Tyngsboro, MA, United States of America

James E Bradshaw


Average Co-Inventor Count = 2.7

ph-index = 6

Forward Citations = 346(Granted Patents)


Company Filing History:


Years Active: 1977-2006

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6 patents (USPTO):Explore Patents

Title: Innovations of James E. Bradshaw

Introduction

James E. Bradshaw is a notable inventor based in Tyngsboro, MA (US), recognized for his contributions to flow measurement technology. With a total of six patents to his name, he has made significant advancements in the field of ultrasonic measurement systems.

Latest Patents

One of his latest patents is a flow measurement system with reduced noise and crosstalk. This innovative system includes at least first and second ultrasonic transducers coupled to an existing conduit. It features a damping material about the conduit between the transducers to prevent crosstalk, as well as additional damping materials upstream and downstream of the transducers to attenuate background noise. Another significant patent is for a process and apparatus for ultrasonic measurement of volumetric flow. This apparatus employs ultrasonic transducers placed on opposite ends of a diameter several hundred feet up, with a small vertical separation between the transducers. It also includes apparatus for measuring acoustic velocity in the stack gas over short path lengths.

Career Highlights

Throughout his career, James has worked with prominent companies such as Panametrics, Inc. and Ge Infrastructure Sensing, Inc. His work has focused on enhancing the accuracy and reliability of flow measurement systems, contributing to various industrial applications.

Collaborations

James has collaborated with notable individuals in his field, including Lawrence C. Lynnworth and Norman E. Pedersen. Their combined expertise has furthered the development of innovative measurement technologies.

Conclusion

James E. Bradshaw's contributions to flow measurement technology through his patents and collaborations highlight his significant impact on the industry. His work continues to influence advancements in ultrasonic measurement systems.

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