Vehicle indicator circuit having controlled backlighting
10183617 ยท 2019-01-22
Assignee
Inventors
- Thomas A. Neese (Columbus, IN, US)
- Jon Everhart (Rochester Hills, MI, US)
- Shakim S. Qureshi (Warren, MI, US)
- John R. Suriano (Auburn Hills, MI, US)
- Stephen M. Jones (Greenfield, IN, US)
Cpc classification
B60Q3/18
PERFORMING OPERATIONS; TRANSPORTING
Y02B20/30
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B60Q3/18
PERFORMING OPERATIONS; TRANSPORTING
B60Q3/14
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Indicator circuit having a backlight and an indicator light associated with a graphical element. The graphical element is adapted to be illuminated by the indicator light for indicating an active vehicle function as well as backlit by the backlight. A switch coupled to the backlight selectively turns OFF the backlight in response to a drive signal supplied by the indicator light. In this manner, the backlight is OFF when the graphical element is illuminated by the indicator light.
Claims
1. An indicator circuit comprising: a backlight associated with a graphical element, said graphical element indicating an active vehicle function when illuminated; an indicator light associated with the graphical element, said graphical element adapted in an active vehicle function state to be illuminated by the indicator light for indicating the active vehicle function and adapted in a backlight state to be backlit by the backlight, wherein the graphical element illuminated in the active vehicle function state is visually distinguishable from the graphical element backlit in the backlight state, said indicator light adapted to supply a drive signal in the active vehicle function state and adapted to not supply the drive signal in the backlight state; and a switch electrically connected to the backlight and to the indicator light for alternately operating the graphical element in the backlight state and in the active vehicle function state, said switch being responsive to the drive signal supplied by the indicator light in the active vehicle function state to selectively turn OFF the backlight associated with the graphical element when the graphical element is illuminated by the indicator light associated therewith.
2. The circuit of claim 1, wherein the switch comprises a transistor connected between the backlight and ground and having a terminal connected to the indicator light for receiving the drive signal when the indicator light is turned ON.
3. The circuit of claim 2, wherein the transistor comprises an NPN transistor having a base, collector, and emitter, and wherein the drive signal is a function of an active low indicator signal from a vehicle control module for driving the base of the NPN transistor associated with the backlight to bias OFF the backlight when the indicator light is ON.
4. The circuit of claim 2, wherein the transistor comprises a PNP transistor having a base, collector, and emitter, and wherein the drive signal is a function of an active high indicator signal from a vehicle control module for driving the base of the PNP transistor associated with the backlight to bias OFF the backlight when the indicator light is ON.
5. The circuit of claim 1, further comprising one or more other backlights associated with other graphical elements, wherein the other backlights remain ON when the backlight is turned OFF.
6. The circuit of claim 1, wherein the indicator light and the backlight differ by color.
7. The circuit of claim 1, wherein the indicator light and the backlight differ by intensity.
8. The circuit of claim 1, wherein the indicator light is responsive to an indicator signal from a vehicle control module configured for selecting the vehicle function to be activated.
9. The circuit of claim 1, further comprising an instrument lamp dimming source for driving the backlight.
10. The circuit of claim 8, wherein the lamp dimming source is pulse width modulated.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4) Corresponding reference characters indicate corresponding parts throughout the drawings.
DETAILED DESCRIPTION
(5)
(6) In
(7) Referring now to
(8) As configured, the indicator circuit 18 includes a switch Q10 coupled to a backlight LED10, which is the backlight associated with graphical element 12B. The switch Q10 is connected between the backlight LED10 and ground and, as shown in
(9) In an embodiment, switch Q10 comprises an NPN transistor having a base, collector, and emitter. The drive signal applied to the base (i.e., drive terminal 24) comprises the active low indicator signal from the vehicle control module for driving the base of the NPN transistor to bias OFF the corresponding backlight when the corresponding indicator light is ON. It is to be understood that a PNP transistor could be used and driven by an active high indicator signal.
(10)
(11) As shown in
(12) The lead 38C of
(13) The lead 38D of
(14) As shown in
(15) And the lead 38F of
(16) As configured, the indicator circuit 30 includes a plurality of switches, each corresponding to one of the backlights 34. In the illustrated embodiment, switches Q9 to Q13 are coupled to backlights LED9 to LED13, respectively. The switch Q9, which is the backlight associated with graphical element 12A, is connected between backlight LED9 and ground and, as shown in
(17) Receiving the active low indicator signal at lead 38A turns ON indicator LED6. This results in a low voltage signal (e.g., the voltage of diode D6 at 0.7 volts) applied to the drive terminal 40A of switch Q9. In other words, turning ON indicator LED6 essentially applies the active low indicator signal to drive terminal 40A. The low drive signal at drive terminal 40A causes switch Q9 to turn OFF, which selectively turns OFF backlight LED9 by preventing current from flowing from the backlight power source at lead 42 through backlight LED9 to ground. In addition, the line diode D6 and the reverse battery diode D2 protect the switch Q9.
(18) In an embodiment, switch Q9 comprises an NPN transistor having a base, collector, and emitter. The drive signal applied to the base (i.e., drive terminal 40A) comprises the active low indicator signal from the vehicle control module for driving the base of the NPN transistor to bias OFF the corresponding backlight LED9 when the corresponding indicator LED6 is ON. It is to be understood that a PNP transistor could be used and driven by an active high indicator signal.
(19) In a similar manner, the switches Q10 to Q13 of
(20) Aspects of the invention embodied by the circuits of
(21) In operation, aspects of the invention permit alternately backlighting and illuminating each of the graphical elements 12 of vehicle function indicator 10. Lighting circuits, such as indicator circuit 18, 30 are electrically connected to vehicle function indicator 10 wherein each of the lighting circuits corresponds to one of the graphical elements 12. In addition, each of the lighting circuits includes a backlight configured to backlight a corresponding graphical element 12 during a low light condition or the like and an indicator light configured to selectively illuminate the corresponding graphical element 12 for indicating an active vehicle function. By electrically connecting a switch, such as an NPN transistor, to the backlight and the indicator light, aspects of the invention permit alternately backlighting and illuminating the corresponding graphical element 12. In an embodiment, the base of the NPN transistor is driven with an active low indicator signal from the vehicle control module to bias OFF the backlight when the indicator light is ON in response to the active low indicator signal turning ON the indicator light.
(22) Although described in connection with a vehicle control module, aspects of the invention can be used in connection with other backlit displays.
(23) The order of execution or performance of the operations in embodiments of the invention illustrated and described herein is not essential, unless otherwise specified. That is, the operations may be performed in any order, unless otherwise specified, and embodiments of the invention may include additional or fewer operations than those disclosed herein. For example, it is contemplated that executing or performing a particular operation before, contemporaneously with, or after another operation is within the scope of aspects of the invention.
(24) When introducing elements of aspects of the invention or the embodiments thereof, the articles a, an, the and said are intended to mean that there are one or more of the elements. The terms comprising, including, and having are intended to be inclusive and mean that there may be additional elements other than the listed elements.
(25) Having described aspects of the invention in detail, it will be apparent that modifications and variations are possible without departing from the scope of aspects of the invention as defined in the appended claims. As various changes could be made in the above constructions, products, and methods without departing from the scope of aspects of the invention, it is intended that all matter contained in the above description and shown in the accompanying drawings shall be interpreted as illustrative and not in a limiting sense.