This inventor holds 2 USPTO granted patents. Top assignee: Sanyo Electric Co., Ltd.. Active years: 1998-2003.
Location History:
- Hyogo-ken, JP (1998)
- Akashi, JP (2003)
Company Filing History:
Years Active: 1998-2003
Title: Nobuaki Uwa: Innovator in Image Processing Technology
Introduction
Nobuaki Uwa is a notable inventor based in Akashi, Japan. He has made significant contributions to the field of image processing, particularly in the conversion of two-dimensional images into three-dimensional representations. With a total of 2 patents, Uwa's work has the potential to enhance visual experiences in various applications.
Latest Patents
Uwa's latest patents focus on innovative methods for transforming two-dimensional images into three-dimensional images. The first patent describes a method that involves creating a first image and a second image obtained by horizontally shifting the first image. By displaying these images almost simultaneously, viewers can perceive a three-dimensional effect, even from still images. The second patent outlines a technique that utilizes a series of frame images to create a three-dimensional effect by adjusting the frame difference based on the content of the image. This approach not only enhances the three-dimensional feeling but also reduces eye fatigue for viewers.
Career Highlights
Nobuaki Uwa is currently employed at Sanyo Electric Co., Ltd., where he continues to develop and refine his innovative ideas. His work at Sanyo has allowed him to collaborate with other talented professionals in the field, contributing to advancements in image processing technology.
Collaborations
Uwa has worked alongside notable colleagues such as Tetsuya Enomoto and Yukinori Kuwano. Their collaborative efforts have furthered the development of cutting-edge technologies in image processing.
Conclusion
Nobuaki Uwa's contributions to the field of image processing through his innovative patents demonstrate his commitment to enhancing visual technology. His work not only showcases his inventive spirit but also has the potential to significantly impact how we perceive images in various media.