This inventor holds 1 USPTO granted patent. Top assignees: The Charles Stark Draper Laboratory, Inc., United States of America as Represented by the Administrator of NASA. Active years: 2012.
Company Filing History:

Years Active: 2012
Title: Doug Zimpfer: Innovator in Inertial Measurement Technology
Introduction
Doug Zimpfer is an accomplished inventor based in Houston, TX (US). He has made significant contributions to the field of inertial measurement technology. His innovative approach has led to the development of a unique patent that enhances the reliability of inertial measurement data.
Latest Patents
Doug Zimpfer holds a patent for an "Integrated Rate Isolation Sensor." This invention provides a system for delivering fault-tolerant inertial measurement data. The system includes a sensor that measures an inertial parameter and a processor. Notably, the sensor has less accuracy than a typical inertial measurement unit (IMU). The processor plays a crucial role by detecting differences between data streams from two inertial measurement units. Upon identifying a discrepancy, it assesses whether one of the units has failed by comparing the data streams to the inertial parameter. This innovative solution addresses critical challenges in inertial measurement systems.
Career Highlights
Throughout his career, Doug Zimpfer has worked with prestigious organizations, including the Charles Stark Draper Laboratory, Inc. and NASA. His experience in these institutions has allowed him to refine his skills and contribute to groundbreaking projects in the field of inertial measurement.
Collaborations
Doug has collaborated with notable professionals in his field, including Tye Michael Brady and Tim Crain. These partnerships have fostered innovation and have been instrumental in advancing technology related to inertial measurement.
Conclusion
Doug Zimpfer's contributions to inertial measurement technology through his patent and collaborations highlight his role as a significant innovator in the field. His work continues to influence advancements in reliable measurement systems.