IP Library Granted Patent US 7,557,653
Granted Patent B2
US 7,557,653 · App. 11/876,484 · Granted Jul 7, 2009

Shared linearity maintenance in power amplifiers

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Quick Facts
Patent No.
US 7,557,653
App. No.
11/876,484
Granted
Jul 7, 2009
Kind
B2
Abstract

In some embodiments, a circuit includes a power amplifier including an input terminal configured to receive an input signal and an output terminal to provide an RF voltage, the output terminal coupled to a load, a current sensor configured to sense the current drawn by the power amplifier and provide a first sensor output signal dependent upon current consumption when the current exceeds a predetermined current threshold, a voltage sensor configured to sense the output power of the power amplifier and provide a second sensor output signal when the RF voltage during up ramp falls below a predetermined threshold voltage, and a summing circuit configured to receive the first and second sensor output signals and provide a feedback signal including a combination of a power dependent contribution and either of a voltage dependent contribution or a current dependent contribution.

Claims (36)

1. A circuit; comprising:

a power amplifier including an input terminal configured to receive an input signal and an output terminal to provide an RF voltage, the output terminal coupled to a load;

a current sensor configured to sense the current drawn by the power amplifier and provide a first sensor output signal dependent upon current consumption when the current exceeds a predetermined current threshold;

a voltage sensor configured to sense the output power of the power amplifier and provide a second sensor output signal when the RF voltage during up ramp falls below a predetermined threshold voltage; and

a summing circuit configured to receive the first and second sensor output signals and provide a feedback signal including a combination of a power dependent contribution and either of a voltage dependent contribution or a current dependent contribution.

2. The circuit of claim 1 , wherein the power amplifier is coupled to an external power controller using a serial peripheral interface (SPI).

3. The circuit of claim 1 , further comprising a serial peripheral interface adapted to receive a signal corresponding to a desired predetermined current threshold.

4. The circuit of claim 1 , further comprising a serial peripheral interface adapted to receive a signal corresponding to a desired predetermined threshold voltage.

5. A system, comprising:

a power amplifier module including

a current sensor to sense the current drawn by the amplifier and providing a first sensor output signal dependent upon current consumption when the current exceeds a predetermined current threshold,

a voltage sensor to sense the power output of the amplifier and produce a second sensor output signal when the RF voltage during up ramp falls below a predetermined voltage threshold, and

a summing circuit configured to receive the first and second sensor output signals and provide a hybrid feedback signal including a combination of a power dependent contribution and either of a voltage dependent contribution or a current dependent contribution; and

an automatic power controller coupled to the power amplifier module and configured to receive the hybrid feedback signal having a combination of a power dependent contribution and either of a voltage dependent contribution or a current dependent contribution.

6. The system of claim 5 , wherein the automatic power controller is coupled to the power amplifier module using a serial peripheral interface.

7. The system of claim 5 , wherein the hybrid feedback signal is received by a front-end circuit including the automatic power controller.

8. The system of claim 6 , wherein the predetermined current threshold is set via the serial peripheral interface.

9. The system of claim 6 , wherein the predetermined threshold voltage is set via the serial peripheral interface.

10. The system of claim 5 , further comprising an antenna coupled to the power amplifier.

11. A method comprising:

providing a first feedback signal for an amplifier connected to drive a load, the first feedback signal providing a signal having a magnitude dependent upon the load voltage when the load voltage falls below a predetermined voltage threshold;

providing a second feedback signal for the amplifier, the second feedback signal having a magnitude dependent upon the current drawn to power the amplifier when the current drawn exceeds a predetermined current threshold; and

adding either one of the first feedback signal and second feedback signal with a power dependent contribution signal and providing the combined signal as a hybrid feedback input to the amplifier.

12. The method of claim 11 , wherein the predetermined current threshold and the predetermined voltage threshold is set via a serial peripheral interface.

13. The method of claim 12 , wherein the predetermined current threshold and the predetermined voltage threshold is set using an automatic power controller.

14. A method, comprising:

sensing a dc current drawn by an amplifier configured to receive an input signal and deliver an output voltage to a load;

sensing an output voltage delivered to the load by the amplifier;

comparing the dc current drawn by the amplifier to a predetermined threshold current;

comparing the output voltage to a predetermined minimum output voltage;

providing a first feedback signal if the dc current exceeds the current threshold, the amplitude of the first feedback signal determined by the amount that the dc current exceeds the threshold current;

providing a second feedback signal if the dc current is less than the current threshold and if the output voltage is less than a predetermined minimum output voltage, the magnitude of the second feedback signal determined by the amount that the predetermined minimum output voltage exceeds the output voltage; and

adding either one of the first feedback signal and second feedback signal with a power dependent contribution signal; and

generating a hybrid feedback input signal to the amplifier based on the power dependent contribution and either one of the first feedback signal and the second feedback signal.

15. The method of claim 14 , wherein the predetermined current threshold and the predetermined voltage threshold is set via a serial peripheral interface.

16. The method of claim 15 , wherein the predetermined current threshold and the predetermined voltage threshold is set using an automatic power controller.

Assignments (8)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2020
From: INTEL CORPORATION
To: APPLE INC.
Reel/Frame 053518/0586 →
CONFIRMATORY ASSIGNMENT EFFECTIVE AS OF JANUARY 1, 2018 Recorded Aug 12, 2020
From: INTEL DEUTSCHLAND GMBH
To: INTEL CORPORATION
Reel/Frame 053477/0001 →
CHANGE OF NAME Recorded Nov 6, 2015
From: INTEL MOBILE COMMUNICATIONS GMBH
To: INTEL DEUTSCHLAND GMBH
Reel/Frame 037057/0061 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2012
From: INTEL MOBILE COMMUNICATIONS TECHNOLOGY GMBH
To: INTEL MOBILE COMMUNICATIONS GMBH
Reel/Frame 027556/0709 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2012
From: INFINEON TECHNOLOGIES DELTA GMBH
To: INTEL MOBILE COMMUNICATIONS TECHNOLOGY GMBH
Reel/Frame 027531/0108 →
CORRECTIVE ASSIGNMENT TO CORRECT THE EFFECTIVE DATE TO 09/30/2009 PREVIOUSLY RECORDED ON REEL 026685 FRAME 0165. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 15, 2011
From: INFINEON TECHNOLOGIES AG
To: INFINEON TECHNOLOGIES DELTA GMBH
Reel/Frame 026908/0766 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2011
From: INFINEON TECHNOLOGIES AG
To: INFINEON TECHNOLOGIES DELTA GMBH
Reel/Frame 026685/0165 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2007
From: CAMUFFO, ANDREA; LANGER, ANDREAS
To: INFINEON TECHNOLOGIES AG
Reel/Frame 020253/0495 →