linking error information and stress accumulated values.
Career Highlights
Naoya Ota is currently employed at Renesas Electronics Corporation, a leading company in semiconductor solutions. His work at Renesas has positioned him as a key player in the development of advanced electronic systems.
Collaborations
Ota collaborates with notable colleagues such as Kan Takeuchi and Fumio Tsuchiya. Their combined expertise contributes to the innovative projects at Renesas Electronics Corporation.
Conclusion
Naoya Ota's contributions to semiconductor technology exemplify the impact of innovation in the electronics industry. His patents reflect a commitment to improving device performance and efficiency.