1 pcs : QN9080DHNY - RF System on a Chip - SoC QN9080DHN
    • 1 pcs : QN9080DHNY - RF System on a Chip - SoC QN9080DHN

    1 pcs : QN9080DHNY - RF System on a Chip - SoC QN9080DHN

    Allparts-UK/M/771-QN9080DHNY
    £24.32
    Delivery: 7-10 business days
    Quantity
    10 Items

    Description
    QN9080 BLE 5 System-on-Chip NXP Semiconductors QN9080 BLE 5 System-on-Chip (SoC) is a single chip, 10mW peak power, high-performance BLUETOOTH® Low Energy Solution for Bluetooth Smart applications such as sports and fitness, human interface devices, and app-enabled smart accessories. The QN9080 is specially designed for wearable electronics with a small capacity battery.
    Product Details
    Allparts-UK/M/771-QN9080DHNY
    QN9080DHNY
    10 Items

    Data sheet

    Manufacturer
    NXP
    Width
    6 mm
    Height
    0.85 mm
    Length
    6 mm
    Output power
    2 dBm
    Operating frequency
    2.4835 GHz
    Sensitivity
    - 91.5 dBm
    Series
    QN9080
    Maximum Operating Temperature
    + 85 C
    Minimum Operating Temperature
    - 40 C
    Mounting Style
    SMD/SMT
    Type
    Bluetooth
    Product Type
    RF System on a Chip - SoC
    Technology
    Si
    Interface Type
    I2C, SPI, USART, USB
    Package/Case
    HVQFN-48
    Core
    ARM Cortex M4F
    Product Category
    RF System on a Chip - SoC
    Program Memory Size
    512 kB
    Packaging
    Cut Tape
    RoHS
    Details
    Data RAM Size
    128 kB
    Maximum Clock Frequency
    32 MHz
    ADC Resolution
    16 bit
    Number of I/Os
    35 I/O
    Supply Voltage - Min
    1.62 V
    Supply Voltage - Max
    3.6 V
    Data Bus Width
    32 bit
    Brand
    NXP Semiconductors
    Data RAM Type
    SRAM
    Moisture Sensitive
    Yes
    Program Memory Type
    Flash
    Factory Pack Quantity Factory Pack Quantity
    3000
    Subcategory
    Wireless & RF Integrated Circuits
    Unit Weight
    10.899 mg
    Part # Aliases
    935359366518
    Maximum Data Rate
    2 Mbps
    Supply Current Receiving
    5 mA
    Supply Current Transmitting
    3.5 mA