Key Takeaways
- Qualcomm introduces Snapdragon Sound Elite Gen 2 with micro-power Wi-Fi 6E.
- The new chip allows earbuds to connect directly to home Wi-Fi networks.
- This technology aims to provide high-quality lossless audio without connection issues.
Qualcomm has unveiled its latest advancement in wireless audio technology with the Snapdragon Sound Elite Gen 2. This new chip integrates micro-power Wi-Fi 6E directly into the earbud hardware, enabling seamless and high-quality audio streaming.
The primary feature of the Snapdragon Sound Elite Gen 2 is its ability to connect directly to a home Wi-Fi network, bypassing the need for a smartphone as a central hub. This innovation promises to deliver lossless audio, a significant improvement over traditional Bluetooth connections.
According to Qualcomm, this technology addresses the common issue of audio cutting out when users move away from their smartphones. By connecting directly to the Wi-Fi network, the earbuds can maintain a stable and high-quality audio stream, even when the phone is out of range.
Qualcomm previously attempted to address these issues with the S7 Pro sound platform and its Expanded Personal Area Network (XPAN) technology. However, the new Snapdragon Sound Elite Gen 2 is seen as a more refined and integrated solution.
The company claims that this technology will be available in a range of devices, including earbuds and audio glasses, making high-quality wireless audio more accessible to consumers.
While the exact release date and compatibility with existing devices have not been disclosed, Qualcomm is optimistic about the potential of this technology to revolutionize the wireless audio market.
The integration of micro-power Wi-Fi 6E into the chip is designed to reduce power consumption and improve overall performance, making it suitable for extended use without battery drain.
Industry experts are cautiously optimistic about the potential of Snapdragon Sound Elite Gen 2. However, they emphasize the need for real-world testing to confirm its performance and reliability.





