IP Library Granted Patent US 9,386,641
Granted Patent B2
US 9,386,641 · App. 14/203,575 · Granted Jul 5, 2016

Lighting dimmer synchronous load device

Inventor: Dror Manor (Herzliya, IL)
Assignee: MAGNITUDE HOLDINGS LTD. A BERMUDA EXEMPT COMPANY LIMITED BY SHARES
H05B33/0815H05B37/02
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Quick Facts
Patent No.
US 9,386,641
App. No.
14/203,575
Granted
Jul 5, 2016
Kind
B2
Abstract

Method, apparatus and system for efficient driving a lighting means. In accordance with an embodiment of the present invention, there is provided a synchronous load for a lighting system, wherein the lighting system is fed by an AC supply that is potentially produced by a dimmer. The synchronous load is configured to load the AC supply only if the AC supply is found to be actually produced by a dimmer. In this case, the loading period comprises only the times when the AC supply voltage is lower than a given threshold and when current oscillation occurs.

Claims (33)

1. A dimmer synchronous load for a lighting system, wherein the lighting system is fed by an AC supply voltage, the lighting system comprising a radio frequency interference (RFI) filter coupled to the AC supply voltage for filtering out RF harmonics, a rectifier coupled to the RFI filter for rectifying the AC supply voltage, and a lighting driver coupled to the rectifier and serving to drive a lighting means, the dimmer synchronous load comprising:

a synchronous load coupled to an output of the rectifier and configured, while maintained conducting, to load the AC supply voltage;

a dimmer detector for detecting whether the current consumed by the lighting driver from the AC supply voltage comprises surges that exceed a given intensity, for determining whether the AC supply voltage is produced by a lighting dimmer; and

a synchronous load controller coupled to the rectifier for sensing the AC supply voltage, further coupled to the dimmer detector for receiving therefrom an indication whether the AC supply voltage is produced by a lighting dimmer and further coupled to the synchronous load, the synchronous load controller configured to maintain the synchronous load conducting while concurrently detecting that the AC supply voltage is lower than a given threshold and receiving from the dimmer detector an indication that the AC supply voltage is actually produced by a lighting dimmer.

2. The dimmer synchronous load of claim 1 , wherein the lighting driver is configured to provide the dimmer detector with a reference indication indicating that the lighting driver has started operating, and the dimmer detector artificially determines that the AC supply voltage is produced by a lighting dimmer while not receiving the reference indication, independently of the current consumed by the lighting driver from the AC supply voltage.

3. The dimmer synchronous load of claim 1 , wherein the synchronous load controller is further configured to maintain the synchronous load conducting during a given time delay starting upon detecting that the AC supply voltage is no longer lower than the given threshold.

4. The dimmer synchronous load of claim 1 , wherein the lighting driver and the synchronous load are coupled to different outputs of the rectifier.

5. The dimmer synchronous load of claim 1 , wherein the synchronous load comprises a series arrangement of a resistor and a current limiter.

6. The dimmer synchronous load of claim 1 , wherein the synchronous load comprises a series arrangement of a resistor and a switch.

7. The dimmer synchronous load of claim 1 , wherein the dimmer detector operation is based on discharging a capacitor, which depends on the current surges intensity.

8. The dimmer synchronous load of claim 1 , wherein the lighting means comprises one or more light emitting diodes (LEDs).

9. A method for adapting a lighting system to an AC supply voltage, wherein the AC supply voltage is potentially produced by a lighting dimmer, the lighting system comprising a lighting driver coupled to the AC supply voltage through a rectifier and a radio frequency interference (RFI) filter and serving to drive a lighting means, the method comprising the steps of:

detecting whether the AC supply voltage is produced by the lighting dimmer, based on detecting whether a current consumed by the lighting driver from the AC supply voltage comprises surges that exceed a given intensity; and

loading the AC supply voltage during a loading period determined by concurrently detecting that the AC supply voltage is lower than a given threshold and that the AC supply voltage is actually produced by the lighting dimmer,

such that when said determination is true, the AC supply voltage is loaded by a synchronous load.

10. The method of claim 9 , wherein determining that the AC supply voltage is produced by a lighting dimmer comprises an artificial detecting state in which the AC supply voltage is deemed as produced by a lighting dimmer independently of the current consumed by the lighting driver from the AC supply voltage, while detecting that the lighting driver has not yet started operating.

11. The method of claim 9 , wherein the step of loading the AC supply voltage comprises extending the loading period during a given time delay which starts upon detecting that the AC supply voltage is no longer lower than the given threshold.

12. The method of claim 9 , wherein the lighting means comprises one or more light emitting diodes (LEDs).

13. A lighting system comprising:

an input port coupled to an AC supply voltage;

a radio frequency interference (RFI) filter coupled to the AC supply voltage for filtering out RF harmonics;

a rectifier coupled to the RFI filter for rectifying the AC supply voltage;

a lighting driver coupled to the rectifier and serving to drive a lighting means;

a synchronous load coupled to an output of the rectifier and configured, while maintained conducting, to load the AC supply voltage;

a dimmer detector for detecting whether the current consumed by the lighting driver from the AC supply voltage comprises surges that exceed a given intensity, for determining whether the AC supply voltage is produced by a lighting dimmer; and

a synchronous load controller coupled to the rectifier for sensing the AC supply voltage, further coupled to the dimmer detector for receiving therefrom an indication whether the AC supply voltage is produced by a lighting dimmer and further coupled to the synchronous load, the synchronous load controller configured to maintain the synchronous load conducting while concurrently detecting that the AC supply voltage is lower than a given threshold and receiving from the dimmer detector an indication that the AC supply voltage is actually produced by a lighting dimmer.

14. The lighting system of claim 13 , wherein the lighting driver is configured to provide the dimmer detector with a reference indication indicating that the lighting driver has started operating, and the dimmer detector artificially determines that the AC supply voltage is produced by a lighting dimmer while not receiving the reference indication, independently of the current consumed by the lighting driver from the AC supply voltage.

15. The lighting system of claim 13 , wherein the synchronous load controller is further configured to maintain the synchronous load conducting during a given time delay starting upon detecting that the AC supply voltage is no longer lower than the given threshold.

16. The lighting system of claim 13 , wherein the lighting driver and the synchronous load are coupled to different outputs of the rectifier.

17. The lighting system of claim 13 , wherein the synchronous load comprises a series arrangement of a resistor and a current limiter.

18. The lighting system of claim 13 , wherein the synchronous load comprises a series arrangement of a resistor and a switch.

19. The lighting system of claim 13 , wherein the dimmer detector operation is based on discharging a capacitor, which depends on the current surges intensity.

20. The lighting system of claim 13 , wherein the lighting means comprises one or more light emitting diodes (LEDs).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2015
From: MAGNITUDE LIGHTING TRANSFORMERS INC.
To: MAGNITUDE HOLDINGS LTD., A BERMUDA EXEMPT COMPANY LIMITED BY SHARES
Reel/Frame 036309/0630 →
Continuity (2)
Provisional Application 61814835 · Apr 23, 2013
Related Publication 20140312769A1 · Oct 23, 2014