Devices and systems having AC LED circuits and methods of driving the same
A lighting device and system having at least one circuit, the circuit having at least two LEDs connected in series, parallel or anti-parallel configuration and at least one current limiting diode. The device or system may be driven with AC or DC power and may further include a sensor and polarity switching circuit to utilize all LEDs within the circuit when drive by DC power.
1. A lighting system comprising:
a driver providing a DC output;
at least two LED circuits, each of which includes at least two LEDs, the at least two LED circuits electrically configured so that when the at least two LED circuits are connected to the DC output a first LED circuit of the at least two LED circuits is forward biased by the driver;
a load sensor connected to at least one of the at least two LED circuits, wherein the load sensor senses operation of the first LED circuit forward biased by the driver; and
a switching circuit capable of switching the DC output of the driver to forward bias a second LED circuit of the at least two LED circuits based on the operation of the first LED circuit sensed by the load sensor.
2. The lighting system of claim 1 wherein the driver has an AC voltage input from a mains.
3. The lighting system of claim 1 , wherein the at least two LEDs are connected in an anti-parallel configuration.
4. The lighting system of claim 2 , wherein the DC output of the driver is at least one of a constant DC voltage or a constant current DC output.
5. The lighting system of claim 1 , wherein the driver includes a bridge rectifier to rectify power provided by an AC power source.
6. The lighting system of claim 1 further comprising at least one current limiting diode.
7. A method of driving a lighting device or system, the method comprising the steps of:
connecting a first LED circuit of at least two LED circuits to a power source such that the first LED circuit is forward biased by the power source;
sensing at least one of a voltage or a current being delivered to the first LED circuit; and
switching a DC output of the power source to forward bias a second LED circuit of the at least two LED circuits if the first LED circuit is determined inoperable based on the at least one of the voltage or the current that is sensed.
8. The method of claim 7 wherein the first LED circuit and the second LED circuit are connected to each other in an anti-parallel configuration.
9. The method of claim 7 , wherein the power source is a driver.
10. The method of claim 9 , wherein the step of switching the DC output of the power sources comprises:
reversing a polarity of the DC output provided by the power source manually using a switch so as to forward bias the second LED circuit and reverse bias the first LED circuit.
11. The method of claim 9 , wherein the step of switching the DC output of the power sources comprises:
reversing a polarity of the DC output provided by the power source by manually disconnecting the second LED circuit from the DC output and reconnecting the second LED circuit to the DC output in a reversed configuration so that the second LED circuit that was previously reverse biased is now forward biased.
12. The method of claim 7 , wherein the power source is a driver having an AC voltage input from a mains.
13. The method of claim 12 , wherein the DC output of the power source is at least one of a constant DC voltage or a constant current DC output.
14. The method of claim 9 , wherein the driver includes a bridge rectifier to rectify power provided by an AC power source.
15. The method of claim 7 further comprising connecting a current limiting diode to at least one of the first LED circuit or the second LED circuit.
16. A method of driving a lighting device or system, the method comprising the steps of:
connecting at least two LEDs such that at least one of the at least two LEDs is capable of emitting light during a positive phase from an AC power source, and at least one of the at least two LEDs is capable of emitting light during a negative phase from an AC power source;
providing DC power across the at least two LEDs, the at least two LEDs forming a load such that a first LED of the at least two LEDs is forward biased by the DC power and a second LED of the at least two LEDs is reversed biased by the DC power;
sensing the load to monitor whether the first LED configured to be forward biased by the DC power is operational; and
reversing the polarity of the DC power across the load dynamically so as to forward bias the second LED that was previously reverse biased in response to the first LED being sensed as no longer operational.
17. The method of claim 16 , further comprising:
rectifying AC power from the AC power source to provide the DC power.
18. The method of claim 16 , further comprising:
connecting a DC output of a driver to the first LED to provide the DC power, wherein the DC output is at least one of a constant DC voltage or a constant current DC output.
19. The method of claim 18 , further comprising:
providing an AC voltage input to the driver from a mains.
20. The method of claim 16 , wherein connecting the at least two LEDs comprises:
connecting the at least two LEDs in an anti-parallel configuration.