Tubular device for fitting to a tubular light fitting
The invention provides a solid state (e.g. LED) tubular lighting device having pin safety circuits connected to connecting pins at each end. A driver circuit is connected to the outputs of the pin safety circuits. The pin safety circuits each comprise a TRIAC switch which is adapted to form a closed switch in response to a voltage between the connecting pins. This provides a pin safety solution suitable at least for rapid start EM ballasts.
1. A tubular lighting device, comprising:
a tubular housing having an elongate axis and first and second opposite ends, each of the first and second opposite ends comprising two projecting electrical connection pins;
a first pin safety circuit electrically connected to the two projecting electrical connecting pins at the first opposite end and having a first power supply output terminal;
a second pin safety circuit electrically connected to the connecting pins at the second end and having a second power supply output terminal;
a solid state lighting arrangement; and
a lighting driver circuit for driving the solid state lighting arrangement, the lighting driver circuit being connected to the first and second power supply output terminals for receiving power from the first and second pin safety circuits,
wherein the pin safety circuits each comprise a TRIAC switch having an input terminal, an output terminal and a gate terminal, wherein the input terminal is connected to one of the two projecting electrical connection pins, the gate terminal is connected to the other of the connection pins and the output terminal is connected to a respective power supply output terminal, wherein the TRIAC switch is adapted to form a closed switch in response to a voltage between the input terminal and the gate terminal, and
wherein the gate terminal of the TRIAC switch of each of the first and second pin safety circuit is connected to a respective connection pin through a resistor.
2. A device as claimed in claim 1 , wherein the lighting driver circuit further comprises a rectifier, wherein the rectifier comprises an input and an output, the input of the rectifier being connected to at least one of the first pin safety circuit and the second pin safety circuit, the output of the rectifier being connected to a switch mode power converter.
3. A device as claimed in claim 1 , wherein the lighting driver circuit ( 58 ) further comprises an EMI filter ( 66 ).
4. A device as claimed in claim 1 , wherein the TRIAC switch of each of the first and second pin safety circuit comprises a four quadrant TRIAC.
5. A device as claimed in claim 1 , wherein the first pin safety circuit further comprises an additional TRIAC switch having an input terminal, an output terminal and a gate terminal, wherein the input terminal of the additional TRIAC switch is connected to the other one of the connection pins at the first end, the gate terminal is connected to the gate terminal of the first TRIAC switch and the output terminal is connected to a further respective power supply output terminal, wherein the TRIACs are adapted to form a closed switch in response to a voltage between the input terminal and the gate terminal.
6. A device as claimed in claim 5 , wherein the lighting driver circuit further comprises a rectifier, wherein the rectifier comprises an input and an output, the input of the rectifier being connected to at least one of the first pin safety circuit and the second pin safety circuit, the output of the rectifier being connected to a switch mode power converter, and wherein the lighting driver circuit comprises a further rectifier coupled in parallel to the series connection of rectifier D 1 and rectifier D 2 .
7. A device as claimed in claim 6 , wherein the resistor comprises a fusistor.
8. A device as claimed in claim 6 , wherein the resistor comprises a PTC resistor.
9. A device as claimed in claim 1 , wherein the solid state lighting arrangement comprises an LED arrangement and the lighting driver circuit comprises an LED driver.
10. A lighting fixture comprising:
a fluorescent lighting electronic ballast, a fluorescent lighting electromagnetic ballast, or a lighting fixture without a ballast; and
the tubular lighting device as claimed in claim 1 connected to the fluorescent lighting ballast.
11. The lighting fixture as claimed in claim 10 , wherein the fluorescent lighting ballast comprises an electronic ballast with filament heating.
12. A tubular lighting device, comprising:
a tubular housing having an elongate axis and first and second opposite ends, each of the first and second opposite ends comprising two projecting electrical connection pins;
a first pin safety circuit electrically connected to the two projecting electrical connecting pins at the first opposite end and having a first power supply output terminal;
a second pin safety circuit electrically connected to the connecting pins at the second end and having a second power supply output terminal;
a solid state lighting arrangement; and
a lighting driver circuit for driving the solid state lighting arrangement, the lighting driver circuit being connected to the first and second power supply output terminals for receiving power from the first and second pin safety circuits,
wherein the pin safety circuits each comprise a TRIAC switch having an input terminal, an output terminal and a gate terminal, wherein the input terminal is connected to one of the two projecting electrical connection pins, the gate terminal is connected to the other of the connection pins and the output terminal is connected to a respective power supply output terminal, wherein the TRIAC switch is adapted to form a closed switch in response to a voltage between the input terminal and the gate terminal, and
wherein each pin safety circuit further comprises a capacitor and/or resistor between the input terminal and the gate terminal of the TRIAC switch.