IP Library Granted Patent US 8,698,404
Granted Patent B2
US 8,698,404 · App. 13/423,395 · Granted Apr 15, 2014

Brightness control for LED lighting

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Quick Facts
Patent No.
US 8,698,404
App. No.
13/423,395
Granted
Apr 15, 2014
Kind
B2
Abstract

A driving arrangement for light emitting diode (LED) based illumination constituted of: a comparison circuitry arranged to compare an integral of a target current over a target illumination time for at least one LED based luminaire with an integral of an illumination current over an illumination time for the at least one LED based luminaire, the comparison circuitry arranged to output a comparison signal; and a control circuitry in communication with the comparison circuitry and arranged to alternately: allow the flow of electrical current through the at least one LED based luminaire responsive to a first condition of the comparison signal; and prevent the flow of electrical current through the at least one LED based luminaire responsive to a second condition of the comparison signal, the second condition different from the first condition.

Claims (49)

1. A driving arrangement for light emitting diode (LED) based illumination, the driving arrangement comprising:

a comparison circuitry arranged to compare an integral of a target current over a target illumination time for a plurality of LED based luminaires with an integral of an illumination current over an illumination time for the plurality of LED based luminaires, said comparison circuitry arranged to output a comparison signal, the plurality of LED based luminaires arranged to receive power in parallel from a common power source; and

a control circuitry in communication with said comparison circuitry, the common power source responsive to an output of the control circuitry, and wherein the control circuitry is arranged to alternately:

allow the flow of electrical current through the plurality of LED based luminaires responsive to a first condition of the comparison signal, wherein said allowance comprises activation of the common power source; and

prevent the flow of electrical current through the plurality of LED based luminaires responsive to a second condition of the comparison signal, the second condition different from the first condition, wherein said prevention comprises deactivation of the common power source.

2. The driving arrangement according to claim 1 , further comprising a balancing network, wherein said plurality of LED based luminaires are connected to receive power in parallel from the common power source via said balancing network.

3. The driving arrangement according to claim 1 , further comprising a particular electronically controlled switch in series with each of the plurality of LED based luminaires, each of the particular electronically controlled switches responsive to an output of said control circuitry, wherein said allowance of the flow of electrical current through the plurality of LED based luminaires responsive to the first condition of the comparison signal further comprises closure of the particular electronically controlled switch in series with each of the LED based luminaires responsive to the first condition of the output of said control circuitry, and said prevention of the flow of electrical current through the plurality of LED based luminaires responsive to the second condition of the comparison signal further comprises an open condition of the particular electronically controlled switch in series with each of the LED based luminaires responsive to the second condition of the comparison signal.

4. The driving arrangement according to claim 3 , wherein said control circuitry comprises a drive signal generator with a periodic output, wherein said allowance of the flow of electrical current through the plurality of LED based luminaires is responsive to the first condition of the comparison signal and to the periodic output.

5. The driving arrangement according to claim 1 , wherein said comparison circuitry comprises:

a first current source arranged to provide a current representative of the target current;

a first capacitor arranged to be charged by said first current source;

a second current source arranged to provide a current representative of the illumination current;

a second capacitor arranged to be charged by said second current source; and

a comparator arranged to compare the voltage drop across said first capacitor with the voltage drop across said second capacitor, said comparison signal a function of the output of said comparator.

6. The driving arrangement according to claim 1 , wherein said comparison circuitry comprises:

a first current source arranged to provide a current representative of the target current;

a second source arranged to provide a current representative of the illumination current;

a capacitor arranged to be charged by a first one of said first current source and said second current source and to be discharged by a second one of said first current source and said second current source; and

a comparator arranged to compare the voltage drop across said capacitor with a reference voltage, said comparison signal a function of the output of said comparator.

7. The driving arrangement according to claim 1 , wherein said comparison circuitry is associated with a particular LED based luminaire of the plurality of LED based luminaires.

8. A method of illumination, the method comprising:

comparing an integral of a target current over a target illumination time for at least one luminaire of a plurality of luminaires with an integral of an illumination current over an illumination time for the at least one luminaire;

alternately, allowing the flow of electrical current through the plurality of luminaires responsive to a first condition of the comparison; and

preventing the flow of electrical current through the the plurality of luminaires responsive to a second condition of the comparison, the second condition different from the first condition,

wherein said allowing the flow of electrical current comprises activating a common power source, the common power source arranged to provide power in parallel for the plurality of luminaires, and

said preventing of the flow of electrical current comprises deactivating the common power source.

9. The method according to claim 8 , wherein the method further comprises:

balancing the current flow through each of the plurality of luminaires.

10. The method according to claim 8 , wherein said allowing the flow of electrical current through the the plurality of luminaires further comprises closing an electronically controlled switch arranged in series with each of the plurality of luminaires, and said preventing the flow of electrical current through the the plurality of luminaires further comprises opening each of the particular electronically controlled switched in series with the plurality of luminaires.

11. The method according to claim 10 , further comprising providing a drive signal generator with a periodic output, wherein said allowing the flow of electrical current through the at least one luminaire is responsive to the first condition of the comparison and to the periodic output.

12. The method according to claim 8 , further comprising providing a comparison circuitry arranged to perform said comparing, said comparison circuitry arranged to output a comparison signal, said comparison circuitry comprising:

a first current source arranged to provide a current representative of the target current;

a first capacitor arranged to be charged by said first current source;

a second current source arranged to provide a current representative of the illumination current;

a second capacitor arranged to be charged by said second current source; and

a comparator arranged to compare the voltage drop across said first capacitor with the voltage drop across said second capacitor, the comparison signal a function of the output of said comparator.

13. The method according to claim 8 , further comprising:

providing a comparison circuitry arranged to perform said comparing, said comparison circuitry arranged to output a comparison signal, said comparison circuitry comprising:

a first current source arranged to provide a current representative of the target current;

a second current source arranged to provide a current representative of the illumination current;

a capacitor arranged to be charged by a first one of said first current source and said second current source and to be discharged by a second one of said first current source and said second current source; and

a comparator arranged to compare the voltage drop across said capacitor with a reference voltage, the comparison signal a function of the output of said comparator.

14. A driving arrangement for illumination, the driving arrangement comprising:

a means for comparing arranged to compare an integral of a target current over a target illumination time for at least luminaire with an integral of an illumination current over an illumination time for the at least one luminaire, said means for comparing arranged to output a comparison signal;

a means for allowing the flow of electrical current through the at least one luminaire responsive to a first condition of the comparison signal;

a means for preventing the flow of electrical current through the at least one luminaire responsive to a second condition of the comparison signal, the second condition different from the first condition; and

a means for balancing, wherein said at least one luminaire comprises a plurality of luminaires arranged to receive power in parallel from a common means for supplying power via said means for balancing.

15. The driving arrangement according to claim 14 , wherein the means for allowing and preventing comprises a control input to the common means for supplying power, wherein said allowance of the flow of electrical current through the at least one luminaire responsive to the first condition of the comparison signal comprises activation of the common means for supplying power responsive to the first condition of the comparison signal, and said prevention of the flow of electrical current through the at least luminaire responsive to the second condition of the comparison signal comprises deactivation of the common means for supplying power responsive to the second condition of the comparison signal.

16. The driving arrangement according to claim 14 , wherein the means for allowing and the means for preventing comprises a control input to the common means for supplying power, wherein said allowance of the flow of electrical current through the at least one luminaire responsive to the first condition of the comparison signal comprises activation of the common means for supplying power responsive to the first condition of the comparison signal, and said prevention of the flow of electrical current through the at least luminaire responsive to the second condition of the comparison signal comprises deactivation of the common means for supplying power responsive to the second condition of the comparison signal.

Assignments (8)
RELEASE OF SECURITY INTEREST Recorded May 29, 2018
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: MICROSEMI CORPORATION; MICROSEMI SEMICONDUCTOR (U.S.), INC.; MICROSEMI FREQUENCY AND TIME CORPORATION; MICROSEMI COMMUNICATIONS, INC.; MICROSEMI SOC CORP.; MICROSEMI CORP. - POWER PRODUCTS GROUP; MICROSEMI CORP. - RF INTEGRATED SOLUTIONS
Reel/Frame 046251/0391 →
CHANGE OF NAME Recorded Jan 18, 2018
From: LED DISPLAY TECHNOLOGIES, LLC
To: POLARIS POWERLED TECHNOLOGIES, LLC
Reel/Frame 045084/0315 →
PARTIAL RELEASE OF SECURITY INTEREST IN PATENTS Recorded Sep 19, 2017
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: MICROSEMI CORPORATION
Reel/Frame 043902/0544 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2017
From: MICROSEMI CORPORATION
To: LED DISPLAY TECHNOLOGIES, LLC
Reel/Frame 043137/0738 →
PATENT SECURITY AGREEMENT Recorded Feb 3, 2016
From: MICROSEMI CORPORATION; MICROSEMI SEMICONDUCTOR (U.S.) INC. (F/K/A LEGERITY, INC., ZARLINK SEMICONDUCTOR (V.N.) INC., CENTELLAX, INC., AND ZARLINK SEMICONDUCTOR (U.S.) INC.); MICROSEMI FREQUENCY AND TIME CORPORATION (F/K/A SYMMETRICON, INC.); MICROSEMI COMMUNICATIONS, INC. (F/K/A VITESSE SEMICONDUCTOR CORPORATION); MICROSEMI SOC CORP. (F/K/A ACTEL CORPORATION); MICROSEMI CORP. - POWER PRODUCTS GROUP (F/K/A ADVANCED POWER TECHNOLOGY INC.); MICROSEMI CORP. - RF INTEGRATED SOLUTIONS (F/K/A AML COMMUNICATIONS, INC.)
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 037691/0697 →
RELEASE OF SECURITY INTEREST Recorded Jan 19, 2016
From: BANK OF AMERICA, N.A.
To: MICROSEMI CORPORATION; MICROSEMI CORP.-ANALOG MIXED SIGNAL GROUP, A DELAWARE CORPORATION; MICROSEMI SOC CORP., A CALIFORNIA CORPORATION; MICROSEMI SEMICONDUCTOR (U.S.) INC., A DELAWARE CORPORATION; MICROSEMI FREQUENCY AND TIME CORPORATION, A DELAWARE CORPORATION; MICROSEMI COMMUNICATIONS, INC. (F/K/A VITESSE SEMICONDUCTOR CORPORATION), A DELAWARE CORPORATION; MICROSEMI CORP.-MEMORY AND STORAGE SOLUTIONS (F/K/A WHITE ELECTRONIC DESIGNS CORPORATION), AN INDIANA CORPORATION
Reel/Frame 037558/0711 →
SECURITY AGREEMENT Recorded Apr 22, 2015
From: MICROSEMI CORPORATION; MICROSEMI CORP.-ANALOG MIXED SIGNAL GROUP; MICROSEMI SEMICONDUCTOR (U.S.) INC.; MICROSEMI SOC CORP.; MICROSEMI FREQUENCY AND TIME CORPORATION
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 035477/0057 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2012
From: JIN, XIAOPING
To: MICROSEMI CORPORATION
Reel/Frame 028261/0493 →