IP Library › Granted Patent US 11,601,153
Granted Patent B2
US 11,601,153 · App. 16/837,458 · Granted Mar 7, 2023

High-frequency signal transmission-reception circuit

Inventors: Syunji Yoshimi (Kyoto, JP); Mizuho Ishikawa (Kyoto, JP)
Assignee: MURATA MANUFACTURING CO., LTD.
H04B1/40H01P5/08H03F3/19H03H7/0115H03F2200/294H03F2200/451
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Quick Facts
Patent No.
US 11,601,153
App. No.
16/837,458
Granted
Mar 7, 2023
Kind
B2
Abstract

A high-frequency signal transmission-reception circuit includes a plurality of band pass filter groups each including a plurality of band pass filter pairs; a first switch including a plurality of band pass filter-side terminal groups each including a plurality of band pass filter-side terminals, and an antenna-side terminal group; a plurality of couplers configured to output respective signal strengths of high-frequency signals transmitted on a plurality of transmission paths; and a second switch including an input terminal group electrically connected to the plurality of couplers, and an output terminal configured to output a detection signal output from one of the plurality of couplers. The first switch electrically connects one band pass filter-side terminal in one band pass filter-side terminal group and one antenna-side terminal, and also electrically connects one band pass filter-side terminal in another band pass filter-side terminal group and another antenna-side terminal.

Claims (47)

1. A high-frequency signal transmission-reception circuit comprising:

a plurality of band pass filter groups, each band pass filter group comprising a plurality of band pass filter pairs, each band pass filter pair comprising at least one band pass filter;

a first switch comprising:

a plurality of band pass filter-side terminal groups, each band pass filter-side terminal group comprising a plurality of band pass filter-side terminals electrically connected to respective ones of the plurality of band pass filter pairs, and

an antenna-side terminal group electrically connected to a plurality of antennas including a first antenna and a second antenna via a plurality of transmission paths;

a plurality of couplers, each coupler being in a respective one of the plurality of transmission paths and configured to output respective detection signals, the detection signals representing a signal strength of a high-frequency signal transmitted on the respective transmission path;

a second switch comprising an input terminal group electrically connected to the plurality of couplers, and an output terminal configured to output a detection signal from one of the plurality of couplers;

a third switch comprising an input terminal to which a high-frequency transmission signal is input, and a terminal group electrically connected to a plurality of transmission band pass filters of a common band pass filter group, the transmission band pass filters being configured to band-pass the high-frequency transmission signal and the third switch being configured to electrically connect the input terminal to a first terminal in the terminal group;

a power amplifier electrically connected to the input terminal of the third switch and configured to output the high-frequency transmission signal to the input terminal of the third switch, such that the high-frequency transmission signal output from the power amplifier is supplied to one of the plurality of transmission band pass filters of the common band pass filter group via the third switch; and

a plurality of low noise amplifiers electrically connected to respective ones of a plurality of reception band pass filters in the common band pass filter group, the reception band pass filters being configured to band-pass a high-frequency reception signal, and the plurality of low noise amplifiers being configured to amplify high-frequency reception signals having passed through respective reception band pass filters without passing through the third switch,

wherein the first switch is configured to, based on the detection signals of the plurality of couplers:

electrically connect a band pass filter-side terminal in a first band pass filter-side terminal group of the plurality of band pass filter-side terminal groups to the first antenna, and

electrically connect a band pass filter-side terminal in a second band pass filter-side terminal group of the plurality of band pass filter-side terminal groups to the second antenna,

wherein the second switch is configured to electrically connect a terminal in the input terminal group to the output terminal.

2. The high-frequency signal transmission-reception circuit according to claim 1 , wherein the first switch:

further comprises an output terminal from which a high-frequency reception signal is output, and

is further configured to electrically connect the output terminal to one of the antenna-side terminals in the antenna-side terminal group.

3. The high-frequency signal transmission-reception circuit according to claim 2 , further comprising:

a reception band pass filter configured to band-pass a high-frequency reception signal, and

a low noise amplifier electrically connected to the reception band pass filter,

wherein the output terminal of the first switch is electrically connected to the reception band pass filter, and the first switch is further configured to output the high-frequency reception signal to the reception band pass filter.

4. The high-frequency signal transmission-reception circuit according to claim 1 ,

wherein a first band pass filter group further comprises a transmission-reception band pass filter configured to band-pass the high-frequency transmission signal and to band-pass a high-frequency reception signal,

wherein the first band pass filter-side terminal group of the first switch further comprises a band pass filter-side terminal electrically connected to a first end the transmission-reception band pass filter,

wherein the terminal group of the third switch further comprises a terminal electrically connected to a second end of the transmission-reception band pass filter, and

wherein the third switch further comprises an output terminal configured to output the high-frequency reception signal and is further configured to electrically connect the output terminal to the terminal electrically connected to the second end of the transmission-reception band pass filter.

5. The high-frequency signal transmission-reception circuit according to claim 4 , further comprising:

a reception band pass filter configured to band-pass a high-frequency reception signal, and

a low noise amplifier electrically connected to the reception band pass filter,

wherein the first switch:

further comprises an output terminal electrically connected to the reception band pass filter, and

is further configured to output the high-frequency reception signal to the reception band pass filter, and to electrically connect the output terminal to one antenna-side terminal in the antenna-side terminal group.

6. The high-frequency signal transmission-reception circuit according to claim 4 , further comprising:

a low noise amplifier electrically connected to the output terminal of the third switch and configured to amplify the high-frequency reception signal having passed through the transmission-reception band pass filter and the third switch.

7. The high-frequency signal transmission-reception circuit according to claim 6 , further comprising:

a reception band pass filter configured to band-pass a high-frequency reception signal, and

a low noise amplifier electrically connected to the reception band pass filter,

wherein the first switch:

further comprises an output terminal electrically connected to the reception band pass filter, and

is further configured to output the high-frequency reception signal to the reception band pass filter, and to electrically connect the output terminal to one antenna-side terminal in the antenna-side terminal group.

8. The high-frequency signal transmission-reception circuit according to claim 1 , further comprising:

a reception band pass filter configured to band-pass a high-frequency reception signal, and

a low noise amplifier electrically connected to the reception band pass filter,

wherein the first switch:

further comprises an output terminal electrically connected to the reception band pass filter, and

is further configured to output the high-frequency reception signal to the reception band pass filter, and to electrically connect the output terminal to one antenna-side terminal in the antenna-side terminal group.

9. The high-frequency signal transmission-reception circuit according to claim 1 , wherein a first band pass filter group of the plurality of band pass filter groups includes a first transmission-reception band pass filter, and a second band pass filter group of the plurality of band pass filter groups does not include a second transmission-reception band pass filter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2020
From: YOSHIMI, SYUNJI; ISHIKAWA, MIZUHO
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 052287/0480 →
Priority Claims (1)
JP JP2019-070599 · Apr 2, 2019 · national
Continuity (1)
Related Publication 20200321997A1 · Oct 8, 2020
Cited By (1)
US 12,431,933