HomeNewsIndia NewsDiscovering the latest modules to address multi-protocol wireless connectivity for IoT applications

    Discovering the latest modules to address multi-protocol wireless connectivity for IoT applications

    Mouser Electronics, Inc., the New Product Introduction (NPI) leader empowering innovation, is now stocking the RS9116 family of modules from Redpine Signals. The RS9116 family provides reliable multi-protocol wireless connectivity for a broad range of low-power applications, including security cameras, industrial sensors, fitness bands, and smart locks, and Internet of Things (IoT) devices.

    The Redpine RS9116 modules, available from Mouser Electronics, support multi-protocol wireless connectivity with Bluetooth 5, dual-band (2.4 GHz and 5 GHz) 802.11abgn Wi-Fi, and 802.15.4 capable of running Thread or Zigbee. The RS9116 modules feature an integrated baseband processor with RF transceiver, calibration memory, high-power amplifier, and flash memory. The modules’ architecture enables optimized transitions between high-performance and low-power operating modes, allowing the devices to support a Wi-Fi standby associated power of less than 90 µA.

    Additionally, the devices include an ultra-low-power wake-up receiver with secure wake-up pattern to prevent battery drain attack. The RS9116 modules are available in either embedded (WiSeConnect) or hosted (n-Link) configurations for easy integration with different processor families and operating systems.

    Mouser is also stocking the RS9116 development tools. Available in single-band (2.4 GHz) and dual-band (2.4 GHz and 5 GHz) versions, the RS9116 Evaluation Kits provide a single platform that enables evaluation of both n-Link and WiSeConnect RS9116 modules. Each kit includes an RS9116 baseboard, wireless daughter card, and necessary cables, plus a sample driver and applications to test wireless functionality, security modes, and more.

    Click here for more information

    ELE Times Research Desk
    ELE Times Research Deskhttps://www.eletimes.ai
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