Location History:
- Manchester, CT (US) (2017)
- Glastonbury, CT (US) (2021)
- Trumbull, CT (US) (2021 - 2022)
Company Filing History:
Years Active: 2017-2025
Title: The Innovative Journey of Byung-Young Min
Introduction
Byung-Young Min is an accomplished inventor based in Trumbull, Connecticut. With an impressive portfolio of 7 patents, he has made significant contributions to the field of aerodynamics and rotorcraft design. His work emphasizes innovative solutions that enhance performance in rotary wing aircraft.
Latest Patents
Among his latest innovations, Byung-Young Min developed the "Aerodynamic Rotary Interface," which features a rotor assembly consisting of a fixed fairing with an interface portion and a hub fairing designed with a depression. This unique configuration allows the hub fairing to rotate relative to the fixed fairing. Additionally, his "High-Speed Rotor Blade Design" is groundbreaking, incorporating a single main rotor hub that allows for advanced manipulations of aerodynamic properties. This rotor blade's design includes intricate adjustments to the leading edge and trailing edge that optimize flight performance at various speeds.
Career Highlights
Throughout his professional journey, Byung-Young Min has held key positions at renowned companies such as Lockheed Martin Corporation and Sikorsky Aircraft Corporation. His experience at these prestigious organizations has equipped him with the skills necessary to drive innovation in rotorcraft technology.
Collaborations
Byung-Young Min has had the opportunity to work alongside talented individuals, including colleagues Brian Ernest Wake and Patrick Ormande Bowles. These collaborations have further enhanced his ability to push the boundaries of what is possible in aviation.
Conclusion
Byung-Young Min's contributions to the realm of inventions in rotary wing technology underscore his status as a leading inventor. With a remarkable track record of patents and significant industry experience, he continues to be a pivotal figure in advancing innovations that save time, improve efficacy, and increase safety in aviation.