IP Library Granted Patent US 10,553,776
Granted Patent B2
US 10,553,776 · App. 15/387,905 · Granted Feb 4, 2020

Ultrasound transducer and processing methods thereof

Inventors: Richard Bautista (Palo Alto, CA); Robert Zelenka (Milpitas, CA)
Assignee: ACIST MEDICAL SYSTEMS, INC.
H01L41/0825B06B1/067H01L41/081H01L41/0805H01L41/277H04R1/1091H04R31/00H04R1/023H04R1/1016Y10T29/42
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Quick Facts
Patent No.
US 10,553,776
App. No.
15/387,905
Granted
Feb 4, 2020
Kind
B2
Abstract

An ultrasonic transducer includes a backing element, an active element overlying the backing layer, and a matching element overlying the active element, the matching element having an inner surface that contacts the active element and an outer surface with a non-homogeneous texture and/or material composition. The matching element may be formed by subtractive or deposition techniques.

Claims (25)

1. An ultrasonic transducer comprising:

a backing element;

an active element overlying the backing element; and

a matching element overlying the active element, the matching element having an inner surface that is of a first material along a length and faces the active element, an outer surface of the first material along the length and opposite the inner surface, a composition profile of the first material differing along the length at the outer surface, and a thickness defined from the inner surface to the outer surface that is non-uniform along the length.

2. The transducer of claim 1 , wherein the composition profile is constant along the length at the inner surface.

3. The transducer of claim 2 , wherein the composition profile that differs along the length at the outer surface includes a difference in a volume concentration of an element of the first material along the length at the outer surface.

4. The transducer of claim 3 , wherein the composition profile that is constant along the length at the inner surface includes a same volume concentration of the element of the first material along the length at the inner surface.

5. The transducer of claim 3 , wherein the element of the first material having the difference in the volume concentration along the length at the outer surface is silver.

6. The transducer of claim 2 , wherein the composition profile that differs along the length at the outer surface includes a difference in a mass density of the first material along the length at the outer surface.

7. The transducer of claim 1 , wherein a first elevation and a second different elevation are defined along the length at the outer surface, and wherein the inner surface is a common elevation along the length.

8. The transducer of claim 1 , wherein the matching element comprises a single matching layer along the length such that the inner surface is continuous along the single matching layer and the outer surface is continuous along the single matching layer.

9. The transducer of claim 1 , wherein the matching element includes a first region with a first thickness and a second region with a second thickness that is less than the first thickness, the outer surface of the second region being an abraded surface.

10. The transducer of claim 9 , wherein the first region includes a first texture defining a first surface roughness along the outer surface and the second region includes a second texture defining a second different surface roughness along the outer surface.

11. The transducer of claim 1 , wherein the matching element includes a first region with a first thickness and a second region with a second thickness that is less than the first thickness, the outer surface of the second region being an ablated surface.

12. A method of making an ultrasound transducer, the method comprising the steps of:

providing a backing element;

providing an active element overlying the backing element; and

forming a matching element over the active element, the matching element having an inner surface facing the active element and an outer surface opposite the inner surface, wherein forming the matching element includes processing a first region of the outer surface to increase a surface area of the outer surface as a result of the processing and alter a composition profile of the first material at the first region of the outer surface as a result of the processing.

13. The method of claim 12 , wherein the first region is processed to increase the surface area of the outer surface to be greater than a surface area of the inner surface.

14. The method of claim 12 , wherein the inner surface and the outer surface are each of a first material along a length, and wherein a thickness of the matching element defined from the inner surface to the outer surface is non-uniform.

15. The method of claim 12 , wherein forming the matching element further includes processing a second region of the outer surface that is spaced from the first region to further increase the surface area of the outer surface as a result of the further processing.

16. The method of claim 12 , wherein the matching element comprises a single matching layer.

17. The method of claim 12 , wherein processing the first region of the outer surface includes performing a subtractive processing technique on the outer surface along a length at the first region.

18. The method of claim 17 , wherein performing the subtractive processing technique on the outer surface along the length at the first region includes ablating the first region.

19. The method of claim 17 , wherein performing the subtractive processing technique on the outer surface along the length at the first region includes abrading the first region.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2017
From: BAUTISTA, RICHARD; ZELENKA, ROBERT
To: ACIST MEDICAL SYSTEMS, INC.
Reel/Frame 040947/0523 →
Continuity (3)
Continuation 13679847 · Nov 16, 2012
Provisional Application 61561534 · Nov 18, 2011
Related Publication 20170104148A1 · Apr 13, 2017