IP Library Granted Patent US 10,446,132
Granted Patent B2
US 10,446,132 · App. 16/271,658 · Granted Oct 15, 2019

Acoustic lens and applications thereof

Inventors: Susan A. Alie (Stoneham, MA); Jaime Scott Zahorian (Guilford, CT); Christopher Thomas McNulty (Guilford, CT); Paul Francis Cristman (New Haven, CT)
Assignee: Butterfly Network, Inc.
G10K11/02A61B8/00A61B8/4444A61B8/546B06B1/0292G10K11/165G10K11/168G10K11/30A61B8/08A61B8/4411A61B8/4455A61B8/4483A61B8/488
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Quick Facts
Patent No.
US 10,446,132
App. No.
16/271,658
Granted
Oct 15, 2019
Kind
B2
Abstract

The disclosed embodiments relate to a portable ultrasound device. Specifically, the disclosed embodiments relate to an acoustic lens positioned at an ultrasound probe. The acoustic lens may be configured for impedance matching and signal attenuation. In one embodiment, ultrasound signal attenuation is provided by forming an acoustic lens as a solid admixture of signal attenuating particles in a polymer matrix.

Claims (33)

1. An ultrasound apparatus, comprising:

an ultrasound transducer array, the transducer array having a plurality of capacitive micromachined ultrasound transducers (CMUTS), each transducer configured to transmit and receive ultrasound signals;

an acoustic lens configured over a first surface of the ultrasound transducer array;

a circuitry in communication with the ultrasound transducer array, the circuitry configured to convert the received ultrasound signal to a representative digital signal; and

a heat sink configured over a second surface of the transducer array;

wherein the acoustic lens includes an outer layer and an inner layer, the outer layer and the inner layer configured to provide at least one of signal attenuation or impedance matching for the transmitted or the received ultrasound signals; and

wherein the acoustic lens inner layer further comprises a solid mixture of room-temperature vulcanized (RTV) polymer and block polymer.

2. The ultrasound apparatus of claim 1 , wherein the block polymer is one or more of a thermoplastic material or a block-copolymer.

3. The ultrasound apparatus of claim 1 , wherein the solid mixture comprises RTV particles dispersed in a block co-polymer.

4. The ultrasound apparatus of claim 3 , wherein the particles are about 100 microns or less.

5. The ultrasound apparatus of claim 1 , wherein the RTV polymer comprises one or more of RTV 615 or RTV 630.

6. The ultrasound apparatus of claim 1 , wherein the solid mixture further comprises a filler.

7. The ultrasound apparatus of claim 6 , wherein the filler is one or more of Al 2 O 3 or graphite.

8. The ultrasound apparatus of claim 1 , wherein the acoustic lens outer layer comprises RTV 630.

9. The ultrasound apparatus of claim 1 , wherein the heat sink further comprises a plurality of tabs.

10. The ultrasound apparatus of claim 1 , further comprising a tungsten-epoxy layer interposed between the heat sink and the inner layer of the acoustic lens to attenuate transducer vibration.

11. The ultrasound apparatus of claim 10 , wherein the tungsten-epoxy layer is integrated into the heat sink.

12. The ultrasound apparatus of claim 1 , wherein the outer layer is configured to receive an ultrasound gel pad.

13. An ultrasound apparatus, comprising,

an ultrasound transducer array, the transducer array having a plurality of capacitive micromachined ultrasound transducers (CMUTs), each transducer configured to transmit an ultrasound signal and to receive an ultrasound signal;

an acoustic lens configured over a first surface of the ultrasound transducer array;

a heat sink positioned over a second surface of the transducer array;

a circuit board in communication with the ultrasound transducer array to process the ultrasound signals;

wherein the acoustic lens comprises a plurality of signal-attenuating particles in a polymer matrix to thereby provide signal attenuation and impedance matching for the ultrasound signals; and

wherein the signal-attenuating particles comprise PEBAX.

14. The ultrasound apparatus of claim 13 , wherein the polymer matrix comprises a room-temperature vulcanized (RTV) polymer.

15. The ultrasound apparatus of claim 13 , wherein the polymer matrix further comprises one or more of Al 2 O 3 or graphite.

16. The ultrasound apparatus of claim 13 , wherein the heat sink further comprises a plurality of tabs.

17. The ultrasound apparatus of claim 13 , further comprising a tungsten-epoxy layer interposed between the heatsink and an inner layer of the acoustic lens to attenuate transducer vibration.

18. The ultrasound apparatus of claim 17 , wherein the tungsten-epoxy layer is integrated into the heat sink.

19. The ultrasound apparatus of claim 13 , wherein a surface of the acoustic lens is configured to receive an ultrasound gel pad.

20. The ultrasound apparatus of claim 13 , wherein the circuit board processes the ultrasound signals by converting a digital signal into an ultrasound signal prior to transmission of the ultrasound signal.

21. The ultrasound apparatus of claim 13 , wherein the circuit board processes ultrasound signals received by the transducer array by converting them to digital signals.

Assignments (3)
CHANGE OF NAME Recorded Mar 16, 2022
From: BUTTERFLY NETWORK, INC.
To: BFLY OPERATIONS, INC.
Reel/Frame 059369/0969 →
CHANGE OF NAME Recorded Jan 24, 2022
From: BUTTERFLY NETWORK, INC.
To: BFLY OPERATIONS, INC.
Reel/Frame 058823/0668 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 16, 2019
From: ALIE, SUSAN A.; ZAHORIAN, JAIME SCOTT; MCNULTY, CHRISTOPHER THOMAS; CRISTMAN, PAUL FRANCIS
To: BUTTERFLY NETWORK, INC.
Reel/Frame 049763/0976 →
Continuity (3)
Continuation PCTUS2017066124 · Dec 13, 2017
Provisional Application 62433275 · Dec 13, 2016
Related Publication 20190180728A1 · Jun 13, 2019