Fukuoka, Japan

Renshi Sawada

USPTO Granted Patents = 3 

Average Co-Inventor Count = 3.3

ph-index = 2

Forward Citations = 31(Granted Patents)


Company Filing History:


Years Active: 2013-2022

Loading Chart...
3 patents (USPTO):Explore Patents

Title: Renshi Sawada: Innovator in Flow Measurement Technology

Introduction

Renshi Sawada is a notable inventor based in Fukuoka, Japan. He has made significant contributions to the field of flow measurement technology, holding a total of 3 patents. His work focuses on improving measurement accuracy and reproducibility in liquid flow volume assessments.

Latest Patents

Renshi Sawada's latest patents include a flow volume measuring device and method, as well as a pressure measuring device and method. The flow volume measuring device is designed to enhance the accuracy of liquid flow measurements. It features a light source that emits light to a measuring-target region and a light receiving element that captures scattered light from this region. The device includes a translucent contact member that interacts with the measuring-target region, allowing for precise flow volume measurements based on the scattered light. Additionally, his force sensor invention incorporates a light-emitting unit and a pair of light detectors, which work together to measure force through the displacement of reflected diffuse light.

Career Highlights

Renshi Sawada has worked at prestigious institutions such as Kyushu University and The University of Tokyo. His experience in these academic environments has allowed him to develop innovative technologies that address real-world challenges in measurement accuracy.

Collaborations

Some of Renshi Sawada's notable coworkers include Eiji Higurashi and Toshihiro Takeshita. Their collaborative efforts have contributed to advancements in the field of flow measurement and sensor technology.

Conclusion

Renshi Sawada's contributions to flow measurement technology exemplify the impact of innovative thinking in engineering. His patents reflect a commitment to enhancing measurement accuracy, which is crucial for various applications in science and industry.

This text is generated by artificial intelligence and may not be accurate.
Please report any incorrect information to support@idiyas.com
Loading…