Press Releases

Dec 18, 2019

Biamp Beamtracking™ Technology Receives U.S. Patent

BEAVERTON, Ore. — Biamp today announced that it has been awarded a patent from the U.S. Patent and Trademark Office for its Beamtracking™ technology used in its award-winning Parlé™ family of ceiling, tabletop, and pendant microphones. The innovative patented technology, combined with Biamp’s advanced signal processing algorithms, allows the microphones to track and mix voices intelligently from around a meeting room, enabling communications of unparalleled clarity.

“Our Parlé microphones are empowered by this patented Beamtracking technology,” said Joe Andrulis, Executive Vice President of Corporate Development for Biamp. “Beamtracking enables us to deliver truly extraordinary meeting room experiences by allowing Parlé microphones to provide participants with crystal clear sound whether they are in the room or collaborating remotely.”

“Ensuring that all meeting contributors are heard equally is a key component of any successful collaboration. We are focused on ensuring efficient exchanges of ideas in meeting spaces of all sizes and complexities, and Parlé, along with the rest of the Biamp conference room solutions, delivers that to our customers,” continued Andrulis.

The patent covers use of an array of microphone elements to create virtual microphone beams, which track human voices in a space and follows the talker when they change location within the room. The gain applied to each microphone beam is automatically adjusted, compensating as the presenter moves closer to or farther from a mic. For example, if they turn to write on a whiteboard or use an interactive display, it ensures that remote listeners hear other meeting participants at a constant, uniform volume without the volume peaks and fades commonly experienced with microphones not using this approach.

Beamtracking technology is built into several different microphone form factors for targeting different use scenarios: the TCM-X flush-mount ceiling, TTM-X tabletop, and TCM-1 pendant microphones. These compact, elegant designs are available for both Tesira® and Devio® conferencing solutions, bringing Biamp’s legendary audio quality to collaboration environments of all shapes and sizes.

Biamp’s combination of advanced technologies, elegant industrial design, and integration of the entire audio signal path — from microphone to speaker — onto a single cable type ensures that Biamp conference rooms sound better, look better, and are easier to install than any other system. The addition of the powerful SageVue™ browser-based management tool makes monitoring and managing deployed systems a familiar and comfortable process for technology managers.

More information on Biamp’s full product portfolio is available at www.biamp.com.

About Biamp Systems

Biamp® is a leading provider of innovative, networked media solutions that connect people through extraordinary audiovisual experiences. The company is recognized worldwide for delivering high-quality products and backing them with a commitment to exceptional customer service. 

The award-winning Biamp product suite includes Tesira™ digital signal processors, Parlé™ Beamtracking™ microphones and conferencing bars, Apprimo™ touch interfaces, Impera™ control systems, Cambridge™ sound masking solutions, Vocia™ networked public address and voice communication systems, Desono™ business audio loudspeakers, Community™ performance loudspeakers, and Evoko™ room and desk booking systems, among others. Biamp solutions are used in a wide range of applications, including conference rooms, hybrid work environments, open floor plans, performing arts venues, stadiums, courtrooms, hospitals, transportation hubs, classrooms, retail and hospitality environments, and government facilities.

Founded in 1976, Biamp is headquartered in Beaverton, Oregon, USA, with additional offices around the globe. For more information on Biamp, please visit www.biamp.com.

All trademarks and registered trademarks mentioned herein are the property of their respective owners.

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