IP Library Granted Patent US 10,820,122
Granted Patent B2
US 10,820,122 · App. 15/364,277 · Granted Oct 27, 2020

Embedded antenna

Inventors: Steen Gulstorff (Ballerup, DK); Anders Heidemann Gregersen (Ballerup, DK)
Assignee: GN Hearing A/S
H04R25/554A61N1/37229A61N1/36036H04R25/60H04R25/604H04R2225/51H04R2225/53H04R2225/55
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Quick Facts
Patent No.
US 10,820,122
App. No.
15/364,277
Granted
Oct 27, 2020
Kind
B2
Abstract

A hearing prosthesis includes: a hearing loss processor configured to process an audio signal and compensate a hearing loss of a user of the hearing prosthesis, and output a hearing loss compensated audio signal based on the audio signal; an output transducer configured to convert the hearing loss compensated audio signal into an auditory output signal to be received by a human auditory system of the user; a near-field magnetic induction communication unit configured for wireless communication; and a magnetic field antenna operatively connected with the near-field magnetic induction communication unit; wherein at least a part of the magnetic field antenna is embedded in a multi-layer printed circuit board.

Claims (74)

1. A hearing prosthesis comprising:

a hearing loss processor configured to process an audio signal and compensate a hearing loss of a user of the hearing prosthesis, and output a hearing loss compensated audio signal based on the audio signal;

an output device configured to provide an output signal based on the hearing loss compensated audio signal;

a near-field magnetic induction communication unit configured for wireless communication; and

a magnetic field antenna operatively connected with the near-field magnetic induction communication unit;

wherein the magnetic field antenna comprises a coil and a core surrounded by the coil;

wherein the core is embedded in a multi-layer printed circuit board; and

wherein the hearing prosthesis further comprises a dielectric material between a vertical segment of the coil and the core that is surrounded by the coil.

2. The hearing prosthesis according to claim 1 , wherein the near-field magnetic induction communication unit is embedded in the multi-layer printed circuit board, and wherein the multi-layer printed circuit board holds conductive traces for electrical interconnection of the near-field magnetic induction communication unit with the magnetic field antenna.

3. The hearing prosthesis according to claim 1 , wherein the multi-layer printed circuit board comprises a conductive layer configured for magnetic shielding of the magnetic field antenna.

4. The hearing prosthesis according to claim 1 , wherein the hearing loss processor is embedded in the multi-layer printed circuit board.

5. The hearing prosthesis according to claim 1 , wherein the coil includes conductive traces formed in a conductive layer of the multi-layer printed circuit board.

6. The hearing prosthesis according to claim 1 , wherein the near-field magnetic induction communication unit is configured for provision of the audio signal.

7. The hearing prosthesis according to claim 1 , further comprising a microphone configured for conversion of an acoustic signal received at the microphone into the audio signal and, for provision of the audio signal.

8. The hearing prosthesis according to claim 1 , further comprising a housing, wherein the magnetic field antenna is positioned in the housing of the hearing prosthesis such that, when the housing is worn at an ear of the user of the hearing prosthesis in its intended position during operation of the hearing prosthesis, a magnetic field generated by the magnetic field antenna will be directed towards an other ear of the user of the hearing prosthesis.

9. The hearing prosthesis according to claim 1 , further comprising:

a transmitter housing to be attached to a head of the user; and

a receiver housing to be implanted underneath a skin of the user;

wherein the magnetic field antenna is positioned in the transmitter housing or the receiver housing.

10. The hearing prosthesis according to claim 1 , wherein the core comprises a ferrite core.

11. The hearing prosthesis according to claim 1 , wherein the output device comprises a receiver.

12. The hearing prosthesis according to claim 1 , wherein the output device comprises an electrode of an implant.

13. The hearing prosthesis according to claim 1 , wherein the core has a top surface, a first side surface, and a second side surface opposite from the first side surface, and wherein the first side surface and the second side surface of the core are separated from the coil; and

wherein the dielectric material is between the first side surface of the core and the coil.

14. The hearing prosthesis according to claim 13 , further comprising additional dielectric material separating the second side surface of the core from the coil.

15. The hearing prosthesis according to claim 13 , wherein the top surface of the core is also separated from the coil.

16. The hearing device according to claim 1 , wherein the coil comprises a loop surrounding the core, and wherein the hearing device further includes additional dielectric material disposed between the loop of the coil and the core.

17. A hearing device comprising:

a hearing loss processor configured to process an audio signal and compensate a hearing loss of a user of the hearing device, and output a hearing loss compensated audio signal based on the audio signal;

an output device configured to provide an output signal based on the hearing loss compensated audio signal;

a communication unit; and

an antenna operatively connected with the communication unit;

wherein the antenna comprises a coil and a core surrounded by the coil;

wherein the core is embedded in a multi-layer printed circuit board; and

wherein the hearing device further comprises a dielectric material between a vertical segment of the coil and the core that is surrounded by the coil.

18. The hearing device according to claim 17 , wherein the communication unit comprises a near field magnetic induction communication unit.

19. The hearing device according to claim 17 , wherein at least a part of the communication unit is embedded in the multi-layer printed circuit board, and wherein the multi-layer printed circuit board holds conductive traces for electrical interconnection of the communication unit with the antenna.

20. The hearing device according to claim 17 , wherein the multi-layer printed circuit board comprises a conductive layer configured for magnetic shielding of the antenna.

21. The hearing device according to claim 17 , wherein at least a part of the hearing loss processor is embedded in the multi-layer printed circuit board.

22. The hearing device according to claim 17 , wherein the coil includes conductive traces formed in a conductive layer of the multi-layer printed circuit board.

23. The hearing device according to claim 17 , further comprising a housing, wherein the antenna is positioned in the housing of the hearing device such that, when the housing is worn at an ear of the user of the hearing device in its intended position during operation of the hearing device, a magnetic field generated by the antenna will be directed towards an other ear of the user of the hearing device.

24. The hearing device according to claim 17 , further comprising a receiver accommodated in a receiver housing to be implanted underneath a skin of the user for receiving the hearing loss compensated audio signal, and for providing the hearing loss compensated audio signal to an electrode to be implanted in a cochlea of the user.

25. The hearing device according to claim 17 , wherein the output device comprises a receiver.

26. The hearing device according to claim 17 , wherein the output device comprises an electrode of an implant.

27. The hearing device according to claim 17 , further comprising:

a transmitter housing to be attached to a head of the user; and

a receiver housing to be implanted underneath a skin of the user;

wherein the antenna is positioned in the transmitter housing or the receiver housing.

28. The hearing device according to claim 17 , wherein the core has a top surface, a first side surface, and a second side surface opposite from the first side surface, and wherein the first side surface and the second side surface of the core are separated from the coil; and

wherein the dielectric material is between the first side surface of the core and the coil.

29. The hearing device according to claim 28 , further comprising additional dielectric material separating the second side surface of the core from the coil.

30. The hearing device according to claim 28 , wherein the top surface of the core is also separated from the coil.

31. The hearing device according to claim 28 , wherein the coil comprises a loop surrounding the core, and wherein the hearing device further includes additional dielectric material disposed between the loop of the coil and the core.

32. A hearing device comprising:

a hearing loss processor configured to process an audio signal and compensate a hearing loss of a user of the hearing device, and output a hearing loss compensated audio signal based on the audio signal;

an output device configured to provide an output signal based on the hearing loss compensated audio signal;

a communication unit; and

an antenna operatively connected with the communication unit;

wherein the antenna comprises a coil and a core;

wherein the core is embedded in a multi-layer printed circuit board; and

wherein the coil comprises a loop surrounding the core, and wherein the hearing device further comprises a dielectric material between the loop of the coil and the core that is surrounded by the loop of the coil.

33. The hearing device according to claim 32 , wherein the communication unit comprises a near field magnetic induction communication unit.

34. The hearing device according to claim 32 , wherein at least a part of the communication unit is embedded in the multi-layer printed circuit board, and wherein the multi-layer printed circuit board holds conductive traces for electrical interconnection of the communication unit with the antenna.

35. The hearing device according to claim 32 , wherein the multi-layer printed circuit board comprises a conductive layer configured for magnetic shielding of the antenna.

36. The hearing device according to claim 32 , wherein at least a part of the hearing loss processor is embedded in the multi-layer printed circuit board.

37. The hearing device according to claim 32 , wherein the coil includes conductive traces formed in a conductive layer of the multi-layer printed circuit board.

38. The hearing device according to claim 32 , further comprising a housing, wherein the antenna is positioned in the housing of the hearing device such that, when the housing is worn at an ear of the user of the hearing device in its intended position during operation of the hearing device, a magnetic field generated by the antenna will be directed towards an other ear of the user of the hearing device.

39. The hearing device according to claim 32 , further comprising a receiver accommodated in a receiver housing to be implanted underneath a skin of the user for receiving the hearing loss compensated audio signal, and for providing the hearing loss compensated audio signal to an electrode to be implanted in a cochlea of the user.

40. The hearing device according to claim 32 , wherein the output device comprises a receiver.

41. The hearing device according to claim 32 , wherein the output device comprises an electrode of an implant.

42. The hearing device according to claim 32 , further comprising:

a transmitter housing to be attached to a head of the user; and

a receiver housing to be implanted underneath a skin of the user;

wherein the antenna is positioned in the transmitter housing or the receiver housing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2017
From: GULSTORFF, STEEN; GREGERSEN, ANDERS HEIDEMANN
To: GN HEARING A/S
Reel/Frame 042243/0799 →
Priority Claims (1)
EP 16199581 · Nov 18, 2016 · regional
Continuity (1)
Related Publication 20180146309A1 · May 24, 2018
Cited By (1)
US 12,482,595