IP Library › Granted Patent US 9,735,739
Granted Patent B2
US 9,735,739 · App. 15/380,383 · Granted Aug 15, 2017

Power amplifier module

Inventors: Masao Kondo (Kyoto, JP); Hidetoshi Matsumoto (Kyoto, JP)
Assignee: MURATA MANUFACTURING CO., LTD.
H03F1/0222H03F3/19H03F3/245H03F2200/102H03F2200/105H03F2200/222H03F2200/318H03F2200/387H03F2200/451
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Quick Facts
Patent No.
US 9,735,739
App. No.
15/380,383
Granted
Aug 15, 2017
Kind
B2
Abstract

A power amplifier module includes an amplifier transistor and a bias circuit. A first power supply voltage based on a first operation mode or a second power supply voltage based on a second operation mode is supplied to the amplifier transistor. The amplifier transistor receives a first signal and outputs a second signal obtained by amplifying the first signal. The bias circuit supplies a bias current to the amplifier transistor. The bias circuit includes first and second resistors and first and second transistors. The first transistor is connected in series with the first resistor and is turned ON by a first bias control voltage which is supplied when the first operation mode is used. The second transistor is connected in series with the second resistor and is turned ON by a second bias control voltage which is supplied when the second operation mode is used.

Claims (38)

1. A power amplifier module comprising:

an amplifier transistor having a plurality of fingers and to which a first power supply voltage or a second power supply voltage is supplied based on a mode signal supplied to the power amplifier module, the amplifier transistor receiving a first signal and outputting a second signal obtained by amplifying the first signal; and

a bias circuit that supplies a bias current to the amplifier transistor,

the bias circuit including

a plurality of bias transistors connected in parallel, each of the plurality of transistors being turned ON by a bias control voltage based on a mode signal indicating an operation mode to be used to amplify the first signal; and

a first plurality of resistors;

a common node, wherein each one of the first plurality of resistors is connected at a first end to an emitter of a respective one of the plurality of bias transistors and at a second end to the common node; and

a second plurality of resistors,

wherein each one of the second plurality of resistors is connected at a first end to the common node and at a second end to a respective one of the plurality of fingers of the amplifier transistor, and

wherein each of the second plurality of resistors have the same resistance value.

2. The power amplifier module of claim 1 , wherein a first of the plurality of transistors is turned ON by a first bias control voltage which is supplied when the mode signal indicates that a first operation mode is to be used to amplify the first signal and a second of the plurality of transistors is turned ON by a second bias control voltage which is supplied when the mode signal indicates that a second operation mode is to be used to amplify the first signal.

3. The power amplifier module of claim 2 , wherein the first operation mode is a high power mode and the second operation mode is a low power mode.

4. The power amplifier module of claim 2 , wherein the first operation mode is an envelope tracking (ET) mode and the second operation mode is an average power tracking (APT) mode.

5. The power amplifier module according to claim 3 , wherein the first bias control voltage is greater than the second bias control voltage.

6. The power amplifier module according to claim 4 , wherein the first bias control voltage is greater than the second bias control voltage.

7. The power amplifier module of claim 2 , wherein when the amplifier transistor is a multi-finger transistor having N fingers, the plurality of transistors include N pairs of the first and second transistors.

8. The power amplifier module according to claim 1 , wherein the power amplifier module is a multi-stage amplifier comprising at least one amplifier transistor and corresponding bias circuits for each stage.

9. A power amplifier module comprising:

an amplifier transistor to which a first power supply voltage or a second power supply voltage is supplied based on a mode signal supplied to the power amplifier module, the amplifier transistor receiving a first signal and outputting a second signal obtained by amplifying the first signal; and

a bias circuit that supplies a bias current to the amplifier transistor,

the bias circuit including

at least three bias transistors connected in parallel, each of the bias transistors being turned ON by a bias control voltage based on a mode signal indicating an operation mode to be used to amplify the first signal; and

at least three resistors;

a common node, wherein each one of the at least three resistors is connected at a first end to an emitter of a respective one of the bias transistors and at a second end to the common node.

10. The power amplifier module according to claim 9 ,

wherein the amplifier transistor has a plurality of fingers,

wherein the bias circuit further comprises a second plurality of resistors connected at a first end to the common node and at a second end to a respective one of the plurality of fingers of the amplifier transistor, and

wherein each of the second plurality of resistors have the same resistance value.

11. The power amplifier module of claim 9 , wherein a first of the plurality of transistors is turned ON by a first bias control voltage which is supplied when the mode signal indicates that a first operation mode is to be used to amplify the first signal and a second of the plurality of transistors is turned ON by a second bias control voltage which is supplied when the mode signal indicates that a second operation mode is to be used to amplify the first signal.

12. The power amplifier module of claim 11 , wherein the first operation mode is a high power mode and the second operation mode is a low power mode.

13. The power amplifier module of claim 11 , wherein the first operation mode is an envelope tracking (ET) mode and the second operation mode is an average power tracking (APT) mode.

14. The power amplifier module according to claim 12 , wherein the first bias control voltage is greater than the second bias control voltage.

15. The power amplifier module according to claim 13 , wherein the first bias control voltage is greater than the second bias control voltage.

16. The power amplifier module of claim 10 , wherein a first power supply voltage is supplied to the amplifier transistor when the mode signal indicates that a first operation mode is to be used to amplify the first signal and a second power supply voltage is supplied to the amplifier transistor when the mode signal indicates that a second operation mode is to be used to amplify the first signal.

17. The power amplifier module of claim 16 , wherein the first operation mode is a high power mode and the second operation mode is a low power mode.

18. The power amplifier module of claim 16 , wherein the first operation mode is an envelope tracking (ET) mode and the second operation mode is an average power tracking (APT) mode.

19. The power amplifier module of claim 12 , wherein when the amplifier transistor is a multi-finger transistor having N fingers, the plurality of transistors include N pairs of the first and second transistors.

20. The power amplifier module according to claim 10 , wherein the power amplifier module is a multi-stage amplifier comprising at least one amplifier transistor and corresponding bias circuits for each stage.

Priority Claims (1)
JP 2015-070089 · Mar 30, 2015 · national
Continuity (2)
Continuation 15077124 · Mar 22, 2016
Related Publication 20170099034A1 · Apr 6, 2017