IP Library Patent Application 11514152
Patent Application
App. No. 11/514,152

High-efficiency modulating RF amplifier

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Quick Facts
Patent No.
US None
App. No.
11/514,152
Abstract

The present invention, generally speaking, provides for high-efficiency power control of an amplifier apparatus. In one example of the present invention, the amplifier apparatus comprises a power control circuit for producing a specified signal using a magnitude signal and a power source in accordance with a control signal, produced independently of the RF input signal and an amplifier that has the specified signal as a supply signal and producing an RF output signal.

Claims (20)

1 - 6 . (canceled)

7 . RF amplification circuitry comprising:

a modulation encoder block responsive to a data input signal for producing as output signals a magnitude signal and a phase signal each describing corresponding characteristics of a desired RF output signal;

a carrier generation block responsive to the phase signal and to a tuning input signal for producing an RF carrier signal having a frequency determined in accordance with the tuning input signal and having a phase modulation characteristic determined in accordance with the phase signal;

a magnitude driver block responsive to the magnitude signal and to a power level input signal for producing at least one magnitude drive signal having a drive strength determined in accordance with both the magnitude signal and the power level input signal; and

RF power amplifier circuitry having at least one stage and having the magnitude drive signal as a supply voltage, the RF carrier signal causing the one stage to be driven repeatedly between two states, a hard-on state and a hard-off state, thereby producing an RF output signal;

wherein the RF power amplifier circuitry is controlled without continuous or frequent feedback adjustment of the RF output signal.

8 . The apparatus of claim 7 , wherein the magnitude driver block comprises:

a switch mode converter having a power input, a power output and a control input; and

a regulator having a power input, a power output and a control input, the power input of the regulator being coupled to the power output of the switch-mode converter; and

control circuitry responsive to the magnitude signal and the power level input signal for producing a first control signal coupled to the control input of the switch mode converter and a second control signal coupled to the control input of the regulator.

9 . The apparatus of claim 8 , further comprising a plurality of amplifier modules coupled in parallel, wherein the magnitude driver block is responsive to an overall magnitude signal for generating one or more magnitude drive signals, a magnitude drive signal being applied to each of the amplifier modules, each amplifier module comprising RF power amplifier circuitry having at least one stage and having a respective magnitude drive signal as a supply voltage, the RF carrier signal causing the one stage to be driven repeatedly between two states, a hard-on state and a hard-off state, thereby producing an RF output signal.

10 . The apparatus of claim 9 , wherein separate respective magnitude drive signals are generated for each of the RF power amplifiers.

11 . The apparatus of claim 9 , wherein a single magnitude drive signal is applied in common to all of the RF power amplifiers.

12 . A method of generating a modulated RF signal, comprising:

responsive to a data input signal, producing as output signals a magnitude signal and a phase signal each describing corresponding characteristics of a desired RF output signal;

responsive to the phase signal and to a tuning input signal, producing an RF carrier signal having a frequency determined in accordance with the tuning input signal and having a phase modulation characteristic determined in accordance with the phase signal;

responsive to the magnitude signal and to a power level input signal, producing at least one magnitude drive signal having a drive strength determined in accordance with both the magnitude signal and the power level input signal; and

applying the magnitude drive signal as a supply source to RF power amplifier circuitry having at least one stage, the RF carrier signal causing the one stage to be driven repeatedly between two states, a hard-on state and a hard-off state, thereby producing an RF output signal;

wherein the RF power amplifier circuitry is controlled without continuous or frequent feedback adjustment of the RF output signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2016
From: PANASONIC CORPORATION
To: INTEL CORPORATION
Reel/Frame 038141/0809 →