IP Library › Granted Patent US 8,696,167
Granted Patent B2
US 8,696,167 · App. 12/676,632 · Granted Apr 15, 2014

Illumination system, light source and beam-control element

Inventors: Rifat Ata Mustafa Hikmet (Eindhoven, NL); Ties Van Bommel (Eindhoven, NL)
Assignee: Koninklijke Philips N.V.
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Quick Facts
Patent No.
US 8,696,167
App. No.
12/676,632
Granted
Apr 15, 2014
Kind
B2
Abstract

The invention relates to an illumination system ( 50 ), a beam-control element and a light source ( 30 ). The illumination system comprises the light source for emitting a light beam and a beam-control element for controlling the shape and/or direction of the light beam. The beam-control element comprises a resilient layer ( 2 a ) and a further layer ( 4 a ) being arranged substantially parallel to each other, the resilient layer comprising a relief ( 21 ) on a surface of the resilient layer arranged substantially parallel to the further layer, or the further layer comprising the relief on a surface of the further layer facing the resilient layer. The illumination system further comprises moving means ( 52 ) for moving the resilient layer and the further layer with respect to each other for reducing the relief by applying a pressure between the resilient layer and the further layer. The relief controls the shape and/or direction of the light-beam. When the relief is reduced by applying pressure, the light beam is substantially unaltered by the beam-control element.

Claims (47)

1. An illumination system comprising

a light source for emitting a light beam and

a beam-control element for controlling the shape direction of the light-beam,

the light source being arranged for emitting at least part of the light beam via the beam-control element,

the beam-control element comprising

a resilient layer and

a further layer being arranged substantially parallel to the resilient layer in spaced apart opposing relationship,

the resilient layer comprising a deformable relief on an exterior surface of the resilient layer arranged substantially parallel to the further layer, or the further layer comprising the relief on an exterior surface of the further layer facing the resilient layer,

the resilient layer forming the deformable relief by a plurality of sealed compartments,

the relief being arranged for altering the shape or direction of the light beam,

the illumination system further includes a moving mechanism operable to move the resilient layer and the further layer with respect to each other reducing the relief by pressing the exterior surface of the further layer against the exterior surface of the resilient layer thereby reducing the cross-sectional dimension of the relief.

2. Illumination system as claimed in claim 1 , wherein the moving mechanism is arranged for moving the resilient layer and the further layer with respect to each other in the axial direction (A) being a direction substantially parallel to the light beam for applying pressure.

3. Illumination system as claimed in claim 1 , wherein the moving mechanism is arranged for moving the resilient layer and the further layer with respect to each other in the transversal direction (T) or rotational direction for altering the relief, the transversal direction (T) and rotational direction being directions substantially perpendicular to the light beam.

4. Illumination system as claimed in claim 1 , wherein the surface of the resilient layer comprising the relief is embedded in the resilient layer.

5. Illumination system as claimed in claim 4 , wherein the resilient layer being a translucent layer comprises embedded compartments forming the relief.

6. Illumination system as claimed in claim 5 , wherein the compartments comprise a fluid that is evacuated from the compartments by pressing the resilient layer for reducing the relief.

7. Illumination system as claimed in claim 1 , wherein the further layer is relatively rigid compared to the resilient layer.

8. Illumination system as claimed in claim 7 , wherein the refractive index of the resilient layer is substantially identical to the refractive index of the further layer.

9. Illumination system as claimed in claim 1 , wherein the relief is constituted of an arrangement of circular lens-shaped, cylindrical lens-shaped, prism-shaped ( 24 ), or substantially randomly shaped protrusions, indentations, or compartments.

10. Illumination system as claimed in claim 1 , wherein the moving mechanism moves the resilient layer relative to the further layer via a rotational motion causing a translational motion along a thread, a piezo-electric element, an electro-magnetic force, or a motor.

11. Illumination system as claimed in claim 1 , wherein both the surface of the resilient layer arranged substantially parallel to the further layer and the surface of the further layer facing the resilient layer comprise the relief.

12. The illumination system of claim 1 wherein the resilient layer is deformable and the further layer has a plurality of rigid lenses, the resilient layer deformable around the further layer rigid lenses.

13. An illumination system, comprising:

a light source for emitting a light beam;

a beam-control element for controlling the light-beam;

the light source arranged to emit at least part of the light beam via the beam-control element;

the beam-control element including

a resilient layer;

a further layer arranged substantially parallel to the resilient layer;

the resilient layer including a deformable relief on an exterior surface of the resilient layer and arranged substantially parallel to the further layer;

the relief arranged to be deformable thereby altering the direction of the light beam;

the illumination system further including moving mechanism to move the resilient layer and the further layer with respect to each other for deforming the relief by pressing the exterior layer of the further layer against the exterior layer of the resilient layer;

the relief on the surface of the resilient layer embedded in the resilient layer;

the resilient layer being a translucent layer including sealed embedded compartments, the sealed compartments retaining fluid in the compartments when pressing the resilient layer against the further layer to transform the relief.

14. An illumination system, comprising:

a light source for emitting a light beam;

a beam-control element for controlling the light-beam;

the light source arranged to emit at least part of the light beam via the beam-control element;

the beam-control element including

a resilient layer;

a further layer arranged substantially parallel to the resilient layer;

the resilient layer including a deformable relief on an exterior surface of the resilient layer and arranged substantially parallel to the further layer;

the relief arranged to be deformable thereby altering the direction of the light beam;

the illumination system further including moving mechanism to move the resilient layer and the further layer with respect to each other for deforming the relief by pressing the exterior layer of the further layer against the exterior layer of the resilient layer;

the relief on the surface of the resilient layer embedded in the resilient layer;

the resilient layer being a translucent layer including sealed embedded compartments, the sealed compartments retaining fluid in the compartments when pressing the resilient layer against the further layer to transform the relief,

wherein the resilient layer interior compartments having a refractive index different than a refractive index of the resilient layer, said resilient layer deformable into a substantially homogeneous layer inside the resilient layer allowing the light beam to pass through unaltered.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2016
From: KONINKLIJKE PHILIPS N.V.
To: PHILIPS LIGHTING HOLDING B.V.
Reel/Frame 040060/0009 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2010
From: HIKMET, RIFAT ATA MUSTAFA; VAN BOMMEL, TIES
To: KONINKLIJKE PHILIPS ELECTRONICS N V
Reel/Frame 024034/0113 →
Priority Claims (1)
EP 07116091 · Sep 11, 2007 · regional
Continuity (1)
Related Publication 20110128739A1 · Jun 2, 2011