PLYMOUTH, MN, United States of America

Katherine Hauwiller


Average Co-Inventor Count = 8.0

ph-index = 1


Years Active: 2025

where 'Filed Patents' based on already Granted Patents

1 patent (USPTO):

Title: The Innovations of Katherine Hauwiller

Introduction

Katherine Hauwiller is a notable inventor based in Plymouth, Minnesota. He has made significant contributions to the field of medical technology, particularly through his innovative designs in implantable medical devices. His work has the potential to enhance patient care and improve the functionality of medical devices.

Latest Patents

Katherine Hauwiller holds a patent for an implantable medical device featuring a feedthrough antenna ground structure. This device includes a conductive canister, a printed circuit board assembly (PCBA), and a header. The design incorporates a feedthrough and ferrule that connect the interior of the canister, where the PCBA resides, to various elements in the header, such as an antenna or a port for lead coupling. The ferrule is directly attached to the conductive canister and the electronic circuit board, which carries an RF transmitter for telemetry purposes. The innovative design of the ferrule capacitively couples to the RF ground plane of the PCBA, providing an improved RF ground plane path to the conductive canister at a desired telemetry frequency.

Career Highlights

Katherine Hauwiller is associated with Cardiac Pacemakers, Inc., where he has been instrumental in developing advanced medical devices. His expertise in the field has led to the creation of technologies that can significantly impact patient outcomes.

Collaborations

Katherine has collaborated with notable colleagues, including Daniel Joseph Landherr and Ron A Balczewski. Their combined efforts have contributed to the advancement of medical device technology.

Conclusion

Katherine Hauwiller's innovative work in implantable medical devices showcases his commitment to improving healthcare technology. His patent reflects a significant advancement in the field, and his collaborations further enhance the impact of his contributions.

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