IP Library Granted Patent US 7,692,515
Granted Patent B2
US 7,692,515 · App. 11/659,166 · Granted Apr 6, 2010

Low-loss electro-acoustic component

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Quick Facts
Patent No.
US 7,692,515
App. No.
11/659,166
Granted
Apr 6, 2010
Kind
B2
Abstract

A component includes a filter having a first structure and a second structure. The component also includes a substrate on which the first and second structures are arranged. The first structure has an approximately uniform layer thickness and an approximately uniform composition. The second structure has an approximately uniform layer thickness and an approximately uniform composition. At least one of the layer thickness or composition of the first structure differs from the layer thickness or composition of the second structure.

Claims (44)

1. A component comprising:

a first filter comprising a first structure, the first structure comprising one of a transducer and a reflector, the first filter further comprising a second structure, the second structure comprising one of a transducer and a reflector;

a substrate on which the first and second structures are arranged; wherein:

the first structure has an approximately uniform layer thickness and an approximately uniform composition,

the second structure has an approximately uniform layer thickness and an approximately uniform composition, and

at least one of the layer thickness and composition of the first structure differs from the layer thickness or composition of the second structure, and

the component is configured to operate with acoustic waves;

wherein the first structure is in a first acoustic track comprising a series resonator and has a uniform metallization ratio, the second structure is in a second acoustic track comprising a parallel resonator and has a uniform metallization ratio, the metallization ratio of the first structure being different than the metallization ratio of the second structure; and

wherein the metallization ratio in the parallel resonator is less than the metallization ratio in the series resonator.

2. The component of claim 1 , wherein the first structure comprises an electrically conductive layer and the second structure comprises an electrically conductive layer.

3. The component of claim 1 , wherein the layer thickness of the first structure and the layer thickness of the second structure differ.

4. The component of claim 1 , wherein:

the first structure comprises a first material and the second structure comprises a second material, the second material being different from the first material.

5. The component of claim 1 , wherein the first and second structures comprise a same material.

6. The component of claim 1 , wherein the first and second structures each comprise a plurality of electrically conductive layers.

7. The component of claim 6 , wherein:

the first structure comprises a first layer sequence having a first set of heights; and

the second structure comprises a second layer sequence that is the same as the first layer sequence, the second layer sequence having a second set of heights that is different than the first set of heights.

8. The component of claim 1 , wherein:

the first structure comprises a single electrically conductive layer, and

the second structure comprises a plurality of electrically conductive sublayers.

9. The component of claim 8 , wherein one sublayer of the plurality of electrically conductive sublayers included in the second structure comprises the electrically conductive layer included in the first structure.

10. The component of claim 1 , wherein the first structure is in a first acoustic track and the second structure is in a second acoustic track, the first acoustic track being different from the second acoustic track.

11. The component of claim 10 , wherein resonant frequencies of the first and second acoustic tracks differ by, at most, about 40%.

12. The component of claim 11 , wherein the resonant frequencies of the first and second acoustic tracks differ by from about 0% to about 20%.

13. The component of claim 12 , wherein the resonant frequencies of the first and second tracks differ by from about 0% to about 10%.

14. The component of claim 1 ,

further comprising N acoustic tracks where N≧3 the N acoustic tracks each having a uniform layer thickness inside the acoustic tracks and a uniform composition, and each of the N acoustic tracks having properties different from one another regarding at least one of a layer thickness and a composition.

15. The component of claim 14 , wherein a lowest relative layer thickness of a component structure h/λ is ≧5%, where h is an absolute layer thickness and λ is an acoustic wavelength.

16. The component of claim 15 , wherein 5%≧h/λ≧14%.

17. The component of claim 1 , further comprising a second filter, wherein the first and second filters form a duplexer, the second filter comprises a uniform layer structure and a uniform layer thickness, and the layer thicknesses of the component structures of the first filter are different from the layer thicknesses of the component structures of the second filter.

18. A component comprising:

a first filter comprising a first structure, the first structure comprising one of a transducer and a reflector, the first filter further comprising a second structure, the second structure comprising one of a transducer and a reflector;

a substrate on which the first and second structures are arranged; wherein:

the first structure has an approximately uniform layer thickness and an approximately uniform composition,

the second structure has an approximately uniform layer thickness and an approximately uniform composition, and

at least one of the layer thickness and composition of the first structure differs from the layer thickness or composition of the second structure, and

the component is configured to operate with acoustic waves;

wherein the component further comprises:

an additional substrate,

a layer system comprising:

a piezoelectric layer between the substrate and the additional substrate,

a metal layer, in which the first and second component structures are located, the metal layer being on the piezoelectric layer, and

a dielectric layer that covers the two component structures and seals to the surface of the piezoelectric layer.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2017
From: EPCOS AG
To: SNAPTRACK, INC.
Reel/Frame 041608/0145 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ORIGINALLY RECORDED ASSIGNMENT DOCUMENT VIA A CORRECTIVE DOCUMENT PREVIOUSLY RECORDED ON REEL 018958 FRAME 537. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT OF ASSIGNORS INTEREST. Recorded Jun 10, 2016
From: HAUSER, MARKUS; JAKOB, MICHAEL; ROESLER, ULRIKE; RUILE, WERNER
To: EPCOS AG
Reel/Frame 038953/0146 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2007
From: HAUSER, MARKUS; JAKOB, MICHAEL; ROESLER, ULRIKE; RUILE, WERNER
To: EPCOS AG
Reel/Frame 018958/0537 →