IP Library Granted Patent US 6,996,243
Granted Patent B2
US 6,996,243 · App. 10/378,087 · Granted Feb 7, 2006

Loudspeaker with shaped sound field

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Quick Facts
Patent No.
US 6,996,243
App. No.
10/378,087
Granted
Feb 7, 2006
Kind
B2
Abstract

The loudspeaker and method provide a driver of a loudspeaker that is movable parallel to an axis of movement through a center of the driver to produce sound waves. The driver is aligned with the driver plane orthogonal to the axis of movement. The driver plane is at a non-zero acute angle to a support plane. A reflector is mounted facing a diaphragm of the driver for reflecting sound waves from the driver. The reflector is configured relative to the driver such that reflected sound energy is greatest in a selected direction from a front of the reflector and the driver, and diminishes a progressively larger angle from the selected direction. The selected direction diverges from the driver plane.

Claims (65)

1. A loudspeaker comprising:

(a) a base defining a support plane, the base being operable to support the loudspeaker relative to a surface;

(b) a driver mounted to the base, the driver being movable parallel to an axis of movement through a center of the driver to produce sound waves; and

(c) a reflecting surface mounted facing a diaphragm of the driver for reflecting sound waves from the driver, the reflecting surface being configured relative to the driver such that reflected sound energy is greatest in a selected direction from a front of the reflecting surface and the driver, and diminishes at progressively larger angles from the selected direction;

wherein

the driver is aligned with a driver plane orthogonal to the axis of movement, the driver plane being a non-zero acute angle to the support plane; and

the selected direction diverges from the driver plane.

2. The loudspeaker as defined in claim 1 wherein the reflecting surface is positioned relative to the driver such that the axis of movement of the driver intersects the reflecting surface.

3. The loudspeaker as defined in claim 2 wherein

the axis of movement of the driver intersects the reflecting surface at a center thereof.

4. The loudspeaker as defined in claim 1 wherein

a spacing of the reflecting surface from the driver varies around the driver and is largest at the front of the driver and the reflecting surface; and,

an inclination of the reflecting surface relative to the driver plane varies around the driver and is largest at the front of the driver and the reflecting surface.

5. The loudspeaker as defined in claim 1 wherein the selected direction is substantially in a plane parallel to the axis of movement and orthogonal to the support plane.

6. The loudspeaker as defined in claim 3 , wherein the non-zero acute angle is between 5 degrees and 85 degrees.

7. The loudspeaker as defined in claim 3 , wherein the non-zero acute angle is between 10 degrees and 80 degrees.

8. The loudspeaker as defined in claim 3 , wherein the non-zero acute angle is between 20 degrees and 35 degrees.

9. A loudspeaker system comprising

(a) a base defining a support plane, the base being operable to support the loudspeaker relative to a surface;

(b) an input terminal for receiving an audio signal and a cross-over connected to the input terminal for dividing the audio signal into a plurality of component signals;

(c) a first driver mounted to the base and linked to the cross-over to receive a first component signal in the plurality of signals, the first driver being drivable by the first component signal to move parallel to a first axis of movement through a center of the first driver to produce sound waves;

(d) a first reflector mounted facing a first diaphragm of the first driver for reflecting sound waves from the first driver, the first reflector being configured relative to the first driver such that reflected sound energy is greatest in a first selected direction from a front of the first reflector and the first driver, and diminishes at progressively larger angles from the first selected direction; and,

(e) at least one of a second driver for producing higher frequency sound waves than the sound waves produced by the first driver and a third driver for producing lower frequency sound waves than the sound waves produced by the first driver, the at least one of the second driver and the third driver being mounted to the base and linked to the cross-over to receive at least one component signal in the plurality of component signals from the cross-over;

wherein

the first driver is aligned with a first driver plane orthogonal to the axis of movement, the first driver plane being at a non-zero acute angle to the support plane; and,

the first selected direction diverges from the first driver plane.

10. The loudspeaker system as defined in claim 9 wherein the first reflector is positioned relative to the first driver such that the first axis of movement of the first driver intersects the first reflector.

11. The loudspeaker system as defined in claim 10

wherein

the first reflector comprises a first reflecting surface facing the first driver; and,

the first axis of movement of the first driver intersects the first reflecting surface at a center thereof.

12. The loudspeaker system as defined in claim 9

wherein

the first reflector comprises a first reflecting surface facing the first driver;

a spacing of the first reflecting surface from the first driver varies around the first driver and is largest at the front of the first driver and the first reflector; and,

an inclination of the first reflecting surface relative to the first driver plane varies around the first driver and is largest at the front of the first driver and the first reflector.

13. The loudspeaker system as defined in claim 11 wherein

the at least one component signal comprises a low frequency signal; and,

the third driver is linked to the cross-over to receive the low frequency signal, the third driver being drivable by the low frequency signal to produce the lower frequency sound waves.

14. The loudspeaker system as defined in claim 11 wherein

the at least one component signal comprises a high frequency signal;

the second driver is linked to the cross-over to receive the high frequency signal, the second driver being drivable by the high frequency signal to move parallel to a second axis of movement through a center of the second driver to produce the higher frequency sound waves; and,

the loudspeaker system further comprises a second reflector mounted facing a second diaphragm of the second driver for reflecting the higher frequency sound waves from the second driver, the second reflector being configured relative to the second driver such that reflected sound energy from the second reflector is greatest in a second selected direction from a front of the second reflector and the second driver, and diminishes at progressively larger angles from the second selected direction;

wherein

the second driver is aligned with a second driver plane orthogonal to the second axis of movement, the second driver plane being at a second non-zero acute angle to the support plane; and

the second selected direction diverges from the second driver plane.

15. The loudspeaker system as defined in claim 14 wherein the second non-zero acute angle is different from the first non-zero acute angle.

16. The loudspeaker system as defined in claim 14 wherein the second reflector is positioned relative to the second driver such that the second axis of movement of the second driver intersects the second reflector.

17. The loudspeaker system as defined in claim 16 wherein

the second reflector comprises a second reflecting surface facing the second driver; and,

the second axis of movement intersects the second reflecting surface at a center thereof.

18. The loudspeaker as defined in claim 14 wherein

the second reflector comprises a second reflecting surface facing the driver;

a spacing of the second reflecting surface from the second driver varies around the second driver and is largest at the front of the second driver; and,

an inclination of the second reflecting surface relative to the second driver plane varies around the second driver and is largest at the front of the second driver and the second reflector.

19. The loudspeaker system as defined in claim 14 wherein the second driver is mounted to the first reflector.

20. The loudspeaker as defined in claim 19 wherein the first reflector comprises a resonance chamber for the second driver.

21. The loudspeaker system as defined in claim 14 wherein the second selected direction is substantially parallel to the first selected direction.

22. The loudspeaker system as defined in claim 9 wherein

the at least one component signal comprises a low frequency signal; and,

the third driver is linked to the cross-over to receive the low frequency signal, the third driver being drivable by the low frequency signal to produce the lower frequency sound waves.

23. A method of directing sound waves from a driver of a loudspeaker, comprising:

(a) providing an audio signal to the driver, the driver being movable parallel to an axis of movement through a center of the driver to produce sound waves based on the audio signal;

(b) orienting the driver such that a driver plane orthogonal to the axis of movement is at a selected angle of inclination relative to a horizontal plane, the selected angle of inclination being a non-zero acute angle; and,

(c) providing a reflecting surface facing the driver to reflect sound waves from the driver such that reflected sound energy is greatest in a selected direction from a front of the driver and diminishes at progressively larger angles from the selected direction, wherein the selected direction diverges from the driver plane.

Assignments (8)
SECURITY AGREEMENT Recorded Apr 23, 2012
From: AUDIO PRODUCTS INTERNATIONAL CORP.
To: WELLS FARGO BANK
Reel/Frame 028089/0934 →
RELEASE OF SECURITY INTEREST Recorded Mar 14, 2012
From: JPMORGAN
To: AUDIO PRODUCTS INTERNATIONAL CORP.
Reel/Frame 027863/0705 →
RELEASE OF SECURITY INTEREST Recorded Mar 14, 2012
From: WELLS FARGO CAPITAL FINANCE, LLC
To: VOXX INTERNATIONAL CORPORATION; AUDIOVOX ELECTRONICS CORPORATION; CODE SYSTEMS, INC.; KLIPSH GROUP INC.; TECHNUITY, INC.
Reel/Frame 027864/0905 →
SECURITY AGREEMENT Recorded Mar 7, 2011
From: AUDIOVOX CORPORATION; AUDIOVOX ELECTRONICS CORPORATION; CODE SYSTEMS, INC.; KLIPSCH GROUP, INC.; TECHNUITY, INC.
To: WELLS FARGO CAPITAL FINANCE, LLC, AS AGENT
Reel/Frame 026587/0906 →
RELEASE OF SECURITY INTEREST Recorded Mar 22, 2010
From: LBC CREDIT PARTNERS, L.P., AS ADMINISTRATIVE AGENT
To: AUDIO PRODUCTS INTERNATIONAL CORP.
Reel/Frame 024114/0648 →
SECURITY AGREEMENT Recorded May 13, 2008
From: AUDIO PRODUCTS INTERNATIONAL CORP.
To: LBC CREDIT PARTNERS, L.P., AS ADMINISTRATIVE AGENT
Reel/Frame 020930/0957 →
SECURITY INTEREST Recorded May 5, 2008
From: AUDIO PRODUCTS INTERNATIONAL CORP.
To: JPMORGAN CHASE BANK, N.A., AS AGENT
Reel/Frame 020897/0668 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2003
From: WELKER, ANDREW C.; TCHILINGUIRIAN, JOHN
To: AUDIO PRODUCTS INTERNATIONAL CORP.
Reel/Frame 014141/0054 →