IP Library Granted Patent US 7,664,273
Granted Patent B2
US 7,664,273 · App. 10/746,150 · Granted Feb 16, 2010

Approach for controlling audio signals in remote location

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Quick Facts
Patent No.
US 7,664,273
App. No.
10/746,150
Granted
Feb 16, 2010
Kind
B2
Abstract

An example embodiment is directed to use in a facility benefiting from the distribution of audio throughout different facility zones (“audio zones”), with each audio zone receiving an audio signal from a remotely-located audio distribution controller. For controlling audio at a user-controlled speaker load located in one of the audio zones, a circuit arrangement includes isolation circuit, speaker load circuit, user-input device and an audio control unit. The isolation circuit generates a transformed audio signal by provide an impedance-matched termination and by permitting one of a number of impedance-matching circuits to be set wherein each impedance-matching circuit provides a different amount of electrical power to the speaker load. The speaker load circuit delivers, in response to the transformed audio signal, audible signals in the audio zone. The audio control unit has a microprocessor adapted to control the delivery of the audible signals in response to the input commands generated via the user-input device.

Claims (28)

1. An arrangement for use in a facility with a plurality of audio zones receiving at least one audio signal from a remotely-located audio distribution controller—and for controlling audio at a user-controlled speaker load located in at least one of the audio zones, the arrangement comprising:

an isolation circuit for generating at least one transformed audio signal in response to receiving said at least one audio signal, the isolation circuit including an impedance-matching circuit that provides impedance-matched termination for said at least one audio signal, the impedance-matched termination adapted to provide a selection between a number of settings each setting for the impedance-matching circuit having a different maximum limit on an amount of electrical power to the speaker load and a volume control limited by a maximum limit corresponding to a currently-selected setting for the impedance-matched termination;

a speaker load circuit for delivering, in response to said at least one transformed audio signal, audible signals in the at least one of the audio zones;

a user-input device coupled to provide input commands; and

an audio control unit located in said at least one of the audio zones and remote from the audio distribution controller, the audio control unit having a microprocessor adapted to control the delivery of the audible signals in response to the input commands.

2. An arrangement for controlling audio, according to claim 1 , wherein the user-input device includes front panel user-communication selectors for sending commands to the microprocessor.

3. An arrangement for controlling audio, according to claim 1 , wherein the user-input device includes front panel wireless communication means for sending commands to the microprocessor.

4. An arrangement for controlling audio, according to claim 1 , further including an infrared control circuit that is coupled to the microprocessor, and wherein the microprocessor is responsive to stimulus from infrared input for remote control of external system equipment.

5. An arrangement for controlling audio, according to claim 4 , wherein the microprocessor, in response to stimulus from infrared input, is further adapted to provide visually-recognizable indications of a volume status.

6. An arrangement for controlling audio, according to claim 1 , further including an infrared control circuit that is coupled to the microprocessor, and wherein the microprocessor is responsive to stimulus from infrared input and the infrared control circuit provides pass-through infrared signaling for remotely controlling external system equipment.

7. An arrangement for controlling audio, according to claim 1 , further including an infrared control circuit that is coupled to the microprocessor, and wherein the microprocessor is responsive to stimulus from both a user-engaged input and an infrared input.

8. An arrangement for controlling audio, according to claim 7 , wherein the microprocessor is adapted to respond to a condition in which both the user-engaged input and the infrared input are activated simultaneously, by processing the user-engaged input over the infrared input and by providing visual indication of the input command.

9. An arrangement for controlling audio, according to claim 1 , further including a separate panel circuit connection for proving an override command to the audio control unit, wherein the override command causes the audio control unit to switch to a predetermined override setting as determined by user commands previously received by the audio control unit and regardless of a current state of a current volume setting, to provide visual indication of the override level setting, and to revert back to a pre-override state of the audio control unit in response to an override signal being removed.

10. An arrangement for controlling audio, according to claim 9 , wherein the microprocessor is adapted to respond to stimulus from both the override command and a user-engaged input, and to respond to the user-engaged input being activated during processing of the override command, by processing the user-engaged input over the override command and by ignoring the override command until the override command is removed and then reapplied at the separate panel circuit connection.

11. An arrangement for controlling audio, according to claim 1 , further including a separate panel circuit connection for proving an override command to the audio control unit, wherein the override command causes the audio control unit to mute audio.

12. An arrangement for controlling audio, according to claim 1 , wherein the microprocessor responds to the input commands by controlling audio volume through the speaker load.

13. An arrangement for controlling audio, according to claim 1 , wherein the microprocessor is responsive to the user input commands for selectively setting ones of the impedance-matching circuits.

14. An arrangement for controlling audio, according to claim 1 , further including an infrared control circuit that is coupled to the microprocessor, and wherein the microprocessor is responsive to stimulus from infrared input for controlling audio volume through the speaker load.

15. An arrangement for controlling audio, according to claim 1 , further including an infrared control circuit that is coupled to the microprocessor, and wherein the microprocessor is responsive to stimulus from infrared input for selectively setting ones of the impedance-matching circuits.

16. An arrangement for controlling audio, according to claim 1 , further including an infrared control circuit that is coupled to the microprocessor, and wherein the microprocessor is responsive to stimulus from infrared input for activating visual indicators associated with ones of the impedance-matching circuits.

17. The arrangement of claim 1 , further comprising an infrared control circuit that is coupled to the microprocessor, and wherein the microprocessor is responsive to stimulus from infrared input for controlling audio volume.

18. The arrangement of claim 1 , further comprising an infrared control circuit that is coupled to the microprocessor, and wherein the microprocessor is responsive to stimulus from infrared input for selectively controlling the impedance-matching circuit.

19. The arrangement of claim 1 , further comprising an infrared control circuit that is coupled to the microprocessor, and wherein the microprocessor is responsive to stimulus from infrared input for activating visual indicators associated with the impedance-matching circuit.

20. For use in a facility with a plurality of audio zones receiving at least one audio signal from a remotely-located audio distribution controller, an arrangement for controlling audio at a user-controlled speaker load located in at least one of the audio zones, comprising:

means for generating at least one transformed audio signal in response to receiving said at least one audio signal, for providing an impedance-matched termination for said at least one audio signal, and for setting one of a number of impedance-matching circuits wherein each impedance-matching circuit is adapted to provide a different amount of electrical power to the speaker load;

a speaker load circuit for delivering, in response to said at least one transformed audio signal, audible signals in the at least one of the audio zones;

user-input means for providing input commands; and

an audio control unit located in said at least one of the audio zones and remote from the audio distribution controller, the audio control unit having a microprocessor adapted to control the delivery of the audible signals in response to the input commands.

Assignments (12)
RELEASE OF SECURITY INTEREST Recorded Jun 17, 2021
From: U.S. BANK NATIONAL ASSOCIATION
To: BROAN-NUTONE LLC; NORTEK AIR SOLUTIONS, LLC; NORTEK GLOBAL HVAC LLC; NORTEK, INC.; ADVANCED BRIDGING TECHNOLOGIES, INC.; AIGIS MECHTRONICS, INC.; ALLSTAR PRO, LLC; ELAN HOME SYSTEMS, L.L.C.; GEFEN, INC.; GTO, INC.; HOMELOGIC LLC; INTERNATIONAL ELECTRONICS, INC.; JENSEN INDUSTRIES, INC.; LINEAR LLC; LITE TOUCH, INC.; MAGENTA RESEARCH LTD.; NILES AUDIO CORPORATION; OMNIMOUNT SYSTEMS, INC.; OPERATOR SPECIALTY COMPANY, INC.; PANAMAX INC.; SECURE WIRELESS, INC.; SPEAKERCRAFT; XANTECH CORPORATION
Reel/Frame 056614/0709 →
NOTICE OF RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jan 10, 2017
From: BANK OF AMERICA, N.A.
To: TEMTROL, INC.; WDS LLC; WEBCO, INC.; NORTEK, INC.; ADVANCED BRIDGING TECHNOLOGIES, INC.; AIGIS MECHTRONICS, INC.; ALLSTAR PRO, LLC; AUBREY MANUFACTURING, INC.; BROAN-NUTONE LLC; CES GROUP, INC.; CLEANPAK INTERNATIONAL, INC.; ELAN HOME SYSTEMS, L.L.C.; GEFEN, INC.; GOVERNAIR CORPORATION; GTO, INC.; HC INSTALLATIONS, INC.; HOMELOGIC LLC; HUNTAIR, INC.; INTERNATIONAL ELECTRONICS, INC.; J.A.R. INDUSTRIES, INC.; JENSEN INDUSTRIES, INC.; LINEAR H.K. LLC; LINEAR LLC; LITETOUCH, INC.; MAGENTA RESEARCH LTD.; MAMMOTH, INC.; NILES AUDIO CORPORATION; NORDYNE CHINA LLC; NORDYNE INC.; NORDYNE INTERNATIONAL, INC.; NORTEK INTERNATIONAL, INC.; NUTONE INC.; OMNIMOUNT SYSTEMS, INC.; OPERATOR SPECIALTY COMPANY, INC.; PACIFIC ZEPHYR RANGE HOOD, INC.; PANAMAX INC.; RANGAIRE GP, INC.; RANGAIRE LP; RANGAIRE LP, INC.; SECURE WIRELESS, INC.; SPEAKERCRAFT, INC.; XANTECH CORPORATION; ZEPHYR CORPORATION
Reel/Frame 041326/0071 →
TERMINATION AND RELEASE OF SECURITY IN PATENTS Recorded Jan 10, 2017
From: BANK OF AMERICA, N.A.
To: NORTEK, INC.; AIGIS MECHTRONICS, INC.; BROAN-MEXICO HOLDINGS, INC.; BROAN-NUTONE LLC; BROAN-NUTONE STORAGE SOLUTIONS LP; CES GROUP, INC.; CES INTERNATIONAL LTD.; CLEANPAK INTERNATIONAL, INC.; ELAN HOME SYSTEMS, L.L.C.; GATES THAT OPEN, LLC; GEFEN, LLC; GOVERNAIR CORPORATION; HC INSTALLATIONS, INC.; HUNTAIR, INC.; INTERNATIONAL ELECTRONICS, LLC; LINEAR LLC; LITE TOUCH, INC.; MAGENTA RESEARCH LTD.; MAMMOTH-WEBCO, INC.; NILES AUDIO CORPORATION; NORDYNE LLC; NORDYNE INTERNATIONAL, INC.; NORTEK INTERNATIONAL, INC.; NUTONE LLC; OMNIMOUNT SYSTEMS, INC.; OPERATOR SPECIALTY COMPANY, INC.; PACIFIC ZEPHYR RANGE HOOD, INC.; PANAMAX LLC; RANGAIRE GP, INC.; RANGAIRE LP, INC.; SECURE WIRELESS, INC.; SPEAKERCRAFT, LLC; TEMTROL, INC.; XANTECH LLC; ZEPHYR VENTILATION, LLC
Reel/Frame 041327/0089 →
NOTICE OF RELEASE OF SECURITY INTERESTS IN PATENTS RECORDED AT REEL 026276, FRAME 0073 Recorded Jun 3, 2014
From: UBS AG, STAMFORD BRANCH, AS COLLATERAL AGENT
To: BROAN-NUTONE LLC; BROAN-NUTONE STORAGE SOLUTIONS LP; ERGOTRON, INC.; GTO ACCESS SYSTEMS, LLC (F/K/A GATES THAT OPEN, LLC); CES GROUP, LLC (SUCCESSOR BY MERGER TO HUNTAIR, INC.); LINEAR LLC; MAGENTA RESEARCH LTD.; NORDYNE LLC; ERGOTRON, INC. (SUCCESSOR BY MERGER TO OMNIMOUNT SYSTEMS, INC.; CORE BRANDS, LLC (SUCCESSOR BY MERGER TO SPEAKERCRAFT, LLC); CORE BRANDS, LLC (SUCCESSOR BY MERGER TO THE AVC GROUP, LLC); CORE BRANDS, LLC (F/K/A PANAMAX LLC); LINEAR LLC (SUCCESSOR BY MERGER TO SECURE WIRELESS, INC.)
Reel/Frame 033083/0001 →
MERGER AND CHANGE OF NAME Recorded Jan 14, 2013
From: AVC GROUP, LLC, THE
To: CORE BRANDS, LLC
Reel/Frame 029708/0262 →
PATENT RELEASE Recorded May 3, 2011
From: U.S BANK NATIONAL ASSOCIATION
To: BROAN-NUTONE LLC, A DELAWARE LLC; BROAN-NUTONE STORAGE SOLUTIONS LP, A DELAWARE LIMITED PARTNERSHIP; GATES THAT OPEN, LLC, A FLORIDA LLC; HUNTAIR, INC., A DELAWARE CORPORATION; LINEAR LLC, A CALIFORNIA LLC; MAGENTA RESEARCH LTD., A CONNECTICUT CORPORATION; NORDYNE LLC, A DELAWARE LLC; OMNIMOUNT SYSTEMS, INC., A ARIZONA CORPORATION; PANAMAX LLC, A CALIFORNIA LLC; SECURE WIRELESS, INC., A CALIFORNIA CORPORATION; SPEAKERCRAFT, LLC, A DELAWARE LLC; AVC GROUP, LLC, THE, A DELAWARE LLC; VENMAR CES, INC., A CANADIAN CORPORATION; VENMAR VENTILATION INC., CANADIAN CORPORATION
Reel/Frame 026275/0964 →
SECURITY AGREEMENT Recorded May 3, 2011
From: BROAN-NUTONE LLC, A DELAWARE LLC; BROAN-NUTONE STORAGE SOLUTIONS LP, A DELAWARE LIMITED PARTNERSHIP; ERGOTRON, INC., A MINNESOTA CORPORATION; GATES THAT OPEN, LLC, A FLORIDA LLC; HUNTAIR, INC., A DELAWARE CORPORATION; LINEAR LLC, A CALIFORNIA LLC; MAGENTA RESEARCH LTD., A CONNECTICUT CORPORATION; NORDYNE LLC, A DELAWARE LLC; OMNIMOUNT SYSTEMS, INC., A ARIZONA CORPORATION; PANAMAX, LLC, A CALIFORNIA LLC; SECURE WIRELESS, INC., A CALIFORNIA CORPORATION; SPEAKERCRAFT, LLC, A DELAWARE LLC; AVC GROUP, LLC, THE, A DELAWARE LLC
To: UBS AG, STAMFORD BRANCH, AS COLLATERAL AGENT
Reel/Frame 026276/0073 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2011
From: XANTECH LLC
To: AVC GROUP, LLC, THE
Reel/Frame 025940/0279 →
SECURITY AGREEMENT Recorded Jan 8, 2010
From: NORTEK, INC.; AIGIS MECHTRONICS, INC.; BROAN-MEXICO HOLDINGS, INC.; BROAN-NUTONE LLC; BROAN-NUTONE STORAGE SOLUTIONS LP; CES GROUP, INC.; CES INTERNATIONAL LTD.; CLEANPAK INTERNATIONAL, INC.; ELAN HOME SYSTEMS, L.L.C.; GATES THAT OPEN, LLC; GEFEN, LLC; GOVERNAIR CORPORATION; HC INSTALLATIONS, INC.; HUNTAIR, INC.; INTERNATIONAL ELECTRONICS, LLC; LINEAR LLC; LITE TOUCH, INC.; MAGENTA RESEARCH LTD.; MAMMOTH-WEBCO, INC.; NILES AUDIO CORPORATION; NORDYNE LLC; NORDYNE INTERNATIONAL, INC.; NORTEK INTERNATIONAL, INC.; NUTONE LLC; OMNIMOUNT SYSTEMS, INC.; OPERATOR SPECIALTY COMPANY, INC.; PACIFIC ZEPHYR RANGE HOOD INC.; PANAMAX LLC; RANGAIRE GP, INC.; RANGAIRE LP, INC.; SECURE WIRELESS, INC.; SPEAKERCRAFT, LLC; TEMTROL, INC.; XANTECH LLC; ZEPHYR VENTILATION, LLC
To: BANK OF AMERICA, N.A.
Reel/Frame 023750/0040 →
SECURITY AGREEMENT Recorded Jul 31, 2008
From: NORTEK, INC.; ADVANCED BRIDGING TECHNOLOGIES, INC.; AIGIS MECHTRONICS, INC.; ALLSTAR PRO, LLC; BROAN-NUTONE LLC; CLEANPAK INTERNATIONAL, INC.; ELAN HOME SYSTEMS, L.L.C.; GEFEN, INC.; GTO, INC.; HOMELOGIC LLC; HUNTAIR, INC.; INTERNATIONAL ELECTRONICS, INC.; JENSEN INDUSTRIES, INC.; LINEAR LLC; LITE TOUCH, INC.; MAGENTA RESEARCH LTD.; MAMMOTH, INC.; NILES AUDIO CORPORATION; NORDYNE INC.; NUTONE INC.; OMNIMOUNT SYSTEMS, INC.; OPERATOR SPECIALTY COMPANY, INC.; PANAMAX INC.; RANGAIRE LP; SECURE WIRELESS, INC.; SPEAKERCRAFT, INC.; TEMTROL, INC.; WEBCO, INC.; XANTECH CORPORATION; ZEPHYR CORPORATION
To: U.S. BANK NATIONAL ASSOCIATION
Reel/Frame 021316/0764 →
SECURITY AGREEMENT Recorded Jul 29, 2008
From: NORTEK, INC.; ADVANCED BRIDGING TECHNOLOGIES, INC.; AIGIS MECHTRONICS, INC.; ALLSTAR PRO, LLC; AUBREY MANUFACTURING, INC.; BROAN-NUTONE LLC; CES GROUP, INC.; CLEANPAK INTERNATIONAL, INC.; ELAN HOME SYSTEMS, L.L.C.; GEFEN, INC.; GOVERNAIR CORPORATION; GTO, INC.; HC INSTALLATIONS, INC.; HOMELOGIC LLC; HUNTAIR, INC.; INTERNATIONAL ELECTRONICS, INC.; J.A.R. INDUSTRIES, INC.; JENSEN INDUSTRIES, INC.; LINEAR H.K. LLC; LINEAR LLC; LITETOUCH, INC.; MAGENTA RESEARCH LTD.; MAMMOTH, INC.; NILES AUDIO CORPORATION; NORDYNE CHINA LLC; NORDYNE INC.; NORDYNE INTERNATIONAL, INC.; NORTEK INTERNATIONAL, INC.; NUTONE INC.; OMNIMOUNT SYSTEMS, INC.; OPERATOR SPECIALTY COMPANY, INC.; PACIFIC ZEPHYR RANGE HOOD, INC.; PANAMAX INC.; RANGAIRE GP, INC.; RANGAIRE LP; RANGAIRE LP, INC.; SECURE WIRELESS, INC.; SEAKERCRAFT, INC.; TEMTROL, INC.; WDS LLC; WEBCO, INC.; XANTECH CORPORATION; ZEPHYR CORPORATION
To: BANK OF AMERICA, N.A.
Reel/Frame 021301/0927 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2004
From: CHRISTENSEN, STEVE; FARINELLI, JR., ROBERT P.; FISHER, RANDY; NEWMAN, RAY
To: ELAN HOME SYSTEMS, L.L.C.
Reel/Frame 015345/0357 →