This inventor holds 1 USPTO granted patent and 3 published patent applications and 1 EPO patent. Top assignee: Arvos Gmbh. Active years: 2019.
Company Filing History:
Years Active: 2019
Title: Jens Hetzer - Innovator in Heat Exchange Technology
Introduction
Jens Hetzer is a notable inventor based in Kassel, Germany. He has made significant contributions to the field of heat exchange technology. His innovative approach has led to the development of a unique heat exchanger design that enhances efficiency in thermal management systems.
Latest Patents
Jens Hetzer holds a patent for a heat exchanger that features a first section, through which a first medium can flow, and a second section, through which a second medium can flow. During operation, a heat exchange occurs between the first and second mediums. The first section includes an inlet chamber and first tubes connected to the inlet chamber, as well as an outlet chamber and second tubes connected to the outlet chamber. The first tubes are closed at the ends facing away from the inlet chamber, while each second tube is partially arranged inside one of the first tubes. The end of the second tube that faces away from the outlet chamber is open to the interior of the respective first tube. The second section is equipped with an inlet means and an outlet means. This innovative design is aimed at improving the efficiency of heat transfer processes.
Career Highlights
Jens Hetzer is currently employed at Arvos GmbH, where he continues to work on advancements in heat exchange technology. His expertise and innovative mindset have positioned him as a valuable asset in his field.
Collaborations
Jens has collaborated with notable colleagues, including Aitzol Inchaurbe and Volker Paruch. Their combined efforts contribute to the ongoing development of innovative solutions in thermal management.
Conclusion
Jens Hetzer's contributions to heat exchange technology exemplify the impact of innovation in engineering. His patented designs and collaborative efforts continue to push the boundaries of efficiency in thermal systems.