IP Library Granted Patent US 10,190,747
Granted Patent B1
US 10,190,747 · App. 15/660,282 · Granted Jan 29, 2019

Optic for providing biased illumination

Inventors: Kevin Charles Broughton (Sharpsburg, GA); Orestes Orbe (Peachtree City, GA)
Assignee: COOPER TECHNOLOGIES COMPANY
F21V5/08F21V5/04F21V7/0066F21V7/0091F21V15/01G02B19/0028
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Quick Facts
Patent No.
US 10,190,747
App. No.
15/660,282
Granted
Jan 29, 2019
Kind
B1
Abstract

An optic configured to create an asymmetric pattern of illumination includes a cavity defined by a sidewall. The cavity is oriented to receive light emitted by a light source that is disposed adjacent a light source receiving end of the cavity. Further, the optic includes a totally internally reflective surface that extends circumferentially about the sidewall and is tapered, so as to reflect emitted light that passes through the sidewall of the cavity and into a body of the optic. The totally internally reflective surface can have a form that is different on opposing sides of the cavity. Furthermore, the optic includes a convex surface that is disposed at a light emitting end of the sidewall to condense, focus, or collimate emitted light from the light source.

Claims (70)

1. A system comprising:

an optic comprising:

a front and a rear;

a cavity that comprises:

an opening disposed at the rear;

a bottom; and

a sidewall that extends between the opening and the bottom and that circumscribes an axis, the cavity configured to receive light emitted by at least one light emitting diode disposed adjacent the opening;

a convex refractive surface disposed at the bottom of the cavity and configured for condensing a first portion of the received light that transmits in the cavity along the axis; and

a surface that circumscribes the cavity and is configured for totally internally reflecting a second portion of the received light that passes through the sidewall of the cavity, the surface comprising:

a first surface region extending circumferentially partially about the cavity and extending between the front and the rear; and

a second surface region extending circumferentially partially about the cavity and extending between the front and the rear,

wherein the first surface region and the second surface region meet one another at two circumferential positions with two discontinuities,

wherein the front comprises a second surface positioned for passing the first portion of the received light that is condensed and the second portion of the received light that is totally internally reflected,

wherein as compared to the second surface region, the first surface region is radially closer to the axis at the front of the optic, and

wherein as compared to the first surface region, the second surface region is radially closer to the axis at the rear of the optic.

2. The system of claim 1 , wherein the surface comprises two abrupt changes in form at the two circumferential positions.

3. The system of claim 1 , wherein the first surface region and the second surface region taper along the axis at different rates.

4. The system of claim 1 , wherein the first surface region comprises a first form producible by rotating a first curved line partway about the axis, and

wherein the second surface region comprises a second form producible by rotating a second curved line partway about the axis.

5. A system comprising:

an optic comprising:

a cavity that comprises:

an opening;

a bottom; and

a sidewall that extends between the opening and the bottom and that circumscribes an axis, the cavity configured to receive light emitted by at least one light emitting diode disposed adjacent the opening;

a convex refractive surface disposed at the bottom of the cavity and configured for condensing a first portion of the received light that transmits in the cavity along the axis; and

a surface that circumscribes the cavity and is configured for totally internally reflecting a second portion of the received light that passes through the sidewall of the cavity, the surface comprising:

a first surface region extending circumferentially partially about the cavity; and

a second surface region extending circumferentially partially about the cavity,

wherein the first surface region and the second surface region meet one another at two circumferential positions with two discontinuities, wherein one of the two discontinuities comprises:

a first area where the first surface region is a first radial distance from the axis and the second surface region is a second radial distance from the axis, the first radial distance greater than the second radial distance; and

a second area where the first surface region is a third radial distance from the axis and the second surface region is a fourth radial distance from the axis, the fourth radial distance greater than the third radial distance.

6. The system of claim 5 , wherein for at least one location between the first area and the second area, the first surface region and the second surface region have equal radial distances from the axis.

7. The system of claim 1 , wherein at some lateral position between the front and the rear, the first surface region and the second surface region comprise common displacements from the axis.

8. The system of claim 1 , further comprising the at least one light emitting diode disposed adjacent the opening,

wherein the at least one light emitting diode is offset laterally relative to the axis, and

wherein the optic comprises a collimating optic.

9. A lens comprising:

a front;

a rear disposed opposite the front; and

a first surface and a second surface, each extending from the front to the rear and tapering inward from the front to the rear; and

wherein at the front, the first surface protrudes relative to the second surface, and

wherein at the rear, the second surface protrudes relative to the first surface.

10. The lens of claim 9 , wherein the front comprises parallel grooves that are operative to refract light passing out of the lens through the front.

11. The lens of claim 9 , wherein the lens further comprises:

a cavity that extends from the rear towards the front; and

a concave refractive surface disposed in the cavity.

12. The lens of claim 9 , wherein the lens further comprises:

a cavity that extends from an opening that is disposed towards the rear to a bottom that is disposed towards the front relative to the opening; and

a surface that is disposed at the bottom of the cavity and that comprises a pattern of grooves for refracting incident light passing into the lens via the surface.

13. The lens of claim 12 , wherein the pattern of grooves comprises at least a portion of a Fresnel lens.

14. The lens of claim 12 , wherein the pattern of grooves comprises undercut features.

15. The lens of claim 12 , wherein the pattern of grooves comprises grooves that curve alongside one another.

16. An optic comprising:

a cavity that comprises:

an opening;

a bottom; and

a sidewall that extends between the opening and the bottom and that circumscribes an axis, the cavity configured to receive light emitted by at least one light emitting diode disposed adjacent the opening;

a first surface that circumscribes the cavity and is configured for totally internally reflecting a first portion of the received light that passes through the sidewall of the cavity;

a second surface that is disposed at the bottom of the cavity and that comprises a pattern of undercut grooves;

a front; and

a rear disposed opposite to the front and comprising the opening,

wherein the first surface comprises:

a third surface region extending circumferentially partially about the cavity and between the front and the rear,

a fourth surface region extending circumferentially partially about the cavity and between the front and the rear,

wherein compared to the third surface region, the fourth surface region is radially closer to the axis at the front of the optic, and

wherein compared to the fourth surface region, the third surface region is radially closer to the axis at the rear of the optic.

17. The optic of claim 16 , wherein the pattern of undercut grooves is formed on a convex surface that the second surface comprises.

18. The optic of claim 16 , wherein the pattern of undercut grooves comprises at least a section of a Fresnel lens.

19. The optic of claim 16 , wherein the pattern of undercut grooves extends partially about the axis without circumscribing the axis.

Assignments (5)
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION NUMBERS 12183490, 12183499, 12494944, 12961315, 13528561, 13600790, 13826197, 14605880, 15186648, RECORDED IN ERROR PREVIOUSLY RECORDED ON REEL 052681 FRAME 0475. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Nov 12, 2020
From: EATON INTELLIGENT POWER LIMITED
To: SIGNIFY HOLDING B.V.
Reel/Frame 055965/0721 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2020
From: EATON INTELLIGENT POWER LIMITED
To: SIGNIFY HOLDING B.V.
Reel/Frame 052681/0475 →
CORRECTIVE ASSIGNMENT TO CORRECT THE COVER SHEET TO REMOVE APPLICATION NO. 15567271 PREVIOUSLY RECORDED ON REEL 048207 FRAME 0819. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 11, 2019
From: COOPER TECHNOLOGIES COMPANY
To: EATON INTELLIGENT POWER LIMITED
Reel/Frame 048655/0114 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2019
From: COOPER TECHNOLOGIES COMPANY
To: EATON INTELLIGENT POWER LIMITED
Reel/Frame 048207/0819 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2017
From: BROUGHTON, KEVIN CHARLES; ORBE, ORESTES
To: COOPER TECHNOLOGIES COMPANY
Reel/Frame 043535/0555 →
Continuity (1)
Provisional Application 62367004 · Jul 26, 2016