IP Library Granted Patent US 11,082,765
Granted Patent B2
US 11,082,765 · App. 16/591,984 · Granted Aug 3, 2021

Adjustment mechanism for tissue transducer

Inventors: Morteza Khaleghimeybodi (Bothell, WA); Michael Edward Franks (Snoqualmie, WA)
Assignee: Facebook Technologies, LLC
H04R1/1041H04R2460/13
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Quick Facts
Patent No.
US 11,082,765
App. No.
16/591,984
Granted
Aug 3, 2021
Kind
B2
Abstract

A headset includes a tissue transducer on a carriage that translates along a temple portion of the headset. The carriage is configured to contact the helix root of a user's ear. The helix root provides a reference point, and when the carriage is contact with the helix root, the tissue transducer is configured to be located in a target area. By maintaining a fixed location of the tissue transducer relative to the helix root of the user's ear, the tissue transducer may be accurately positioned, even for users with different head shapes and sizes.

Claims (30)

1. An adjustable transducer assembly comprising:

a tissue transducer configured to provide audio content to a user of a headset; and

a carriage configured to translate along a temple of the headset, the carriage coupled to the tissue transducer and including an indexing feature, wherein the indexing feature is configured to translate with the carriage along the temple in a direction toward a front portion of the headset in response to contact with a helix root of an ear of the user such that the indexing feature is positioned against the helix root and the tissue transducer is positioned to provide the audio content via tissue conduction to a target area.

2. The adjustable transducer assembly of claim 1 , further comprising at least one spring configured to bias the carriage in a rearward position in a direction away from a hinged end of the temple.

3. The adjustable transducer assembly of claim 1 , wherein the tissue transducer comprises a cartilage conduction transducer, and wherein the target area is a tragus of the ear of the user.

4. The adjustable transducer assembly of claim 1 , further comprising a motor configured to drive the carriage along the temple.

5. The adjustable transducer assembly of claim 1 , wherein the indexing feature is rotatably coupled to the carriage.

6. The adjustable transducer assembly of claim 1 , wherein the tissue transducer is located at least partially within the carriage.

7. The adjustable transducer assembly of claim 1 , wherein the tissue transducer is coupled to the indexing feature via a hinge.

8. The adjustable transducer assembly of claim 1 , wherein in response to an input, the tissue transducer is configured to move from a cartilage conduction position to a bone conduction position, or from the bone conduction position to the cartilage conduction position.

9. A headset comprising:

a frame including a temple;

an adjustable transducer assembly coupled to the template, the adjustable transducer assembly comprising:

a tissue transducer configured to provide audio content to a user of a headset, and

a carriage configured to translate along a temple of the headset, the carriage coupled to the tissue transducer and including an indexing feature, wherein the indexing feature is configured to translate with the carriage along the temple in a direction toward a front portion of the headset in response to contact with a helix root of an ear of the user such that the indexing feature is positioned against the helix root and the tissue transducer is positioned to provide the audio content via tissue conduction to a target area.

10. The headset of claim 9 , further comprising at least one spring configured to bias the carriage in a rearward position.

11. The headset of claim 9 , wherein the tissue transducer comprises a cartilage conduction transducer, and wherein the target area is a tragus of the ear of the user.

12. The headset of claim 9 , further comprising a motor configured to drive the carriage along the temple.

13. The headset of claim 12 , wherein the motor is configured to position the tissue transducer based on an input from the user.

14. The headset of claim 9 , wherein the indexing feature is rotatably coupled to the carriage.

15. The headset of claim 9 , wherein the tissue transducer is located at least partially within the carriage.

16. The headset of claim 9 , wherein the tissue transducer is coupled to the indexing feature via a hinge.

17. The headset of claim 16 , wherein in response to an input from the user, the tissue transducer is configured to move from a cartilage conduction position to a bone conduction position.

18. A headset comprising:

a frame including a temple;

a carriage configured to translate along the temple in a direction toward a front portion of the headset in response to contact with a helix root of an ear of a user; and

a cartilage conduction transducer coupled to the carriage, wherein the cartilage conduction transducer is configured to contact a tragus of a user.

19. The headset of claim 18 , further comprising an indexing feature configured to contact the helix root.

20. The headset of claim 19 , wherein a distance between the indexing feature and the cartilage conduction transducer is fixed.

21. The headset of claim 19 , wherein the cartilage conduction transducer is coupled to the indexing feature via a hinge.

Assignments (2)
CHANGE OF NAME Recorded Jun 8, 2022
From: FACEBOOK TECHNOLOGIES, LLC
To: META PLATFORMS TECHNOLOGIES, LLC
Reel/Frame 060315/0224 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2019
From: KHALEGHIMEYBODI, MORTEZA; FRANKS, MICHAEL EDWARD
To: FACEBOOK TECHNOLOGIES, LLC
Reel/Frame 050628/0732 →
Continuity (1)
Related Publication 20210105552A1 · Apr 8, 2021
Cited By (1)
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