This inventor holds 2 USPTO granted patents. Top assignees: Combustion Engineering Co., Inc., Westinghouse Electric Company LLC. Active years: 1986-2001.
Company Filing History:

Years Active: 1986-2001
Title: Innovations of Kenneth R Rohde
Introduction
Kenneth R Rohde is a notable inventor based in Granby, CT (US). He has made significant contributions to the field of nuclear power and valve technology. With a total of 2 patents, his work reflects a commitment to advancing engineering solutions.
Latest Patents
One of Kenneth's latest patents is for a Multiple Reactor Containment Building. This innovation involves a nuclear power plant that includes at least two reactor vessels enclosed within a single containment building. In one embodiment, the reactor vessels and steam generators operate separately. In another, the reactor vessels jointly provide heat to a common header with multiple associated steam generators. A third embodiment integrates the reactor vessels completely through a single control and coolant system. His second patent is for a Method of and Apparatus for Determining the Position of a Movable Member. This invention senses the position of a valve member using a transducer mounted on the exterior of the valve housing. The transducer connects to a passive circuit that provides signals to determine the existence of a valve member position error.
Career Highlights
Kenneth has worked with prominent companies such as Combustion Engineering Company, Inc. and Westinghouse Electric Company LLC. His experience in these organizations has allowed him to develop and refine his innovative ideas.
Collaborations
Some of Kenneth's notable coworkers include William N Gardner and Justin Lloyd Ford. Their collaboration has likely contributed to the success of his inventions.
Conclusion
Kenneth R Rohde's contributions to the fields of nuclear power and valve technology demonstrate his innovative spirit and dedication to engineering advancements. His patents reflect a deep understanding of complex systems and a commitment to improving safety and efficiency in these critical areas.