Tokyo, Japan

Takuro Ichikawa


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: Takuro Ichikawa: Innovator in Height Measurement Technology

Introduction

Takuro Ichikawa is a notable inventor based in Tokyo, Japan. He has made significant contributions to the field of health care technology, particularly in the development of innovative measurement devices. His work focuses on enhancing the accuracy and efficiency of height measurement through advanced technology.

Latest Patents

Ichikawa holds a patent for a height measuring apparatus, which is designed to improve health care assessments. This device utilizes an ultrasonic receiver to capture ultrasonic waves reflected from various parts of a person's body. The user is required to input their approximate height, which aids in the measurement process. The apparatus also features an electrostatic capacitance sensor that measures mutual capacitance between its electrodes. A variable frequency pulse generator is employed to optimize the measurement by identifying the frequency at which mutual capacitance is minimized. This innovative approach allows for precise height determination based on the identified frequency.

Career Highlights

Takuro Ichikawa is currently employed at Renesas Electronics Corporation, where he continues to develop cutting-edge technologies. His work at the company has positioned him as a key player in the advancement of health care devices. Ichikawa's dedication to innovation is evident in his patent and ongoing projects.

Collaborations

Ichikawa collaborates with talented colleagues, including Kakeru Kimura and Masahito Kajiwara. Their combined expertise fosters a creative environment that drives technological advancements in their field.

Conclusion

Takuro Ichikawa's contributions to height measurement technology exemplify the impact of innovation in health care. His patent and work at Renesas Electronics Corporation highlight his commitment to improving measurement accuracy and efficiency.

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