IP Library Granted Patent US 12,096,552
Granted Patent B2
US 12,096,552 · App. 17/216,722 · Granted Sep 17, 2024

Radio frequency module and communication device

Inventors: Yuji Takematsu (Nagaokakyo, JP); Takanori Uejima (Nagaokakyo, JP); Sho Matsumoto (Nagaokakyo, JP); Tetsuro Harada (Nagaokakyo, JP); Dai Nakagawa (Nagaokakyo, JP); Naoya Matsumoto (Nagaokakyo, JP); Yutaka Sasaki (Nagaokakyo, JP); Yuuki Fukuda (Nagaokakyo, JP)
Assignee: MURATA MANUFACTURING CO., LTD.
H05K1/0243H03F3/195H03F3/245H04B1/44H03F2200/294H03F2200/318H03F2200/451H05K2201/1006H05K2201/10098
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Quick Facts
Patent No.
US 12,096,552
App. No.
17/216,722
Granted
Sep 17, 2024
Kind
B2
Abstract

A radio frequency module includes: a first mounting board having a first principal surface and a second principal surface; a second mounting board having a third principal surface facing the second principal surface and a fourth principal surface; a transmission filter having a first mounting surface facing the second principal surface and a first top surface; and a reception filter having a second mounting surface facing the third principal surface and a second top surface; wherein the transmission and reception filters overlap at least partially in a plan view of the first and second mounting boards, an output terminal of the transmission filter is arranged on the first top surface, an input terminal of the reception filter is arranged on the second top surface, and the output and input terminals are connected by a conductive member not routed through the first mounting board or the second mounting board.

Claims (65)

1. A radio frequency module comprising:

a first mounting board having a first principal surface and a second principal surface that are opposite each other;

a second mounting board having a third principal surface and a fourth principal surface that are opposite each other, the third principal surface facing the second principal surface;

a transmission filter having a first mounting surface and a first top surface that are opposite each other, the transmission filter arranged in an inner space formed between the first mounting board and the second mounting board and mounted so that the first mounting surface faces the second principal surface;

a reception filter having a second mounting surface and a second top surface that are opposite each other, the reception filter arranged in the inner space and mounted so that the second mounting surface faces the third principal surface; and

a common terminal arranged on the first principal surface or the fourth principal surface, the common terminal being electrically connected to an output terminal of the transmission filter and an input terminal of the reception filter, wherein

when the first mounting board and the second mounting board are viewed in a plan view, a footprint of the transmission filter at least partially overlaps a footprint of the reception filter,

the output terminal of the transmission filter is arranged on the first top surface,

the input terminal of the reception filter is arranged on the second top surface,

the output terminal of the transmission filter and the input terminal of the reception filter are connected by a conductive member that is arranged in the inner space and not routed through the first mounting board or the second mounting board,

the common terminal is arranged on the first principal surface,

an input terminal of the transmission filter and a common output terminal of the transmission filter are each arranged on the first top surface, the common output terminal of the transmission filter being electrically connected to the output terminal of the transmission filter inside the transmission filter, and

the common terminal and the common output terminal of the transmission filter are connected by a first via conductor and a bonding wire, the first via conductor penetrating through the first mounting board and being connected to the common terminal, the bonding wire connecting the first via conductor and the common output terminal of the transmission filter.

2. The radio frequency module of claim 1 , wherein

a ground terminal of the transmission filter is arranged on the first mounting surface and is connected to a second via conductor that penetrates through the first mounting board.

3. The radio frequency module of claim 1 , wherein

the input terminal of the transmission filter, the common output terminal of the transmission filter, and a ground terminal of the transmission filter are each arranged on the first mounting surface, the common output terminal of the transmission filter being electrically connected to the output terminal of the transmission filter inside the transmission filter.

4. The radio frequency module of claim 3 , wherein

the common terminal and the common output terminal of the transmission filter are connected by a third via conductor, the third via conductor penetrating through the first mounting board and being connected to the common terminal.

5. The radio frequency module of claim 4 , wherein

the ground terminal of the transmission filter is connected to a second via conductor that penetrates through the first mounting board.

6. The radio frequency module of claim 1 , wherein

the common terminal is arranged on the fourth principal surface.

7. The radio frequency module of claim 6 , wherein

an output terminal of the reception filter and a common input terminal of the reception filter are each arranged on the second top surface, the common input terminal of the reception filter being electrically connected to the input terminal of the reception filter inside the reception filter.

8. The radio frequency module of claim 7 , wherein

the common terminal and the common input terminal of the reception filter are connected by a via conductor and a bonding wire, the via conductor penetrating through the second mounting board and being connected to the common terminal, the bonding wire connecting the via conductor and the common input terminal of the reception filter.

9. The radio frequency module of claim 1 , wherein

the conductive member is arranged between the first top surface and the second top surface and includes an anisotropic conductive member.

10. The radio frequency module of claim 9 , wherein

the anisotropic conductive member is conductive in a direction vertical to the second principal surface and the third principal surface compared with a direction parallel to the second principal surface and the third principal surface.

11. The radio frequency module of claim 1 , further comprising:

a transmission power amplifier mounted on the second principal surface and configured to output a radio frequency transmission signal to the transmission filter; and

a reception low noise amplifier mounted on the third principal surface and configured to amplify a radio frequency reception signal output from the reception filter.

12. The radio frequency module of claim 11 , wherein

when the first mounting board and the second mounting board are viewed in a plan view, a footprint of the transmission power amplifier does not overlap a footprint of the reception low noise amplifier.

13. The radio frequency module of claim 12 , further comprising:

a transmission matching circuit arranged in a path connecting the input terminal of the transmission filter and an output port of the transmission power amplifier, the transmission matching circuit configured to provide impedance matching between the transmission filter and the transmission power amplifier; and

a reception matching circuit arranged in a path connecting the output terminal of the reception filter and an input port of the reception low noise amplifier, the reception matching circuit configured to provide impedance matching between the reception filter and the reception low noise amplifier.

14. The radio frequency module of claim 13 , wherein

when the first mounting board and the second mounting board are viewed in a plan view, at least one of the transmission filter, the reception filter, the transmission power amplifier, and the reception low noise amplifier is arranged between the transmission matching circuit and the reception matching circuit.

15. The radio frequency module of claim 14 , wherein

the transmission matching circuit includes a first inductor,

the reception matching circuit includes a second inductor, and

a magnetic flux direction of the first inductor crosses and a magnetic flux direction of the second inductor.

16. The radio frequency module of claim 1 , further comprising:

a resin member formed in the inner space and that at least partially covers the transmission filter and the reception filter;

a ground electrode layer formed of plane wiring patterns of the first mounting board and the second mounting board; and

a shield electrode layer formed so as to cover the first principal surface or the fourth principal surface, the shield electrode layer being connected to the ground electrode layer on side surfaces of the first mounting board and the second mounting board.

17. A communication device comprising:

an RF signal processing circuit that performs processing on a radio frequency signal to be transmitted or received by an antenna element; and

a radio frequency module configured to transmit the radio frequency signal between the antenna element and the RF signal processing circuit, wherein

the radio frequency module includes

a first mounting board having a first principal surface and a second principal surface that are opposite each other;

a second mounting board having a third principal surface and a fourth principal surface that are opposite each other, the third principal surface facing the second principal surface;

a transmission filter having a first mounting surface and a first top surface that are opposite each other, the transmission filter arranged in an inner space formed between the first mounting board and the second mounting board and mounted so that the first mounting surface faces the second principal surface;

a reception filter having a second mounting surface and a second top surface that are opposite each other, the reception filter arranged in the inner space and mounted so that the second mounting surface faces the third principal surface; and

a common terminal arranged on the first principal surface or the fourth principal surface, the common terminal being electrically connected to an output terminal of the transmission filter and an input terminal of the reception filter, wherein

when the first mounting board and the second mounting board are viewed in a plan view, a footprint of the transmission filter at least partially overlaps a footprint of the reception filter,

the output terminal of the transmission filter is arranged on the first top surface,

the input terminal of the reception filter is arranged on the second top surface,

the output terminal of the transmission filter and the input terminal of the reception filter are connected by a conductive member that is arranged in the inner space and not routed through the first mounting board or the second mounting board,

the common terminal is arranged on the first principal surface,

an input terminal of the transmission filter and a common output terminal of the transmission filter are each arranged on the first top surface, the common output terminal of the transmission filter being electrically connected to the output terminal of the transmission filter inside the transmission filter, and

the common terminal and the common output terminal of the transmission filter are connected by a first via conductor and a bonding wire, the first via conductor penetrating through the first mounting board and being connected to the common terminal, the bonding wire connecting the first via conductor and the common output terminal of the transmission filter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2021
From: TAKEMATSU, YUJI; UEJIMA, TAKANORI; MATSUMOTO, SHO; HARADA, TETSURO; NAKAGAWA, DAI; MATSUMOTO, NAOYA; SASAKI, YUTAKA; FUKUDA, YUUKI
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 055761/0297 →
Priority Claims (1)
JP 2018-206635 · Nov 1, 2018 · national
Continuity (2)
Continuation PCTJP2019035132 · Sep 6, 2019
Related Publication 20210219419A1 · Jul 15, 2021