AVAtronics develops AI-enriched wideband active noise cancellation technology that selectively eliminates unwanted sounds while preserving audio quality for music and speech. This patent-protected solution is designed for ultra-low power applications, such as TWS earbuds, enhancing user experience in noisy environments.
Funding
$4.5M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Existing active noise cancellation (ANC) solutions often struggle to eliminate a wide range of unwanted sounds without sacrificing audio fidelity, particularly in ultra-low power applications like TWS earbuds. Many ANC technologies also lack adaptability to changing acoustic environments, resulting in suboptimal performance.
Solution
AVAtronics offers an AI-enriched wideband active noise cancellation (ANC) technology that selectively cancels unwanted sounds while preserving the quality of music and speech. Their solution utilizes a proprietary AI adaptation module, implemented as a light deep neural network, to optimize ANC performance in various environments. The technology is designed for integration into ultra-low power audio SoCs, FPGAs, and DSPs, making it suitable for applications such as TWS earbuds. By applying techniques from digital wireless telecom to acoustics, AVAtronics achieves a wide bandwidth for active noise cancellation.
Target Audience
The primary target audience includes manufacturers of TWS earbuds and other audio devices seeking to enhance user experience in noisy environments with an AI-powered, low-power ANC solution.
Features
- AI-driven adaptation to optimize noise cancellation in real-time
- Wideband ANC, cancelling noises up to 3KHz and beyond
- Implementation on ultra-low power audio SoCs for extended battery life
- Embedded software form factor compatible with various platforms (Audio SoCs, FPGAs, and DSPs)
- Selectively cancels unwanted sounds without compromising audio quality