IP Library › Granted Patent US 12,368,432
Granted Patent B2
US 12,368,432 · App. 18/010,685 · Granted Jul 22, 2025

Elastic wave resonator, elastic wave filter, demultiplexer, and communication device

Inventor: Naofumi Kasamatsu (Nara, JP)
Assignee: KYOCERA Corporation
H03H9/1457H03H9/0009H03H9/02637H03H9/02866H03H9/02992H03H9/25H03H9/6483H03H9/725
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Quick Facts
Patent No.
US 12,368,432
App. No.
18/010,685
Granted
Jul 22, 2025
Kind
B2
Abstract

An acoustic wave resonator includes a piezoelectric body and electrode fingers. The electrode fingers are positioned on the piezoelectric body and arrayed in a propagation direction of acoustic waves. The electrode fingers include a first and second electrode finger groups. Electrode fingers are formed between adjacent two of the electrode fingers of the other electrode group. A duty ratio of the electrode fingers of the first and second electrode finger groups is gradually changed along one of opposite directions specifying the propagation direction by first and second change amounts, respectively which are different, and in the opposite direction. In a region in which the electrode fingers are positioned, a pitch between the electrode fingers is changed to cancel an effect of a difference in the duty ratio of the electrode fingers on a difference in resonance frequency.

Claims (32)

1. An acoustic wave resonator comprising:

a piezoelectric body; and

a plurality of electrode fingers positioned on the piezoelectric body and arrayed in a propagation direction of acoustic waves,

wherein the plurality of electrode fingers includes a first electrode finger group and a second electrode finger group of which electrode fingers are each formed between adjacent two of the electrode fingers of the first electrode finger group,

a duty ratio of the electrode fingers of the first electrode finger group is gradually changed along one of opposite directions specifying the propagation direction by a first change amount, and a duty ratio of the electrode fingers of the second electrode finger group is gradually changed in the one of the opposite directions specifying the propagation direction by a second change amount different from the first change amount, and

in a region in which the plurality of electrode fingers is positioned, a pitch between the electrode fingers is changed to cancel an effect of a difference in the duty ratio of the electrode fingers on a difference in resonance frequency.

2. The acoustic wave resonator according to claim 1 , wherein resonance frequencies of the acoustic waves in a main mode are same in 80% or more of the region in which the plurality of electrode fingers is positioned.

3. The acoustic wave resonator according to claim 1 , wherein the region in which the plurality of electrode fingers is positioned includes a first region in which the duty ratio of the electrode fingers of the first electrode finger group increases gradually along a first direction that is the one of the opposite directions specifying the propagation direction, and a second region in which the duty ratio of the electrode fingers of the first electrode finger group decreases gradually along the first direction.

4. The acoustic wave resonator according to claim 3 , wherein, in the first region, the duty ratio of the electrode fingers of the second electrode finger group increases gradually along the first direction, and in the second region, the duty ratio of the electrode fingers of the second electrode finger group decreases gradually along the first direction.

5. The acoustic wave resonator according to claim 3 , wherein, in the first region, the duty ratio of the electrode fingers of the second electrode finger group decreases gradually along the first direction, and in the second region, the duty ratio of the electrode fingers of the second electrode finger group increases gradually along the first direction.

6. The acoustic wave resonator according to claim 1 , wherein a difference between a maximum value and a minimum value of the duty ratio of the electrode fingers of the first electrode finger group is different from a difference between a maximum value and a minimum value of the duty ratio of the electrode fingers of the second electrode finger group.

7. The acoustic wave resonator according to claim 1 , wherein a maximum value of the duty ratio of the electrode fingers of the first electrode finger group is different from a maximum value of the duty ratio of the electrode fingers of the second electrode finger group.

8. The acoustic wave resonator according to claim 1 , wherein a minimum value of the duty ratio of the electrode fingers of the first electrode finger group is different from a minimum value of the duty ratio of the electrode fingers of the second electrode finger group.

9. The acoustic wave resonator according to claim 1 , wherein a maximum value of the duty ratio of the electrode fingers of the first electrode finger group is greater than a maximum value of the duty ratio of the electrode fingers of the second electrode finger group, and

a minimum value of the duty ratio of the electrode fingers of the first electrode finger group is smaller than a minimum value of the duty ratio of the electrode fingers of the second electrode finger group.

10. The acoustic wave resonator according to claim 1 , further comprising, on the piezoelectric body, an IDT electrode including at least part of the plurality of electrode fingers.

11. The acoustic wave resonator according to claim 1 , further comprising, on the piezoelectric body,

an IDT electrode including at least one part of the plurality of electrode fingers, and

a pair of reflectors positioned at opposite end sides in the propagation direction relative to the IDT electrode, each of the pair of reflectors including another part of the plurality of electrode fingers.

12. The acoustic wave resonator according to claim 10 , wherein the IDT electrode includes a first busbar and a second busbar positioned opposite to the first busbar, and

at least part of the electrode fingers of the first electrode finger group extends from the first busbar, and at least part of the electrode fingers of the second electrode finger group extends from the second busbar.

13. The acoustic wave resonator according to claim 1 , wherein a thickness of the piezoelectric body is equal to or smaller than a pitch between any adjacent two of the electrode fingers.

14. An acoustic wave filter comprising at least one or more acoustic wave resonators each according to claim 1 .

15. A duplexer comprising:

an antenna terminal;

a transmission filter that performs filtering on a transmit signal and outputs the transmit signal to the antenna terminal; and

a reception filter that performs filtering on a receive signal from the antenna terminal,

wherein at least one of the transmission filter or the reception filter includes the acoustic wave filter according to claim 14 .

16. A communication device comprising:

an antenna;

the duplexer according to claim 15 , the antenna terminal of the duplexer being connected to the antenna; and

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

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2022
From: KASAMATSU, NAOFUMI
To: KYOCERA CORPORATION
Reel/Frame 062109/0030 →
Priority Claims (1)
JP 2020-110833 · Jun 26, 2020 · national
Continuity (1)
Related Publication 20230308078A1 · Sep 28, 2023
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