IP Library Granted Patent US 10,277,996
Granted Patent B2
US 10,277,996 · App. 14/962,543 · Granted Apr 30, 2019

Hearing aid with a flexible carrier antenna and related method

Inventor: Benny Rasmussen (Frederiksberg, DK)
Assignee: GN HEARING A/S
H04R25/608H01Q1/273H01Q1/38H01Q7/00H04R25/554H05K1/028H05K1/111H04R2225/51
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Quick Facts
Patent No.
US 10,277,996
App. No.
14/962,543
Granted
Apr 30, 2019
Kind
B2
Abstract

A hearing aid having an electrical assembly, the electrical assembly includes a printed circuit board having a first board surface and a second board surface, the printed circuit board having a first pad in a first pad region on the first board surface, the first pad region having a first board normal; a flexible printed circuit board comprising an antenna, the antenna having a first terminal in a first terminal region on a first flexfilm surface of the flexible printed circuit board, the first terminal region having a first terminal normal; and first electrically conductive material connecting the first pad and the first terminal, and wherein the first terminal normal and the first board normal forms a first angle that is anywhere from 30° to 150°.

Claims (27)

1. A hearing aid having an electrical assembly, the electrical assembly comprising:

a printed circuit board having a first board surface and a second board surface, the printed circuit board having a first pad in a first pad region on the first board surface, the first pad region having a first board normal;

a flexible printed circuit board comprising an antenna, the antenna having a first terminal in a first terminal region on a first flexfilm surface of the flexible printed circuit board, the first terminal region having a first terminal normal; and

first electrically conductive material connecting the printed circuit board and the flexible printed circuit board, wherein the first electrically conductive material connects the first pad and the first terminal, and wherein the first terminal normal and the first board normal forms a first angle that is anywhere from 30° to 150°;

wherein the first terminal of the antenna abuts against the first pad of the printed circuit board, the first terminal of the antenna being different from the first electrically conductive material that connects the first pad and the first terminal.

2. The hearing aid according to claim 1 , wherein the first angle is anywhere from 80° to 100°.

3. The hearing aid according to claim 1 ,

wherein the printed circuit board has a first indentation in a first edge part of the printed circuit board, the first indentation accommodating at least a part of the first terminal while the first terminal is oriented at a greater-than-zero angle with respect to a major plane of the printed circuit board.

4. The hearing aid according to claim 1 , wherein the printed circuit board has an edge with an edge part and wherein the first electrically conductive material connects at least a part of the first flexfilm surface to the edge part of the printed circuit board.

5. The hearing aid according to claim 1 , wherein the printed circuit board comprises a second pad in a second pad region on the first board surface or on the second board surface, the second pad region having a second board normal;

wherein the flexible printed circuit board has a second terminal in a second terminal region on the first flexfilm surface or on a second flexfilm surface of the flexible printed circuit board, the second terminal region having a second terminal normal; and

wherein the electrical assembly comprises second electrically conductive material connecting the second pad and the second terminal, and wherein the second terminal normal and the second board normal forms a second angle that is anywhere from 30° to 150°.

6. The hearing aid according to claim 5 , wherein the printed circuit board has a first indentation in a first edge part of the printed circuit board, the first indentation accommodating at least a part of the first terminal that is associated with the flexible printed circuit board while the first terminal is oriented at a greater-than-zero angle with respect to a major plane of the printed circuit board; and

wherein the printed circuit board has a second indentation in a second edge part of the printed circuit board, the second indentation accommodating at least a part of the second terminal that is associated with the flexible printed circuit board.

7. The hearing aid according to claim 5 , wherein the printed circuit board comprises a third pad in a third pad region on the first board surface or on the second board surface, the third pad region having a third board normal;

wherein the flexible printed circuit board has a third terminal in a third terminal region on the first flexfilm surface or on the second flexfilm surface, the third terminal region having a third terminal normal; and

wherein the electrical assembly comprises third electrically conducting material connecting the third pad of the printed circuit board and the third terminal of the flexible printed circuit board, and wherein the third terminal normal and the third board normal forms a third angle that is anywhere from 30° to 150°.

8. The hearing aid according to claim 7 , wherein the printed circuit board has a third indentation in a third edge part of the printed circuit board, the third indentation accommodating at least a part of the third terminal of the flexible printed circuit board while the third terminal is oriented at a greater-than-zero angle with respect to a major plane of the printed circuit board.

9. The hearing aid according to claim 1 , wherein a distance from a surface of a part of the flexible printed circuit board where the antenna is located, to an edge of the printed circuit board, is less than a thickness of the printed circuit board.

10. The hearing aid according to claim 1 , further comprising a transceiver mounted on the printed circuit board.

11. The hearing aid according to claim 1 , wherein the antenna extends from an edge of the printed circuit board in a first direction that is away from the first board surface of the printed circuit board.

12. The hearing aid according to claim 11 , wherein the antenna also extends from the edge of the printed circuit board in a second direction that is away from the second board surface of the printed circuit board.

13. The hearing aid according to claim 12 , wherein the second board surface is opposite from the first board surface.

14. The hearing aid according to claim 1 , wherein the antenna extends along an edge of the printed circuit board.

15. A method for manufacturing an electrical assembly for a hearing aid, the electrical assembly comprising a printed circuit board and a flexible printed circuit board, the printed circuit board having a first board surface and a second board surface, the printed circuit board having a first pad in a first pad region on the first board surface, the first pad region having a first board normal, wherein the flexible printed circuit board has a first flexfilm surface and a second flexfilm surface, the flexible printed circuit board comprising an antenna, the antenna having a first terminal in a first terminal region on the first flexfilm surface, the first terminal region having a first terminal normal, the method comprising:

arranging the printed circuit board and the flexible printed circuit board such that the first terminal normal and the first board normal form a first angle that is anywhere from 30° to 150°; and

connecting the first pad and the first terminal with a first electrically conductive material to thereby connect the printed circuit board and the flexible printed circuit board, the first terminal of the antenna being different from the first electrically conductive material that connects the first pad and the first terminal.

Assignments (2)
CHANGE OF NAME Recorded Jan 25, 2019
From: GN RESOUND A/S
To: GN HEARING A/S
Reel/Frame 049509/0567 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2019
From: RASMUSSEN, BENNY
To: GN HEARING A/S
Reel/Frame 048136/0158 →
Priority Claims (2)
DK 2015 70782 · Dec 1, 2015 · national
EP 15197184 · Dec 1, 2015 · regional
Continuity (1)
Related Publication 20170156011A1 · Jun 1, 2017