IP Library Granted Patent US 12700847
Granted Patent B2
US 12700847 · App. 18/576,874 · Granted Aug 4, 2026

Elastic wave device, filter, splitter, and communication device

Inventor: Tomio Kanazawa (Daito, JP)
Assignee: Kyocera Corporation
H03H9/02992H03H9/145H03H9/25H03H9/6483
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Quick Facts
Patent No.
US 12700847
App. No.
18/576,874
Granted
Aug 4, 2026
Kind
B2
Abstract

An IDT electrode includes: a first busbar, a second busbar facing the first busbar, multiple first electrode fingers electrically connected to the first busbar, multiple second electrode fingers electrically connected to the second busbar and arranged in an alternating manner with the multiple first electrode fingers in an acoustic wave propagation direction, multiple bar electrodes interposed between the first busbar and the multiple first electrode fingers, and extending parallel to the first busbar and parallel to each other, multiple connection portions including a connection portion that is interposed between the first busbar and a corresponding one of the bar electrodes adjacent to the first busbar and that connects the first busbar to the corresponding bar electrode, and a connection portion that connects adjacent bar electrodes to each other. Some of the connection portions are disposed in a discontinuous manner with respect to an extension direction of the multiple electrode fingers.

Claims (89)

1 . An acoustic wave device comprising:

a piezoelectric body having a first surface; and

an IDT electrode positioned on the first surface,

wherein the IDT electrode includes

a first busbar,

a second busbar facing the first busbar,

multiple first electrode fingers electrically connected to the first busbar,

multiple second electrode fingers electrically connected to the second busbar and arranged in an alternating manner with the multiple first electrode fingers in an acoustic wave propagation direction,

multiple bar electrodes interposed between the first busbar and the multiple first electrode fingers, and extending parallel to the first busbar and parallel to each other, and

multiple connection portions including:

a first connection portion that is interposed between the first busbar and a corresponding one of the bar electrodes adjacent to the first busbar and that connects the first busbar to the corresponding one of the bar electrodes, and

a second connection portion that is interposed between and connects adjacent bar electrodes, among the bar electrodes, to each other, and

at least some of the multiple connection portions are disposed in a a V-shape that closes toward a side where the second busbar is located.

2 . An acoustic wave device comprising:

a piezoelectric body having a first surface; and

an IDT electrode positioned on the first surface,

wherein the IDT electrode includes

a first busbar,

a second busbar facing the first busbar,

multiple first electrode fingers electrically connected to the first busbar,

multiple second electrode fingers electrically connected to the second busbar and arranged in an alternating manner with the multiple first electrode fingers in an acoustic wave propagation direction,

multiple bar electrodes interposed between the first busbar and the multiple first electrode fingers, and extending parallel to the first busbar and parallel to each other, and

multiple connection portions including

a first connection portion that is interposed between the first busbar and a corresponding one of the bar electrodes adjacent to the first busbar and that connects the first busbar to the corresponding one of the bar electrodes, and

a second connection portion that is interposed between and connects adjacent bar electrodes, among the bar electrodes, to each other, and

wherein at least some of the multiple connection portions are disposed in a Y shape that opens toward a side where the second busbar is located.

3 . The acoustic wave device according to claim 1 ,

wherein a region in which the IDT electrode is located in plan view of the first surface includes

busbar regions in which the busbars are located,

an intervening region in which the multiple bar electrodes and the multiple connection portions are located,

a gap region in which a gap adjacent to a side of the intervening region is positioned with respect to tips of the multiple second electrode fingers, and

a crossing region in which the multiple first electrode fingers and the multiple second electrode fingers overlap in the acoustic wave propagation direction, and

the crossing region includes

a central region located in a center of the crossing region in the extension direction and having a lower acoustic velocity than the gap region, and

an edge region located between the central region and the gap region and having a lower acoustic velocity than the central region, and

the intervening region has a higher acoustic velocity than the busbar regions.

4 . The acoustic wave device according to claim 1 ,

wherein edges of the multiple connection portions positioned on one side in the acoustic wave propagation direction are located on a same straight line inclined with respect to the extension direction or on a same curved line.

5 . The acoustic wave device according to claim 1 ,

wherein two or more of the connection portions that are at different positions in the acoustic wave propagation direction are located between each set of adjacent bar electrodes, among the bar electrodes, and

a shape of a region enclosed by the two or more connection portions and the bar electrodes connected to each other by the two or more connection portions is an elliptical shape.

6 . The acoustic wave device according to claim 1 , further comprising:

multiple dummy electrodes that are connected to a bar electrode positioned closest to the multiple first electrode fingers, among the multiple bar electrodes, with tips of the dummy electrodes facing tips of the multiple second electrode fingers across a gap.

7 . The acoustic wave device according to claim 1 , further comprising:

a low-acoustic-velocity film stacked on an opposite side of the piezoelectric body from the first surface and having a lower acoustic velocity than the piezoelectric body, the piezoelectric body being composed of a piezoelectric film; and

a high-acoustic-velocity film stacked on an opposite side of the low-acoustic-velocity film from the piezoelectric film and having a higher acoustic velocity than the piezoelectric body.

8 . A filter comprising:

the acoustic wave device according to claim 1 ; and

one or more other IDT electrodes located on the first surface, connected to the IDT electrode in a ladder configuration, and constituting a ladder filter.

9 . A filter comprising:

the acoustic wave device according to claim 1 ; and

one or more other IDT electrodes located on the first surface, arranged in the acoustic wave propagation direction with respect to the IDT electrode, and constituting a multi-mode filter.

10 . A splitter comprising:

an antenna terminal;

a transmission filter connected to the antenna terminal; and

a reception filter connected to the antenna terminal,

wherein at least one out of the transmission filter and the reception filter is constituted by the filter according to claim 8 .

11 . A communication device comprising:

the splitter according to claim 10 ;

an antenna connected to the antenna terminal; and

an IC connected to the transmission filter and the reception filter.

12 . An acoustic wave device comprising:

a piezoelectric body having a first surface; and

an IDT electrode positioned on the first surface,

wherein the IDT electrode includes

a first busbar,

a second busbar facing the first busbar,

multiple first electrode fingers electrically connected to the first busbar,

multiple second electrode fingers electrically connected to the second busbar and arranged in an alternating manner with the multiple first electrode fingers in an acoustic wave propagation direction,

multiple bar electrodes interposed between the first busbar and the multiple first electrode fingers, and extending parallel to the first busbar and parallel to each other, and

multiple connection portions including

a first connection portion that is interposed between the first busbar and a corresponding one of the bar electrodes adjacent to the first busbar and that connects the first busbar to the corresponding one of the bar electrodes, and

a second connection portion that is interposed between and connects adjacent bar electrodes, among the bar electrodes, to each other, and

at least some of edges of the multiple connection portions positioned on one side in the acoustic wave propagation direction are located on a same straight line inclined with respect to the extension direction or on a same curved line.

13 . The acoustic wave device according to claim 12 ,

wherein the multiple connection portions are arranged in a direction that is inclined with respect to the extension direction.

14 . The acoustic wave device according to claim 2 , wherein edges of the multiple connection portions positioned on one side in the acoustic wave propagation direction are located on a same straight line inclined with respect to the extension direction or on a same curved line.

15 . The acoustic wave device according to claim 2 , wherein two or more of the connection portions that are at different positions in the acoustic wave propagation direction are located between each set of adjacent bar electrodes, among the bar electrodes, and

a shape of a region enclosed by the two or more connection portions and the bar electrodes connected to each other by the two or more connection portions is an elliptical shape.

16 . The acoustic wave device according to claim 4 , wherein two or more of the connection portions that are at different positions in the acoustic wave propagation direction are located between each set of adjacent bar electrodes, among the bar electrodes, and

a shape of a region enclosed by the two or more connection portions and the bar electrodes connected to each other by the two or more connection portions is an elliptical shape.

17 . The acoustic wave device according to claim 12 , wherein two or more of the connection portions that are at different positions in the acoustic wave propagation direction are located between each set of adjacent bar electrodes, among the bar electrodes, and

a shape of a region enclosed by the two or more connection portions and the bar electrodes connected to each other by the two or more connection portions is an elliptical shape.

18 . The acoustic wave device according to claim 14 , wherein two or more of the connection portions that are at different positions in the acoustic wave propagation direction are located between each set of adjacent bar electrodes, among the bar electrodes, and

a shape of a region enclosed by the two or more connection portions and the bar electrodes connected to each other by the two or more connection portions is an elliptical shape.

19 . The acoustic wave device according to claim 2 , further comprising:

multiple dummy electrodes that are connected to a bar electrode positioned closest to the multiple first electrode fingers, among the multiple bar electrodes, with tips of the dummy electrodes facing tips of the multiple second electrode fingers across a gap.

20 . The acoustic wave device according to claim 12 , further comprising:

multiple dummy electrodes that are connected to a bar electrode positioned closest to the multiple first electrode fingers, among the multiple bar electrodes, with tips of the dummy electrodes facing tips of the multiple second electrode fingers across a gap.