IP Library Granted Patent US 12,284,507
Granted Patent B2
US 12,284,507 · App. 18/112,237 · Granted Apr 22, 2025

Force transducers for electroacoustic drivers and loudspeakers containing same

Inventors: Joseph F. Pinkerton (Austin, TX); David A. Badger (Lago Vista, TX); James A. Andrews (Austin, TX); William Martin Lackowski (Austin, TX); William Neil Everett (Cedar Park, TX)
Assignee: Brane Audio, LLC
H04R9/06H04R1/025H04R1/2803H04R3/00H04R9/025H04R9/041H04R9/046H04R11/02H04R17/00H04R29/001H04R29/003H04R2400/07
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Quick Facts
Patent No.
US 12,284,507
App. No.
18/112,237
Granted
Apr 22, 2025
Kind
B2
Abstract

Force transducers for use in electrostatic drivers, including electrostatic drivers that can be utilized in loudspeaker systems that utilize drivers having a magnetic negative spring (MNS) (such as reluctance assist drivers (RAD) and permanent magnet crown (PMC) drivers). The electroacoustic drivers having the force transducers can be used at all audio frequencies, including subwoofer frequencies.

Claims (42)

1. A force transducer comprising:

(a) an inner ferromagnetic core and an outer ferromagnetic core;

(b) a first magnetic pole having a first magnetic polarization and a first magnetic pole axial length, wherein

(i) the first magnetic pole has a first portion of the first magnetic pole that is connected to the inner ferromagnetic core and is facing the outer ferromagnetic core, wherein axial length of the first portion of the first magnetic pole is the first magnetic pole axial length, and

(ii) the first magnetic pole has a second portion of the first magnetic pole that is connected to the outer ferromagnetic core and is facing the inner ferromagnetic core, wherein axial length of the second portion of the first magnetic pole is the first magnetic pole axial length,

(c) a second magnetic pole having a second magnetic polarization and a second magnetic pole axial length, wherein

(i) the second magnetic pole has a first portion of the second magnetic pole that is connected to the inner ferromagnetic core and is facing the outer ferromagnetic core, wherein axial length of the first portion of the second magnetic pole is the second magnetic pole axial length,

(ii) the second magnetic pole has a second portion of the second magnetic pole that is connected to the outer ferromagnetic core and is facing the inner ferromagnetic core, wherein axial length of the second portion of the second magnetic pole is the second magnetic pole axial length,

(iii) the first magnetic polarization and the second magnetic polarization are oppositely directed, and

(iv) the first magnetic pole axial length is equal ±10% to the second magnetic pole axial length;

(d) a first movable coil having a first moveable coil axial length;

(e) a first moveable magnet operatively connected to the first moveable coil at an axial distance that is within 10% of the first movable coil axial length;

(f) a second moveable coil having a second moveable coil axial length, wherein

(i) the first moveable coil is movably located between (A) the first portion of the first magnetic pole connected to the inner ferromagnetic core and (B) the second portion of the first magnetic pole connected to the outer ferromagnetic core,

(ii) the second moveable coil is movably located between (A) the first portion of the second magnetic pole connected to the inner ferromagnetic core and (B) the second portion of the second magnetic pole connected to the outer ferromagnetic core, and

(iii) the first moveable coil length is equal ±10% to the second moveable coil length; and

(g) a second moveable magnet operatively connected to the second moveable coil at an axial distance that is within 10% of the second movable coil axial length.

2. The force transducer of claim 1 , wherein the first magnetic pole axial length is equal ±10% to the first moveable coil length.

3. The force transducer of claim 1 , wherein the second magnetic pole axial length is equal ±10% to the second moveable coil length.

4. The force transducer of claim 1 , wherein a first outer stationary magnet and a second outer stationary magnet are connected to the outer ferromagnetic core.

5. The force transducer of claim 4 , wherein the first outer stationary magnet and the second outer stationary magnet are oppositely polarized.

6. The force transducer of claim 4 , wherein the first outer stationary magnet and the second outer stationary magnet are permanent magnets.

7. The force transducer of claim 1 , wherein a first inner stationary magnet and a second inner stationary magnet are connected to the inner ferromagnetic core.

8. The force transducer of claim 7 , wherein the first inner stationary magnet and the second inner stationary magnet are oppositely polarized.

9. The force transducer of claim 7 , wherein the first inner stationary magnet and the second inner stationary magnet are permanent magnets.

10. The force transducer of claim 1 , wherein the first moveable magnet and the second moveable magnet are oppositely polarized.

11. The force transducer of claim 1 , wherein

(a) a first outer stationary magnet and a second outer stationary magnet are connected to the outer ferromagnetic core, and

(b) the first moveable magnet and the first outer stationary magnet are oppositely polarized.

12. The force transducer of claim 1 , wherein

(a) a first outer stationary magnet and a second outer stationary magnet are connected to the outer ferromagnetic core, and

(b) the second moveable magnet and the second stationary magnet are oppositely polarized.

13. The force transducer of claim 1 , wherein

(a) a first inner stationary magnet and a second inner stationary magnet are connected to the inner ferromagnetic core, and

(b) the first moveable magnet and the first inner stationary magnet are oppositely polarized.

14. The force transducer of claim 1 , wherein

(a) a first inner stationary magnet and a second inner stationary magnet are connected to the inner ferromagnetic core, and

(b) the second moveable magnet and the second inner stationary magnet are oppositely polarized.

15. The force transducer of claim 1 , wherein the first moveable magnet and the second moveable magnet are permanent magnets.

16. The force transducer of claim 1 further comprising a position sensor, wherein the position sensor is operatively connected to the inner ferromagnetic core and outer ferromagnetic core such that the position sensor is stationary with respect to the inner ferromagnetic core and outer ferromagnetic core.

17. The force transducer of claim 16 , wherein the position sensor is an infrared position sensor.

18. A loudspeaker comprising a force transducer of claim 1 .

Assignments (3)
SECURITY INTEREST Recorded Apr 20, 2026
From: BRANE AUDIO, LLC
To: TBFT INVESTMENTS, LLC
Reel/Frame 074414/0716 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2024
From: PINKERTON, JOSEPH F.; BADGER, DAVID A.; ANDREWS, JAMES A.; LACKOWSKI, WILLIAM MARTIN; EVERETT, WILLIAM NEIL
To: CLEAN ENERGY LABS, LLC
Reel/Frame 066759/0379 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2024
From: CLEAN ENERGY LABS, LLC
To: BRANE AUDIO, LLC
Reel/Frame 066759/0406 →
Continuity (5)
Continuation 17794567
Provisional Application 63048393 · Jul 6, 2020
Provisional Application 63022125 · May 8, 2020
Provisional Application 62963833 · Jan 21, 2020
Related Publication 20230199401A1 · Jun 22, 2023
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