1 pcs : EFR32BG24B310F1536IJ42-BR - RF System on a Chip - SoC BG24, 2.4 GHz, 1536kB Flash, 256kB RAM, +4 dBm, Secure Vault High,

      Allparts-UK/M/634-ER320F1536IJ42BR
      £21.66
      Delivery: 7-10 business days
      Quantity
      10 Items

      Description
      EFR32BG24 Bluetooth Wireless SoCs Silicon Labs EFR32BG24 Bluetooth Wireless SoCs are designed for wireless connectivity using BLUETOOTH® Low Energy and BLUETOOTH mesh. The EFR32BG24 Bluetooth Wireless SoCs feature a high-performance 2.4GHz RF, low current consumption, an AI/ML hardware accelerator, and Secure Vault™. The device allows users of IoT to create smart, robust, and energy-efficient products that are secure from remote and local cyber-attacks.
      Product Details
      SILICON LABS
      Allparts-UK/M/634-ER320F1536IJ42BR
      EFR32BG24B310F1536IJ42-BR
      10 Items

      Data sheet

      Manufacturer
      Silicon Laboratories
      Sensitivity
      - 106.2 dBm
      Series
      EFR32BG24
      Maximum Operating Temperature
      + 125 C
      Minimum Operating Temperature
      - 40 C
      Mounting Style
      SMD/SMT
      Operating Temperature Range
      - 40 C to + 125 C
      Product Type
      RF System on a Chip - SoC
      Technology
      Si
      Interface Type
      SPI, UART
      Package/Case
      WLCSP-42
      Product Category
      RF System on a Chip - SoC
      Program Memory Size
      1536 kB
      Packaging
      Cut Tape
      RoHS
      Details
      Data RAM Size
      256 kB
      Maximum Clock Frequency
      78 MHz
      ADC Resolution
      12 bit, 16 bit
      Supply Voltage - Min
      1.71 V
      Supply Voltage - Max
      3.8 V
      Brand
      Silicon Labs
      Data RAM Type
      RAM
      Operating Supply Voltage
      3 V
      Program Memory Type
      Flash
      Factory Pack Quantity Factory Pack Quantity
      6000
      Subcategory
      Wireless & RF Integrated Circuits
      Tradename
      EFR32
      Supply Current Receiving
      4.2 mA
      Supply Current Transmitting
      11 mA