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FET monolithic microwave integrated circuit variable attenuator

  • US 4,890,077 A
  • Filed: 03/28/1989
  • Issued: 12/26/1989
  • Est. Priority Date: 03/28/1989
  • Status: Expired due to Fees
First Claim
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1. On a microstripline MMIC, a circuit for attenuating an RF microwave input signal in response to a single control signal, the circuit adapted to receive a first reference voltage, the circuit comprising:

  • a circuit input port having an input impedance, for receiving the RF microwave input signal from a signal source having a source output impedance;

    the input signal having a frequency range between about 2 GHz and about 20 GHz;

    a circuit output port having an output impedance, for supplying an attenuation fraction of the RF microwave input signal to a load having a load input impedance;

    a control port for receiving a single control signal whose amplitude varies the attenuation fraction of the RF microwave input signal reaching the circuit output port;

    a first active variable conductance device having a first output lead coupled to the circuit input port, a second output lead coupled to the first reference voltage and a control lead D.C. coupled directly to the control port to receive the single control signal connected to shunt a signal at the RF circuit input port;

    a second active variable conductance device having a first output lead coupled to the circuit output port, a second output lead coupled to the first reference voltage and a control lead D.C. coupled directly to the control port to receive the single control signal, connected to shunt a signal at the RF circuit output port;

    a third active variable conductance device, having a first output lead coupled to the circuit input port, a second output lead coupled to the circuit output port and D.C. coupled directly to the control port to receive the single control signal, and a control lead coupled to a second reference voltage connected in series with the RF circuit input port and the RF circuit output port;

    the conductance of each active device being variable in response to the magnitude of the single control signal;

    a frequency dependent D.C. conductive circuit, coupled to the first and second output leads of the third conductive device, for shunting a fraction of the input signal across the third conductive device, where the sum conductance of the frequency dependent circuit and the third conductive device is substantially constant over the frequency range of the input signal, thereby extending the frequency response of the attenuator while linearizing circuit attenuation and maintaining a substantially constant input and output impedance;

    the varying conductance of the active devices varying the attenuation between the RF circuit input port and the RF circuit output port as the amplitude of the control voltage varies, while the input and output impedance is maintained substantially constant over a frequency range of about 2-20 GHz.

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