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AMP MMIC RF Amplifier IC LNA 6XSON BGU8009 RF / IF and RFID

    Buy cheap AMP MMIC RF Amplifier IC LNA 6XSON BGU8009 RF / IF and RFID from wholesalers
     
    Buy cheap AMP MMIC RF Amplifier IC LNA 6XSON BGU8009 RF / IF and RFID from wholesalers
    • Buy cheap AMP MMIC RF Amplifier IC LNA 6XSON BGU8009 RF / IF and RFID from wholesalers
    • Buy cheap AMP MMIC RF Amplifier IC LNA 6XSON BGU8009 RF / IF and RFID from wholesalers
    • Buy cheap AMP MMIC RF Amplifier IC LNA 6XSON BGU8009 RF / IF and RFID from wholesalers
    • Buy cheap AMP MMIC RF Amplifier IC LNA 6XSON BGU8009 RF / IF and RFID from wholesalers

    AMP MMIC RF Amplifier IC LNA 6XSON BGU8009 RF / IF and RFID

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    Brand Name : NXP
    Model Number : BGU8009
    Certification : /
    Price : Negotiation
    Payment Terms : T/T
    Supply Ability : 9999999+PCS
    Delivery Time : 2-7 work days
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    AMP MMIC RF Amplifier IC LNA 6XSON BGU8009 RF / IF and RFID

    RF Amplifiers IC AMP MMIC LNA 6XSON BGU8009 RF/IF and RFID

    CategoriesRF/IF and RFID
    ManufacturerNXP
    PackagingReel - TR
    StatusActive
    Frequency1.559GHz to 1.61GHz
    P1dB-7dBm
    Gain18dB
    Noise Figure0.65dB
    RF TypeGalileo, GLONASS, GPS
    Supply Voltage - Operating1.5 V to 3.1 V
    Operating Supply Current4.4mA
    Test Frequency1.559GHz to 1.61GHz
    Case / Package6-XSON (1.1x0.9)
    Win Source Part Number093906-BGU8009
    Is this a common-used part?Yes
    PopularityHigh
    Fake Threat In the Open Market29 pct.
    Supply and Demand StatusSufficient

    The BGU8009 is, also known as the GPS1201M, a Low-Noise Amplifier (LNA) for GNSS receiver and LTE Band 32 down link applications. This BGU8009 is available in a small plastic 6-pin extremely thin leadless package. The BGU8009 requires one external matching inductor and one external decoupling capacitor. The BGU8009 adapts itself to the changing environment resulting from co-habitation of different radio systems in modern cellular handsets. It has been designed for low power consumption and optimal performance when jamming signals from co-existing cellular transmitters are present. At low jamming power levels, it delivers 18 dB gain at a noise figure of 0.65 dB. During high jamming power levels, resulting, for example from a cellular transmit burst, it temporarily increases its bias current to improve sensitivity.

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