IP Library Granted Patent US 8,690,389
Granted Patent B2
US 8,690,389 · App. 13/469,831 · Granted Apr 8, 2014

Illumination module

Inventor: Victor Zaderej (St. Charles, IL)
Assignee: Molex Incorporated
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Quick Facts
Patent No.
US 8,690,389
App. No.
13/469,831
Granted
Apr 8, 2014
Kind
B2
Abstract

A light emitting diode (LED) module is provided that includes a base and a cover. Circuitry is provided on the base. An LED array is provided on the base and is coupled to the circuitry, which in an embodiment may convert AC line voltage to DC voltage. The LED module can be configured to take up minimal space while providing desirable light output.

Claims (23)

1. An illumination module, comprising:

a base with a first and second side and including a socket on the first side and an aperture on the second side, the socket in communication with an aperture, the base being insulative;

a light emitting diode (LED) array having a substrate and a light block mounted on the substrate, the substrate positioned in the socket such that a light block extends into the aperture;

a cover with an opening aligned with the light block, the cover mounted on the base, the cover having an angled surface positioned around the opening, the angled surface configured to be substantially non-reflective with respect to the light block; and

a thermal pad positioned on the second side of the base and in thermal communication with the substrate.

2. The illumination module of claim 1 , wherein the base supports circuitry that is configured to convert AC line voltage of at least 110 volts AC to DC voltage.

3. The illumination module of claim 2 , wherein the module has a volume of not more than 35,000 mm 3 .

4. The illumination module of claim 3 , wherein the volume of the module is less than 30,000 mm 3 .

5. An illumination module, comprising:

a base with a first and second side and including a socket on the first side and an aperture on the second side, the socket in communication with an aperture, the base being insulative;

a light emitting diode (LED) array having a substrate and a light block mounted on the substrate, the substrate positioned in the socket such that a light block extends into the aperture;

a cover with an opening aligned with the light block, the cover mounted on the base;

a thermal pad positioned on the second side of the base and in thermal communication with the substrate; and

circuitry positioned on the base configured to receive AC line voltage and to power the LED array, wherein the module has a volume of not more than 40,000 mm 3 .

6. The illumination module of claim 5 , wherein the circuitry is configured to selectively power different series of LEDs provided in the light block such that the illumination is free of flicker perceptible to a user.

7. The illumination module of claim 6 , wherein the volume is not more than 35,000 m 3 .

8. The illumination module of claim 7 , wherein the volume is not more than 30,000 m 3 .

9. The illumination module of claim 8 , wherein the cover is configured to substantially avoid shaping light emitted from the LED array.

10. The illumination module of claim 5 , wherein the circuitry includes a capacitor supported by the base, the capacitor positioned in an aperture such that a portion of the capacitor extends on both sides of the base.

11. The illumination module of claim 10 , wherein the capacitor has a first bottom surface and the substrate a second bottom surface such that the first and second bottom surface are substantially planar.

12. The illumination module of claim 11 , wherein the base further supports a heat puck with a third bottom surface, wherein the third bottom surface is substantially planar with second bottom surface.

13. The illumination module of claim 12 , wherein the base includes a plurality of thermal vias configured to direct heat from the circuitry to the heat puck.

14. The illumination module of claim 5 , wherein the illumination module is configured to emit more than 500 lumens.

Continuity (2)
Provisional Application 61486542 · May 16, 2011
Related Publication 20120293997A1 · Nov 22, 2012