Yachiyo, Japan

Masaomi Inagaki


Average Co-Inventor Count = 2.4

ph-index = 2

Forward Citations = 7(Granted Patents)


Location History:

  • Yachiyo, JP (1984)
  • Tokyo, JP (1985)

Company Filing History:


Years Active: 1984-1985

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2 patents (USPTO):Explore Patents

Title: Masaomi Inagaki: Innovator in Position Control Systems

Introduction

Masaomi Inagaki is a notable inventor based in Yachiyo, Japan. He has made significant contributions to the field of motor-driven mechanisms, particularly in position control systems. With a total of 2 patents, Inagaki's work showcases his expertise and innovative spirit.

Latest Patents

Inagaki's latest patents include a position control system designed for controlling a motor-driven mechanism capable of occupying multiple specified positions. This system utilizes a combination of switches, encoders, and a loading circuit to ensure precise control of the motor's movements. The system is particularly useful in tape recording and reproducing apparatus, offering four different operating modes. Another patent involves a position detecting signal generator that produces a signal corresponding to the reference phase of a rotor relative to the stator. This apparatus includes a Hall-effect element and an optical detector, which work together to generate position and speed signals for effective motor control.

Career Highlights

Masaomi Inagaki is currently employed at Sony Corporation, where he continues to develop innovative technologies. His work has had a significant impact on the advancement of motor control systems, enhancing the functionality and efficiency of various devices.

Collaborations

Inagaki has collaborated with notable coworkers such as Hiroshi Teranishi and Takashi Nakatsuyama. Their combined expertise has contributed to the successful development of advanced technologies in their field.

Conclusion

Masaomi Inagaki's contributions to position control systems and motor technology highlight his role as a leading inventor in the industry. His innovative patents and collaborations continue to influence advancements in motor-driven mechanisms.

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