IP Library Granted Patent US 9,167,662
Granted Patent B2
US 9,167,662 · App. 13/774,914 · Granted Oct 20, 2015

Mixed load current compensation for LED lighting

Inventors: Eric J. King (Dripping Springs, TX); John L. Melanson (Austin, TX); Daniel J. Baker (Austin, TX); Mohit Sood (Austin, TX); Rahul Singh (Austin, TX)
Assignee: Cirrus Logic, Inc.
H05B37/02H05B33/0815H05B33/0845
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Quick Facts
Patent No.
US 9,167,662
App. No.
13/774,914
Granted
Oct 20, 2015
Kind
B2
Abstract

In at least one embodiment, a system and method provide current compensation in a lighting system by controlling a lamp current to prevent a current through a triac-based dimmer from undershooting a holding current value. In at least one embodiment, at least one of the lamps includes a controller that controls circuitry in the lamp to draw more lamp current for a period of time than needed to illuminate a brightness of the lamp at a level corresponding to particular phase-cut angle of the supply voltage. By drawing more current than needed, the controller increases the dimmer current during the period of time to prevent the dimmer current from falling below the holding current value. In at least one embodiment, the period of time corresponds to a compensating pulse of the lamp current at a time when the dimmer current would otherwise fall below the holding current value.

Claims (81)

1. A method comprising:

detecting a leading edge of a dimmer phase-cut voltage;

after detecting the leading edge, controlling a lamp current of an electronic lamp to prevent a current through a triac of the dimmer from undershooting a holding current value, wherein the holding current value represents a value that if undershot by the current through the triac of the dimmer would stop the triac from conducting, wherein controlling the lamp current of the electronic lamp to prevent the current through the triac of the dimmer from undershooting the holding current value includes:

responding to an increase in the dimmer phase-cut voltage after detection of the leading edge that would otherwise cause the current through the triac to undershoot the holding current value by causing a generation of a compensating current that increases the lamp current and prevents the current through the triac from undershooting the holding current value.

2. The method of claim 1 wherein controlling a lamp current to prevent a current through the dimmer from undershooting a holding current value comprises:

generating the compensating current as a current pulse for a first duration of time as the current through the dimmer decreases.

3. The method of claim 2 wherein a lighting system includes multiple lamps including the electronic lamp coupled in parallel to receive a portion of the lamp current and wherein the first duration of time is based on current control characteristics of at least a plurality of the multiple lamps.

4. The method of claim 2 further comprising:

retrieving data from a memory in a controller of a switching power converter, wherein the data represents the first duration of time of the current pulse.

5. The method of claim 2 further comprising:

ramping down the current pulse at the end of the first duration of time.

6. The method of claim 1 wherein controlling a lamp current to prevent a current through a triac of the dimmer from undershooting a holding current value draws an amount of excess current into a switching power converter of the electronic lamp, wherein the amount of excess current is an amount of current that exceeds an amount of current used to illuminate a light source of the electronic lamp at a brightness corresponding to the dimmer phase-cut voltage, the method further comprising:

dissipating power in the switching power converter that corresponds to the amount of excess current drawn.

7. The method of claim 1 wherein controlling a lamp current to prevent a current through the dimmer from undershooting a holding current value further comprises:

varying an amount of lamp current drawn to prevent the undershooting in correlation with different phase-cut angles of the dimmer phase-cut voltage.

8. The method of claim 7 wherein variations of the amount of lamp current drawn to prevent the undershooting for difference phase-cut angles of the dimmer phase-cut voltage are non-linear with respect to the phase-cut angles of the dimmer phase-cur angle.

9. The method of claim 1 wherein controlling a lamp current to prevent a current through the dimmer from undershooting a holding current value comprises:

superimposing the lamp current on the current through the dimmer to prevent the current through the dimmer from undershooting the holding current value.

10. The method of claim 1 further comprising:

waiting for a first duration of time after detecting the leading edge before controlling the lamp current to prevent the current through the dimmer from undershooting the holding current value.

11. The method of claim 10 wherein the first duration of time after detecting the leading edge begins after the current through the dimmer has a negative change over time and before the current through the dimmer reaches the holding current value.

12. The method of claim 1 wherein the dimmer is a triac-based dimmer that conducts current provided to a non-homogenous set of light emitting diode-based lamps.

13. The method of claim 1 wherein responding to an increase in the dimmer phase-cut voltage after detection of the leading edge that would otherwise cause the current through the triac to undershoot the holding current value by causing a generation of a compensating current further comprises:

dynamically detecting an indication of a possible undershoot of the holding current value; and

upon detection of the indication, controlling the lamp current to prevent the current through a triac of the dimmer from undershooting the holding current value.

14. The method of claim 1 wherein the electronic lamp comprises one or more light emitting diodes.

15. An apparatus comprising:

a controller, wherein the controller is configured to:

detect a leading edge of a dimmer phase-cut voltage;

after detecting the leading edge, control a lamp current of an electronic lamp to prevent a current through a triac of the dimmer from undershooting a holding current value, wherein the holding current value represents a value that if undershot by the current through the triac of the dimmer would stop the triac from conducting, wherein to the lamp current of the electronic lamp to prevent the current through the triac of the dimmer from undershooting the holding current value the controller is configured to:

respond to an increase in the dimmer phase-cut voltage after detection of the leading edge that would otherwise cause the current through the triac to undershoot the holding current value by causing a generation of a compensating current that increases the lamp current to prevent the current through the triac from undershooting the holding current value.

16. The apparatus of claim 15 wherein to control a lamp current to prevent a current through the dimmer from undershooting a holding current value, the controller is further configured to:

generate the compensating current as a current pulse for a first duration of time as the current through the dimmer decreases.

17. The apparatus of claim 16 further comprising:

the electronic lamp; and

multiple additional electronic lamps coupled in parallel with the electronic lamp to each receive a portion of the lamp current;

wherein the first duration of time is based on current control characteristics of at least a plurality of the multiple lamps.

18. The apparatus of claim 16 wherein the controller is further configured to:

retrieve data from a memory in a controller of a switching power converter, wherein the data represents the first duration of time of the current pulse.

19. The apparatus of claim 16 wherein the controller is further configured to:

ramp down the current pulse at the end of the first duration of time.

20. The apparatus of claim 15 wherein control of a lamp current to prevent a current through a triac of the dimmer from undershooting a holding current value draws an amount of excess current into a switching power converter of the electronic lamp, wherein the amount of excess current is an amount of current that exceeds an amount of current used to illuminate a light source of the electronic lamp at a brightness corresponding to the dimmer phase-cut voltage, the controller is further configured to:

dissipate power in the switching power converter that corresponds to the amount of excess current drawn.

21. The apparatus of claim 15 wherein to control a lamp current to prevent a current through the dimmer from undershooting a holding current value, the controller is further configured to:

vary an amount of lamp current drawn to prevent the undershooting in correlation with different phase-cut angles of the dimmer phase-cut voltage.

22. The apparatus of claim 21 wherein variations of the amount of lamp current drawn to prevent the undershooting for difference phase-cut angles of the dimmer phase-cut voltage are non-linear with respect to the phase-cut angles of the dimmer phase-cur angle.

23. The apparatus of claim 15 wherein to control a lamp current to prevent a current through the dimmer from undershooting a holding current value, the controller is further configured to:

superimpose the lamp current on the current through the dimmer to prevent the current through the dimmer from undershooting the holding current value.

24. The apparatus of claim 15 wherein the controller is further configured to:

wait for a first duration of time after detecting the leading edge before controlling the lamp current to prevent the current through the dimmer from undershooting the holding current value.

25. The apparatus of claim 24 wherein the first duration of time after detecting the leading edge begins after the current through the dimmer has a negative change over time and before the current through the dimmer reaches the holding current value.

26. The apparatus of claim 15 wherein the dimmer is a triac-based dimmer and triac-based dimmer conducts current provided to a non-homogenous set of light emitting diode-based lamps.

27. The apparatus of claim 15 wherein to respond to an increase in the dimmer phase-cut voltage after detection of the leading edge that would otherwise cause the current through the triac to undershoot the holding current value by causing a generation of a compensating current the controller is further configured to:

dynamically detect an indication of a possible undershoot of the holding current value; and

upon detection of the indication, control the lamp current to prevent the current through a triac of the dimmer from undershooting the holding current value.

28. The apparatus of claim 15 wherein the electronic lamp comprises one or more light emitting diodes.

29. The apparatus of claim 15 further comprising:

the electronic lamp; and

multiple additional electronic lamps coupled in parallel with the electronic lamp.

30. The apparatus of claim 15 further comprising:

the electronic lamp, wherein the electronic lamp includes a switching power converter coupled to the controller and further includes one or more light emitting diodes coupled to the switching power converter.

31. An apparatus comprising:

a lamp, wherein the lamp comprises:

a switching power converter;

one or more light emitting diodes coupled to the switching power converter; and

a controller, coupled to the switching power converter, wherein the controller is configured to:

detect a leading edge of a dimmer phase-cut voltage;

after detecting the leading edge, control a lamp current of the lamp to prevent a current through a triac of the dimmer from undershooting a holding current value, wherein the holding current value represents a value that if undershot by the current through the triac of the dimmer would stop the triac from conducting, wherein to the lamp current of the electronic lamp to prevent the current through the triac of the dimmer from undershooting the holding current value the controller is configured to:

respond to an increase in the dimmer phase-cut voltage after detection of the leading edge that would otherwise cause the current through the triac to undershoot the holding current value by causing a generation of a compensating current that increases the lamp current to prevent the current through the triac from undershooting the holding current value.

32. The method of claim 1 wherein responding to an increase in the dimmer phase-cut voltage after detection of the leading edge that would otherwise cause the current through the triac to undershoot the holding current value by causing a generation of a compensating current further comprises:

accessing a memory that includes current profiles of all lamps coupled to the triac, and;

generating the compensating current based on information in the current profiles that indicate when the current through the dimmer would undershoot the holding current value without the compensating current.

33. The method of claim 1 wherein responding to an increase in the dimmer phase-cut voltage after detection of the leading edge that would otherwise cause the current through the triac to undershoot the holding current value by causing a generation of a compensating current further comprises:

predicting a possibility of the undershoot of the holding current value; and

generating the compensating current in anticipation of the undershoot of the holding current to prevent the current through the dimmer from undershooting the holding current value.

34. The apparatus of claim 15 wherein to respond to an increase in the dimmer phase-cut voltage after detection of the leading edge that would otherwise cause the current through the triac to undershoot the holding current value by causing a generation of a compensating current the controller is further configured to:

access a memory that includes current profiles of all lamps coupled to the triac, and;

generate the compensating current based on information in the current profiles that indicate when the current through the dimmer would undershoot the holding current value without the compensating current.

35. The apparatus of claim 15 wherein to respond to an increase in the dimmer phase-cut voltage after detection of the leading edge that would otherwise cause the current through the triac to undershoot the holding current value by causing a generation of a compensating current the controller is further configured to:

predict a possibility of the undershoot of the holding current value; and

generate the compensating current in anticipation of the undershoot of the holding current to prevent the current through the dimmer from undershooting the holding current value.

Assignments (4)
CHANGE OF NAME Recorded Oct 28, 2019
From: PHILIPS LIGHTING HOLDING B.V.
To: SIGNIFY HOLDING B.V.
Reel/Frame 050837/0576 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2016
From: KONINKLIJKE PHILIPS N.V.
To: PHILIPS LIGHTING HOLDING B.V.
Reel/Frame 041170/0806 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 20, 2016
From: CIRRUS LOGIC, INC.
To: KONINKLIJKE PHILIPS N.V.
Reel/Frame 037563/0720 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2013
From: KING, ERIC J.; MELANSON, JOHN L.; BAKER, DANIEL J.; SINGH, RAHUL; SOOD, MOHIT
To: CIRRUS LOGIC, INC.
Reel/Frame 031340/0203 →
Continuity (3)
Provisional Application 61604740 · Feb 29, 2012
Provisional Application 61605459 · Mar 1, 2012
Related Publication 20130221871A1 · Aug 29, 2013