This inventor holds 1 USPTO granted patent. Top assignee: Tomocube, Inc.. Active years: 2019.
Company Filing History:
Years Active: 2019
Title: Kyoohyun Kim: Innovator in 3D Refractive-Index Measurement
Introduction: Kyoohyun Kim, an accomplished inventor based in Suwon-si, South Korea, has made significant contributions to the field of optical measurement. With a singular patent to his name, Kim has focused his efforts on innovations that enhance the precision and speed of optical technologies.
Latest Patents: Kyoohyun Kim's latest patent involves a "Method and apparatus for measuring 3D refractive-index tomograms using high-speed wavefront shaper." This invention provides a groundbreaking method for obtaining 3D refractive-index tomograms with ultra-high speed and high precision. The process includes modifying the illumination angle and wavefront pattern of the incident ray via a wavefront shaper, directing this modified ray to a sample, and measuring the resultant 2D optical field through interferometry. Ultimately, this technology allows for the efficient generation of detailed 3D refractive-index tomograms from the captured data.
Career Highlights: Currently, Kim is affiliated with Tomocube, Inc., where he engages in innovative research and development. His focus on optical measurement technologies establishes him as a key player within his organization.
Collaborations: Throughout his career, Kyoohyun Kim has collaborated with notable colleagues, including YongKeun Park and Seungwoo Shin. Together, they strive to advance the boundaries of optical measurement techniques, leading to enhanced capabilities in various scientific and medical applications.
Conclusion: Kyoohyun Kim exemplifies the spirit of innovation within the field of optical technologies. His contributions, especially in 3D refractive-index measurement, not only demonstrate his technical prowess but also pave the way for future advancements in the industry. As he continues to grow his impact at Tomocube, Inc., the potential for transformative innovations remains significant.