Location History:
- Newark, NJ (US) (1983)
- Wilmington, DE (US) (2005 - 2009)
Company Filing History:
Years Active: 1983-2009
Title: Innovations of John P Berting
Introduction
John P Berting is a notable inventor based in Wilmington, DE. He has made significant contributions to the field of rheometry, holding a total of 6 patents. His work focuses on enhancing the measurement and control of rheological properties, which are crucial in various scientific and industrial applications.
Latest Patents
One of his latest patents is titled "System and method for dynamically controlling operation of rheometric instruments." This invention describes a program created on a programming interface for executing tests on samples in a rheometer. The system allows users to select nodes and connections, indicating steps for performing tests or configuring the rheometer. Scripts are generated to provide a sequence of instructions, which are then executed by the rheometer.
Another significant patent is "System and method for enhanced measurement of rheological properties." This invention features a sensor designed to measure small-angle or small-displacement positions of a rotational rheometer. It incorporates multiple independent capacitors arranged symmetrically, presenting its output as a standard bridge configured differential signal. This design allows for improved measurement accuracy by reducing sensitivity to unwanted signals.
Career Highlights
Throughout his career, John P Berting has worked with various companies, including Waters Investments Limited. His innovative contributions have advanced the field of rheometry, making him a respected figure in the industry.
Collaborations
John has collaborated with notable individuals such as Ron Garritano and Ronald F Garritano. These partnerships have likely contributed to the development and refinement of his inventions.
Conclusion
John P Berting's work in rheometry showcases his innovative spirit and dedication to advancing measurement technologies. His patents reflect a commitment to improving the accuracy and efficiency of rheological measurements, making a lasting impact in the field.