IP Library Granted Patent US 9,989,839
Granted Patent B2
US 9,989,839 · App. 14/951,517 · Granted Jun 5, 2018

Light module for a projection or illumination arrangement

Inventor: Martin Schnarrenberger (Berlin, DE)
Assignee: OSRAM GMBH
G03B21/206G02B26/008G02B27/141G02B27/283G02F1/0136G03B21/204G03B21/2073G03B33/00G03B21/208G03B21/2066
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Quick Facts
Patent No.
US 9,989,839
App. No.
14/951,517
Granted
Jun 5, 2018
Kind
B2
Abstract

A light module includes an excitation radiation source designed to emit an excitation radiation having a polarization, at least one first phosphor, an output, at which an output signal is providable, at least one first polarization beam splitter, a first polarization modulator arranged serially between the radiation source and the first splitter. The first modulator is designed to modify the polarization of the radiation source depending on a control signal. The first splitter is designed to split the radiation incident on it depending on the polarization between a first and a second of two optical partial paths connected in parallel with one another. The first optical partial path includes the at least one first phosphor and ends at the output of the light module. The second optical partial path, whilst bypassing the at least one first phosphor, ends at the output of the light module.

Claims (51)

1. A light module for a projection or illumination arrangement, the light module comprising:

an excitation radiation source designed to emit an excitation radiation having a predefinable polarization;

at least one first phosphor designed to convert the excitation radiation into a first conversion radiation;

an output, at which an output signal is providable which comprises at least in phases at least one of the first conversion radiation or the excitation radiation; and

at least one first polarization beam splitter;

a first polarization modulator arranged serially between the excitation radiation source and the first polarization beam splitter, wherein the first polarization modulator is designed to modify the predefinable polarization of the excitation radiation source depending on a control signal;

wherein the first polarization beam splitter is designed to split the radiation incident on it depending on the polarization between a first and a second of two optical partial paths connected in parallel with one another;

wherein the first optical partial path comprises the at least one first phosphor and ends at the output of the light module;

wherein the second optical partial path, whilst bypassing the at least one first phosphor, ends at the output of the light module;

the series connection of a second polarization modulator and of a second polarization beam splitter, which series connection is arranged in the second optical partial path serially with respect to the first polarization beam splitter; and

at least one second phosphor;

wherein the second polarization beam splitter is designed to split the radiation incident on it depending on the polarization into two further optical partial paths connected in parallel with one another;

wherein one of the two further optical partial paths comprises the at least one second phosphor and ends at the output of the light module;

wherein the other of the two further optical partial paths, whilst bypassing the at least one second phosphor, ends at the output of the light module;

at least one further series connection of a polarization modulator and of a polarization beam splitter, which at least one further series connection is arranged in at least one of the further optical partial paths, and at least one further phosphor;

wherein the further polarization beam splitter is designed to split the radiation incident on it depending on the polarization into two further optical partial paths connected in parallel with one another;

wherein one of said further optical partial paths comprises the at least one further phosphor and ends at the output;

wherein the other further optical partial path, whilst bypassing the at least one further phosphor of the partial path connected in parallel, ends at the output of the light module.

2. The light module of claim 1 ,

wherein the optical partial path which, whilst bypassing an optical partial path comprising a phosphor, ends at the output comprises

a) no phosphor; or

b) at least one phosphor.

3. The light module of claim 1 , further comprising:

a control device designed to provide the respective control signal to the respective polarization modulator.

4. The light module of claim 3 ,

wherein the control device is designed to derive the respective control signal from a signal which represents an image content to be projected.

5. The light module of claim 1 ,

wherein at least one dichroic mirror designed to be reflective for excitation radiation and transmissive for conversion radiation, or vice versa, is arranged in the optical partial paths comprising a phosphor serially with respect to the respective polarization beam splitter.

6. The light module of claim 5 ,

wherein at least one dichroic mirror designed to be reflective for excitation radiation or transmissive is arranged in the optical partial path comprising no phosphor serially with respect to the respective polarization beam splitter.

7. The light module of claim 5 ,

wherein at least one further dichroic mirror is provided;

wherein the at least one further dichroic mirror is arranged to combine the light of different partial paths.

8. The light module of claim 1 ,

wherein a further mirror is arranged in one of the optical partial paths, said mirror being designed to be reflective for the radiation guided in the respective optical partial path.

9. The light module of claim 8 ,

wherein the further mirror is a dichroic mirror.

10. The light module of claim 1 ,

wherein at least one of the at least one first phosphor or the at least one second phosphor is arranged in static fashion.

11. The light module of claim 1 ,

wherein at least one of the at least one first phosphor or the at least one second phosphor is arranged in movable fashion.

12. The light module of claim 11 , further comprising:

at least one color wheel, on which the respective phosphor is arranged.

13. The light module of claim 12 ,

wherein the at least one color wheel has a multiplicity of segments on which the respective phosphor is arranged;

wherein no segment constitutes a through opening or a window in the color wheel.

14. The light module of claim 11 , further comprising:

at least one color wheel, on which a multiplicity of phosphors is arranged.

15. The light module of claim 14 ,

wherein the at least one color wheel has a multiplicity of segments on which the multiplicity of phosphors is arranged;

wherein no segment constitutes a through opening or a window in the color wheel.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 30, 2020
From: OSRAM GMBH
To: CORETRONIC CORPORATION
Reel/Frame 053348/0838 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 19, 2016
From: SCHNARRENBERGER, MARTIN
To: OSRAM GMBH
Reel/Frame 038312/0481 →
Priority Claims (1)
DE 10 2014 224 934 · Dec 4, 2014 · national
Continuity (1)
Related Publication 20160161835A1 · Jun 9, 2016