IP Library › Granted Patent US 11,070,169
Granted Patent B2
US 11,070,169 · App. 17/072,124 · Granted Jul 20, 2021

Vibration element and oscillator

Inventors: Ryuta Nishizawa (Nagano, JP); Atsushi Matsuo (Shiojiri, JP); Keiichi Yamaguchi (Ina, JP); Byonhaku Yu (Minowa, JP)
H03B5/32H03B5/04
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Quick Facts
Patent No.
US 11,070,169
App. No.
17/072,124
Granted
Jul 20, 2021
Kind
B2
Abstract

A vibration element includes: a quartz crystal substrate having a first vibration part and a second vibration part; a pair of first excitation electrodes formed at two main surfaces of the quartz crystal substrate, at the first vibration part; and a pair of second excitation electrodes formed in such a way as to sandwich the second vibration part in a direction of thickness of the quartz crystal substrate, at the second vibration part. At least one second excitation electrode of the pair of second excitation electrodes is formed at an inclined surface inclined to at least one of the two main surfaces.

Claims (44)

1. A vibration element comprising:

a quartz crystal substrate having a first vibration part and a second vibration part;

a pair of first excitation electrodes formed at two main surfaces of the quartz crystal substrate, at the first vibration part; and

a pair of second excitation electrodes formed in such a way as to sandwich the second vibration part in a direction of thickness of the quartz crystal substrate, at the second vibration part, wherein

at least one second excitation electrode of the pair of second excitation electrodes is formed at an inclined surface inclined to the two main surfaces, and

the first vibration part and the second vibration part have different frequency-temperature characteristics from each other.

2. The vibration element according to claim 1 , wherein

the two main surfaces and the inclined surface have different cutting angles from each other.

3. The vibration element according to claim 1 , wherein

the frequency-temperature characteristics of the second vibration part include a greater amount of frequency change than the frequency-temperature characteristics of the first vibration part.

4. The vibration element according to claim 1 , wherein

the inclined surface is inclined in such a way that the second vibration part has a thickness reduced as it goes away from the first vibration part.

5. A vibration element comprising:

a quartz crystal substrate having a first vibration part and a second vibration part;

a pair of first excitation electrodes formed at two main surfaces of the quartz crystal substrate, at the first vibration part; and

a pair of second excitation electrodes formed in such a way as to sandwich the second vibration part in a direction of thickness of the quartz crystal substrate, all the second vibration part, wherein

at least one second excitation electrode of the pair of second excitation electrodes is formed at an inclined surface inclined to the two main surfaces, and

the inclined surface is inclined in such a way that the second vibration part has a thickness reduced as it goes toward the first vibration part.

6. The vibration element according to claim 1 , wherein

the first vibration part has a protrusion formed at least at one of the two main surfaces.

7. A vibration element comprising:

a quartz crystal substrate having a first vibration part and a second vibration part;

a pair of first excitation electrodes formed at two main surfaces of the quartz crystal substrate, at the first vibration part;

a pair of second excitation electrodes formed in such a way as to sandwich the second vibration part in a direction of thickness of the quartz crystal substrate, at the second vibration part;

a fixing part fixing the vibration element to a package; and

at least one of a through-hole and a narrow part between the first vibration part and the second vibration part, and the fixing part, wherein

at least one second excitation electrode of the pair of second excitation electrodes is formed at an inclined surface included to the two main surfaces.

8. The vibration element according to claim 1 , further comprising

at least one of a through-hole and a thin part between the first vibration part and the second vibration part.

9. An oscillator comprising:

the vibration element according to claim 1 ;

a first oscillation circuit electrically coupled to the first excitation electrodes and outputting a first oscillation signal;

a second oscillation circuit electrically coupled to the second excitation electrodes and outputting a second oscillation signal; and

a control signal output circuit outputting a control signal controlling an oscillation frequency of the first oscillation signal, based on the second oscillation signal.

10. An oscillator comprising:

the vibration element according to claim 5 ;

a first oscillation circuit electrically coupled to the first excitation electrodes and outputting a first oscillation signal;

a second oscillation circuit electrically coupled to the second excitation electrodes and outputting a second oscillation signal; and

a control signal output circuit outputting a control signal controlling an oscillation frequency of the first oscillation signal, based on the second oscillation signal.

11. An oscillator comprising:

the vibration element according to claim 8 ;

a first oscillation circuit electrically coupled to the first excitation electrodes and outputting a first oscillation signal;

a second oscillation circuit electrically coupled to the second excitation electrodes and outputting a second oscillation signal; and

a control signal output circuit outputting a control signal controlling an oscillation frequency of the first oscillation signal, based on the second oscillation signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2020
From: NISHIZAWA, RYUTA; MATSUO, ATSUSHI; YAMAGUCHI, KEIICHI; YU, BYONHAKU
To: SEIKO EPSON CORPORATION
Reel/Frame 054073/0634 →
Priority Claims (1)
JP JP2019-190899 · Oct 18, 2019 · national
Continuity (1)
Related Publication 20210119579A1 · Apr 22, 2021
Cited By (1)
US 12,537,530