IP Library › Granted Patent US 9,121,574
Granted Patent B2
US 9,121,574 · App. 14/001,386 · Granted Sep 1, 2015

Illumination device with movement elements

Inventors: Franz Fidler (Vienna, AT); Joerg Reitterer (Vienna, AT); Alexander Swatek (St. Michael, AT)
Assignee: TriLite Technologies GmbH
F21V5/04F21K99/00F21V13/04F21V29/70G02B26/04G02B26/0808G02B26/0816G02B27/225G02B27/2235G09G3/001G09G3/003G09G3/007H04N13/042H04N13/045H04N13/0418H04N13/0422B60Q1/143B60Q1/44B60Q2300/056G09G3/3426G09G2340/0407G09G2360/141G09G2360/145H04N13/0468H04N13/0486H04N2013/0463
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Quick Facts
Patent No.
US 9,121,574
App. No.
14/001,386
Granted
Sep 1, 2015
Kind
B2
Abstract

An illumination device (A) for the illumination of illumination zones (BZ) with different light intensity and/or color temperature by means of at least one light source (L), wherein per light source (L) there is provided at least one illumination modification means (VM) in the optical path between the light source (L) and the illumination zones (BZ) having at least one movement element (BR, BV, LI, L), which is arranged movably in the illumination device (A) and which is adapted to selectively deviate and/or cover the light emitted by the at least one light source (L) by means of control means with an illumination frame rate (R) for a subsequent illumination of the illumination zones (BZ), wherein the control means are adapted to control the light intensity of each light source according to the illumination zone (BZ) currently illuminated.

Claims (31)

1. An illumination device, comprising:

a common substrate,

at least two light sources for emitting light beams,

a micro lens configured to collimate said light beams in at least one axis, and

an illumination modification means mounted on the common substrate in a path of the collimated light beams and having at least one movable element configured to selectively deflect or cover said collimated light beams,

wherein the light sources are mounted on a common submount, wherein the common submount and the micro lens are mounted on a heatsink interface,

wherein the heatsink interface is mounted on the common substrate, and

wherein the at least two light sources are configured to emit different colors and are mounted on the common submount at different distances from the micro lens to compensate for a refractive index of the micro lens that is dependent on wavelength.

2. The illumination device according to claim 1 , wherein the at least two light sources are three laser diodes of the primary colors red, green and blue.

3. The illumination device according to claim 1 , wherein the common submount is made of a material that substantially does not deform upon heating.

4. The illumination device according to claim 1 , wherein the heatsink interface is made of a material that substantially does not deform upon heating.

5. The illumination device according to claim 1 , wherein each light source of the at least two light sources has at least one photodiode for measuring the optical output of the light source.

6. The illumination device according to claim 5 , wherein the at least one photodiode is mounted together with the at least two light sources on the common submount.

7. The illumination device according to claim 5 , wherein each light source of the at least two light sources is a laser diode with a front facet and a rear facet, at the rear facet of which the at least one photodiode determines the optical output of the laser diode at the front facet thereof.

8. The illumination device according to claim 7 , wherein an active surface of the at least one photodiode is tilted with respect to the rear facet of the laser diode.

9. The illumination device according to claim 1 , wherein the micro lens is a FAC lens.

10. The illumination device according to claim 1 , wherein the at least one movable element is a micro mirror movable in one or two directions.

11. The illumination device according to claim 10 , wherein the micro mirror is a MEMS device.

12. The illumination device according to claim 1 , wherein the illumination modification means has at least one diffuser, beam splitter or diverging lens for enlarging the divergence angle of the light beams.

13. An illumination device, comprising:

a substrate,

at least two light sources for emitting light beams,

a micro lens configured to collimate said light beams in at least one axis, and

at least one movable element mounted on the substrate in a path of the collimated light beams and configured to selectively deflect or cover said collimated light beams,

wherein the at least two light sources are mounted on a common submount, wherein the common submount and the micro lens are mounted on a heatsink interface,

wherein the heatsink interface is mounted on the substrate, and

wherein the at least two light sources are configured to emit different colors and are mounted on the common submount at different distances from the micro lens to compensate for a refractive index of the micro lens that is dependent on wavelength.

14. The illumination device according to claim 13 , wherein each light source of the at least two light sources has at least one photodiode for measuring the optical output of the light source.

15. The illumination device according to claim 13 , wherein the at least one movable element includes a micro mirror movable in one or two directions.

16. The illumination device according to claim 13 , further comprising:

at least one diffuser, beam splitter or diverging lens for enlarging the divergence angle of the light beams.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2013
From: FIDLER, FRANZ; REITTERER, JOERG; SWATEK, ALEXANDER
To: TRILITE TECHNOLOGIES GMBH
Reel/Frame 031085/0129 →
Priority Claims (2)
AT 258/2011 · Feb 25, 2011 · national
AT 1738/2011 · Nov 24, 2011 · national
Continuity (1)
Related Publication 20130327966A1 · Dec 12, 2013