IP Library Granted Patent US 10,312,867
Granted Patent B2
US 10,312,867 · App. 15/641,309 · Granted Jun 4, 2019

Methods, modules and devices for detecting a saturation condition of a power amplifier

Inventors: David Steven Ripley (Marion, IA); Philip John Lehtola (Cedar Rapids, IA)
Assignee: Skyworks Solutions, Inc.
H03F1/32H03F1/0211H03F1/0227H03F1/22H03F1/56H03F3/19H03F3/191H03F3/21H03F3/24H03F3/245H04B1/0475H04B1/40H04L25/0278H04L27/04H03F1/0261H03F1/30H03F1/302H03F2200/171H03F2200/451H03F2200/462H03F2200/555H03F2200/78H03G3/3042H04B2001/0408
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Quick Facts
Patent No.
US 10,312,867
App. No.
15/641,309
Granted
Jun 4, 2019
Kind
B2
Abstract

The present disclosure relates to methods, modules and devices for detecting and preventing occurrence of a saturation state in a power amplifier. A method is disclosed for detecting a saturation condition of a power amplifier, including monitoring a first base current of a first transistor of a cascade transistor pair of the power amplifier and a second base current of a second transistor of the cascade transistor pair. The method can also include generating a current ratio based on comparing the first base current and the second base current. The method can further include determining if the current ratio exceeds or satisfies a threshold value and modifying one or more operating characteristics of the power amplifier in accordance with a determination that the current ratio exceeds or satisfies the threshold value.

Claims (29)

1. A method for detecting a saturation condition of a power amplifier, comprising:

monitoring a first base current of a first transistor of a cascode transistor pair of the power amplifier and a second base current of a second transistor of the cascode transistor pair;

generating a current ratio based on comparing the first base current and the second base current;

determining if the current ratio exceeds or satisfies a threshold value; and

modifying one or more operating characteristics of the power amplifier in accordance with a determination that the current ratio exceeds or satisfies the threshold value.

2. The method of claim 1 wherein modifying the one or more operating characteristics of the power amplifier includes modifying at least one operating characteristic based on the current ratio.

3. The method of claim 1 wherein comparing the first base current and the second base current is performed by a current comparator coupled to the power amplifier.

4. The method of claim 1 wherein a value of the current ratio indicates that the power amplifier is in a compression state.

5. The method of claim 1 wherein modifying of the one or more operating characteristics is performed by a saturation controller coupled to the power amplifier.

6. The method of claim 5 wherein modifying one or more operating characteristics of the power amplifier includes modifying a supply voltage to the power amplifier.

7. The method of claim 5 wherein modifying one or more operating characteristics of the power amplifier includes modifying a radio-frequency signal to the power amplifier.

8. The method of claim 5 wherein modifying one or more operating characteristics of the power amplifier includes modifying a load impedance at an output of the power amplifier.

9. The method of claim 5 wherein modifying one or more operating characteristics of the power amplifier includes maintaining the power amplifier out of a state of saturation.

10. A power amplifier module comprising:

a power amplifier including a cascode transistor pair, the cascode transistor pair including a first transistor and a second transistor;

a current comparator configured to compare a first base current of the first transistor and a second base current of the second transistor to obtain a comparison value; and

a saturation controller configured to supply a first reference signal to a first operating module based on the comparison value, and configured to supply a second reference signal to a second operating module based on the comparison value.

11. The power amplifier module of claim 10 wherein the first operating module includes a voltage converter configured to modify a supply voltage provided to the power amplifier based at least in part on the first reference signal.

12. The power amplifier module of claim 11 wherein the saturation controller includes a digital-to-analog converter used to provide the first reference signal to the voltage converter.

13. The power amplifier module of claim 10 wherein the second operating module includes a radio-frequency attenuator configured to modify an amplitude of a radio-frequency input signal supplied to the power amplifier based at least in part on the second reference signal.

14. The power amplifier module of claim 13 wherein the radio-frequency attenuator is a digital attenuator.

15. The power amplifier module of claim 13 wherein the radio-frequency attenuator is an analog attenuator.

16. The power amplifier module of claim 10 wherein the saturation controller is further configured to supply a third reference signal to a third operating module based on the comparison value, the third operating module including an impedance matching network configured to modify a load impedance of a load line in electrical communication with the power amplifier based at least in part on the third reference signal.

17. The power amplifier module of claim 16 wherein the saturation controller is further configured to reduce compression of the power amplifier by modifying the load impedance of the load line.

18. The power amplifier module of claim 17 wherein the impedance matching network includes a switch capacitor and the saturation controller causes one or more switches of the switch capacitor to be opened or closed to modify the load impedance.

19. The power amplifier module of claim 10 wherein the saturation controller is further configured to maintain the power amplifier out of saturation based at least in part on the comparison value.

20. A wireless device comprising:

an antenna configured to at least transmit a signal from a transceiver, the signal being based at least in part on a radio frequency input signal supplied to a power amplifier of the transceiver; and

the transceiver including a power amplifier module, the power amplifier module including the power amplifier, a current comparator, and a saturation controller, the power amplifier including a cascode transistor pair, the cascode transistor pair including a first transistor and a second transistor, the current comparator configured to compare a base current of the first transistor and a base current of the second transistor to obtain a comparison value, the saturation controller configured to supply a first reference signal to a first operating module based on the comparison value, and configured to supply a second reference signal to a second operating module based on the comparison value.

Continuity (5)
Division 14867247 · Sep 28, 2015
Provisional Application 62097877 · Dec 30, 2014
Provisional Application 62097899 · Dec 30, 2014
Provisional Application 62097941 · Dec 30, 2014
Related Publication 20170302231A1 · Oct 19, 2017
Cited By (2)
US 12,483,213 US 12,627,264