IP Library Granted Patent US 9,406,865
Granted Patent B2
US 9,406,865 · App. 13/587,618 · Granted Aug 2, 2016

Composite piezoelectric laterally vibrating resonator

Inventors: Chengjie Zuo (San Diego, CA); Changhan Hobie Yun (San Diego, CA); Jonghae Kim (San Diego, CA)
Assignee: QUALCOMM Incorporated
H01L41/183H01L41/277H03H9/02015H03H9/02228Y10T29/42
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Quick Facts
Patent No.
US 9,406,865
App. No.
13/587,618
Granted
Aug 2, 2016
Kind
B2
Abstract

A resonator is described. The resonator includes multiple electrodes. The resonator also includes a composite piezoelectric material. The composite piezoelectric material includes at least one layer of a first piezoelectric material and at least one layer of a second piezoelectric material. At least one electrode is coupled to a bottom of the composite piezoelectric material. At least one electrode is coupled to a top of the composite piezoelectric material.

Claims (20)

1. A resonator, comprising:

multiple electrodes; and

a composite piezoelectric material that comprises at least one layer of a first piezoelectric material that is coupled to at least one layer of a second piezoelectric material via a ground layer, wherein the first piezoelectric material and the second piezoelectric material are different piezoelectric materials, wherein at least one electrode is coupled to a bottom of the composite piezoelectric material, and wherein at least one electrode is coupled to a top of the composite piezoelectric material;

wherein the resonator is a laterally vibrating microelectromechanical system composite resonator.

2. The resonator of claim 1 , wherein the first piezoelectric material comprises a first quality factor and a first electromechanical coupling, and wherein the second piezoelectric material comprises a second quality factor and a second electromechanical coupling.

3. The resonator of claim 2 , wherein the composite piezoelectric material comprises a composite quality factor and a composite electromechanical coupling, and wherein the composite quality factor and the composite electromechanical coupling depend on a volume ratio in the composite piezoelectric material between the first piezoelectric material and the second piezoelectric material.

4. The resonator of claim 2 , wherein the composite piezoelectric material comprises a composite quality factor and a composite electromechanical coupling, and wherein the composite quality factor and the composite electromechanical coupling depend on a thickness ratio in the composite piezoelectric material between a first thickness of a first layer of the first piezoelectric material and a second thickness of a first layer of the second piezoelectric material.

5. The resonator of claim 1 , wherein the composite piezoelectric material comprises:

a first layer of the first piezoelectric material; and

a first layer of the second piezoelectric material.

6. The resonator of claim 5 , wherein the first layer of the first piezoelectric material is stacked on top of the first layer of the second piezoelectric material.

7. The resonator of claim 6 , wherein the composite piezoelectric material further comprises a second layer of the first piezoelectric material, and wherein the first layer of the second piezoelectric material is stacked on top of the second layer of the first piezoelectric material.

8. The resonator of claim 7 , wherein the composite piezoelectric material further comprises a second layer of the second piezoelectric material, and wherein the second layer of the first piezoelectric material is stacked on top of the second layer of the second piezoelectric material.

9. The resonator of claim 5 , wherein the first layer of the first piezoelectric material is stacked side by side with the first layer of the second piezoelectric material, wherein a first electrode is coupled to the top of both the first layer of the first piezoelectric material and the first layer of the second piezoelectric material, and wherein a second electrode is coupled to the bottom of both the first layer of the first piezoelectric material and the first layer of the second piezoelectric material.

10. The resonator of claim 9 , wherein the composite piezoelectric material further comprises a second layer of the first piezoelectric material, and wherein the first layer of the second piezoelectric material is sandwiched between the first layer of the first piezoelectric material and the second layer of the first piezoelectric material.

11. The resonator of claim 10 , wherein the composite piezoelectric material further comprises a second layer of the second piezoelectric material, and wherein the second layer of the first piezoelectric material is sandwiched between the first layer of the second piezoelectric material and the second layer of the second piezoelectric material.

12. The resonator of claim 1 , wherein the composite piezoelectric material translates input signals from one or more input electrodes into mechanical vibrations, and wherein the mechanical vibrations are translated to an output signal from one or more output electrodes.

13. The resonator of claim 1 , wherein the first piezoelectric material is aluminum nitride, and wherein the second piezoelectric material is zinc oxide.

14. The resonator of claim 1 , wherein the first piezoelectric material is aluminum nitride, and wherein the second piezoelectric material is lead zirconate titanate.

15. The resonator of claim 1 , wherein the composite piezoelectric material has a high enough composite quality factor and composite electromechanical coupling for use in wideband filter applications.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2012
From: ZUO, CHENGJIE; YUN, CHANGHAN HOBIE; KIM, JONGHAE
To: QUALCOMM INCORPORATED
Reel/Frame 028986/0560 →
Continuity (2)
Provisional Application 61525607 · Aug 19, 2011
Related Publication 20130214643A1 · Aug 22, 2013