IP Library Granted Patent US 12700837
Granted Patent B2
US 12700837 · App. 18/319,784 · Granted Aug 4, 2026

Radio frequency module and communication device

Inventor: Masakazu Hirobe (Kyoto, JP)
Assignee: Murata Manufacturing Co., Ltd.
H03F3/245H03F1/56H03F2200/171H03F2200/387H03F2200/451
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Quick Facts
Patent No.
US 12700837
App. No.
18/319,784
Granted
Aug 4, 2026
Kind
B2
Abstract

A radio frequency module includes a first power amplifier, a second power amplifier, a filter, a switch, and a matching circuit. The first power amplifier outputs a first amplified signal. The second power amplifier outputs a second amplified signal. The filter allows the first amplified signal and the second amplified signal to pass through. The switch has a first terminal and a second terminal. The first terminal is connected to an output portion of the first power amplifier. The second terminal is connected to the filter. The switch changes over connection and disconnection of the first terminal and the second terminal. The matching circuit is connected between an output portion of the second power amplifier and a signal path between the second terminal of the switch and the filter.

Claims (27)

1 . A radio frequency module, comprising:

a first power amplifier configured to amplify a first signal and to output a first amplified signal;

a second power amplifier configured to amplify a second signal with an amplification factor smaller than an amplification factor of the first power amplifier, and to output a second amplified signal;

a filter configured to pass the first amplified signal and the second amplified signal;

a switch having a first terminal connected to an output of the first power amplifier and a second terminal connected to the filter, and configured to change connection and disconnection of the first terminal and the second terminal; and

a matching circuit connected between an output of the second power amplifier and a first signal path, the first signal path being between the second terminal of the switch and the filter,

wherein the switch is not in a signal path between the output of the second power amplifier and the filter.

2 . The radio frequency module according to claim 1 , wherein the matching circuit comprises a plurality of stages configured to process the second amplified signal of the second power amplifier and to output a processed signal, and a high pass filter in a final stage of the plurality of stages.

3 . The radio frequency module according to claim 2 , wherein the matching circuit further comprises:

a capacitor connected in series with the second power amplifier in a second signal path, the second signal path being different from the first signal path and being between the output of the second power amplifier and the second terminal of the switch; and

an inductor connected between the second signal path and ground.

4 . The radio frequency module according to claim 2 , wherein the matching circuit further comprises:

an inductor connected in series with the second power amplifier in a second signal path, the second signal path being different from the first signal path and being between the output of the second power amplifier and the second terminal of the switch; and

a capacitor connected between the second signal path and ground.

5 . The radio frequency module according to claim 2 , wherein a cutoff frequency of the high pass filter is lower than a frequency of the second amplified signal outputted from the second power amplifier.

6 . The radio frequency module according to claim 1 , wherein when +1 and −1 of a real part of a reflection coefficient corresponding to impedance of the matching circuit respectively correspond to infinity and zero of the impedance, the real part of the reflection coefficient has a value of 0.7 or more and 1 or less.

7 . The radio frequency module according to claim 1 , wherein a bias current of the second power amplifier is zero in a disconnection state of the switch.

8 . The radio frequency module according to claim 1 , wherein when +1 and −1 of a real part of a reflection coefficient corresponding to impedance of the matching circuit respectively correspond to infinity and zero of the impedance, a phase angle representing the reflection coefficient in polar coordinates has a value of −45 degrees or more and +45 degrees or less.

9 . A communication device, comprising:

the radio frequency module according to claim 1 ; and

a signal processing circuit connected to the radio frequency module and configured to process a radio frequency signal.

10 . The radio frequency module according to claim 1 , further comprising:

a third power amplifier configured to amplify a third signal with an amplification factor smaller than the amplification factor of the first power amplifier, and to output a third amplified signal;

a second filter configured to pass the first amplified signal and the third amplified signal; and

a second matching circuit,

wherein the switch further comprises a third terminal connected to the second filter and is further configured to change connection and disconnection of the first terminal and the third terminal, and

wherein the second matching circuit is connected between an output of the third power amplifier and a signal path between the third terminal of the switch and the second filter.