QPF4509C00

    5 GHz Wi-Fi 7 High Power Nonlinear Front End Module

    Key Features

    • PSAT = +32 dBm
    • Corrected DEVM1
    • POUT = +21 dBm MCS13 EHT160 -43 dB Dynamic EVM
    • POUT = +22 dBm MCS11 HE80 -43 dB Dynamic EVM
    • POUT = +23.5 dBm MCS9 VHT80 -35 dB Dynamic EVM
    • POUT = +26 dBm MCS0 HT/HE20 Spectral Mask Compliance
    • DC Power = 1.10 W at +22 dBm
    • 30.5 dB Tx Gain
    • 1.5 dB Noise Figure
    • >25 dB 2.4 GHz Rejection on Rx Path
    • Integrated RF Coupler & DC Logarithmic Power Detector

    The Qorvo® QPF4509C00 is an integrated front end module (FEM) designed for Wi-Fi 7 (802.11be) systems. The compact form factor and integrated matching minimizes layout area in the application.

    Performance is focused on optimizing the PA efficiency for a supply voltage range that minimizes power consumption to allow for systems that use digital pre-distortion to achieve the highest linear output power and leading edge throughput for the RF chain. This is done across a extreme wide bandwidth enabling operation in all channels from UNII 1-3 (5.1 to 5.9 GHz).

    A coupler with RF output as well as a broadrange, constant slope voltage logarithmic power detector is provided for application feedback. The QPF4509C00 integrates a 5 GHz power amplifier (PA), single pole two throw switch (SP2T) bypassable low noise amplifier (LNA), an RF coupler and voltage detector into a single device.

    Typical Applications

      • Access Points
      • Wireless Routers
      • Residential Gateways
      • Customer Premise Equipment
      • Internet of Things
    Frequency Min(GHz) 5.17
    Frequency Max(GHz) 5.835
    Functionality nlPA, SW, LNA, CPLR, VDET
    Wi-Fi Standards Wi-Fi 7
    Vcc(V) 5
    11n Pout(dBm) 24
    11n EVM(dB) -30
    11n Current(mA) 290
    Tx Gain(dB) 30.5
    OP1dB(dBm) 30
    Rx Gain(dB) 15
    NF(dB) 1.8
    Bypass Loss(dB) 7
    Rx Current(mA) 20
    Package Type Laminate
    Package(mm) 3.0 x 3.0
    RoHS Yes
    Lead Free Yes
    Halogen Free Yes
    ITAR Restricted No
    ECCN 5A991G