This inventor holds 2 USPTO granted patents. Top assignee: Sick Engineering Gmbh. Active years: 2004-2005.
Company Filing History:
Years Active: 2004-2005
Title: Guenther Pfeifer: Innovator in Fluid Measurement Technology
Introduction
Guenther Pfeifer is a notable inventor based in Dresden, Germany. He has made significant contributions to the field of fluid measurement technology. With a total of 2 patents, his work focuses on enhancing measurement accuracy and reducing maintenance expenses in fluid dynamics.
Latest Patents
Pfeifer's latest patents include a "Device for measuring the flow rate and/or the flow throughput of a fluid." This innovative device utilizes ultrasound technology, featuring at least one ultrasonic transducer arranged on the outside of a pipeline wall. The design aims to improve measurement accuracy while minimizing maintenance costs by integrating a portion of the wall as part of the ultrasonic transducer. Another significant patent is the "Ultrasonic transducer system," which includes an ultrasound transducer and a filter that supports the transducer. This system is designed to suppress the transmission of ultrasound signals through the housing of the transducer arrangement, utilizing a vibration plate and a deflecting segment to convert radial movements into torsional movements.
Career Highlights
Guenther Pfeifer is currently employed at Sick Engineering GmbH, a company known for its advancements in sensor technology and automation solutions. His work at Sick Engineering has allowed him to apply his innovative ideas in practical applications, contributing to the company's reputation in the industry.
Collaborations
Pfeifer collaborates with various professionals in his field, including his coworker Volker Herrmann. Their combined expertise fosters an environment of innovation and development within their projects.
Conclusion
Guenther Pfeifer's contributions to fluid measurement technology exemplify the impact of innovation in engineering. His patents reflect a commitment to improving measurement techniques and enhancing the efficiency of fluid dynamics.
