CN203233578U - Light adjustable LED power supply - Google Patents

Light adjustable LED power supply Download PDF

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Publication number
CN203233578U
CN203233578U CN 201320203421 CN201320203421U CN203233578U CN 203233578 U CN203233578 U CN 203233578U CN 201320203421 CN201320203421 CN 201320203421 CN 201320203421 U CN201320203421 U CN 201320203421U CN 203233578 U CN203233578 U CN 203233578U
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China
Prior art keywords
module
resistance
triode
diode
output
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Expired - Fee Related
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CN 201320203421
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Chinese (zh)
Inventor
卢泽奇
陆群
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Shenzhen Eastfield Lighting Co Ltd
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Shenzhen Eastfield Lighting Co Ltd
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Priority to CN 201320203421 priority Critical patent/CN203233578U/en
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Abstract

The utility model discloses a light adjustable LED power supply which comprises a rectification filter module, a boost module, a light adjustment signal detection and transmission module and a buck constant current output module. An external power supply is input into the rectification filter module, undergoes rectification of the rectification filter module, is output to the boost module, undergoes boost of the boost module, is output to the buck constant current output module, undergoes constant current processing of the buck constant current output module, and is output to power an LED. The input end of the light adjustment signal detection and transmission module is connected with the rectification filter module, and the output end is connected with the buck constant current output module. According to the utility model, when the light adjustable LED power supply works, an electronic transformer is not impacted; in a simple and low cost mode, the detection and the transmission of a thyristor light adjustment signal are realized; and an analog signal can be accepted to carry out output current adjustment, so as to realize constant current output and output current adjustment.

Description

A kind of Dimmable LED power supply
Technical field
The utility model discloses a kind of LED power supply, particularly a kind of Dimmable LED power supply.
Background technology
LED is owing to have advantages such as luminous efficiency height, long service life, energy-conserving and environment-protective, replace conventional incandescent, tungsten halogen lamp, fluorescent tube and cold-cathode fluorescence lamp etc. in recent years gradually, in the application that obtains aspect lighting field and the LCD backlight source more and more widely.Especially present, in the spring tide of environmental protection and energy saving, the update of illuminating product is also accelerating, as incandescent lamp, Halogen lamp LED, traditional lighting products such as fluorescent lamp are replaced by the LED product one after another, and in this burst trend, the LEDization of MR16 Halogen lamp LED has run into bigger technical barrier, and the one, can not compatible multiple electronic transformer, the 2nd, can not compatible silicon controlled dimmer.Present compatibility at electronic transformer, existing many companies have proposed feasible scheme, and for the LED power supply of the MR16 lamp holder of tunable optical, since in recent years, each major company has dropped into great amount of manpower one after another and material resources are developed this product, but matured product production is not arranged always, do not break through especially in the small-power product below 10W.
Now each company mainly contains two kinds of modes at the solution of MR16 Dimmable LED power supply: the one, solve with the design specialized chip, but the result all be cost than higher, effect is also unsatisfactory.Two kinds of modes are to detect and processing signals with programmable MCU chip, the circuit complexity, but also be the cost height, effect is general.
Summary of the invention
At the above-mentioned Dimmable LED power source design complex structure of mentioning of the prior art, the shortcoming that cost is high, the utility model provide a kind of new simply, the built-in Dimmable LED power supply of MR16 lamp holder that constitutes of circuit cheaply, realized that following function breaks through at 2, the one, the compatible various electronic transformers of energy, the 2nd, can realize light modulation by compatible general controllable silicon dimmer.
The technical scheme that its technical problem that solves the utility model adopts is: a kind of Dimmable LED power supply, power supply comprises rectification filtering module, boost module, dim signal detected transmission module and step-down constant current output module, external power supply input rectifying filtration module, after the rectification filtering module rectification, export boost module to, after boosting, exports to boost module step-down constant current output module, carry out exporting to the LED power supply after constant current is handled through step-down constant current output module, dim signal detected transmission module input is connected on the rectification filtering module, and output is connected on the step-down constant current output module.
The technical scheme that its technical problem that solves the utility model adopts further comprises:
Described rectification filtering module comprises diode D1, diode D2, diode D3 and diode D4 and filter capacitor C1, and diode D1 connects into the bridge rectifier form to diode D4, and filter capacitor C1 is connected between the output and ground of bridge rectifier.
Described filter capacitor C1 adopts ceramic condenser.
Described boost module comprises PFC chip U1, switching tube Q1, triode Q4, boost inductance L1, voltage-stabiliser tube ZD1 and voltage-stabiliser tube ZD2, be connected with switching tube Q1 on the control signal output of PFC chip U1, switching tube Q1 and resistance R 4 are connected in series between dc bus and the negative pole AC line, boost inductance L1 is serially connected on the dc bus, diode D5 is connected in series on the dc bus of level behind the switching tube Q1, switching tube Q1 is connected by six pin of resistance R 9 with PFC chip U1 with the common port of resistance R 4, voltage-stabiliser tube ZD1 and resistance R 10 are connected in series between the 6th pin of dc bus and PFC chip U1, resistance R 5 and voltage-stabiliser tube ZD2 are connected in series between dc bus and the negative pole AC line, the base stage of triode Q4 is connected between resistance R 5 and the voltage-stabiliser tube ZD2, the collector electrode of triode Q4 is connected on the dc bus, and the emitter of triode Q4 is connected on the negative pole AC line by capacitor C 3.
Described resistance R 4 is connected in parallel to resistance R 3.
Described step-down constant current output module comprises current detecting chip U2, power inductance L2 and diode D7, diode D7 and power inductance L2 are connected in series on the dc bus, the power inductance L2 other end is cathode output end LB-, be connected with resistance R 8 on the dc bus, resistance R 8 is cathode output end LB+, the VIN end of current detecting chip U2 is connected on the dc bus, the ISEN end of current detecting chip U2 is connected on the cathode output end LB+, the LX end of current detecting chip U2 is connected on the common port of diode D7 and power inductance L2, and the ADJ of current detecting chip U2 end is connected with the output of dim signal detected transmission module.
Described dim signal detected transmission module comprises diode D6, triode Q2 and triode Q3, diode D6 is connected on the output of rectification filtering module, diode D6, resistance R 6 and resistance R 11 are connected in series successively, resistance R 11 connects on the base stage of triode Q2, the collector electrode of triode Q2 is connected with the ADJ end of current detecting chip U2 by resistance R 14, the emitter of triode Q2 is connected the negative pole AC line by resistance R 13, the base stage of triode Q3 is connected on the emitter of triode Q2, the collector electrode of triode Q2 is connected the negative pole AC line, and the emitter of triode Q2 is connected with the ADJ end of current detecting chip U2.
The beneficial effects of the utility model are: the utility model is when work, can not impact to electronic transformer, the utility model is simple with one, mode has realized detection and the transmission of controllable silicon light modulation signal cheaply, can accept analog signal and carry out the output current adjusting and realize constant current output and the adjusting output current.
Below in conjunction with the drawings and specific embodiments the utility model is described further.
Description of drawings
Fig. 1 is the utility model circuit block diagram.
Fig. 2 is the utility model circuit theory diagrams.
Embodiment
Present embodiment is the utility model preferred implementation, and other all its principles are identical with present embodiment or approximate with basic structure, all within the utility model protection range.
Please referring to accompanying drawing 1 and accompanying drawing 2, mainly comprise rectification filtering module, boost module, dim signal detected transmission module and step-down constant current output module in the utility model, external power supply input rectifying filtration module, after the rectification filtering module rectification, export boost module to, after boost module boosts, export to step-down constant current output module, carry out exporting to the LED power supply after constant current is handled through step-down constant current output module.Dim signal detected transmission module is connected on the step-down constant current output module, realizes the purpose of light modulation.The utility model with one simply, the built-in Dimmable LED power supply of MR16 lamp holder that constitutes of circuit cheaply, realized that following function breaks through at 2, the one, the compatible various electronic transformers of the utility model energy, the 2nd, can realize light modulation by compatible general controllable silicon dimmer.The utility model can the compatible various 12V of being output as electronic transformer and drive 10W with interior LED load, and can be by general controllable silicon dimmer adjusting lamplight brightness.
In the present embodiment, rectification filtering module mainly comprises diode D1, diode D2, diode D3 and diode D4 and filter capacitor C1, diode D1 connects into the bridge rectifier form to diode D4, high-frequency alternating current to electronic transformer output carries out rectification and High frequency filter, the direct current energy of a pulsation is provided for late-class circuit, filter capacitor C1 adopts the ceramic condenser of a low capacity, can not impact to electronic transformer.
In the present embodiment, the working method of boost module is a kind of fixedly turn-off time, the control mode of peak current detection, its operating frequency can change with input voltage is different, electric current on the boost inductance L1 can not stopped, work in continuous mode, in each work period of electronic transformer, there is power consumption in the capital, make this power supply become a resistive load, thereby when work, make the PF value of the sub-transformer of institute's distribution up to more than 0.9, and can carry out light modulation by adaptive general controllable silicon dimmer.It can raise the direct voltage of the pulsation about rectifying and wave-filtering part 12V and convert the more level and smooth direct current of 30V to.Boost module mainly comprises PFC chip U1, switching tube Q1, triode Q4, boost inductance L1, voltage-stabiliser tube ZD1 and voltage-stabiliser tube ZD2, PFC chip U1 is the core part in the boost module, be connected with switching tube Q1 by resistance R 2 on the control signal output of PFC chip U1, switching tube Q1 and resistance R 4 are connected in series between dc bus and the negative pole AC line, be connected in parallel to resistance R 3 with resistance R 4, boost inductance L1 is serially connected on the dc bus.Diode D5 is connected in series on the dc bus of level behind the switching tube Q1.Switching tube Q1 is connected by six pin of resistance R 9 with PFC chip U1 with the common port of resistance R 4, voltage-stabiliser tube ZD1 and resistance R 10 are connected in series between the 6th pin of dc bus and PFC chip U1, resistance R 5 and voltage-stabiliser tube ZD2 are connected in series between dc bus and the negative pole AC line, the base stage of triode Q4 is connected between resistance R 5 and the voltage-stabiliser tube ZD2, the collector electrode of triode Q4 is connected on the dc bus, and the emitter of triode Q4 is connected on the negative pole AC line by capacitor C 3.
In the present embodiment, step-down constant current output module can be accepted analog signal and carry out the output current adjusting and realize constant current output and the adjusting output current.Step-down constant current output module mainly comprises current detecting chip U2, power inductance L2 and diode D7, diode D7 and power inductance L2 are connected in series on the dc bus, the power inductance L2 other end is cathode output end LB-of the present utility model, be connected with resistance R 8 on the dc bus, resistance R 8 is cathode output end LB+ of the present utility model, the VIN end of current detecting chip U2 is connected on the dc bus, the ISEN end of current detecting chip U2 is connected on the cathode output end LB+, the LX end of current detecting chip U2 is connected on the common port of diode D7 and power inductance L2, and the ADJ of current detecting chip U2 end is connected with the output of dim signal detected transmission module.Step-down constant current output module is accepted dim signal and is regulated output current, for LED provides stable output current.
In the present embodiment, dim signal detected transmission module is for detection of the input average voltage, with an emitter follower circuit voltage analog signal is transferred to back level output constant-current circuit and realizes the output current adjusting, this partial circuit is simple with one, and mode has realized detection and the transmission of controllable silicon light modulation signal cheaply.This module section becomes the analog voltage signal that can follow the dimmer phase angle after input voltage is averaged processing, with a simple emitter follower circuit this signal is flowed to the back level and carries out the output current adjusting again.This part mainly comprises diode D6, triode Q2 and triode Q3, diode D6 is connected on the output of rectification filtering module, diode D6, resistance R 6 and resistance R 11 are connected in series successively, resistance R 11 connects on the base stage of triode Q2, the collector electrode of triode Q2 is connected with the ADJ end of current detecting chip U2 by resistance R 14, the emitter of triode Q2 is connected the negative pole AC line by resistance R 13, the base stage of triode Q3 is connected on the emitter of triode Q2, the collector electrode of triode Q2 is connected the negative pole AC line, and the emitter of triode Q2 is connected with the ADJ end of current detecting chip U2.

Claims (7)

1. Dimmable LED power supply, it is characterized in that: described power supply comprises rectification filtering module, boost module, dim signal detected transmission module and step-down constant current output module, external power supply input rectifying filtration module, after the rectification filtering module rectification, export boost module to, after boosting, exports to boost module step-down constant current output module, carry out exporting to the LED power supply after constant current is handled through step-down constant current output module, dim signal detected transmission module input is connected on the rectification filtering module, and output is connected on the step-down constant current output module.
2. Dimmable LED power supply according to claim 1, it is characterized in that: described rectification filtering module comprises diode D1, diode D2, diode D3 and diode D4 and filter capacitor C1, diode D1 connects into the bridge rectifier form to diode D4, and filter capacitor C1 is connected between the output and ground of bridge rectifier.
3. Dimmable LED power supply according to claim 2 is characterized in that: described filter capacitor C1 employing ceramic condenser.
4. Dimmable LED power supply according to claim 1, it is characterized in that: described boost module comprises PFC chip U1, switching tube Q1, triode Q4, boost inductance L1, voltage-stabiliser tube ZD1 and voltage-stabiliser tube ZD2, be connected with switching tube Q1 on the control signal output of PFC chip U1, switching tube Q1 and resistance R 4 are connected in series between dc bus and the negative pole AC line, boost inductance L1 is serially connected on the dc bus, diode D5 is connected in series on the dc bus of level behind the switching tube Q1, switching tube Q1 is connected by six pin of resistance R 9 with PFC chip U1 with the common port of resistance R 4, voltage-stabiliser tube ZD1 and resistance R 10 are connected in series between the 6th pin of dc bus and PFC chip U1, resistance R 5 and voltage-stabiliser tube ZD2 are connected in series between dc bus and the negative pole AC line, the base stage of triode Q4 is connected between resistance R 5 and the voltage-stabiliser tube ZD2, the collector electrode of triode Q4 is connected on the dc bus, and the emitter of triode Q4 is connected on the negative pole AC line by capacitor C 3.
5. Dimmable LED power supply according to claim 4, it is characterized in that: described resistance R 4 is connected in parallel to resistance R 3.
6. Dimmable LED power supply according to claim 1, it is characterized in that: described step-down constant current output module comprises current detecting chip U2, power inductance L2 and diode D7, diode D7 and power inductance L2 are connected in series on the dc bus, the power inductance L2 other end is cathode output end LB-, be connected with resistance R 8 on the dc bus, resistance R 8 is cathode output end LB+, the VIN end of current detecting chip U2 is connected on the dc bus, the ISEN end of current detecting chip U2 is connected on the cathode output end LB+, the LX end of current detecting chip U2 is connected on the common port of diode D7 and power inductance L2, and the ADJ of current detecting chip U2 end is connected with the output of dim signal detected transmission module.
7. Dimmable LED power supply according to claim 6, it is characterized in that: described dim signal detected transmission module comprises diode D6, triode Q2 and triode Q3, diode D6 is connected on the output of rectification filtering module, diode D6, resistance R 6 and resistance R 11 are connected in series successively, resistance R 11 connects on the base stage of triode Q2, the collector electrode of triode Q2 is connected with the ADJ end of current detecting chip U2 by resistance R 14, the emitter of triode Q2 is connected the negative pole AC line by resistance R 13, the base stage of triode Q3 is connected on the emitter of triode Q2, the collector electrode of triode Q2 is connected the negative pole AC line, and the emitter of triode Q2 is connected with the ADJ end of current detecting chip U2.
CN 201320203421 2013-04-22 2013-04-22 Light adjustable LED power supply Expired - Fee Related CN203233578U (en)

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Application Number Priority Date Filing Date Title
CN 201320203421 CN203233578U (en) 2013-04-22 2013-04-22 Light adjustable LED power supply

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Application Number Priority Date Filing Date Title
CN 201320203421 CN203233578U (en) 2013-04-22 2013-04-22 Light adjustable LED power supply

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103200747A (en) * 2013-04-22 2013-07-10 深圳市裕富照明有限公司 Dimmable LED (light-emitting diode) power supply

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103200747A (en) * 2013-04-22 2013-07-10 深圳市裕富照明有限公司 Dimmable LED (light-emitting diode) power supply

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20131009