IP Library Granted Patent US 11,805,365
Granted Patent B2
US 11,805,365 · App. 17/210,516 · Granted Oct 31, 2023

Electroacoustic diaphragm, transducer, audio device, and methods having subcircuits

Inventor: Dragoslav Colich (Orange, CA)
Assignee: AUDEZE, LLC
H04R7/06H01F7/0289H04R2307/027
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Quick Facts
Patent No.
US 11,805,365
App. No.
17/210,516
Granted
Oct 31, 2023
Kind
B2
Abstract

An electroacoustic diaphragm comprises a membrane, and an electrically conductive circuit carried by the membrane, such that a segment of the electrically conductive circuit is divided into two or more separate subcircuits. An electroacoustic transducer assembly comprises a frame, the novel diaphragm supported on the frame, and a magnetic element disposed adjacent the novel diaphragm whereby the transducer achieves uniform force distribution across the novel diaphragm. An audio device comprises a housing having an acoustic opening and the electroacoustic transducer including the novel diaphragm. Methods for constructing a transducer comprises determining the flux density of a magnetic field and configuring a diaphragm with separate subcircuits to correlate or inversely correlate to the flux density.

Claims (34)

1. A diaphragm comprising:

a membrane of a planar magnetic speaker, the membrane having a surface; and

an electrically conductive trace carried by the membrane, wherein a segment of the electrically conductive trace is divided into two or more separate subtraces configured to conduct different current strengths.

2. The diaphragm of claim 1 wherein the two or more separate subtraces of the segment extend for a length of the electrically conductive circuit.

3. The diaphragm of claim 1 wherein the two or more separate subtraces have different widths.

4. The diaphragm of claim 1 wherein at least two separate subtraces have different thicknesses.

5. The diaphragm of claim 1 wherein the two or more separate subtraces are electrically in parallel.

6. The diaphragm of claim 1 wherein the two or more separate subtraces are electrically equivalent to a parallel impedance circuit.

7. The diaphragm of claim 1 wherein the two or more separate subtraces have different resistances.

8. The diaphragm of claim 7 wherein the different resistances of the two or more separate subtraces is determined by at least one of different heights, different widths, different lengths, different shapes, and different specific resistivities.

9. The diaphragm of claim 1 wherein a voltage across the electrically conductive trace generates different electrical currents through the two or more separate subtraces.

10. The diaphragm of claim 1 wherein carried by the membrane includes at least one of: the electrically conductive trace disposed on one side of the membrane, the electrically conductive trace disposed on both sides of the membrane, or the electrically conductive trace disposed within the membrane.

11. A transducer comprising:

a frame;

a diaphragm supported by the frame, the diaphragm having a membrane of a planar magnetic speaker, the membrane having a surface, the membrane carrying an electrically conductive trace with a segment of the electrically conductive trace operably divided into two or more separate subtraces configured to conduct different current strengths; and

a magnetic element disposed adjacent to the surface of the diaphragm.

12. The transducer of claim 11 wherein the two or more separate subtraces of the segment extend for a length of the electrically conductive trace.

13. The transducer of claim 11 whereby a voltage connected across the two or more separate subtraces generates two or more different current levels in the two or more separate subtraces.

14. The transducer of claim 13 wherein varying flux strengths of the magnetic element across the diaphragm are correlated with the two or more separate subtraces conducting the two or more different current levels thereby generating comparable Lorentz forces in the two or more separate subtraces.

15. The transducer of claim 14 wherein the comparable Lorentz forces generated in the two or more separate subtraces exert a uniform force distribution across the diaphragm.

16. The transducer of claim 11 wherein the magnetic element comprises multiple magnetic elements of angularly magnetized magnets.

17. The transducer of claim 11 wherein the magnetic element comprises multiple magnetic elements disposed on both sides of the diaphragm.

18. The transducer of claim 11 wherein the magnetic element comprises multiple magnets configured in at least one of direct opposition, staggered opposition, and a combination of direct opposition and staggered opposition.

19. The transducer of claim 11 wherein the magnetic element comprises multiple magnets from at least one of vertical magnets, vertical magnets with back plates, horizontal magnets, block magnets, disc magnets, U-channel magnets, horseshoe magnets, serpentine magnets, and Halbach magnets.

20. The transducer of claim 11 wherein the magnetic element is at least one of a round magnet, a curved magnet, a straight magnet, a diagonally magnetized magnet, a Fluxor® magnet, a square magnet, and a bar magnet.

21. An audio device comprising:

a housing having an acoustic opening; and

a planar magnetic transducer disposed in the housing, the transducer comprising:

a frame;

a diaphragm supported by the frame, the diaphragm having a membrane and a surface, the membrane carrying an electrically conductive trace with a segment of the electrically conductive trace operably divided into two or more separate subtraces configured to conduct different current strengths; and

a magnetic element disposed adjacent to the diaphragm surface.

22. A method of constructing a transducer comprising the steps of:

determining a flux density of a magnetic field; and

configuring a diaphragm, the diaphragm having a membrane of a planar magnetic speaker, the membrane having a surface, the membrane carrying an electrically conductive trace with a segment of the electrically conductive trace operably divided into two or more separate subtraces configured to conduct different current strengths such that the two or more separate subtraces configured to conduct different current strengths inversely correlate to the flux density of the magnetic field.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2024
From: COLICH, DRAGOSLAV
To: AUDEZE LLC
Reel/Frame 069562/0524 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2023
From: COLICH, DRAGOSLAV
To: AUDEZE, LLC
Reel/Frame 063545/0473 →
Continuity (1)
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