IP Library Granted Patent US 9,120,378
Granted Patent B2
US 9,120,378 · App. 13/508,674 · Granted Sep 1, 2015

Display unit

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Quick Facts
Patent No.
US 9,120,378
App. No.
13/508,674
Granted
Sep 1, 2015
Kind
B2
Abstract

The present invention relates to a display unit for a vehicle, wherein the display unit is configured for displaying a color information in dependence of a driving state information of the vehicle, wherein the driving state information is referring to the current fuel consumption of the vehicle, wherein the color information comprises a colored symbol. The present invention further relates to a vehicle comprising such a display unit.

Claims (46)

1. A display unit for a vehicle, comprising:

a first display area;

a second display area;

a third display area, wherein the display unit is configured to display color elements, the display unit comprises a color-coding system configured to color-code the color elements based upon a driving state of the vehicle, the driving state comprises current fuel consumption of the vehicle, and the color elements comprise:

a colored pointer configured to change color based upon the driving state;

a colored symbol comprising a color changeable lighting configured to change color based upon the driving state; and

a colored backlighting configured to change color based upon the driving state;

wherein the colored pointer is configured to be arranged in the first display area or the second display area, the colored symbol is configured to be arranged in the third display area, and the colored backlighting is an element of the first display area, the second display area, the third display area, or some combination thereof;

wherein the color-coding system comprises a first independently controllable color light source and a second independently controllable color light source, the first and second independently controllable color light sources are configured to emit at least two different colors in response to control of the color light sources, the first independently controllable color light source is configured to change the color of the colored pointer, and the second independently controllable color light source is configured to change the color of the colored backlighting;

wherein the third display area comprises a display surface, the third display area at least partially superposes the colored pointer of the first display area or of the second display area so that the colored symbol of the third display area at least partially overlaps the colored pointer of the first display area or of the second display area, and the display surface is at least partially transilluminateable, translucent, or some combination thereof, such that the colored pointer and the colored symbol are illuminated by the first independently controllable color light source.

2. The display unit of claim 1 , wherein a control unit is configured to provide a pulsing lighting to the first display area, the second display area, the third display area, the display surface, or some combination thereof.

3. The display unit of claim 2 , wherein predetermined structures are configured to display color information.

4. The display unit of claim 1 , wherein the color-coding system is configured to color-code the color elements by changing a color, by mixing colors, by providing a color gradient, by providing a color with different intensities, or some combination thereof.

5. The display unit of claim 1 , wherein the color-coding system is configured to control the independently controllable color light sources via a pulse-width modulation signal.

6. The display unit of claim 1 , wherein the independently controllable color light sources comprise color lighting diodes configured to emit different colors.

7. The display unit of claim 1 , wherein the independently controllable color light sources comprise groups of color diodes comprising diodes colored green, yellow, blue, or some combination thereof, wherein the groups are arranged side by side.

8. The display unit of claim 1 , wherein a selected color of the colored pointer, the colored symbol, or the colored backlighting corresponds to the current fuel consumption, current revolutions of an engine of the vehicle, or some combination thereof.

9. The display unit of claim 1 , wherein the first display area is configured to display engine revolutions, the second display area is configured to display vehicle velocity, and the third display area is configured to display further information.

10. A vehicle, comprising:

a display unit, comprising:

a first display area;

a second display area; and

a third display area, wherein the first display area is configured to display engine revolutions, the second display area is configured to display vehicle velocity, and the third display area is configured to display further information, the display unit is configured to display color elements, the display unit comprises a color-coding system configured to color-code the color elements based upon a driving state of the vehicle, the driving state comprises current fuel consumption of the vehicle, and the color elements comprise:

a colored pointer configured to change color based upon the driving state;

a colored symbol comprising a color changeable lighting configured to change color based upon the driving state; and

a colored backlighting configured to change color based upon the driving state;

wherein the colored pointer is configured to be arranged in the first display area or the second display area, the colored symbol is configured to be arranged in the third display area, and the colored backlighting is an element of the first display area, the second display area, the third display area, or some combination thereof;

wherein the color-coding system comprises a first independently controllable color light source and a second independently controllable color light source, the first and second independently controllable color light sources are configured to emit at least two different colors in response to control of the color light sources, the first independently controllable color light source is configured to change the color of the colored pointer, and the second independently controllable color light source is configured to change the color of the colored backlighting, and a control unit is configured to provide a pulsing lighting to the first display area, the second display area, the third display area, or some combination thereof;

wherein the third display area comprises a display surface, the third display area at least partially superposes the colored pointer of the first display area or of the second display area so that the colored symbol of the third display area at least partially overlaps the colored pointer of the first display area or of the second display area, and the display surface is at least partially transilluminateable, translucent, or some combination thereof, such that the colored pointer and the colored symbol are illuminated by the first independently controllable color light source.

11. A method for color-coding color elements in a display unit for a vehicle based upon a driving state of the vehicle, comprising:

changing a first color of a colored pointer based upon the driving state via a first independently controllable color light source;

changing a second color of a colored symbol based upon the driving state via the first independently controllable color light source; and

changing a third color of a colored backlighting based upon the driving state via a second independently controllable color light source;

wherein the driving state comprises current fuel consumption of the vehicle, the colored pointer is configured to be arranged in a first display area or a second display area, the colored symbol is configured to be arranged in a third display area, and the colored backlighting is part of the first display area, the second display area, the third display area, or some combination thereof;

wherein the third display area comprises a display surface, the third display area at least partially superposes the colored pointer of the first display area or of the second display area so that the colored symbol of the third display area at least partially overlaps the colored pointer of the first display area or of the second display area, and the display surface is at least partially transilluminateable, translucent, or some combination thereof, such that the colored pointer and the colored symbol are illuminated by the first independently controllable color light source.

12. The method of claim 11 , comprising:

emitting at least two different first colors based upon control of the first independently controllable color light source; and

emitting at least two different second colors based upon control of the second independently controllable color light source.

13. The method of claim 12 comprising:

mixing the at least two different first colors, emitting a first gradient of the at least two different first colors, emitting the at least two different first colors with different first intensities, or some combination thereof; and

mixing the at least two different second colors, emitting a second gradient of the at least two different second colors, emitting the at least two different second colors with different second intensities, or some combination thereof.

14. The method of claim 12 , comprising:

assigning the at least two different first colors of the colored pointer to a first driving state comprising a first current fuel consumption, a first current revolutions of an engine of the vehicle, or some combination thereof; and

assigning the at least two different second colors of the colored backlighting to a third driving state comprising a third current fuel consumption, a third current revolutions of the engine of the vehicle, or some combination thereof.

15. The method of claim 11 , comprising:

controlling a first pulsing lighting of the first display area, a second pulsing lighting of the second display area, a third pulsing lighting of the third display area, a fourth pulsing lighting of the display surface, or some combination thereof.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Feb 4, 2022
From: JOHNSON CONTROLS TECHNOLOGY COMPANY
To: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
Reel/Frame 058959/0764 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2012
From: DEUBZER, ANDREAS; PELZMAN, REMI; BERGOT, STEPHANE
To: JOHNSON CONTROLS TECHNOLOGY COMPANY
Reel/Frame 028175/0618 →