IP Library Granted Patent US 9,285,098
Granted Patent B2
US 9,285,098 · App. 14/336,352 · Granted Mar 15, 2016

LED luminaire

Inventors: Derek Mallory (Plymouth, MI); Brian C. Wells (Grosse Pointe Farms, MI); Dianna Stadtherr (Novi, MI)
Assignee: CoreLed Systems, LLC
F21V5/04F21K9/50F21V5/007F21Y2105/001
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Quick Facts
Patent No.
US 9,285,098
App. No.
14/336,352
Granted
Mar 15, 2016
Kind
B2
Abstract

A luminaire having an array of light emitting diodes on a circuit board, and a generally planar lens element adjacent each of the LEDs, wherein each lens element has a plurality of concentric ridges projecting from a surface of the lens member to define Fresnel facets for redirecting light emitted from the corresponding LED, providing more uniform light distribution in a compact configuration.

Claims (18)

1. A light emitting diode luminaire, comprising:

an array of light emitting diodes mounted on a circuit board; and

a generally planar lens element positioned adjacent a corresponding one of each of the light emitting diodes, each generally planar lens element having a plurality of concentric ridges circumscribing a top center of the generally planar lens element and projecting from a surface of the generally planar member to define facets for redirecting light emitted from the corresponding light emitting diode, wherein at least one of the concentric ridges includes a first concave facet facing toward a top center of the generally planar lens element, a second concave facet facing away from the top center of the generally planar lens element, and a third concave facet extending between an upper end of the first facet and an upper end of the second facet.

2. A light emitting diode luminaire, comprising:

an array of light emitting diodes mounted on a circuit board; and

a generally planar lens element positioned adjacent a corresponding one of each of the light emitting diodes, each generally planar lens element having a plurality of concentric ridges circumscribing a top center of the generally planar lens element and projecting from a surface of the generally planar member to define facets for redirecting light emitted from the corresponding light emitting diode, wherein at least two adjacent concentric ridges have a generally square shape defined by straight sides and rounded corners.

3. The luminaire of claim 1 , in which the generally planar lens elements are positioned with a top center of the generally planar lens element less than 5 mm from the corresponding light emitting diode.

4. The luminaire of claim 1 , in which each of the plurality of concentric ridges has a height that is less than 0.5 mm.

5. A light emitting diode luminaire, comprising:

an array of light emitting diodes mounted on a circuit board; and

a generally planar lens element positioned adjacent a corresponding one of each of the light emitting diodes, each generally planar lens element having a plurality of concentric ridges circumscribing a top center of the generally planar lens element and projecting from a surface of the generally planar member to define facets for redirecting light emitted from the corresponding light emitting diode, wherein each lens concentrates light from a corresponding light emitting diode over an area that is less than 20% of an area illuminated by the light emitting diode alone without the lens element.

6. A light emitting diode luminaire, comprising:

an array of light emitting diodes mounted on a circuit board; and

a generally planar lens element positioned adjacent a corresponding one of each of the light emitting diodes, each generally planar lens element having a plurality of concentric ridges circumscribing a top center of the generally planar lens element and projecting from a surface of the generally planar member to define facets for redirecting light emitted from the corresponding light emitting diode, wherein light emitted from each light emitting diode and refracted at the corresponding lens element forms a generally square beam pattern on a surface normal to the generally planar surface of the lens, such that a maximum luminous flux is at the center of the square pattern, a luminous flux of about 50% of the maximum luminous flux is at each of four edge points a given distance along a straight line extending from the center toward each edge of the generally square pattern, and a luminous flux of about 25% of the maximum luminous flux is at each of four corners points that define the corners of a square having sides passing through the four edge points, whereby the lens elements and light emitting diodes of the luminaire can be arranged in arrays with adjacent edge and corner points aligned such that a composite beam pattern from a plurality of light emitting diodes and their corresponding lens elements has a light distribution over the area luminous flux from a single light emitting diode combined with a single lens element.

7. A light emitting diode luminaire, comprising:

an array of light emitting diodes mounted on a circuit board; and

a generally planar lens element positioned adjacent a corresponding one of each of the light emitting diodes, each generally planar lens element having a plurality of concentric ridges circumscribing a top center of the generally planar lens element and projecting from a surface of the generally planar member to define facets for redirecting light emitted from the corresponding light emitting diode, wherein at least one of the concentric ridges comprises facets that direct light in both a direction away from a center of each of the generally planar lens elements and a direction toward the center of each of the generally planar lens elements.

8. The luminaire of claim 1 in which at least one of the concentric ridges defines a generally square shape having rounded corners, and at least one of the concentric ridges defines a generally circular shape.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2014
From: MALLORY, DEREK; WELLS, BRIAN C; STADTHERR, DIANNA
To: CORELED SYSTEMS, LLC
Reel/Frame 033370/0009 →
Continuity (1)
Related Publication 20160018077A1 · Jan 21, 2016