This inventor holds 3 USPTO granted patents. Top assignee: Electronic Engineering Company of California. Active years: 1977.
Company Filing History:
Years Active: 1977
Title: Innovations by Charles B Huntress
Introduction
Charles B Huntress is an accomplished inventor based in Orange, California. He has made significant contributions to the field of audio technology, particularly in the design of ear couplers and acoustic systems. With a total of 3 patents to his name, Huntress continues to innovate and improve the way sound is transmitted and received.
Latest Patents
Huntress's latest patents include an innovative ear coupler designed for use with stethoscopes. This self-forming ear plug element effectively transmits audio sound while rejecting ambient noise. The design features a conical portion with a sound-transmitting orifice that enters the ear, complemented by a thin, radially extensive shallow-conical acoustic flange. This flange conforms to the concha portion of the ear, enhancing the sound pressure level of the transmitted signal and significantly attenuating ambient noise. Another notable patent is the acoustic yoke, which is a 'U' shaped structure that retains a pair of ear couplers at a minimum effective pressure. This design allows for optimum adjustment of the couplers to the ears of the wearer and can be assembled and disassembled without adhesive.
Career Highlights
Huntress is currently employed at the Electronic Engineering Company of California, where he continues to develop innovative audio solutions. His work has been instrumental in advancing the technology used in acoustic systems, making them more effective and user-friendly.
Collaborations
Huntress collaborates with Henry Gabrielian, contributing to the development of new technologies and enhancing the capabilities of their products.
Conclusion
Charles B Huntress is a notable inventor whose work in audio technology has led to significant advancements in sound transmission. His innovative designs and patents reflect his commitment to improving user experience in acoustic systems.