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RF DC Blocking Biaser Broadband Radio Frequency Microwave Coaxial Bias 10-6000MH

$ 2.93

Availability: 93 in stock
  • Model: See description
  • MPN: Does Not Apply
  • Type: See description
  • Restocking Fee: No
  • Brand: Unbranded
  • Refund will be given as: Money Back
  • Return shipping will be paid by: Buyer
  • All returns accepted: Returns Accepted
  • Condition: New
  • Item must be returned within: 30 Days

    Description

    RF DC Blocking Biaser Broadband Radio Frequency Microwave Coaxial Bias 10-6000MH
    Features: 100% brand new and high quality
    This amplifier has a wide frequency range: gain stability, low noise figure, dynamic range.
    Increase the communication distance: Advantages, especially for a variety of RF receiver front circuits, increase the communication distance!
    Widely used in short wave: FM radio, remote control receiver, cable TV signal amplifier, Beidou, GPS satellite navigation, Bluetooth-compatible 2.4G, front RF WIFI receiver need a signal radio frequency amplification place small low noise.
    The board design is reasonable: beautiful, unusual.
    Low properties: it can be a perfect multi-circuit amplifier as ideal damping amplifiers.
    Specification: Color: Green
    Frequency range: 10-6000MHz
    Insertion loss: 0.3db @ 512MHz 0.45db @ 1575MHz
    Large voltage: 50V
    High: 500mA
    RF connector: SMA-K (outer inner screw hole)
    System impedance: 50 ohms
    Dimensions: 33mm x 33mm without connector
    DC: external DC power supply
    RF: RF signal terminal (this port can only transmit RF signals)
    RF + DC: RF DC offset (this port can transmit RF and DC offset)
    GND-: common ground terminal for DC power supply
    VCC +: DC power supply terminal
    Package Includes: 1 x DC Bias DC RF and microwave 10-6000MHz power supply module
    note: 1. Due to the difference between different monitors, the picture may not reflect the actual color of the item. We are sure that the style is the same as the pictures show.
    2. Please allow slight dimension difference due to different manual measurements.