IP Library Granted Patent US 8,992,052
Granted Patent B2
US 8,992,052 · App. 13/566,623 · Granted Mar 31, 2015

Inner lens optics for omnidirectional lamp

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Quick Facts
Patent No.
US 8,992,052
App. No.
13/566,623
Granted
Mar 31, 2015
Kind
B2
Abstract

An optical element for a lamp or lighting apparatus having at least one light emitting diode (LED) as a light source is provided. The optical element is positioned proximate to the LED and receives light rays therefrom. In turn, the optical element distributes the substantially unidirectional light output from the LED into an omnidirectional output with a controlled variance in light intensity at different directions about the LED. A diffuser can also be used around the optical element and LED to provide further distribution of the light rays by e.g., light scattering.

Claims (42)

1. A lighting apparatus, comprising:

at least one light emitting diode;

an optical element positioned adjacent to said at least one light emitting diode, said optical element defining a central axis and a lateral axis that is substantially orthogonal to the central axis, said optical element extending circumferentially about the central axis and comprising:

a convex light receiving surface that is substantially symmetrical about the central axis and positioned adjacent to said at least one light emitting diode;

a frustoconical light projecting surface positioned laterally outside of the convex light receiving surface and substantially symmetrical about the central axis; and

an arcuate light reflecting surface positioned laterally inside of the frustoconical light projecting surface and substantially symmetrical about the central axis, the arcuate light reflecting surface spaced apart along the central axis from the convex light receiving surface;

wherein the optical element distributes the light output from the at least one light emitting diode into a substantially omnidirectional output.

2. A lighting apparatus as in claim 1 , wherein said optical element further comprises a conically-shaped surface configured in a substantially symmetrical manner about the central axis and connected to said arcuate light reflecting surface.

3. A lighting apparatus as in claim 1 , wherein the conically-shaped surface comprises a flute extending circumferentially about the central axis.

4. A lighting apparatus as in claim 1 , wherein said arcuate light reflecting surface is metallized.

5. A lighting apparatus as in claim 1 , wherein said arcuate light reflecting surface is coated with a highly reflective material.

6. A lighting apparatus as in claim 1 , wherein said optical element further comprises

a planar light projecting surface that lies in a plane substantially perpendicular to the central axis and substantially parallel to the lateral axis, the planar light projecting surface connected with the frustoconical light projecting surface and the arcuate light reflecting surface, the planar light projecting surface extending circumferentially about the central axis.

7. A lighting apparatus as in claim 6 , wherein the planar light projecting surface comprises a flute extending circumferentially about the central axis.

8. A lighting apparatus as in claim 1 , further comprising a diffuser positioned around said optical element and said at least one light emitting diode, said diffuser configured for scattering light rays received from said optical element and said at least one light emitting diode.

9. A lighting apparatus, comprising:

at least one light emitting diode;

an optical element positioned adjacent to said at least one light emitting diode, said optical element defining a central axis and a lateral axis that is substantially orthogonal to the central axis, said optical element extending circumferentially about the central axis and comprising:

a light receiving surface that is substantially symmetrical about the central axis and positioned adjacent to said at least one light emitting diode, the light receiving surface forming an acute angle with the central axis;

a light projecting surface that is substantially symmetrical about the central axis and spaced apart from the light receiving surface along the central axis;

a frustoconical surface connected with the light projecting surface and that is substantially symmetrical about the central axis; and

an arcuate light reflecting surface positioned laterally inside of the frustoconical surface and that is substantially symmetrical about the central axis, the arcuate light reflecting surface spaced apart along the central axis from the light receiving surface;

wherein said lighting apparatus further comprises a diffuser positioned around said optical element and said at least one light emitting diode, said diffuser configured for scattering light rays received from said optical element and said at least one light emitting diode.

10. A lighting apparatus as in claim 9 , wherein said optical element is configured so that light from said at least one light emitting diode is emitted from said optical element with variation in light intensity measured at different angles from central axis CA over the angular range of zero to 135 degrees that is not more than ±twenty percent from the average light intensity measured over the angular range from zero to 135 degrees.

11. A lighting apparatus as in claim 9 , wherein the light projecting surface is frustoconical and forms an obtuse angle with the central axis.

12. A lighting apparatus as in claim 9 , wherein the light projecting surface is convex.

13. A lighting apparatus as in claim 9 , wherein said optical element further comprises a conically-shaped surface located in a substantially symmetrical manner along the central axis and connected to said arcuate light reflecting surface.

14. A lighting apparatus as in claim 9 , wherein said arcuate light reflecting surface is metallized.

15. A lighting apparatus as in claim 9 , wherein said arcuate light reflecting surface is coated with a highly reflective material.

16. A lighting apparatus as in claim 9 , further comprising a plurality of legs extending from the light receiving surface and configured for supporting the optical element.

17. An optical element for a lighting apparatus having at least one light emitting diode, the optical element for positioning adjacent to the at least one light emitting diode, the optical element defining a central axis and a lateral axis that is substantially orthogonal to the central axis, the optical element extending circumferentially about the central axis, the optical element comprising:

a light receiving surface that extends circumferentially about the central axis and is configured for positioning near the at least one light emitting diode;

a frustoconical surface spaced apart from the light receiving surface along the transverse direction and extending circumferentially about the central axis in a substantially symmetrical manner;

an arcuate light reflecting surface positioned laterally inside of the frustoconical surface and extending circumferentially about the central axis in a substantially symmetrical manner; and

wherein said optical element is configured so that light from said at least one light emitting diode is emitted from said optical element with variation in light intensity measured at a fixed distance from central axis CA over the range of zero to 135 degrees that is not more than ±twenty percent from the average light intensity measured over the angular range from zero to 135 degrees.

18. A lighting apparatus, comprising:

at least one light emitting diode;

an optical element positioned adjacent to said at least one light emitting diode, said optical element defining a central axis and a lateral axis that is substantially orthogonal to the central axis, said optical element extending circumferentially about the central axis and comprising:

a convex light receiving surface that is substantially symmetrical about the central axis and positioned adjacent to said at least one light emitting diode;

a frustoconical light projecting surface positioned laterally outside of the convex light receiving surface and substantially symmetrical about the central axis; and

an arcuate light reflecting surface positioned laterally inside of the frustoconical light projecting surface and substantially symmetrical about the central axis, the arcuate light reflecting surface spaced apart along the central axis from the convex light receiving surface;

wherein said optical element is configured so that light from said at least one light emitting diode is emitted from said optical element with variation in light intensity measured at different angles from central axis CA over the angular range of zero to 135 degrees that is not more than ±twenty percent from the average light intensity measured over the angular range from zero to 135 degrees.

Assignments (7)
SECURITY INTEREST Recorded Mar 11, 2026
From: SAVANT TECHNOLOGIES LLC
To: BANK OF AMERICA, N.A., AS AGENT
Reel/Frame 075090/0369 →
CHANGE OF NAME Recorded Jun 21, 2022
From: GE LIGHTING SOLUTIONS, LLC
To: CURRENT LIGHTING SOLUTIONS, LLC
Reel/Frame 060390/0276 →
CHANGE OF NAME Recorded Apr 15, 2022
From: CONSUMER LIGHTING LLC
To: SAVANT TECHNOLOGIES, LLC
Reel/Frame 059721/0943 →
RELEASE OF SECURITY INTEREST Recorded Apr 14, 2022
From: PNC BANK, NATIONAL ASSOCIATION
To: SAVANT SYSTEMS, INC.; SAVANT TECHNOLOGIES LLC; RACEPOINT ENERGY, LLC
Reel/Frame 059910/0312 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2022
From: CURRENT LIGHTING SOLUTIONS, LLC (FKA - GE LIGHTING SOLUTIONS, LLC)
To: CONSUMER LIGHTING, LLC
Reel/Frame 059582/0748 →
SECURITY INTEREST Recorded Jun 30, 2020
From: SAVANT SYSTEMS, INC.; CONSUMER LIGHTING (U.S.), LLC
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 053095/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2012
From: CAI, DENGKE; CHINNIAH, JEYACHANDRABOSE; KUENZLER, GLENN HOWARD
To: GE LIGHTING SOLUTIONS, LLC
Reel/Frame 028723/0113 →