High efficiency driver circuit with fast response
US-2015312983-A1 · Oct 29, 2015 · US
US9763294B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9763294-B2 |
| Application number | US-201514944267-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 18, 2015 |
| Priority date | Nov 20, 2014 |
| Publication date | Sep 12, 2017 |
| Grant date | Sep 12, 2017 |
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A lighting device includes a rectifier circuit, a conversion circuit, a constant current circuit and a control circuit. The conversion circuit includes a first series circuit, a second series circuit and a third series circuit. The conversion circuit is configured to output a DC current by on/off of a switching element being controlled by the control circuit. A high potential-side terminal of the third capacitor is electrically connected to an output terminal. The low potential-side terminal of the third capacitor is electrically connected to an output terminal, via the constant current circuit.
Opening claim text (preview).
The invention claimed is: 1. A lighting device for providing power from an AC power source to turn on a light source, comprising: a pair of input terminals to which the AC power source configured to output an AC current may be electrically connected; a pair of output terminals to which the light source may be electrically connected; a rectifier circuit configured to generate a pulsating current by full-wave rectification of the AC current; a conversion circuit configured to convert the pulsating current from the rectifier circuit into a DC current, and to output the DC current to the pair of output terminals; a constant current circuit configured to make the DC current outputted by the conversion circuit into a constant current and supply the constant current to the light source connected to between the pair of output terminals; and a control circuit configured to control the conversion circuit and the constant current circuit, wherein the rectifier circuit comprises: a pair of first input ends electrically connected to the pair of input terminals, respectively; and a pair of first output ends electrically connected to the conversion circuit, wherein the conversion circuit is a single-ended primary inductance converter, wherein the conversion circuit comprises: a pair of second input ends electrically connected to the pair of first output ends of the rectifier circuit, respectively; a pair of second output ends electrically connected to the pair of output terminals, respectively; a first capacitor connected between the pair of second input ends; a first series circuit comprising a first inductor and a switching element, which are connected in series, and being connected in parallel to the first capacitor; a second series circuit comprising a second capacitor and a second inductor, which are connected in series, and being connected in parallel to the switching element; and a third series circuit comprising a diode and a third capacitor, which are connected in series, and being connected in parallel to the second inductor, wherein the third capacitor is connected between the pair of second output ends, wherein the conversion circuit is configured to output the DC current by on/off of the switching element being controlled by the control circuit, wherein the third capacitor comprises a high potential-side terminal and a low potential-side terminal, the high potential-side terminal being electrically connected to a first output terminal of the pair of output terminals, the low potential-side terminal being electrically connected to a second output terminal of the pair of output terminals, via the constant current circuit, wherein the lighting device further comprises a limiting circuit that is capable of limiting a voltage that is applied to the light source, wherein the limiting circuit includes a series circuit of a plurality of resistors connected in parallel to the third capacitor, and wherein a connection point between any two resistors of the plurality of resistors is connected to a connection point between the light source and the constant current circuit. 2. The lighting device according to claim 1 , wherein the constant current circuit comprises a series circuit of a resistor and a varying circuit configured to vary a magnitude of the DC current that is outputted by the conversion circuit, and wherein the control circuit is configured to control the varying circuit in such a manner that the magnitude of the DC current is set to supply the constant current to the light source. 3. The lighting device according to claim 2 , wherein the series circuit of the resistor and the varying circuit is electrically connected between the second output terminal and the low potential-side terminal of the third capacitor. 4. The lighting device according to claim 1 , wherein a resistance value of each of the plurality of resistors is set in such a manner that when the AC power source is turned off, the voltage that is applied to the light source is less than a lighting voltage of the light source. 5. A lighting fixture for providing power from an AC power source, comprising: a lighting device; and a light source that can be turned on by the lighting device, wherein the lighting device, comprising: a pair of input terminals to which the AC power source configured to output an AC current may be electrically connected; a pair of output terminals to which the light source may be electrically connected; a rectifier circuit configured to generate a pulsating current by full-wave rectification of the AC current; a conversion circuit configured to convert the pulsating current from the rectifier circuit into a DC current, and to output the DC current to the pair of output terminals; a constant current circuit configured to make the DC current outputted by the conversion circuit into a constant current suitable for the light source connected to between the pair of output terminals; and a control circuit configured to control the conversion circuit and the constant current circuit, wherein the rectifier circuit comprises: a pair of first input ends electrically connected to the pair of input terminals, respectively; and a pair of first output ends electrically connected to the conversion circuit, wherein the conversion circuit is a single-ended primary inductance converter, wherein the conversion circuit comprises: a pair of second input ends electrically connected to the pair of first output ends of the rectifier circuit, respectively; a pair of second output ends electrically connected to the pair of output terminals, respectively; a first capacitor connected between the pair of second input ends; a first series circuit comprising a first inductor and a switching element, which are connected in series, and being connected in parallel to the first capacitor; a second series circuit comprising a second capacitor and a second inductor, which are connected in series, and being connected in parallel to the switching element; and a third series circuit comprising a diode and a third capacitor, which are connected in series, and being connected in parallel to the second inductor, wherein the third capacitor is connected between the pair of second output ends, wherein the conversion circuit is configured to output the DC current by on/off of the switching element being controlled by the control circuit, wherein the third capacitor comprises a high potential-side terminal and a low potential-side terminal, the high potential-side terminal being electrically connected to a first output terminal of the pair of output terminals, the low potential-side terminal being electrically connected to a second output terminal of the pair of output terminals, via the constant current circuit, wherein the lighting device further comprises a limiting circuit that is capable of limiting a voltage that is applied to the light source, wherein the limiting circuit includes a series circuit of a plurality of resistors connected in parallel to the third capacitor, and wherein a connection point between any two resistors of the plurality of resistors is connected to a connection point between the light source and the constant current circuit. 6. The lighting fixture according to claim 5 , wherein the constant current circuit comprises a series circuit of a resistor and a varying circuit configured to vary a magnitude of the DC current that is outputted by the conversion circuit, and wherein the control circuit is configured to control the varying circuit in such a manner that the magnitude of the DC current is made, by the varying circuit, into a magnitude suitable for the light source. 7. The lighting fixture according to claim 6 , wherein the series
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