This inventor holds 1 USPTO granted patent. Top assignee: General Dynamics Corporation, Electronics Division. Active years: 1983.
Company Filing History:
Years Active: 1983
Title: Innovations of Robert A. Sievers
Introduction
Robert A. Sievers is an accomplished inventor based in Escondido, California. He is known for his significant contributions to the field of electronics, particularly in the development of methods for forming metallic patterns on curved surfaces. His innovative approach has paved the way for advancements in various applications, including radome technology.
Latest Patents
Robert A. Sievers holds a patent for a method of forming metallic patterns on dielectric surfaces, specifically on radome surfaces that feature compound curves. This method involves several steps, including coating the radome with metal and then applying a photoresist. An electrical pattern is created on a photographic emulsion of a thin membrane used as a photo mask. A water-soluble adhesive, which remains stable during the exposure and development of the photoresist, is applied to the metallic surface. The photo mask is then pressed into position to conform to the curvature of the radome. After removing the photo mask, the electrical pattern is developed and etched onto the surface, resulting in a clear and well-defined pattern, even for small dimension segments.
Career Highlights
Robert A. Sievers has made notable contributions during his career at General Dynamics Corporation, Electronics Division. His work has been instrumental in advancing technologies that require precision and reliability in electronic components. His innovative methods have been recognized for their effectiveness in enhancing the performance of electronic devices.
Collaborations
Robert has collaborated with Thomas W. Kornbau, working together to push the boundaries of technology in their field. Their partnership has led to significant advancements and innovations that have benefited the industry.
Conclusion
Robert A. Sievers is a prominent inventor whose work has significantly impacted the electronics sector. His innovative methods for forming metallic patterns on curved surfaces demonstrate his expertise and commitment to advancing technology. His contributions continue to influence the development of electronic components and systems.
