Innosonix in Research Facilities

Amplify Acoustics, Accelerate Answers

Innosonix amplifiers have seen wide use in academic research facilities due to their high channel count, exceptional audio fidelity, and advanced DSP capabilities. Their flexible routing and precise control make them perfect for any experimental environment. Innosonix's industry leading technology ensures reliability and ease of integration, allowing researchers to focus on their work without worrying about technical limitations. With scalable solutions, Innosonix supports a wide range of audio research applications, from acoustic experiments to immersive audio simulations.

application-research-facility-hero

Channel count in small package

Having the ability to setup multiple permutations of an experiment or deploy hundreds of loudspeakers quickly is the key to increase productivity and efficiency in the research process. However, with this comes added and unwanted complications one being the amount of space technology that provides these advantages generally requires.

Innosonix devices provide you with the tools necessary to achieve precise results in a small package. 16, 24, or up to 32 channels of amplification in compact 1U or 2U variants.

MADI i/o

Having MADI available on our devices simplifies integration into existing setups as the protocol is widely used in various fields of research. It allows for the efficient transmission of multiple audio channels over a single cable, reducing clutter and simplifying complex setups.

With its low latency and high reliability, MADI ensures precise, real-time audio reproduction, crucial for experiments requiring accuracy. Paired with Innosonix’s advanced DSP and routing capabilities, MADI provides seamless integration, scalability, and flexibility, making it ideal for demanding research applications.

pexels-thisisengineering-3862626

Precise DSP

A huge factor of ensuring precision in your results in research very much depend on the quality of the technology that’s employed to conduct your research. In today’s fast paced result driven landscape, the technology also needs to allow for an efficient and productive workflow.

When it comes to ensuring precise results in your research you can rely on the DSP functionality built into each one of our devices. Innosonix makes it easy with our all-in-one DSP platform, giving you access to essential features like signal generators, impedance and phase analyzers, an offline editor, and remote device management through a WEB GUI.

application-research-facility-projectUnlock

Unlock Innosonix for Your Research Facility

Curious how Innosonix can elevate your next audio research project?

The 3D Audio and Applied Acoustics (3D3A) Lab at Princeton University’s Department of Mechanical and Aerospace Engineering is already leveraging Innosonix products to achieve impressive results.

Check out the link below to learn more!

Princeton University

The 3D Audio and Applied Acoustics ( 3D3A ) Laboratory in the Department of Mechanical and Aerospace Engineering at Princeton University, founded in 2008 by Professor Edgar Choueiri, became operational in early 2009 and was fully equipped later that year with an instrumented anechoic chamber. The lab's establishment was made possible by a research grant from the Shostack Foundation to study the fundamental aspects of spatial hearing in humans. Subsequent funding came from Sony Group Corporation, Focal-JMLab, Tesla Inc., and currently Masimo Corporation. The lab's research encompasses various related topics, including sound field control, spatial hearing, auralization, 3D audio, binaural audio through speakers, crosstalk cancellation, and advanced hearing aids. ‍Innosonix

Learn more