IP Library Granted Patent US 8,842,866
Granted Patent B2
US 8,842,866 · App. 12/000,104 · Granted Sep 23, 2014

Loudspeaker system with reduced rear sound radiation

Inventor: Matthias Christner (Ludwigsburg, DE)
Assignee: D&B Audiotechnik GmbH
H04R1/323H04R1/2819H04R1/2842H04R1/403
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Quick Facts
Patent No.
US 8,842,866
App. No.
12/000,104
Granted
Sep 23, 2014
Kind
B2
Abstract

A loudspeaker system has a front loudspeaker enclosure ( 30 ) having at least one first loudspeaker ( 20 ) and a rear loudspeaker enclosure ( 50 ) having at least one second loudspeaker ( 60 ). The rear loudspeaker enclosure ( 50 ) is in the form of a bandpass enclosure.

Claims (44)

1. A loudspeaker system comprising:

a front loudspeaker enclosure having at least one first loudspeaker, the front loudspeaker enclosure having a closed rear wall; and

a rear loudspeaker enclosure arranged at the rear wall of the front loudspeaker enclosure and having at least one second loudspeaker, wherein

the rear loudspeaker enclosure is a bandpass enclosure, and the first loudspeaker and the second loudspeaker are operated by a same drive signal, and

the loudspeaker system has a cardioid radiation pattern or a hypercardioid radiation pattern, and

the frequency response, arising at a listening location at the rear of the loudspeaker system, of the sound source formed from the bandpass enclosure with the second loudspeaker is in tune with the frequency response, arising at the listening location, of the sound source formed from the front loudspeaker enclosure with the first loudspeaker such that the two frequency responses essentially match in the low-pass range of the bandpass filter.

2. A loudspeaker system according to claim 1 , wherein the loudspeaker system is a bass loudspeaker system.

3. A loudspeaker system according to claim 1 or 2 , wherein the rear loudspeaker enclosure is an at least double-vented bandpass enclosure.

4. A loudspeaker system according to claim 1 or 2 , wherein the rear loudspeaker enclosure is a single-vented bandpass enclosure.

5. A loudspeaker system according to claim 1 , wherein the front loudspeaker enclosure is a high-pass enclosure.

6. A loudspeaker system according to claim 5 , wherein the front loudspeaker enclosure is a vented high-pass enclosure.

7. A loudspeaker system according to claim 5 , wherein the front loudspeaker enclosure is a closed high-pass enclosure.

8. A loudspeaker system according to claim 1 or 2 , wherein the two loudspeaker enclosures are physically in tune with one another such that the phase response, arising at a listening location at the rear of the loudspeaker system of the sound source formed from the bandpass enclosure with the second loudspeaker is shifted, at a particular frequency, essentially 180° relative to the phase response, arising at the listening location, of the sound source formed from the front loudspeaker enclosure with the first loudspeaker.

9. A loudspeaker system according to claim 1 , wherein the listening location is 3 to 15 meters behind the loudspeaker system.

10. A loudspeaker system according to claim 1 or 2 , further comprising an amplifier which has a common amplifier channel to produce the drive signal for the first loudspeaker and the drive signal for the second loudspeaker.

11. A loudspeaker system according to claim 1 or 2 , wherein the drive signal for the second loudspeaker is produced from the drive signal for the first loudspeaker by signal processing by passive electrical components.

12. A loudspeaker system comprising:

a front loudspeaker enclosure having at least one first bass loudspeaker, the front loudspeaker enclosure being a high-pass enclosure and having a closed rear wall; and

a rear loudspeaker enclosure having at least one second bass loudspeaker, the rear loudspeaker enclosure being a bandpass enclosure and being separated from the front loudspeaker enclosure, wherein

the loudspeaker system has a cardioid radiation pattern or a hypercardioid radiation pattern,

a frequency response produced by the bandpass enclosure has a low-pass transmission range that essentially matches a frequency response produced by the high-pass enclosure at a listening location at a rear of the loudspeaker system,

the rear loudspeaker enclosure is a bass reflex enclosure which has at least two chambers,

the second bass loudspeaker is located on a partition between the at least two chambers, and

the rear loudspeaker enclosure includes a closed chamber and a bass reflex chamber or two bass reflex chambers.

13. A loudspeaker system according to claim 1 or 12 , wherein the front loudspeaker enclosure is a bass reflex enclosure.

14. A loudspeaker system according to claim 13 , wherein the front loudspeaker enclosure is a closed enclosure.

15. A loudspeaker system according to claim 13 , wherein the rear loudspeaker enclosure comprises two bass reflex chambers, and

the resonant frequency of one bass reflex chamber in the rear loudspeaker enclosure is lower than the resonant frequency of the front loudspeaker enclosure.

16. A loudspeaker system according to claim 13 , wherein the two loudspeaker enclosures are physically in tune with one another such that the phase response, arising at a listening location at the rear of the loudspeaker system, of the second sound source formed from the rear loudspeaker enclosure with the second bass loudspeaker is shifted, at a particular frequency, essentially 180° relative to the phase response, arising at the listening location, of the first sound source formed from the front loudspeaker enclosure with the first bass loudspeaker.

17. A loudspeaker system according to claim 16 , wherein the listening location is chosen to be 3 to 15 meters behind the loudspeaker system.

18. A loudspeaker system according to claim 13 , further comprising an amplifier which has a common amplifier channel to produce the drive signal for the first bass loudspeaker and the drive signal for the second bass loudspeaker.

19. A loudspeaker system according to claim 13 , wherein the drive signal for the second bass loudspeaker is produced from the drive signal for the first bass loudspeaker by signal processing by passive electrical components.

20. A loudspeaker system comprising:

a front loudspeaker enclosure containing at least one first loudspeaker, the front loudspeaker enclosure being a high-pass enclosure and being enclosed at a rear wall thereof; and

a rear loudspeaker enclosure arranged at the rear wall of the front loudspeaker enclosure and containing at least one second loudspeaker, the rear loudspeaker enclosure being a bandpass enclosure, wherein

the loudspeaker system has a cardioid radiation pattern or a hypercardioid radiation pattern,

a frequency response produced by the bandpass enclosure has a low-pass transmission range that essentially matches a frequency response produced by the high-pass enclosure at a listening location at a rear of the loudspeaker system, and

the rear loudspeaker enclosure has at least two chambers, the at least one second loudspeaker is located on a partition wall between the at least two chambers, and a radiation direction of the second loudspeaker Is perpendicular to the rear direction.

21. A loudspeaker system comprising:

a front loudspeaker enclosure having at least one first loudspeaker, the front loudspeaker enclosure having a closed rear wall; and

a rear loudspeaker enclosure arranged at the rear wall of the front loudspeaker enclosure and having at least one second loudspeaker, wherein

the rear loudspeaker enclosure is a bandpass enclosure, and the first loudspeaker and the second loudspeaker are operated by a same drive signal,

the loudspeaker system has a cardioid radiation pattern or a hypercardioid radiation pattern, and

the two loudspeaker enclosures are physically in tune with one another such that the phase response, arising at a listening location at the rear of the loudspeaker system of the sound source formed from the bandpass enclosure with the second loudspeaker is shifted, at a particular frequency, essentially 180° relative to the phase response, arising at the listening location, of the sound source formed from the front loudspeaker enclosure with the first loudspeaker.

Assignments (7)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2020
From: D & B AUDIOTECHNIK GMBH
To: D & B AUDIOTECHNIK OPERATIONS GMBH & CO. KG
Reel/Frame 051798/0001 →
CHANGE OF NAME Recorded Feb 4, 2020
From: D & B AUDIOTECHNIK OPERATIONS GMBH & CO. KG
To: D & B AUDIOTECHNIK GMBH & CO. KG
Reel/Frame 051798/0114 →
RELEASE OF SECURITY INTEREST IN IP Recorded Jun 21, 2017
From: UNICREDIT BANK AG, LONDON BRANCH, AS SECOND LIEN SECURITY AGENT
To: D&B AUDIOTECHNIK GMBH
Reel/Frame 042933/0098 →
IP SECOND LIEN SECURITY AGREEMENT SUPPLEMENT Recorded Jul 1, 2016
From: D&B AUDIOTECHNIK GMBH
To: UNICREDIT BANK AG, LONDON BRANCH, AS SECURITY AGENT FOR THE SECOND LIEN CREDITORS
Reel/Frame 039234/0194 →
IP SENIOR SECURITY AGREEMENT SUPPLEMENT Recorded Jul 1, 2016
From: D&B AUDIOTECHNIK GMBH
To: UNICREDIT BANK AG, LONDON BRANCH, AS SECURITY AGENT FOR THE SENIOR CREDITORS
Reel/Frame 039234/0234 →
CHANGE OF NAME Recorded Jan 18, 2011
From: D&B AUDIOTECHNIK AG
To: D&B AUDIOTECHNIK GMBH
Reel/Frame 025653/0841 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2007
From: CHRISTNER, MATTHIAS
To: D&B AUDIOTECHNIK AG
Reel/Frame 020258/0885 →
Priority Claims (1)
DE 10 2006 058 009 · Dec 8, 2006 · national
Continuity (1)
Related Publication 20080137894A1 · Jun 12, 2008