SILICONE OPTICS INSERT MOLDED ON RIGID FRAME
20200263858 ยท 2020-08-20
Assignee
Inventors
Cpc classification
F21V17/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29D11/00375
PERFORMING OPERATIONS; TRANSPORTING
F21V5/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V5/048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2105/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V17/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A lens member for an LED lighting fixture having a plurality of LED dies mounted on a substrate includes a planar frame having a plurality of apertures and an optically transparent silicone rubber overmolded on a first side of the frame. The overmolded silicone rubber defines a plurality of optical elements. Each optical element is disposed within one of the apertures and is shaped to focus or redirect light transmitted through the optical element.
Claims
1. A lens member for an LED lighting fixture, comprising: a planar frame having a plurality of apertures; and an optically transparent silicone rubber overmolded onto a recess defined on a first side of the planar frame, the overmolded silicone rubber having a continuously flat base disposed within the recess and defining a plurality of optical elements, each optical element disposed within one of the apertures and shaped to focus or redirect light transmitted through the optical element.
2. The lens member of claim 1, wherein the planar frame has a flexural modulus of at least 375,000 psi.
3. The lens member of claim 1, wherein the planar frame is composed of a thermoplastic having a glass transition temperature greater than or equal to 145 C.
4. The lens member of claim 1, wherein the planar frame is composed of a transparent or translucent thermoplastic material.
5. The lens member of claim 1, wherein the planar frame is composed of a polycarbonate.
6. The lens member of claim 1, wherein the planar frame has a thickness of from 0.5 mm to 4 mm.
7. The lens member of claim 1, wherein the planar frame is composed of a metal.
8. The lens member of claim 1, wherein the planar frame has width and length dimensions from 2 inches to 7 inches.
9. An LED lighting fixture, comprising: a plurality of LED dies mounted on a substrate; and a lens member disposed over the LED dies and substrate for directing light from the LED dies into a desired illumination pattern, the lens member comprising a planar frame having a plurality of apertures and an optically transparent silicone rubber overmolded onto a recess defined on a first side of the planar frame, the overmolded silicone rubber having a continuously flat base disposed within the recess and defining a plurality of optical elements, each optical element disposed within one of the apertures and shaped to focus or direct light transmitted through the optical element from the LED dies, the lens member arranged over the LED dies such that each optical element is centered over a corresponding LED die.
10. The LED lighting fixture of claim 9, wherein the planar frame has a flexural modulus of at least 375,000 psi.
11. The LED lighting fixture of claim 9, wherein the planar frame is composed of a thermoplastic having a glass transition temperature greater than or equal to 145 C.
12. The LED lighting fixture of claim 9, wherein the planar frame is composed of a transparent or translucent thermoplastic material.
13. The LED lighting fixture of claim 9, wherein the planar frame is composed of a polycarbonate.
14. The LED lighting fixture of claim 9, wherein the planar frame has a thickness of from 0.5 mm to 4 mm.
15. The LED lighting fixture of claim 9, wherein the planar frame is composed of a metal.
16. The LED lighting fixture of claim 9, wherein the planar frame has width and length dimensions from 2 inches to 7 inches.
17. A process of making a lens member for an LED lighting fixture, comprising: providing a planar frame having a plurality of apertures; and overmolding onto a recess defined on a first side of the planar frame an optically transparent silicone rubber to form a member having a continuously flat base disposed with the recess and a plurality of optical elements, each optical element disposed within one of the plurality of apertures and shaped to focus or redirect light transmitted through the optical member.
18. The process of claim 17, wherein the planar frame is made by injection molding a thermoplastic material.
19. The process of claim 17, wherein the planar frame is made by progressive die stamping a metal sheet.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0019] Shown in
[0020] Preferably, frame 12 is transparent or translucent to allow some light from LEDs underlying the lens member 10 to pass through the grid 18 of frame 12 that defines apertures 14. This has the effect of reducing the perception of glare. For purposes of this disclosure, we define perceived glare as the tendency for an observer to see a larger more uniform after image when the observer closes her/his eyes after looking directly at the light source, rather than a field of individual spots. Preferred thermoplastics include transparent or translucent acrylics and polycarbonates having a glass transition temperature of at least about 130 C.
[0021] As can be seen by reference to
[0022] As shown in
[0023] As indicated in
[0024] Shown in
[0025] While the present invention is described herein with reference to illustrated embodiments, it should be understood that the invention is not limited hereto. Those having ordinary skill in the art and access to the teachings herein will recognize additional modifications and embodiments within the scope thereof. Therefore, the present invention is limited only by the claims attached herein.