IP Library Granted Patent US 8,246,545
Granted Patent B2
US 8,246,545 · App. 11/533,641 · Granted Aug 21, 2012

Ultrasound transducers with improved focus in the elevation direction

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,246,545
App. No.
11/533,641
Granted
Aug 21, 2012
Kind
B2
Abstract

A phased array ultrasound transducer is made from a plurality of independently excitable elements that are arranged in a row in the azimuthal direction, configured so that azimuthal aiming of an outgoing ultrasound beam is controlled by timing the excitation of the elements. The geometry of the elements is configured to focus the outgoing beam in the elevation direction so as to improve the images of target regions located at or about a particular radial distance. In some embodiments, this is accomplished by forming each element from a plurality of subelements that are stacked in the elevation direction, with the subelements of any given element all (a) wired together and (b) positioned at about the same distance from a substantially rod-shaped focal region.

Claims (32)

1. A phased array ultrasound transducer comprising:

a plurality of independently excitable elements that are arranged in a row in the azimuthal direction, configured so that azimuthal aiming of an outgoing ultrasound beam is controlled by timing the excitation of the elements, wherein the height of the elements in the elevation direction is at least as large as the width of the row of elements in the azimuthal direction,

wherein each of the elements comprises at least three subelements that are stacked in the elevation direction, with all the subelements of any given element having signal lines that are hard-wired together in parallel, and

wherein all the subelements of any given element are positioned at about the same distance from a substantially rod-shaped real focal region located in front of the transducer.

2. The phased array ultrasound transducer of claim 1 , wherein the subelements are canted appropriately so as to face towards the focal region.

3. The phased array ultrasound transducer of claim 1 , wherein all the subelements face straight forward.

4. The phased array ultrasound transducer of claim 1 , wherein the focal region is between about 60 and about 120 mm from the front of the transducer.

5. The phased array ultrasound transducer of claim 1 , wherein the focal region is between about 75 and about 105 mm from the front of the transducer.

6. The phased array ultrasound transducer of claim 1 , wherein the focal region is about 85 mm from the front of the transducer.

7. The phased array ultrasound transducer of claim 1 , wherein the height of the transducer in the elevation direction is at least twice as large as the width of the transducer in the azimuthal direction.

8. The phased array ultrasound transducer of claim 1 , wherein

the plurality of independently excitable elements that are arranged in a row in the azimuthal direction includes at least 20 independently excitable elements, and

the particular radial distance is between about 75 and about 105 mm.

9. A phased array ultrasound transducer comprising:

a plurality of independently excitable elements that are arranged in a row in the azimuthal direction, configured so that azimuthal aiming of an outgoing ultrasound beam is controlled by timing the excitation of the elements, wherein the height of the elements in the elevation direction is at least as large as the width of the row of elements in the azimuthal direction

wherein each of the elements comprises at least three subelements that are stacked in the elevation direction, with all of the at least three subelements having signal lines that are hard-wired together in parallel, and wherein the elements are configured to focus the outgoing beam in the elevation direction at a real focus located in front of the transducer so as to improve the images obtained from at or about a particular radial distance in front of the transducer.

10. The phased array ultrasound transducer of claim 9 , wherein all the subelements face directly forward.

11. The phased array ultrasound transducer of claim 9 , wherein all the subelements face towards a target region.

12. The phased array ultrasound transducer of claim 9 , wherein the particular radial distance is between about 60 and about 120 mm.

13. The phased array ultrasound transducer of claim 9 , wherein the particular radial distance is between about 75 and about 105 mm.

14. The phased array ultrasound transducer of claim 9 , wherein the particular radial distance is about 85 mm.

15. The phased array ultrasound transducer of claim 9 , wherein the height of the transducer in the elevation direction is at least as large as the width of the transducer in the azimuthal direction.

16. The phased array ultrasound transducer of claim 9 , wherein the height of the transducer in the elevation direction is at least twice as large as the width of the transducer in the azimuthal direction.

17. The phased array ultrasound transducer of claim 9 , wherein

the plurality of independently excitable elements that are arranged in a row in the azimuthal direction includes at least 20 independently excitable elements,

the height of the transducer in the elevation direction is at least as large as the width of the transducer in the azimuthal direction, and

the particular radial distance is between about 75 and about 105 mm.

18. An ultrasound transducer comprising:

a plurality of elements that are arranged in a row in the azimuthal direction, configured so that azimuthal aiming of an outgoing ultrasound beam is accomplished by controlling the excitation of the elements, wherein the height of the elements in the elevation direction is at least as large as the width of the row of elements in the azimuthal direction

wherein each of the elements comprises at least three subelements that are stacked in the elevation direction, with all of the at least three subelements having signal lines that are hard-wired together in parallel, and wherein the elements are configured to focus the outgoing beam in the elevation direction at a real focus located in front of the transducer so as to improve the images obtained from at or about a particular radial distance in front of the transducer.

19. The ultrasound transducer of claim 18 , wherein all the subelements face towards a target region.

20. The ultrasound transducer of claim 18 , wherein all the subelements face directly forward.

Assignments (5)
SECURITY INTEREST Recorded Apr 1, 2014
From: IMACOR INC.
To: FRIEDMAN, VALERIE
Reel/Frame 032572/0335 →
RELEASE OF SECURITY INTEREST Recorded Aug 29, 2011
From: WFD VENTURES LLC, AS AGENT
To: IMACOR, INC.
Reel/Frame 026820/0411 →
MERGER Recorded Jun 28, 2011
From: IMACOR LLC
To: IMACOR INC.
Reel/Frame 026515/0200 →
SECURITY AGREEMENT Recorded Dec 13, 2010
From: IMACOR, INC.
To: WFD VENTURES LLC, AS AGENT
Reel/Frame 025493/0201 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 29, 2006
From: ROTH, SCOTT; HASTINGS, HAROLD
To: IMACOR LLC
Reel/Frame 018581/0981 →