IP Library Granted Patent US 9,622,316
Granted Patent B2
US 9,622,316 · App. 14/700,786 · Granted Apr 11, 2017

Light emitting diode replacement lamp

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Quick Facts
Patent No.
US 9,622,316
App. No.
14/700,786
Granted
Apr 11, 2017
Kind
B2
Abstract

Thermal management and control techniques for light emitting diode and other incandescent replacement light technologies using a current controller are disclosed.

Claims (47)

1. An illumination device comprising:

a substrate;

one or more light-emitting diodes (LEDs) disposed on the substrate;

a heat sink thermally connected to the one or more LEDs;

thermal-management circuitry (i) disposed on the substrate, (ii) electrically connected to the one or more LEDs, and (iii) configured to control current to the one or more LEDs based on an LED temperature resulting from heat produced by the one or more LEDs, the thermal management circuitry comprising:

a temperature-dependent resistance;

a resistor connected in parallel with the temperature-dependent resistance;

a source voltage input for receiving a source voltage,

wherein the sense voltage is generated at least in part by at least a portion of a regulated current flowing through the resistor and the temperature-dependent resistance.

2. The illumination device of claim 1 , wherein the thermal-management circuitry is configured to decrease the current to the one or more LEDs as the LED temperature increases.

3. The illumination device of claim 1 , wherein the thermal-management circuitry comprises:

a voltage regulator for regulating the source voltage to generate a regulated current therefrom, the regulated current being supplied to the one or more LEDs; and

a sense voltage generator for generating a sense voltage based at least in part on the regulated current and the LED temperature, whereby the sense voltage is utilized to maintain the regulated current within a non-destructive operating range of the one or more LEDs.

4. The illumination device of claim 3 , wherein the sense voltage generator comprises an amplifier for amplifying the sense voltage.

5. The illumination device of claim 4 , wherein a gain of the amplifier depends at least in part on the LED temperature.

6. The illumination device of claim 3 , further comprising a temperature-dependent resistance, wherein the sense voltage is generated based at least in part on the temperature-dependent resistance.

7. The illumination device of claim 6 , wherein the temperature-dependent resistance is responsive to the LED temperature.

8. The illumination device of claim 6 , wherein the temperature-dependent resistance is disposed in contact with the one or more LEDs.

9. The illumination device of claim 6 , wherein the temperature-dependent resistance has a negative temperature coefficient.

10. The illumination device of claim 6 , wherein the temperature-dependent resistance has a positive temperature coefficient.

11. The illumination device of claim 6 , wherein the temperature-dependent resistance comprises a thermistor.

12. An illumination device comprising:

a substrate;

one or more light-emitting diodes (LEDs) disposed on the substrate; a heat sink thermally connected to the one or more LEDs;

a temperature-dependent resistance;

a resistor connected in parallel with the temperature-dependent resistance;

thermal-management circuitry electrically connected to the one or more LEDs, and configured to control current to the one or more LEDs based on an LED temperature resulting from heat produced by the one or more LEDs, the thermal-management circuitry comprising:

a sense voltage generator for generating a sense voltage, wherein the sense voltage generator comprises an amplifier for amplifying the sense voltage.

13. The illumination device of claim 12 , wherein a gain of the amplifier depends at least in part on the LED temperature.

14. The illumination device of claim 12 , wherein the thermal-management circuitry is configured to decrease the current to the one or more LEDs as the LED temperature increases.

15. The illumination device of claim 12 , wherein the thermal-management circuitry further comprises:

a source voltage input for receiving a source voltage;

a voltage regulator for regulating the source voltage to generate a regulated current therefrom, the regulated current being supplied to the one or more LEDs.

16. The illumination device of claim 15 , wherein the sense voltage generator is configured to generate the sense voltage based at least in part on the regulated current and the LED temperature, whereby the sense voltage is utilized to maintain the regulated current within a non-destructive operating range of the one or more LEDs.

17. The illumination device of claim 16 , further comprising a temperature-dependent resistance, wherein the sense voltage is generated based at least in part on the temperature-dependent resistance.

18. The illumination device of claim 17 , wherein the temperature-dependent resistance is responsive to the LED temperature.

19. The illumination device of claim 17 , further comprising a resistor connected in parallel with the temperature-dependent resistance, the sense voltage being generated at least in part by at least a portion of the regulated current flowing through the resistor and the temperature-dependent resistance.

20. The illumination device of claim 17 , wherein the temperature-dependent resistance is disposed in contact with the one or more LEDs.

21. The illumination device of claim 17 , wherein the temperature-dependent resistance has a negative temperature coefficient.

22. The illumination device of claim 17 , wherein the temperature-dependent resistance has a positive temperature coefficient.

23. The illumination device of claim 17 , wherein the temperature-dependent resistance comprises a thermistor.

24. An illumination device comprising:

a substrate;

one or more light-emitting diodes (LEDs) disposed on the substrate;

a heat sink thermally connected to the one or more LEDs; and

thermal-management circuitry electrically connected to the one or more LEDs, and configured to control current to the one or more LEDs based on an LED temperature resulting from heat produced by the one or more LEDs, the thermal management circuitry comprising:

a sense voltage generator for generating a sense voltage based at least in part on a regulated current and a temperature-dependent resistance indicative of the LED temperature, whereby the sense voltage is utilized to maintain the regulated current within a non-destructive operating range of the one or more LEDs.

Assignments (11)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2018
From: GENERAL LIGHTING COMPANY INC.
To: LEDVANCE LLC
Reel/Frame 045260/0954 →
PATENT TRANSFER STATEMENT (AND FORECLOSURE OF SECURITY INTEREST) Recorded Jan 18, 2018
From: VENTURE LENDING & LEASING VII, INC.; VENTURE LENDING & LEASING VIII, INC.
To: GENERAL LIGHTING COMPANY INC.
Reel/Frame 045085/0080 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2017
From: TERRALUX, INC.
To: GENERAL LIGHTING COMPANY INC.
Reel/Frame 045810/0030 →
RELEASE OF SECURITY INTEREST Recorded Nov 21, 2017
From: TERRALUX, INC.
To: NEUGEBOREN O'DOWD PC
Reel/Frame 044878/0226 →
SECURITY INTEREST Recorded Sep 1, 2017
From: TERRALUX, INC. D/B/A SIELO, INC.
To: NEUGEBOREN O'DOWD PC
Reel/Frame 043747/0262 →
DISCHARGE OF LIEN Recorded Jul 28, 2016
From: MORGAN, LEWIS & BOCKIUS LLP
To: TERRALUX, INC.
Reel/Frame 039503/0263 →
SECURITY INTEREST Recorded Jul 19, 2016
From: TERRALUX, INC.
To: COMERICA BANK
Reel/Frame 039392/0715 →
SECURITY INTEREST Recorded Jul 8, 2016
From: TERRALUX, INC.
To: VENTURE LENDING & LEASING VII, INC.; VENTURE LENDING & LEASING VIII, INC.
Reel/Frame 039291/0308 →
LIEN Recorded Feb 19, 2016
From: TERRALUX, INC.
To: MORGAN, LEWIS & BOCKIUS LLP
Reel/Frame 037858/0634 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2015
From: CATALANO, ANTHONY; HARRISON, DANIEL; HALL, JOHN
To: TECHNOLOGY ASSESSMENT GROUP, INC.
Reel/Frame 035658/0919 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2015
From: TECHNOLOGY ASSESSMENT GROUP, INC.
To: TERRALUX, INC.
Reel/Frame 035659/0165 →