IP Library › Granted Patent US 7,352,104
Granted Patent B2
US 7,352,104 · App. 11/010,014 · Granted Apr 1, 2008

Surface acoustic wave element, method of manufacturing the same and surface acoustic wave device

Assignee: Seiko Epson Corporation
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Quick Facts
Patent No.
US 7,352,104
App. No.
11/010,014
Granted
Apr 1, 2008
Kind
B2
Abstract

A surface acoustic wave element is provided including an IDT and reflectors provided on both sides of the IDT that are on a surface of a quartz plate. The quartz plate is made from an in-plane rotated ST cut quartz plate whose cutting angle is expressed as (0°, 113°-135°, ±(40°-49°)) by defining and using Euler angle. The IDT and reflectors are arranged at a slant of PFA±3° with respect to a direction of a phase velocity of a surface acoustic wave in the quartz plate. If the cutting angle of the quartz plate is expressed by the Euler angle (φ°, θ°, Ψ°), the power flow angle PFA is expressed that the PFA=0.374 (θ°−90°)−10.0°.

Claims (24)

1. A surface acoustic wave element comprising:

an in-plane rotated ST cut quartz plate whose cutting angle is expressed as (0°, 113°-135°(40°-49°)) by defining and using Euler angle of (φ°,θ°,Ψ°);

an interdigital transducer; and

a reflector, wherein:

the interdigital transducer and the reflector that are formed on a surface of the quartz plate are arranged at a slant of a PFA ±3° with respect to a direction of a phase velocity of a surface acoustic wave in the quartz plate;

the PFA is represented by the following equation:

PFA =0.374(θ°−90°)−10.0°; and

first and second opposing edges of the ST cut quartz plate are substantially parallel to a group velocity direction of the surface acoustic wave element.

2. A surface acoustic wave element comprising a quartz plate of which an interdigital transducer is formed on a surface and in which a direction of a phase velocity of a surface acoustic wave and a direction of a group velocity of the surface acoustic wave are different, wherein

two opposing edges of the quartz plate face each other and are substantially parallel to the direction of the group velocity.

3. The surface acoustic wave element according claim 1 , wherein

four edges of the quartz plate are formed along a pattern defined by the interdigital transducer and the reflector.

4. The surface acoustic wave element according to claim 1 , wherein

the quartz plate includes two edges perpendicular to the direction of the group velocity of the surface acoustic wave.

5. The surface acoustic wave element according to claim 1 , wherein

one side of the reflector is extended to an edge of the quartz plate, the side being opposite to another side facing the interdigital transducer of the reflector.

6. A surface acoustic wave device comprising the surface acoustic wave element according to claim 1 .

7. The surface acoustic wave element according claim 2 , wherein

four edges of the quartz plate are formed along a pattern defined by the interdigital transducer and the reflector.

8. A surface acoustic wave element comprising a quartz plate of which an interdigital transducer is formed on a surface and in which a direction of a phase velocity of a surface acoustic wave and a direction of a group velocity of the surface acoustic wave are different, wherein:

two edges of the quartz plate face each other along the direction of the group velocity; and

the quartz plate includes two edges perpendicular to the direction of the group velocity of the surface acoustic wave.

9. The surface acoustic wave element according to claim 2 , wherein

one side of the reflector is extended to an edge of the quartz plate, the side being opposite to another side facing the interdigital transducer of the reflector.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2004
From: YAMAZAKI, TAKASHI; IIZAWA, KEIGO
To: SEIKO EPSON CORPORATION
Reel/Frame 016081/0652 →
Priority Claims (3)
JP 2003-414210 · Dec 12, 2003 · national
JP 2003-423153 · Dec 19, 2003 · national
JP 2004-242806 · Aug 23, 2004 · national
Continuity (1)
Related Publication 20050127781A1 · Jun 16, 2005