IP Library Granted Patent US 9,726,362
Granted Patent B2
US 9,726,362 · App. 14/592,823 · Granted Aug 8, 2017

LED heater system and method

Inventors: Richard Allen Rosen (Simi Valley, CA); Joshua Alexander Forbes (Los Angeles, CA)
Assignee: VITEC VIDEOCOM INC.
F21V29/54F21K9/20F21V5/045F21V29/006F21V29/02F21V29/677F21V29/74F21V29/90F21W2131/406F21W2131/407F21Y2115/10
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Quick Facts
Patent No.
US 9,726,362
App. No.
14/592,823
Granted
Aug 8, 2017
Kind
B2
Abstract

The present disclosure includes an apparatus and method relating to LED fixtures having an LED module capable of operating at a temperature. The LED module is also capable of being operated within a desired temperature range having an upper limit and a lower limit. A fan is operable for cooling the LED module when the temperature of the LED module approaches the upper limit. A heater is operable for heating the LED module when the temperature of the LED module approaches the lower limit. A heat sink may be in thermal communication with the LED module such that the fan may cool and the heater may heat the heat sink. The controller may also be configured to selectively activate the heater and the fan. The controller may also be in electrical communication with a temperature sensor which is in thermal communication with the LED module such that the controller may read the temperature of the LED module. The controller may activate the fan and/or the heater depending on the temperature of the LED module.

Claims (24)

1. An LED fixture comprising:

a housing;

a heat sink supported by said housing;

a chip-on-board LED module in thermal communication with said heat sink;

said chip-on-board LED module capable of being dimmed; and

a heater in thermal communication with said chip-on-board LED module wherein when said chip-on-board LED module is dimmed, said heater can be driven to add heat to said chip-on-board LED module.

2. The LED fixture of claim 1 further including means for controlling said heater.

3. The LED fixture of claim 1 wherein said heater is controllable.

4. The LED fixture of claim 1 wherein said heater is a resistor.

5. The LED fixture of claim 1 wherein said heater is a semiconductor.

6. The LED fixture of claim 5 wherein said semiconductor is a MOSFET.

7. The LED fixture of claim 1 further including a Fresnel lens supported from said housing.

8. The LED fixture of claim 1 wherein said heater adds heat to said heat sink.

9. The LED fixture of claim 1 wherein said heater adds heat directly to said chip-on-board LED module.

10. The LED fixture of claim 4 further comprising a controller having a pulse width modulated output and a transistor for switching the electrical current through said resistor, said pulse width modulated output drivingly connected to said transistor, wherein in said controller proportionately controls the heat produced by said resistor.

11. A method for reducing the thermal cycles of a chip-on-board LED module by maintaining the temperature of the chip-on-board LED module within prescribed limits, the method including the steps of:

a. providing a fan for cooling the chip-on-board LED module;

b. providing a heater for heating the chip-on-board LED module;

c. providing a controller configured to selectively activate and deactivate said fan and said heater;

d. providing a temperature sensor in thermal communication with said chip-on-board LED module and in electrical communication with said controller;

e. in the controller, reading the temperature of the chip-on-board LED module;

f. activating said fan when the temperature of the chip-on-board LED module approaches an upper limit,

g. activating said heater when the temperature of the chip-on-board LED module approaches a lower limit so as to reduce the thermal cycles of said chip-on-board LED module;

wherein said chip-on-board LED module is capable of being dimmed and wherein said heater is activated when the chip-on-board LED module is inactive or dimmed in order to maintain the chip-on-board LED module at a temperature below the lower limit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2017
From: ROSEN, RICHARD ALLEN; FORBES, JOSHUA ALEXANDER
To: VITEC VIDEOCOM INC.
Reel/Frame 040868/0454 →
Continuity (2)
Provisional Application 61924934 · Jan 8, 2014
Related Publication 20150204533A1 · Jul 23, 2015