For the short-range wireless delivery of audio and multimedia, the performance capabilities of Bluetooth/Bluetooth Low Energy (BLE) and Wi-Fi are well understood to product designers and consumers alike. Bluetooth/BLE provides mobile friendly power efficiency, but with extremely low data rates (typically < 1Mbit/sec) and high latency compared to Wi-Fi. Bluetooth's low data rate forces compression to be used that increases audio latency and also reduces audio quality.
The Wi-Fi local area network communications standard, on the other hand, is well suited in many respects for high data throughput applications and supports a wider range/distance-but at a huge power penalty and long latency that makes Wi-Fi impractical for tomorrow's mobile apps.
The advent of ultra-wideband (UWB) technology presents a new and compelling short-range wireless option that blends the best of both worlds of Bluetooth and Wi-Fi (Figure 1). UWB achieves ultralow power and ultra-low latency, with up to 10x higher data throughput than BLE. It's optimized for high-quality audio and emerging AR/VR applications serviced by smart glasses and other wireless peripheral devices requiring higher data rates and lower latency.
UWB technology can provide more immediate benefits in the traditional audio domain, where it's applicable for the next generation of wireless headsets, speakers and more. UWB's promise to deliver "wired like" audio quality without the wires there's no compression needed-is enormously enticing for anyone who laments the loss of audio quality we experienced decades ago when we largely jettisoned wired audio connectivity in favor of mobile-friendly wireless audio devices.
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