IP Library › Granted Patent US 11,420,552
Granted Patent B2
US 11,420,552 · App. 17/130,005 · Granted Aug 23, 2022

Vehicle light with dual projection film

Inventors: Shivi Singh (Columbus, IN); John Orisich (Seymour, IN)
Assignee: Valeo North America, Inc.
B60Q1/50B60Q1/076B60Q1/44B60Q3/76B60R16/03F21S41/25B60Q2400/50B60Q2900/30
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Quick Facts
Patent No.
US 11,420,552
App. No.
17/130,005
Filed
Dec 22, 2020
Granted
Aug 23, 2022
Kind
B2
Art Unit
2882
USPC
362/538
Abstract

A vehicle light module, a headlight assembly, and a method for communicating information at a panel having transparent and opaque states; a projector device projects visual representations toward the panel where visual representations are displayed on the panel when in an opaque state and through the panel when in a transparent state.

Claims (31)

1. A vehicle light module comprising:

a panel having a transparent state and an opaque state, wherein the panel represents a dual projection film or screen; and

a projector operable to project a visual representation toward the panel;

said vehicle light module further including a controller that is configured to change an operation state of the panel between the transparent state and the opaque state,

wherein the controller is configured to activate a power supply to the panel when in the transparent state and deactivate the power supply when in the opaque state, and

wherein the projector is configured to project the visual representation on the panel when in the opaque state and is configured to project another visual representation through the panel when in the transparent state.

2. The vehicle light module of claim 1 , where the controller is alternatively configured to activate the power supply to the panel when in the opaque state and deactivate the power supply when in the transparent state.

3. The vehicle light module of claim 1 , wherein the controller manages or regulates power supply to the panel.

4. The vehicle light module of claim 1 , wherein the controller activates the power supply to the panel when in the transparent state and deactivates the power supply when in the opaque state.

5. The vehicle light module of claim 1 , wherein the controller activates the power supply to the panel when in the opaque state and deactivates the power supply when in the transparent state.

6. The vehicle light module of claim 1 , wherein the panel includes at least one of the following film or screen types: a polymer dispersed liquid crystal (PDLC), a polymer dispersed quantum dots or a polymer dispersed nanoparticle.

7. The vehicle light module of claim 1 , wherein at least one of the following assemblies is included in the vehicle light module: a headlamp assembly, a tail lamp assembly, an auxiliary or an interior lighted assembly.

8. The vehicle light module of claim 1 , further comprising: one or more optical elements configured to control an angle or shape of projection of the visual representation on the second surface.

9. The vehicle light module of claim 1 , wherein the second surface is a road or air space around a vehicle.

10. The vehicle light module of claim 1 , wherein the projector is operatively coupled to at least one of the following vehicle structures: a head unit, a windscreen, a window or a transparent surface.

11. The vehicle light module of claim 1 , wherein the visual representation is associated with a legal function.

12. A headlight assembly, comprising:

a number of vehicle light modules, where each of the vehicle light modules include a panel having a transparent state and an opaque state, wherein each panel represents a dual projection film or screen;

a projector media system is configured to project a number of visual representations or information towards a number of respective panels, wherein said visual representation or information is configured to display on each respective panel during an opaque state and is configured to display another visual representation or information through each associated panel when in a transparent state;

said headlight assembly further comprises a controller that changes an operation state of each respective panel between the transparent and opaque states, and

wherein the projector media system is configured to project said visual representations or information on each respective panel when in the opaque state and is configured to project another visual representation or information through each associated panel when in the transparent state.

13. The headlight assembly of claim 12 , further comprising a controller configured to change the operation state of each panel between the transparent state and the opaque state.

14. The headlight assembly of claim 12 , wherein the controller is configured to manages or regulates a power supply to each respective panel.

15. The headlight assembly of claim 12 , wherein the controller activates a power supply to the panel when in the transparent state and deactivates the power supply when in the opaque state.

16. The headlight assembly of claim 12 , wherein the panel includes at least one of the following film or screen types: a polymer dispersed liquid crystal (PDLC), a polymer dispersed quantum dots or a polymer dispersed nanoparticle.

17. The headlight assembly of claim 10 , wherein the vehicle light module further includes one or more optical elements configured to control an angle or shape of projection of the visual representation or information through each respective panel.

18. A method of communicating information via a vehicle light module, the method comprising:

receiving at least one visual representation at said vehicle light module; and

projecting the at least one visual representation toward a panel comprising a dual projection film or screen having a transparent state and an opaque state, wherein the at least one visual representation is displayed on the panel when in an opaque state and another visual representation is displayed through the panel when in a transparent state.

19. The method of claim 18 , further comprising: changing, using a controller, an operation state of the panel between the transparent state and the opaque state.

20. The method of claim 19 , wherein the controller controls a power supply to the panel.

Continuity (2)
Continuation 15991615 · May 29, 2018
Related Publication 20210170941A1 · Jun 10, 2021
Cited By (1)
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