Company Filing History:
Years Active: 2017-2020
Title: In Gon Kim: Innovator in Ultrasonic Sensor Technology
Introduction
In Gon Kim is a notable inventor based in Sejong-si, South Korea. He has made significant contributions to the field of ultrasonic sensor technology, holding a total of five patents. His work focuses on optimizing the performance and functionality of ultrasonic sensors, particularly in automotive applications.
Latest Patents
One of In Gon Kim's latest patents is a "System and method for optimizing driving of ultrasonic sensor." This innovation provides a system that includes an ultrasonic sensor unit positioned on the inner bottom surface of a vehicle's fuel tank. The sensor obtains a time of flight (TOF) measurement to calculate the distance from the inner bottom surface to the fuel surface. A central processing unit then uses this TOF data to calculate liquid level information and control the driving voltage of the ultrasonic sensor unit accordingly. Another significant patent is for a "Fuel tank for vehicle," which features a fuel measure bar that utilizes ultrasonic waves to measure fuel amounts. This design includes a first fuel measure bar fixed to the bottom surface of the fuel storing body and a second bar that can be easily coupled and uncoupled for maintenance.
Career Highlights
In Gon Kim is currently employed at Coavis, where he continues to develop innovative solutions in the field of ultrasonic sensors. His expertise and dedication to advancing technology have made him a valuable asset to his company and the industry.
Collaborations
In his professional journey, In Gon Kim has collaborated with talented individuals such as Se Jin Kim and Jong Hyuk Yoon. These collaborations have contributed to the successful development of his patented technologies.
Conclusion
In Gon Kim is a prominent inventor whose work in ultrasonic sensor technology has led to significant advancements in automotive applications. His innovative patents reflect his commitment to enhancing the functionality and efficiency of fuel measurement systems.