IP Library Granted Patent US 11,867,382
Granted Patent B2
US 11,867,382 · App. 17/663,374 · Granted Jan 9, 2024

Lighting system with lens assembly

Inventors: Ariel Meir (Aventura, FL); Noam Meir (Herzliya, IL); Rina Meir (Brooklyn, NY)
Assignee: KORRUS, INC.
F21V17/04F21K9/68F21K9/69F21S8/04F21V7/0091F21V7/041F21V7/28F21V31/04G02B19/0061G02B27/30H01L33/502H01L33/58H01L33/60H05K1/0274H05K1/189H05K3/284F21S8/033F21V13/04F21W2131/10F21Y2103/10F21Y2115/10H01L2933/0091H05K2201/0133H05K2201/10106H05K2203/1316H05K2203/1327
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Quick Facts
Patent No.
US 11,867,382
App. No.
17/663,374
Granted
Jan 9, 2024
Kind
B2
Abstract

According to at least one aspect, a lighting device is provided. The lighting device comprises a circuit board, a light emitting diode (LED) mounted to the circuit board and configured to emit light, a lens disposed over the LED having a bottom surface facing the circuit board, a top surface opposite the bottom surface, and a lateral surface between the top and bottom surfaces, and an elastomer encapsulating at least part of the circuit board. The elastomer may not be in contact with at least part of the lateral surface of the lens so as to form a gap between the elastomer and the lateral surface of the lens.

Claims (35)

1. A lighting system, comprising:

a lens assembly including a lens having a light output surface being spaced apart along a central axis from a light input surface, the lens further having a lateral surface being spaced apart around the central axis and having a frusto-conical shape extending between the light input and output surfaces of the lens, the lens being configured for causing some light passing into the lens through the light input surface to be diverted toward the lateral surface;

a light source being located adjacent to the light input surface of the lens, the light source including a semiconductor light-emitting device and being configured for generating light being directed through the light input surface into the lens;

a reflector having another frusto-conical shape, the reflector being spaced apart around the central axis and extending between the light input and output surfaces of the lens, the reflector having a reflective surface that faces toward the lateral surface of the lens, the reflector also having an opposite surface that faces away from the lateral surface of the lens; and

a potting material facing toward the opposite surface of the reflector, the potting material being spaced apart from the opposite surface of the reflector so as to form a gap.

2. The lighting system of claim 1 , wherein the light source includes the semiconductor light-emitting device as being a phosphor-converted semiconductor light-emitting device.

3. The lighting system of claim 1 , wherein the lens has an inner surface forming a frusto-conical cavity extending from the light output surface along the central axis into the lens, the inner surface being for causing some light passing into the lens through the light input surface to be reflected at the inner surface toward the lateral surface of the lens.

4. The lighting system of claim 1 , wherein the light input surface has a recess forming a gap between the lens and the light source, for directing the light from the light source through the gap toward the light input surface of the lens.

5. The lighting system of claim 1 , wherein the light input surface has a recess forming an air gap between the lens and the light source, for refracting the light from the light source at a boundary between the air gap and the lens toward a direction being normal to the light input surface.

6. The lighting system of claim 1 , wherein the potting material includes an elastomer.

7. The lighting system of claim 1 , wherein the reflective surface of the reflector is configured to reflect some light from the lateral surface of the lens back into the lens.

8. The lighting system of claim 1 , wherein the lighting system is a strip lighting system including:

another lens assembly including another lens having another light output surface being spaced apart along another central axis from another light input surface, the another central axis being spaced apart away from the central axis, the another lens further having another lateral surface being spaced apart around the another central axis and having an additional frusto-conical shape extending between the another light input and output surfaces of the another lens, the another lens being configured for causing some light passing into the another lens through the another light input surface to be diverted toward the another lateral surface;

another light source being located adjacent to the another light input surface of the another lens, the another light source including another semiconductor light-emitting device and being configured for generating light being directed through the another light input surface into the another lens;

another reflector having yet a further frusto-conical shape, the another reflector being spaced apart around the another central axis and extending between the another light input and output surfaces of the another lens, the another reflector having another reflective surface that faces toward the another lateral surface of the another lens, the another reflector also having another opposite surface that faces away from the another lateral surface of the another lens; and

another potting material facing toward the another opposite surface of the another reflector, the another potting material being spaced apart from the another opposite surface of the another reflector so as to form another gap.

9. The lighting system of claim 1 , wherein a refractive index of the lens is similar to another refractive index of the potting material.

10. The lighting system of claim 1 , wherein a refractive index of the lens is higher or lower than another refractive index of the potting material.

11. A lighting system, comprising:

a lens assembly including a lens having a light output surface being spaced apart along a central axis from a light input surface, the lens further having a lateral surface being spaced apart around the central axis and having a frusto-conical shape extending between the light input and output surfaces of the lens, the lens being configured for causing some light passing into the lens through the light input surface to be diverted toward the lateral surface;

a light source being located adjacent to the light input surface of the lens, the light source including a semiconductor light-emitting device and being configured for generating light being directed through the light input surface into the lens;

a reflector having another frusto-conical shape, the reflector being spaced apart around the central axis and extending between the light input and output surfaces of the lens, the reflector having a reflective surface that faces toward the lateral surface of the lens, the reflector also having an opposite surface that faces away from the lateral surface of the lens;

wherein the reflective surface of the reflector is spaced apart from the lateral surface of the lens forming a gap; and wherein the light input surface has a recess forming a gap between the lens and the light source, for directing the light from the light source through the gap toward the light input surface of the lens.

12. The lighting system of claim 11 , wherein the light source includes the semiconductor light-emitting device as being a phosphor-converted semiconductor light-emitting device.

13. The lighting system of claim 11 , wherein the lens has an inner surface forming a frusto-conical cavity extending from the light output surface along the central axis into the lens, the inner surface being for causing some light passing into the lens through the light input surface to be reflected at the inner surface toward the lateral surface of the lens.

14. The lighting system of claim 11 , wherein the recess in the light input surface forms the gap as an air gap between the lens and the light source, for refracting the light from the light source at a boundary between the air gap and the lens toward a direction being normal to the light input surface.

15. The lighting system of claim 11 , wherein the potting material includes an elastomer.

16. The lighting system of claim 11 , wherein the reflective surface of the reflector is configured to reflect some light from the lateral surface of the lens back into the lens.

17. The lighting system of claim 11 , wherein the lighting system is a strip lighting system including:

another lens assembly including another lens having another light output surface being spaced apart along another central axis from another light input surface, the another central axis being spaced apart away from the central axis, the another lens further having another lateral surface being spaced apart around the another central axis and having an additional frusto-conical shape extending between the another light input and output surfaces of the another lens, the another lens being configured for causing some light passing into the another lens through the another light input surface to be diverted toward the another lateral surface;

another light source being located adjacent to the another light input surface of the another lens, the another light source including another semiconductor light-emitting device and being configured for generating light being directed through the another light input surface into the another lens;

another reflector having yet a further frusto-conical shape, the another reflector being spaced apart around the another central axis and extending between the another light input and output surfaces of the another lens, the another reflector having another reflective surface that faces toward the another lateral surface of the another lens, the another reflector also having another opposite surface that faces away from the another lateral surface of the another lens;

wherein the another reflective surface of the another reflector is spaced apart from the another lateral surface of the another lens forming another gap.

18. The lighting system of claim 11 , wherein a refractive index of the lens is similar to another refractive index of the potting material.

19. The lighting system of claim 11 , wherein a refractive index of the lens is higher or lower than another refractive index of the potting material.

Continuity (10)
Continuation 17230534 · Apr 14, 2021
Continuation 16161221 · Oct 16, 2018
Continuation 15453842 · Mar 8, 2017
Provisional Application 62405472 · Oct 7, 2016
Provisional Application 62405446 · Oct 7, 2016
Provisional Application 62405463 · Oct 7, 2016
Provisional Application 62405456 · Oct 7, 2016
Provisional Application 62405468 · Oct 7, 2016
Provisional Application 62305386 · Mar 8, 2016
Related Publication 20230036025A1 · Feb 2, 2023