EP1362415A2

Power control of switched-mode power amplifiers with one or more stages

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 9 October 2021, 5 years ago.

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29 claims: 4 independent, 25 dependent

  1. 1
    Claims of equivalent WO 0229969 A2 What is clamed is:1. A method of generating a variable output signal using an amplifier device including a final amplification stage having at least three ports including an input port, an output port, and a power supply port, the method comprising: varying a signal applied to the power supply port of the amplifier device in order to control at least one of a power output and a modulation characteristic of an output signal of the amplifier device produced at the output port thereof;and selectively varying in amplitude an input signal applied to the input port of the amplifier device in accordance with a desired characteristic of the output signal of the amplifier device;wherein the final amplification stage has a drive signal causing the final amplification stage to be driven repeatedly between two states, a hard-on state and a hard- off state, without operating in a linear operating region for an appreciable percentage of time, the final amplification stage being controlled without continuous or frequent measurement and feedback adjustment of said variable output signal.
  2. 11
    An amplifier apparatus, comprising:at least a final amplification stage having at least three ports including an input port, an output port, and a power supply port;and control circuitry for: varying a signal applied to the power supply port of the final amplification stage in order to control at least one of a power output and a modulation characteristic of a variable output signal of the final amplification stage produced at the output port thereof;and selectively varying in amplitude an input signal applied to the input port of the final amplification stage in accordance with a desired characteristic of the output signal of the final amplification stage;wherein the final amplification stage has a drive signal causing the final amplification stage to be driven repeatedly between two states, a hard-on state and a hard- off state, without operating in a linear operating region for an appreciable percentage of time, the final amplification stage being controlled without continuous or frequent measurement and feedback adjustment of said variable output signal.
  3. 22
    An amplifier apparatus, comprising:at least a final amplification stage having at least three ports including an input port, an output port, and a power supply port;means for varying a signal applied to the power supply port of the final amplification stage in order to control at least one of a power output and a modulation characteristic of a variable output signal of the final amplification stage produced at the output port thereof;and means for selectively varying in amplitude an input signal applied to the input port of the final amplification stage in accordance with a desired characteristic of the output signal of the final amplification stage;wherein the final amplification stage has a drive signal causing the final amplification stage to be driven repeatedly between two states, a hard-on state and a hard- off state, without operating in a linear operating region for an appreciable percentage of time, the final amplification stage being controlled without continuous or frequent measurement and feedback adjustment of said variable output signal.
  4. 23
    A variable output signal RF power amplifier comprising:control means responsive to multiple different control signals for producing from a supply voltage multiple voltages within a range of voltages;and multiple power amplification stages, including a final amplification stage, each having one of said multiple voltages as a supply voltage;wherein the final amplification stage has a drive signal causing the final amplification stage to be driven repeatedly between two states, a hard-on state and a hard- off state, without operating in a linear operating region for an appreciable percentage of time, the final amplification stage being controlled without continuous or frequent measurement and feedback adjustment of said variable output signal.