This inventor holds 1 USPTO granted patent. Top assignee: Sensormedics Corporation. Active years: 1984.
Company Filing History:
Years Active: 1984
Title: Michael B Jaffe: Innovator in Respiratory Gas Analysis
Introduction
Michael B Jaffe is a notable inventor based in Anaheim, CA. He has made significant contributions to the field of respiratory gas analysis, particularly through his innovative patent that enhances the accuracy of gas volume calibration in analyzers.
Latest Patents
Jaffe holds a patent for a "Respiratory gas analysis instrument having improved volume calibration." This invention presents an improved gas volume calibration method and apparatus for use in respiratory gas analyzers. The control unit in this device monitors the flow of calibration gas through the analyzer by tracking the electrical signals produced by a gas turbine and a breath switch. During the calibration process, a known volume of calibration gas is delivered to the analyzer from a calibration syringe at various flow rates. The control unit generates and stores a piecewise linear approximation of the nonlinear characteristic of the turbine based on the information received. This stored characteristic is utilized during subsequent measurements to eliminate volume errors associated with variations in the sample gas delivery rate, thereby improving measurement accuracy.
Career Highlights
Michael B Jaffe is associated with Sensormedics Corporation, where he has contributed to advancements in respiratory technology. His work has been instrumental in enhancing the performance and reliability of respiratory gas analyzers.
Collaborations
Jaffe has collaborated with notable colleagues such as Charles R Luper and Eric Mabry, contributing to a dynamic work environment that fosters innovation and development in respiratory analysis technologies.
Conclusion
Michael B Jaffe's contributions to respiratory gas analysis through his innovative patent demonstrate his commitment to improving medical technology. His work continues to influence the field, ensuring more accurate measurements in respiratory diagnostics.
