This inventor holds 1 USPTO granted patent and 1 published patent application and 1 EPO patent. Top assignee: Leica Instruments (Singapore) Pte. Ltd.. Active years: 2018.
Company Filing History:
Years Active: 2018
Title: Curdin Schlumpf: Innovator in Surgical Microscope Technology.
Introduction
Curdin Schlumpf is a notable inventor based in Winterthur, Switzerland. He has made significant contributions to the field of surgical microscopy, particularly with his innovative designs that enhance the functionality of surgical instruments.
Latest Patents
Curdin Schlumpf holds a patent for a "Pivotable optical assembly for a surgical microscope, in particular a zero-degree assistant's device." This invention provides a pivotable optical assembly that includes a microscope body interface for mounting the assembly on a microscope body. The assistant's module is designed to be pivotable about a pivot axis relative to the microscope body. The retaining system blocks the pivoting of the assistant's module, ensuring stability during surgical procedures. The retaining system features a moveable retaining element, a biasing member, and a hand-operable control element, which together facilitate the locking and releasing of the assistant's module.
Career Highlights
Throughout his career, Curdin Schlumpf has worked with prominent companies in the field of optical instruments. He has been associated with Leica Instruments, where he contributed to the development of advanced surgical microscopy technologies. His work has been instrumental in improving the precision and usability of surgical microscopes.
Collaborations
Curdin has collaborated with various professionals in the industry, including his coworker Michael Guentert. Their combined expertise has led to advancements in surgical microscopy and related technologies.
Conclusion
Curdin Schlumpf's innovative contributions to surgical microscopy demonstrate his commitment to enhancing medical technology. His patent for a pivotable optical assembly reflects his dedication to improving surgical outcomes through better instrument design.
