Seoul, South Korea

Hee-Sung Yoon


Average Co-Inventor Count = 1.6

ph-index = 1

Forward Citations = 7(Granted Patents)


Location History:

  • Cheongju-si, KR (2016)
  • Seoul, KR (1997 - 2021)

Company Filing History:


Years Active: 1997-2021

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4 patents (USPTO):Explore Patents

Title: Hee-Sung Yoon: Innovator in Sensor Technology and Motor Design

Introduction

Hee-Sung Yoon is a prominent inventor based in Seoul, South Korea. He has made significant contributions to the fields of sensor technology and motor design, holding a total of 4 patents. His innovative work has been recognized in various industries, particularly in automotive and electronics.

Latest Patents

One of his latest patents is a method and system for verifying the normal operation of a negative pressure sensor of a brake booster. This invention provides a way to ensure that the negative pressure sensor is functioning correctly by comparing values measured by the sensor with those from other sensors that indirectly sense the booster negative pressure. Another notable patent involves a structure for measuring iron loss of a motor stator core. This structure includes an auxiliary core designed to accurately measure iron loss during the manufacturing process, enhancing the efficiency and reliability of motor design.

Career Highlights

Hee-Sung Yoon has worked with notable companies such as Daewoo Electronics Co., Ltd. and Hyundai Motor Company. His experience in these organizations has allowed him to apply his innovative ideas in practical settings, contributing to advancements in technology and engineering.

Collaborations

He has collaborated with talented individuals in his field, including Young-Kyun Son and Sung-Hyun Cho. These partnerships have fostered a creative environment that encourages the development of groundbreaking technologies.

Conclusion

Hee-Sung Yoon's contributions to sensor technology and motor design exemplify the impact of innovation in modern engineering. His patents reflect a commitment to improving functionality and efficiency in critical systems.

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