CN106973463A - The LED drive device high to the control of light fixture stepless dimming, power factor - Google Patents

The LED drive device high to the control of light fixture stepless dimming, power factor Download PDF

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Publication number
CN106973463A
CN106973463A CN201710347160.7A CN201710347160A CN106973463A CN 106973463 A CN106973463 A CN 106973463A CN 201710347160 A CN201710347160 A CN 201710347160A CN 106973463 A CN106973463 A CN 106973463A
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module
led
light source
tunable optical
electric capacity
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不公告发明人
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/20Controlling the colour of the light
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/30Driver circuits
    • H05B45/37Converter circuits
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/10Controlling the intensity of the light

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  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

Light fixture stepless dimming is controlled the invention discloses a kind of, the high LED drive device of power factor, including the input filter module (1) being sequentially connected, bridge rectifier module (2), DC modular converters (3), tunable optical drive module (4), with LED light source module (5), also include wireless communication module (6), the wireless communication module (6) exports different PWM ripples to the Enable Pin of the tunable optical drive module (4), the tunable optical drive module (4) adjusts the electric current for flowing through the LED light source module (5) according to the PWM ripples.The LED drive device efficiency high of the present invention, cost is low.

Description

The LED drive device high to the control of light fixture stepless dimming, power factor
Technical field
The present invention relates to a kind of drive device, particularly a kind of LED drive device.
Background technology
LED illumination uses constant current drive mode substantially in the prior art.In order to preferably play the excellent of LED illumination energy-conservation Point, it is trend of the times to add dimming function in LED driver.Generally, the dimming mode of LED driver has 3 kinds:Thyristor regulating Light, simulation light modulation, PWM light modulations.Every kind of dimming mode has its advantage and limitation.PWM light modulations are to make on-off circuit with relative Sufficiently high frequency work, changes output current average value by setting cycle and dutycycle for eye recognition ability, Its output current only has two states:Maximum rated operating current and zero current.Simulation light modulation is by changing output current Amplitude realizes dimming function, and thyristor regulating just realizes dimming function by the power output of regulation power supply.PWM light modulations can To ensure LED color temperature constant, the efficiency of driver is higher, and can accurately be controlled, but it has the disadvantage to need MCU to control Device processed, it is with high costs.The relative PWM light adjusting circuits of simulation light modulation are simple, easily realize, but LED colour temperatures can be made to change, simultaneously Efficiency is low, output current precision is difficult regulation, dimming scope is limited.Thyristor regulating just utilizes existing controllable silicon dimmer, By changing the angle of flow of controllable silicon, adjust power output to realize light modulation, its advantage is without changing original fluorescent lamp light modulation Equipment, but shortcoming is more serious:It can seriously reduce drive efficiency and power factor, while can also make LED produce flicker.
The content of the invention
For the defect of prior art, the invention provides a kind of LED drive device.
A kind of LED drive device, including be sequentially connected input filter module 1, bridge rectifier module 2, DC modular converters 3rd, tunable optical drive module 4 and LED light source module 5, in addition to wireless communication module 6, the wireless communication module 6 are exported not Same PWM ripples are to the Enable Pin of the tunable optical drive module 4, and the tunable optical drive module 4 is adjusted according to the PWM ripples to flow Electric current through the LED light source module 5.
Optionally, also wrap and flow through the detection module of the electric current of LED light source module 5 for detecting, the detection module with LED/light source detection module 5 is connected, the electricity that the tunable optical drive module 4 is detected according to the PWM ripples and the detection module Stream, regulation flows through the electric current of the LED light source module 5.
Optionally, the wireless communication module 6 receives host computer with distal end host computer by ZigBee wireless communication connections Control instruction, adjusted according to the instruction and flow through the electric current of the LED light source module 5.
Optionally, the input filter module 1 is by the inductance L1 being connected in electric power incoming line, electric capacity C1, inductance L2 and electricity Hold C2 compositions, electric capacity C1, C2 are connected across on electric power incoming line, and inductance L1, L2 are connected between electric capacity C1, C2, form the filtering of II shapes Module 1.
Optionally, the input of the DC modular converters 3 constitutes resitstance voltage divider to input voltage by resistance R9 and R10 Sampled, the output end of DC modular converters 3 constitutes resitstance voltage divider by resistance R7 and R8 and output voltage is sampled, DC Input voltage and output voltage that conversion chip is obtained according to sampling, the output of regulation DC modular converters 3.
Optionally, the DC modular converters 3 include APFC circuits, and the APFC circuits include being connected between dc bus Switching tube and output capacitance, booster diode are serially connected with the dc bus between switching tube and boost capacitor.
Optionally, the tunable optical drive module 4 includes driving chip, driving half-bridge and filter circuit, driving chip Output end connection driving half-bridge, the filtered circuit of driving half-bridge connects the LED light source module 5.
Optionally, the tunable optical drive module 4 includes driving chip, the two ends of the LED light source module 5 be parallel with by The bleeder circuit that resistance Rov1 and resistance Rov2 are composed in series, resistance Rov1 and resistance Rov2 tie point by electric capacity CEN and The enable pin connection of voltage-regulator diode Dov and driving chip, the PWM output ends of the wireless communication module 6 are also connected to driving The enable pin of chip.
Optionally, the tunable optical drive module 4 has upper limit threshold voltage and lower limit threshold voltage, when adjustable optical drive When the input voltage of module 4 is more than upper limit threshold voltage, the tunable optical drive module 4 enters disabled state, stops to LED light Source module 5 provides electric current;When the input voltage of tunable optical drive module 4 is less than lower limit threshold voltage, the tunable optical drive module 4 Into normal mode of operation.
The beneficial effects of the invention are as follows:The non-pole light regulating control of light fixture is realized using PWM mode, with power factor it is high, Efficiency high, low cost and other advantages.
Brief description of the drawings
Fig. 1 is the structural representation of drive device of the present invention;
Fig. 2 is the circuit structure diagram of part of module of the present invention;
Fig. 3 is the circuit structure diagram of tunable optical drive module of the present invention;
Fig. 4 is the circuit structure diagram of wireless communication module of the present invention.
Embodiment
In order to facilitate the understanding of the purposes, features and advantages of the present invention, below in conjunction with the accompanying drawings to the present invention Embodiment be described in detail, make the above and other purpose of the present invention, feature and advantage will become apparent from.Complete Identical reference indicates identical part in portion's accompanying drawing.Not deliberately accompanying drawing drawn to scale, it is preferred that emphasis is show this hair Bright purport.
Referring to Fig. 1, the LED drive device of the present invention includes input filter module 1, bridge rectifier module 2, DC moduluss of conversion Block 3, tunable optical drive module 4, LED light source module 5 and wireless communication module 6, input filter module 1 use electromagnetic interface filter. LED lamp power input 220Vac/50Hz civil power, by electromagnetic interface filter suppression module to the radiation interference of power network after, warp AC is transformed to DC by bridge type rectification module 2, and the DC after conversion exports two-way direct current by DC modular converters 3, wherein giving all the way Wireless communication module 6 is powered, and another road powers to tunable optical drive module 4;Wireless communication module 6 leads to using CC2530 as core All LED lamp can be constituted one wireless control network by crossing wireless communication module 6, during each LED is network One node, there is independent and unique network ID.Light fixture is received after brightness adjustment control order by CC2530 wireless modules, is passed through Export different PWM to adjust the output current of tunable optical drive module 4, so as to realize the light modulation control to LED light source module 5 System.
Input filter module 1, bridge rectifier module 2, the particular circuit configurations of DC modular converters 3 are as shown in Fig. 2 civil power is logical Input filter module 1 and the output ripple voltage of bridge rectifier module 2 are crossed, input filter module 1 is by being connected in electric power incoming line Inductance L1, electric capacity C1, inductance L2 and electric capacity C2 compositions, electric capacity C1, C2 are connected across on electric power incoming line, and inductance L1, L2 are connected to electricity Hold between C1, C2, thus form II shape EMI filtration modules, the radiation interference of power network can be carried out by the filtration module Suppress.The output of filtration module 1 connects the input of rectification module 2, and rectification module uses H bridge rectification circuits, using controllable or not Controlled rectification circuit, constitutes uncontrollable H bridges rectification module by 4 uncontrollable diodes in an embodiment of the present invention, By rectification module 2 by AC rectification into direct current.Smoothing capacity C3 is connected between the positive and negative busbar that rectification module is exported, The direct current that rectification is exported can be carried out by electric capacity smooth.The output connection DC modular converters 3 of rectification module 2, DC moduluss of conversion Block 3 is using L6561 as core.The input of DC modular converters 3 constitutes resitstance voltage divider by resistance R9 and R10 and sampled, electricity Resistance R9 and R10 is series between positive and negative dc bus, and IC1 3 pin are connected with R9, R10 tie point, and resitstance voltage divider is adopted 3 pin through IC1 are detected by its internal multiplier after sample;The output end of DC modular converters 3 constitutes resistance point by resistance R7 and R8 Depressor is sampled, and resistance R7 and R8 are series between positive and negative dc bus, and IC1 1 pin is connected with R7, R8 tie point, electricity 1 pin through IC1 is detected by its internal indifference amplifier after resistance divider is sampled.The present invention takes single-stage inverse-excitation type APFC electricity Road, the APFC circuits of this mode work in electric current critical conduction mode of operation, the capacity very little of the input capacitance of APFC circuits (i.e. exchange input commercial power rectification output filter capacitor capacity very little), thus APFC circuits input voltage maximum very close to The peak value of output voltage after exchange input line voltage rectification.The power factor of the circuit is generally higher than 0.92, can be well Meet the technical requirements about EMC and THD.Heavy duty application scenario is being exported, the circuit can obtain higher work effect Rate, general work efficiency is close to 90%, and APFC power switch pipes MOSFET can be made by working in electric current critical conduction mode of operation Conduction loss it is smaller, advantageously reduce the volume of radiator.APFC circuits include MOS1, diode D1 and electric capacity C7, C7 two ends obtain VD, and boost inductance winding T1 is series on positive direct-current bus in DC modular converters 3, pass through boosting Inductor winding T1 electric current, is sensed by its auxiliary winding, and 5 pin through IC1 are input to the zero current detector of inside.Switching tube MOS1 It is connected in series in resistance R6 between positive and negative dc bus, the electric current for flowing through switching tube MOS1 is converted to voltage signal on R6, 4 pin through IC1 are input to the current sensor of inside.The output of IC1 internal multipliers, determines the thresholding of IC14 pin.When IC1's When PWM output drivings MOS1 on 7 pin is turned on, booster diode D1 cut-offs all flow through MOS1 by T1 electric current.Work as MOS During cut-off, D1 conductings.The result of IC1 controls, it is almost 180 ° to make the commutation diode angle of flow, AC input current continuous stream It is dynamic, and moment tracking AC-input voltage transient change track, and same-phase is kept with AC-input voltage, in sinusoidal waveform, Line power factor is brought up to more than 0.99.At the same time, PFC boost converter serves as high power factor switching.Hand over Input voltage is flowed in 175~265V ranges, total energy output 400V burning voltage.
Fig. 3 is the circuit structure diagram of tunable optical drive module 4, and the output end of DC modular converters 3 connects adjustable optical drive mould For core, electric capacity is connected between IRS2541 1 pin and 2 pin with IRS2541 (IC2) for the input of block 4, tunable optical drive module 4 Cvcc1, Cvcc1 with start resistance Rs1 series connection after be connected with positive direct-current bus, the output pin LO of tunable optical drive module 4 and HO difference connecting valve M2, M1, M1 and M2 can use MOS switch pipe, and M1 and M2 are series between positive and negative dc bus, by M1 with M2 composition driving half-bridges, the output end of half-bridge drive circuit is connected with LED light source module 5, and M1 and M2 tie point is in figure 3 The output end of half-bridge, its filter circuit being made up of inductance with electric capacity (inductance L1 and electric capacity Cout) connects with LED light source module 5 Connect.Circuit is charged by starting resistance Rs1 to the electric capacity Cvcc1 on IC2 pins VCC.When voltage is turned on more than VCC on Cvcc1 During thresholding, IC2 starts, and LO (5 pin) puts height, and HO (7 pin) is set low, and in being kept for one section of scheduled time, drives half-bridge low-end switch M2 is turned on, and VCC voltages are then charged by bootstrap diode DBooT to electric capacity CBooT, is set up VBS suspended voltages and is supplied to high-pressure side Electricity, when CBooT, which fills voltage with, reaches high-side driver turn-on threshold level inside IC2, IC2 starts triggering and exported according to regulation The constant requirement of electric current, the high low states of HO and LO are controlled by output electric current measure feedback.Biasing on IC2 pins VCC is then There is provided by output voltage Vout by resistance Rs2.LED light source module 5 is grounded by feedback voltage detection resistance RC5, resistance RC5 The other end be connected to by resistance Rf on IC2 pin IFB, when the feedback voltage V IFB on IC2 pins IFB is less than 0.5V During thresholding, HO puts height, and LO is set low, then M1 is turned on, and half bridge output current absorbs electric current by LED, load from direct current line ball, Outputting inductance L1 and electric capacity Cout storage energies, VIFB start increase, once VIFB is increased to more than 0.5V, control ring is in delay After THOOFF, HO is turned off, then M1 ends, then after DT (dead time), LO is opened, M2 is then turned on, outputting inductance L1 and electricity The energy storage held in Cout then discharges, and still has electric current to pass through in LED, and VIFB starts to reduce.And when VIFB is again decreased to 0.5V When following, control ring opens HO after delay THOON, then M1 is turned on, then after DT (dead time), LO shut-offs, M2 is then cut Only, so as to reach the purpose of stable average current.
Referring to Fig. 4, the one side of wireless communication module 6 has the ZigBee radio communication functions with host computer, the opposing party Face can control drive module 4 to realize the PWM drivings to LED/light source by exporting PWM ripples.Wireless communication module 6 with CC2530 is core, and CC2530 is the real on-chip system applied for IEEE802.15.4, ZigBee and RF4CE (SoC) solution.It can set up powerful network node with low-down total material cost.CC2530 combines leading RF transceivers premium properties, the enhanced 8051CPU of industrywide standard, In-System Programmable flash memory, 8-KBRAM and it is many its His powerful function.CC2530 has four kinds of different flash versions:CC2530F32/64/128/256, respectively with 32/64/ 128/256KB flash memory.CC2530 has different operational modes so that the system that it especially adapts to super low-power consumption requirement.Fortune Conversion time between row mode is short to further ensure that low energy expenditure.CC2530F256 combines the industry neck of Texas Instrument There is provided a powerful and complete ZigBee solution for first golden unit Zigbee protocol stack (Z-StackTM).
The PWM output ends of wireless communication module 6 are connected with the control pin (enable pin) of tunable optical drive module, Fig. 3 The threshold voltage upper limit that middle IRS2541 chips (driving chip) enable pin ENN is VENNTH+, when ENN pin input voltages are super When crossing VENNTH+, chip enters disabled state, and circuit stops providing electric current to load.Under input voltage is less than on pin ENN During voltage limit VENNTH-, chip reenters normal mode of operation.Therefore circuit inputs a not Frequency on ENN pins With the pulse signal of change dutycycle, then LED brightness PWM regulations can be realized.Specifically, the two of LED light source module 5 End is parallel with the bleeder circuit being composed in series by resistance Rov1 and Rov2, and Rov1 and Rov2 tie point is by electric capacity CEN and surely The enable pin connection of diode Dov driving chips is pressed, the PWM output ends of wireless communication module 6 are also connected to making for driving chip Can pin.Flow through and there is linear relationship between LED average currents and PWM duty cycle, PWM duty cycle is bigger, and light output is then smaller, Brightness is also darker.Such as dutycycle is 20%, and LED light output is then the 80% of maximum.The chip of IRS2541 chips, which is enabled, to be drawn Pin ENN threshold voltage is 2.5V or so, on the one hand avoids threshold voltage too low, external noise signals is caused chip forbidden energy; On the other hand the output pwm signal for being adapted to microcontroller carries out enable control to chip.Outside PWM enables control signal frequency Typically in several KHz, frequency is too low will to cause LED scintillations.The ENN of this circuit enables control signal by CC2530 wireless modules There is provided.CC2530 module reception system dim signals, produce corresponding pwm pulse signal and are input to ENN pins, realize to driving The enable control of circuit, and then regulation LED array electric current is realized, so as to realize the non-pole light regulating control of light fixture.
Many details are elaborated in the above description to fully understand the present invention.But above description is only Presently preferred embodiments of the present invention, the invention can be embodied in many other ways as described herein, therefore this Invention is not limited by specific implementation disclosed above.Any those skilled in the art are not departing from the technology of the present invention simultaneously In the case of aspects, all make many possible to technical solution of the present invention using the methods and techniques content of the disclosure above Change and modify, or be revised as the equivalent embodiment of equivalent variations.Every content without departing from technical solution of the present invention, according to this The technical spirit of invention still falls within skill of the present invention to any simple modifications, equivalents, and modifications made for any of the above embodiments In the range of the protection of art scheme.

Claims (3)

1. a kind of method of work of LED drive device, LED drive device includes input filter module (1), the bridge-type being sequentially connected Rectification module (2), DC modular converters (3), tunable optical drive module (4) and LED light source module (5), it is characterised in that also include Wireless communication module (6), the wireless communication module (6) exports different PWM ripples making to tunable optical drive module (4) Energy end, the tunable optical drive module (4) adjusts the electric current for flowing through the LED light source module (5) according to the PWM ripples;
Described LED drive device, in addition to the detection module of the LED light source module (5) electric current is flowed through for detecting, it is described Detection module is connected with LED/light source detection module (5), and the tunable optical drive module (4) is according to the PWM ripples and the detection The electric current that module is detected, regulation flows through the electric current of the LED light source module (5);
DC modular converters (34) output end connection tunable optical drive module (4) input, tunable optical drive module (4) with IRS2541 is core, be connected between IRS2541 1 pin and 2 pin electric capacity Cvcc1, Cvcc1 with start resistance Rs1 connect after and just Dc bus is connected, and the output pin LO and HO of tunable optical drive module (4) distinguish connecting valve M2, M1, and M1 and M2 can be adopted Use MOS switch pipe, M1 and M2 are series between positive and negative dc bus, be made up of M1 and M2 and drive half-bridge, half-bridge drive circuit it is defeated Go out end to be connected with LED light source module 5, M1 and M2 tie point are the output end of half-bridge, its filter being made up of inductance and electric capacity Wave circuit is connected with LED light source module 5;
Described method of work, including:Circuit is charged by starting resistance Rs1 to the electric capacity Cvcc1 on IC2 pins VCC;When When the upper voltages of Cvcc1 are more than VCC turn-on thresholds, IC2 starts, and 5 pin LO put height, and 7 pin HO are set low, and in one section of pre- timing of holding Between, driving half-bridge low-end switch M2 conductings, VCC voltages are then charged by bootstrap diode DBooT to electric capacity CBooT, set up VBS Suspended voltage is powered to high-pressure side;
When CBooT, which fills voltage with, reaches high-side driver turn-on threshold level inside IC2, it is defeated according to adjusting that IC2 starts triggering Go out the constant requirement of electric current, the high low states of HO and LO are controlled by output electric current measure feedback;Biasing on IC2 pins VCC Then provided by output voltage Vout by resistance Rs2;
LED light source module 5 is grounded by feedback voltage detection resistance RC5, and the resistance RC5 other end is connected to by resistance Rf On IC2 pin IFB, when the feedback voltage V IFB on IC2 pins IFB is less than 0.5V thresholding, HO puts height, and LO is set low, then M1 is turned on, and half bridge output current absorbs electric current by LED, load from direct current line ball, and outputting inductance L1 and electric capacity Cout are deposited Energy storage capacity, VIFB starts increase, once VIFB is increased to more than 0.5V, control ring turns off HO after delay THOOFF, then M1 is cut Only, then after dead time, LO is opened, and M2 is then turned on, and the energy storage in outputting inductance L1 and electric capacity Cout then discharges, in LED Still there is electric current to pass through, and VIFB starts to reduce;And when VIFB is again decreased to below 0.5V, control ring delay THOON after, HO is opened, then M1 is turned on, then after dead time, LO shut-offs, M2 then ends, so as to reach the purpose of stable average current.
2. LED drive device according to claim 1, it is characterised in that the wireless communication module (6) and distal end are upper Machine receives the control instruction of host computer by ZigBee wireless communication connections, and the LED/light source mould is flowed through according to instruction regulation The electric current of block (5).
3. LED drive device according to claim 1, it is characterised in that the input filter module (1) is by being connected to electricity Inductance L1, electric capacity C1, inductance L2 and electric capacity C2 compositions in the inlet wire of source, electric capacity C1, C2 are connected across on electric power incoming line, inductance L1, L2 is connected between electric capacity C1, C2, forms ∏ shapes filtration module (1).
CN201710347160.7A 2014-11-19 2014-11-19 The LED drive device high to the control of light fixture stepless dimming, power factor Pending CN106973463A (en)

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CN201410663628.XA CN104411042B (en) 2014-11-19 2014-11-19 Led drive device

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Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI630606B (en) * 2017-02-06 2018-07-21 群光電能科技股份有限公司 Light emitting diode driving system and the burning method thereof
CN107197561B (en) * 2017-06-12 2019-05-24 宜昌格志科技有限公司 A kind of LED energy saving light modulator based on DC bus-bar voltage signal
CN107525437B (en) * 2017-09-04 2019-05-24 中国航发南方工业有限公司 The detection method of infrared target simulator and guided missile tracking ability
WO2019100274A1 (en) * 2017-11-23 2019-05-31 沈佩军 Fan527b-based led tunnel lamp driver
CN108174480A (en) * 2017-12-25 2018-06-15 嘉兴美斯克电气科技有限公司 It is a kind of to sense and be remotely controlled dual-purpose light-adjustable LED lamp
CN109688659B (en) * 2018-12-21 2024-04-30 太仓电威光电有限公司 LED driving power supply module and integrated LED car lamp applying same
CN111200887A (en) * 2020-01-09 2020-05-26 中节能晶和照明有限公司 Wireless control device for LED lamp

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203368867U (en) * 2013-08-02 2013-12-25 江南大学 Novel intelligent high-precision LED driving power supply
CN103687217A (en) * 2013-11-29 2014-03-26 上海亚明照明有限公司 Switching and dimming LED driving circuit

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102281684A (en) * 2011-08-09 2011-12-14 深圳茂硕电源科技股份有限公司 Ultra-wide-range constant-current half-bridge circuit for realizing adjustment from 0 V
US9204505B2 (en) * 2013-04-29 2015-12-01 Stmicroelectronics, Inc. Power converter for interfacing a fluorescent lighting ballast to a light emitting diode lamp
TWI532409B (en) * 2013-05-03 2016-05-01 隆達電子股份有限公司 Illumination device and the led dimming circuit thereof
CN103731961A (en) * 2014-01-06 2014-04-16 陈云 Intelligent dimming LED (Light Emitting Diode) lighting system
CN203504846U (en) * 2014-02-07 2014-03-26 上海欧切斯实业有限公司 LED intelligent constant current light modulator
CN203708602U (en) * 2014-02-13 2014-07-09 四川长虹照明技术有限公司 LED drive device controlled intelligently
CN204191007U (en) * 2014-11-19 2015-03-04 西安重装渭南光电科技有限公司 Led drive device

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203368867U (en) * 2013-08-02 2013-12-25 江南大学 Novel intelligent high-precision LED driving power supply
CN103687217A (en) * 2013-11-29 2014-03-26 上海亚明照明有限公司 Switching and dimming LED driving circuit

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
山鬼2: "基于Zigbee的无线遥控台灯", 《百度文库》 *
王志鹏等: "基于L6561的电流准连续模式APFC电源设计", 《通信电源技术》 *
铁胆上将: "IRS2540", 《百度文库,HTTPS://WENKU.BAIDU.COM/VIEW/91919CF9AEF8941EA76E0592.HTML》 *

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CN107046750B (en) 2018-11-09

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Application publication date: 20170721