This inventor holds 1 USPTO granted patent. Top assignee: Liston Scientific Corp.. Active years: 1994.
Company Filing History:
Years Active: 1994
Title: Wayne F Blackburn: Innovator in Infrared Gas Analysis
Introduction
Wayne F Blackburn is a notable inventor based in Irvine, CA. He has made significant contributions to the field of gas analysis, particularly with his innovative patent for an infrared gas mixture analyzer. His work has implications for various industries that require precise gas measurement and analysis.
Latest Patents
Wayne F Blackburn holds a patent for an infrared gas mixture analyzer. This invention features a pneumatic detector and a non-dispersive infrared analyzer that employs detector cell chambers in optical series. The design includes an auxiliary chamber that communicates with the front chamber to enhance the signal from the rear chamber, thereby balancing the signals from both chambers. Additionally, the invention utilizes xenon as a diluent gas in the detector chambers, combined with a mass flow detector to improve sensitivity. An improved synchronous detection method is also employed, utilizing a voltage-to-frequency circuit to convert the detector signal into a synchronous high-resolution digital signal. Furthermore, the invention incorporates an improved electrically pulsed source with low thermal mass and a large radiating area.
Career Highlights
Wayne F Blackburn is associated with Liston Scientific Corp., where he applies his expertise in gas analysis technologies. His innovative approach has positioned him as a key figure in the development of advanced analytical instruments.
Collaborations
Wayne has collaborated with notable colleagues, including Max D Liston and Todd I Harrison. Their combined efforts contribute to the advancement of technologies in the field of gas analysis.
Conclusion
Wayne F Blackburn's contributions to the field of infrared gas analysis demonstrate his innovative spirit and technical expertise. His patent for the infrared gas mixture analyzer showcases his commitment to improving measurement accuracy and sensitivity in gas analysis applications.