IP Library Granted Patent US 12689334
Granted Patent B2
US 12689334 · App. 18/192,835 · Granted Jul 21, 2026

Power amplifier circuit

Inventor: Yuri Honda (Kyoto, JP)
Assignee: Murata Manufacturing Co., Ltd.
H03F1/523H03F3/211H03F2200/06H03F2200/09H03F2200/426H03F2200/441
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Quick Facts
Patent No.
US 12689334
App. No.
18/192,835
Granted
Jul 21, 2026
Kind
B2
Abstract

A power amplifier circuit includes a first amplifier that operates in accordance with a first voltage supplied from a voltage supply source, amplifies a first signal, and outputs an amplification signal, a bias transistor that includes a base or a gate to which a bias control current is supplied and an emitter or a source supplying a bias to the first amplifier through a first resistor element, and a protection circuit that causes part of the bias control current to flow to a ground on the basis of the amplification signal and a second signal based on the first voltage.

Claims (66)

1 . A power amplifier circuit comprising:

a first amplifier configured to operate in accordance with a first voltage supplied from a voltage supply source, to amplify a first signal, and to output an amplification signal;

a bias transistor that has a base or a gate to which a bias control current is supplied, and an emitter or a source configured to supply a bias to the first amplifier through a first resistor; and

a protection circuit configured to cause part of the bias control current to flow to ground based on the amplification signal and a second signal based on the first voltage,

wherein the protection circuit comprises:

a first transistor that has a base or a gate connected to ground via a first capacitor, and an emitter or a source to which the amplification signal is input through a second capacitor; and

a second transistor that has a collector or a drain connected to the base or the gate of the bias transistor, a base or a gate connected to the emitter or the source of the first transistor, and an emitter or a source connected to ground,

wherein the second capacitor has a first end connected to a connection node between a second inductor and a third inductor and a second end connected the second transistor, and

wherein the emitter or source of the second transistor is connected to ground.

2 . The power amplifier circuit according to claim 1 , further comprising:

a second amplifier that is in a stage subsequent to the first amplifier; and

a bias supply circuit that is configured to supply a bias to the second amplifier based on a current supplied from a control current source,

wherein the base or the gate of the first transistor in the protection circuit is connected to the control current source.

3 . A power amplifier circuit comprising:

a first amplifier configured to supply power to a load;

a bias transistor that has a base or a gate to which a bias control current is supplied, and an emitter or a source configured to supply a bias to the first amplifier through a first resistor;

a protection circuit configured to cause part of the bias control current to flow to ground based on a third signal based on a change in the load;

a first differential pair that comprises a second amplifier and a third amplifier, and that is in a stage subsequent to the first amplifier;

a first clamp circuit that is between an output terminal of the second amplifier and ground, and that comprises a second diode; and

a second clamp circuit that is between an output terminal of the third amplifier and ground, and that comprises a third diode,

wherein the third signal is output from a cathode of the second diode and a cathode of the third diode.

4 . The power amplifier circuit according to claim 3 ,

wherein the first amplifier is configured to operate in accordance with a first voltage supplied from a voltage supply source, and

wherein the protection circuit is configured to cause the part of the bias control current to flow to ground based on a second signal based on the first voltage.

5 . The power amplifier circuit according to claim 3 , wherein the protection circuit comprises:

a first transistor that has a base or a gate connected to ground via a first capacitor, and an emitter or a source to which the third signal is input through a second capacitor; and

a second transistor that has a collector or a drain connected to the base or the gate of the bias transistor, a base or a gate connected to the emitter or the source of the first transistor, and an emitter or a source connected to ground.

6 . The power amplifier circuit according to claim 1 , wherein the base or the gate of the first transistor in the protection circuit is connected to the voltage supply source.

7 . The power amplifier circuit according to claim 5 ,

wherein the first amplifier is configured to operate in accordance with a first voltage supplied from a voltage supply source, and

wherein the base or the gate of the first transistor in the protection circuit is connected to the voltage supply source.

8 . The power amplifier circuit according to claim 6 , further comprising:

a voltage shift circuit that is connected between the base or the gate of the first transistor in the protection circuit and the voltage supply source, and that is configured to shift the first voltage,

wherein the voltage shift circuit comprises a first diode.

9 . The power amplifier circuit according to claim 7 , further comprising:

a voltage shift circuit that is connected between the base or the gate of the first transistor in the protection circuit and the voltage supply source, and that is configured to shift the first voltage,

wherein the voltage shift circuit comprises a first diode.

10 . The power amplifier circuit according to claim 1 , wherein the base or the gate of the first transistor in the protection circuit is connected to the base or the gate of the bias transistor.

11 . The power amplifier circuit according to claim 5 , wherein the base or the gate of the first transistor in the protection circuit is connected to the base or the gate of the bias transistor.

12 . The power amplifier circuit according to claim 10 , further comprising:

a second resistor that is connected between the base or the gate of the first transistor in the protection circuit and the base or the gate of the bias transistor.

13 . The power amplifier circuit according to claim 11 , further comprising:

a second resistor that is connected between the base or the gate of the first transistor in the protection circuit and the base or the gate of the bias transistor.

14 . The power amplifier circuit according to claim 3 , further comprising:

a fourth amplifier that forms, together with the first amplifier, a second differential pair; and

a third balun that is in a stage preceding the second differential pair,

wherein the third balun comprises:

a seventh inductor that has a first end connected to an input terminal of the power amplifier circuit, and a second end connected to the ground,

an eighth inductor that has a first end connected to an input terminal of the first amplifier, and a second end configured to output the third signal, the eighth inductor being electromagnetically coupled to the seventh inductor, and

a ninth inductor that has a first end connected to the second end of the eight inductor, and a second end connected to an input terminal of the fourth amplifier, the ninth inductor being electromagnetically coupled to the seventh inductor.

15 . The power amplifier circuit according to claim 5 , further comprising:

the second amplifier that is in a stage subsequent to the first amplifier; and

a bias supply circuit that is configured to supply a bias to the second amplifier based on a current supplied from a control current source,

wherein the base or the gate of the first transistor in the protection circuit is connected to the control current source.

16 . The power amplifier circuit according to claim 3 , further comprising:

a first balun that is between the first amplifier and the first differential pair,

wherein the first balun comprises:

a first inductor that has a first end connected to an output terminal of the first amplifier, and a second end connected to a low-impedance node,

a second inductor that has a first end connected to an input terminal of the second amplifier, and a second end configured to output the third signal, the second inductor being electromagnetically coupled to the first inductor, and

a third inductor that has a first end connected to the second end of the second inductor, and a second end connected to an input terminal of the third amplifier, the third inductor being electromagnetically coupled to the first inductor.

17 . The power amplifier circuit according to claim 3 , further comprising:

a second balun that is in a stage subsequent to the first differential pair,

wherein the second balun comprises:

a fourth inductor that has a first end connected to an output terminal of the power amplifier circuit, and a second end connected to ground,

a fifth inductor that has a first end connected to the output terminal of the second amplifier, and a second end configured to output the third signal, the fifth inductor being electromagnetically coupled to the fourth inductor, and

a sixth inductor that has a first end connected to the second end of the fifth inductor, and a second end connected to the output terminal of the third amplifier, the sixth inductor being electromagnetically coupled to the fourth inductor.