IP Library › Granted Patent US 10,212,767
Granted Patent B2
US 10,212,767 · App. 15/844,727 · Granted Feb 19, 2019

Constant current power driver circuit for automotive light assembly

Inventor: Richard J. Walters (Ann Arbor, MI)
Assignee: AUTOSYSTEMS AMERICA INC.
H05B33/0812B60Q1/0017B60Q1/1407B60Q1/18B60Q1/2696B60Q1/30B60Q1/44B60Q11/005H05B33/083H05B33/089
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Quick Facts
Patent No.
US 10,212,767
App. No.
15/844,727
Granted
Feb 19, 2019
Kind
B2
Abstract

A constant current driver circuit is provided for a vehicle light assembly having a plurality of light strings arranged in parallel with each other. Each light string in the plurality of light strings includes at least one light emitting diode (LED) electrically coupled in series with an LED driver. The driver circuit includes a bias circuit, a voltage regulator circuit and a sense circuit. The bias circuit is electrically coupled to each LED driver at a common node and, in absence of a trigger signal, operates to supply a bias voltage to each LED driver. The voltage regulator circuit is electrically coupled to the common node and regulates the bias voltage supplied by the bias circuit. The sense circuit is configured to detect on/off state of the voltage regulator and, in response to detecting an off state for the voltage regulator, provides a trigger signal to the bias circuit.

Claims (35)

1. A constant current driver circuit for a vehicle light assembly, comprising:

a plurality of light strings arranged in parallel with each other, each light string in the plurality of light strings is electrically coupled between a supply voltage and ground, each light string in the plurality of light strings includes at least one light emitting diode (LED) electrically coupled in series with an LED driver;

a bias circuit is electrically coupled to each LED driver at a common node, wherein the bias circuit is configured to receive a trigger signal and, in absence of a trigger signal, operates to supply a bias voltage to each LED driver;

a voltage regulator circuit electrically coupled to the common node and regulates the bias voltage supplied by the bias circuit; and

a sense circuit configured to detect on/off state of the voltage regulator and, in response to detecting an off state for the voltage regulator, provides a trigger signal to the bias circuit.

2. The constant current driver circuit of claim 1 wherein the voltage regulator circuit includes a Zener diode having a cathode terminal coupled directly to the common node and an anode terminal connected via a resistor to ground.

3. The constant current driver circuit of claim 1 wherein the voltage regulator circuit maintains the bias voltage at a substantially constant value over a range of different supply voltages.

4. The constant current driver circuit of claim 1 wherein the LED driver is implemented by a transistor.

5. The constant current driver circuit of claim 4 wherein the transistor in each of the plurality of light strings is further defined as a bipolar junction transistor having a collector coupled directly to a cathode terminal of the corresponding LED and an emitter connected via a resistor to ground.

6. The constant current driver circuit of claim 1 wherein, in the presence of the trigger signal, the bias circuit removes the bias voltage from each LED driver.

7. The constant current driver circuit of claim 1 wherein the bias circuit includes a transistor having a control terminal configured to receive the trigger signal from the sense circuit and a collector terminal electrically coupled to the common node, wherein the transistor turns on in response to the trigger signal from the sense circuit.

8. The constant current driver circuit of claim 1 further comprises a fault indicator circuit interfaced with the sense circuit and, in response to the trigger signal, operates to output a signal indicative of a fault condition.

9. The constant current driver circuit of claim 1 wherein the constant current driver circuit is integrated into a light assembly of a vehicle.

10. A constant current driver circuit for a vehicle light assembly, comprising:

a plurality of light strings arranged in parallel with each other, each light string in the plurality of light strings is electrically coupled between a supply voltage and ground, each light string in the plurality of light strings includes at least one light emitting diode (LED) electrically coupled in series with a transistor;

a bias circuit electrically coupled between the supply voltage and ground and arranged in parallel with each light string in the plurality of light strings;

a voltage regulator circuit electrically coupled to a control terminal of each transistor in the plurality of light strings and regulates a bias voltage supplied by the bias circuit to the transistors in the plurality of light strings; and

a sense circuit configured to detect on/off state of the voltage regulator circuit and, in response to detecting an off state for the voltage regulator circuit, provides a trigger signal to the bias circuit, wherein the bias circuit supplies a bias voltage to a control terminal of each transistor in the plurality of light strings in absence of the trigger signal, and ceases to supply of the bias voltage to a control terminal of each transistor in the plurality of light strings in presence of the trigger signal.

11. The constant current driver circuit of claim 10 wherein the voltage regulator circuit includes a Zener diode having a cathode terminal coupled at a common node to each transistor in the plurality of light strings and an anode terminal connected via a resistor to ground.

12. The constant current driver circuit of claim 11 wherein the voltage regulator circuit maintains the bias voltage at a substantially constant value over a range of different supply voltages.

13. The constant current driver circuit of claim 12 wherein the transistor in each of the plurality of light strings is further defined as a bipolar junction transistor having a collector coupled directly to a cathode terminal of the corresponding LED and an emitter connected via a resistor to ground.

14. The constant current driver circuit of claim 13 wherein the bias circuit includes a transistor having a control terminal configured to receive the trigger signal from the sense circuit and a collector terminal electrically coupled to the common node, wherein the transistor turns on in response to the trigger signal from the sense circuit.

15. The constant current power supply circuit of claim 14 further comprises a fault indicator circuit interfaced with the sense circuit and, in response to the trigger signal, operates to output a signal indicative of a fault condition.

16. The constant current driver circuit of claim 10 is integrated into a light assembly of a vehicle.

17. A constant current driver circuit for a vehicle light assembly, comprising:

a plurality of light strings arranged in parallel with each other, each light string in the plurality of light strings is electrically coupled between a supply voltage and ground, each light string in the plurality of light strings includes at least one light emitting diode (LED) electrically coupled in series with a transistor;

a bias circuit electrically coupled to each transistor in the plurality of light strings at a common node;

a voltage regulator circuit electrically coupled to the common node, wherein the voltage regulator circuit in an on state regulates a bias voltage supplied by the bias circuit and switches to an off state in response to an open circuit across any one of the LEDs in the plurality of light strings; and

a sense circuit configured to detect on/off state of the voltage regulator circuit and, in response to detecting an off state for the voltage regulator circuit, provides a trigger signal to the bias circuit, wherein the bias circuit supplies a bias voltage to a control terminal of each transistor in the plurality of light strings in absence of the trigger signal and, in response to the trigger signal, ceases to supply of the bias voltage.

18. The constant current driver circuit of claim 17 wherein the voltage regulator circuit includes a Zener diode having a cathode terminal coupled at the common node and an anode terminal connected via a resistor to ground.

19. The constant current driver circuit of claim 17 wherein the voltage regulator circuit maintains the bias voltage at a substantially constant value over a range of different supply voltages.

20. The constant current driver circuit of claim 17 wherein the transistor in each of the plurality of light strings is further defined as a bipolar junction transistor having a collector coupled directed to a cathode terminal of the corresponding LED and an emitter connected via a resistor to ground.

21. The constant current driver circuit of claim 17 wherein the bias circuit includes a transistor having a control terminal configured to receive the trigger signal from the sense circuit and a collector terminal electrically coupled to the common node, wherein the transistor turns on in response to the trigger signal from the sense circuit.

22. The constant current power supply circuit of claim 17 further comprises a fault indicator circuit interfaced with the sense circuit and, in response to the trigger signal, operates to output a signal indicative of a fault condition.

23. The constant current driver circuit of claim 17 is integrated into a light assembly of a vehicle.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2026
From: AUTOSYSTEMS AMERICA INC.
To: AUTOSYSTEMS PLYMOUTH INC.
Reel/Frame 075517/0083 →
SECURITY INTEREST Recorded Aug 4, 2026
From: AUTOSYSTEMS BELLEVILLE INC.; AUTOSYSTEMS PLYMOUTH INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 076113/0444 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2017
From: WALTERS, RICHARD J.
To: AUTOSYSTEMS AMERICA INC.
Reel/Frame 044417/0801 →
Continuity (2)
Provisional Application 62437809 · Dec 22, 2016
Related Publication 20180184491A1 · Jun 28, 2018