This inventor holds 1 USPTO granted patent. Top assignee: The United States of America as Represented by the Department of Health. Active years: 1986.
Company Filing History:
Years Active: 1986
Title: Paul Fitze: Innovator in Molecular Weight Measurement
Introduction
Paul Fitze is a notable inventor based in Mount Airy, MD (US). He has made significant contributions to the field of molecular weight measurement through his innovative patent. His work is recognized for its potential applications in various scientific and medical fields.
Latest Patents
Fitze holds a patent for an automated system designed for determining the molecular weight and sedimentation coefficient of optically absorbing solutes. This system utilizes monochromatic light that passes through a stationary slit and a centrifuged sample in a tube. The tube is moved vertically at a uniform rate by a motor-driven platform. The transmitted light is detected by a photodetector, which provides absorbance readings. This data is processed digitally by a microcomputer to calculate the molecular weight and/or sedimentation coefficient. The design includes a transparent cuvette that supports the centrifuge tube, allowing for precise measurements.
Career Highlights
Fitze's career is marked by his work with the United States of America as represented by the Department of Health. His innovative approach to molecular weight determination has positioned him as a key figure in his field. His patent reflects a blend of engineering and scientific principles, showcasing his ability to bridge these disciplines effectively.
Collaborations
Fitze has collaborated with notable colleagues such as Allen P Minton and Arun K Attri. These partnerships have likely contributed to the development and refinement of his innovative systems.
Conclusion
Paul Fitze's contributions to the field of molecular weight measurement through his patented automated system highlight his innovative spirit and dedication to advancing scientific research. His work continues to influence the way molecular properties are analyzed and understood.
