This inventor holds 1 USPTO granted patent. Top assignee: Intel Corporation. Active years: 2020.
Company Filing History:
Years Active: 2020
Title: Bartosz Spitzbarth: Innovating Graphics Processing in Gdansk, Poland
Introduction
Bartosz Spitzbarth is an innovative inventor based in Gdansk, Poland. With a passion for advancements in graphics processing technology, he holds a significant patent that showcases his expertise in the field. His work contributes to enhancing the efficiency of graphical computations used in various applications.
Latest Patents
Bartosz holds a patent for a "Method and apparatus for efficient processing of derived uniform values in a graphics processor." This invention addresses the need for low-frequency calculation of derived uniform values through a compiler that identifies shader portions for optimal processing. By segregating calculations based on constant values and prior function results, his method allows derived uniform values to be computed at a lower frequency compared to processing for every pixel, thus improving efficiency in graphics rendering.
Career Highlights
Bartosz is currently employed at Intel Corporation, where he utilizes his skills and knowledge in graphics processing to contribute to various projects. His background and experience at one of the leading technology companies bolster his innovative endeavors within the industry.
Collaborations
At Intel Corporation, Bartosz collaborates with talented coworkers such as Travis T Schluessler and Aleksander Olek Neyman. Together, they work on projects that push the boundaries of technology and contribute to the advancement of graphics processing techniques.
Conclusion
Bartosz Spitzbarth represents the spirit of innovation in Gdansk, Poland, with his valuable contributions to the field of graphics processing. His patent highlights his commitment to enhancing computational efficiency, showcasing the impact one individual can have within the technology sector. Through his collaborative efforts at Intel Corporation, Bartosz continues to pave the way for future advancements in graphics processing.
