CN206100585U - Single modular dirve circuit of a plurality of pulse modulations - Google Patents
Single modular dirve circuit of a plurality of pulse modulations Download PDFInfo
- Publication number
- CN206100585U CN206100585U CN201620770506.5U CN201620770506U CN206100585U CN 206100585 U CN206100585 U CN 206100585U CN 201620770506 U CN201620770506 U CN 201620770506U CN 206100585 U CN206100585 U CN 206100585U
- Authority
- CN
- China
- Prior art keywords
- resistance
- electric capacity
- inductance
- diode
- port
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
Landscapes
- Rectifiers (AREA)
Abstract
The utility model discloses a single modular dirve circuit of a plurality of pulse modulations, including charging circuit, oscillation circuit and power supply circuit, charging circuit includes: a filter module, a rectifier module, vary voltage module, the 2nd rectifier module and the 2nd filter module, a filter module and a rectifier module output DC voltage signal, this DC voltage signal process power supply circuit, oscillation circuit and vary voltage module change high -voltage high -frequency's pulse voltage signal into, this high -voltage high -frequency's pulse voltage signal process the 2nd rectifier module and the 2nd filter module export a stable direct current pulse signal, this direct current pulse signal load to a plurality of parallelly connected pulse fluorescent tube both ends together. The utility model discloses under the circumstances that does not increase drive module, can drive a plurality of pulse fluorescent tubes simultaneously, greatly reduced the production and the use cost of pulse modulation equipment.
Description
Technical field
This utility model is related to pulse strong-light technical field, and the single module of more particularly to a kind of multiple flashlights drives electricity
Road.
Background technology
Pulse strong-light technology is a kind of using the pulse engineering technology for sparking and special noble gases fluorescent tube, with arteries and veins
The form of punching excites strong white light, the approximate sunlight of spectral distribution, and light intensity is equivalent to reaching earth surface sunlight intensity
Thousands of or even tens thousand of times of light source technology a kind of advanced in the world.It is killed all kinds of using the pulsed light energy of instantaneous, high intensity
Microorganism, so as to compensate for the shortcoming of traditional thermal sterilization, chemical sterilization.
Traditional pulse strong-light sterilizing unit is with alternating current as power supply, by a drive circuit module and a flashlight
Pipe is constituted, i.e., one drive circuit can only drive a flashlight.However, when actually used, a flashlight is not
No more, generally require multiple flashlights and combine the effect that can be only achieved real practicality.Due to adopting for drive circuit module
Purchase is relatively costly, and the actually used amount of the module is big, and this results in the manufacture and use of whole pulse strong-light sterilizing unit
Cost is all higher.
Additionally, after drive circuit module is increased, also increasing the control difficulty of flashlight, module and module are increased
Between line, increased the line between module and fluorescent tube, make the structure of product increasingly complex, reduce the efficiency of production,
The cost of the product is improved further.
Utility model content
For the problems referred to above, the purpose of this utility model is:A kind of single module drive circuit of multiple flashlights is proposed, its
Several flashlights are driven simultaneously using a drive circuit, in the case where drive module is not increased, flashlight is increased
Quantity, greatly reduces manufacturing cost and use cost.
This utility model solves the technical scheme adopted by its technical problem:
A kind of single module drive circuit of multiple flashlights, including charging circuit, oscillating circuit and power circuit;It is described to fill
Circuit includes:First filtration module, the first rectification module, voltage changing module, the second rectification module and the second filtration module;
The input ac power connection of first filtration module, the output of first filtration module are whole with described first
The input connection of flow module, for exporting a stable direct current signal;
The output of first rectification module is connected with the power circuit, and the power circuit is connected with the oscillating circuit
Connect, the oscillating circuit is connected with the voltage changing module, for producing vibration, the direct current signal is changed into into high-frequency electrical pulses
Pressure signal;
The voltage changing module is connected with second rectification module, second rectification module and second filtration module
Connection, for being stable DC pulse signal by high-frequency pulse voltage signal output.
Further, the outfan of second filtration module several pulse fluorescent tubes in parallel.
Further, the charging circuit includes:Resistance R1, resistance R2, resistance R3, resistance R4, resistance R5, resistance R6, electricity
Hold C1, electric capacity C2, electric capacity C3, electric capacity C4, electrochemical capacitor C5, electric capacity C6, electric capacity C7, electric capacity C8, electric capacity C9, inductance L1, inductance
L2, inductance L3, inductance L4, inductance L5, inductance L6, inductance L7, bridge rectifier diode D1, light emitting diode D2, diode D3,
Diode D4, diode D5, diode D6, diode D7, diode D8 and N-channel MOS pipe Q1;
One end connection alternating current power supply of the resistance R1, one end of its other end connection electric capacity C1 and one end of inductance L1,
The other end of the inductance L1 connects electric capacity C2, electric capacity C4 and bridge rectifier diode D1 respectively;
One end connection alternating current power supply of inductance L2, its other end connection electric capacity C3, electric capacity C4 and bridge rectifier diode D1,
The other end of the electric capacity C3 is connected with the other end of the electric capacity C2;
One end of inductance L3 connects the bridge rectifier diode D1, the positive pole of electrochemical capacitor C5 and electric capacity C6, inductance L3
The other end connect the drain electrode of N-channel MOS pipe Q1, the source electrode connection resistance R3 of the N-channel MOS pipe Q1, its grid connection electricity
One end of resistance R2, the other end of the resistance R2 connect the positive pole of the light emitting diode D2, and the light emitting diode D2's is negative
Pole connects one end of the other end and electric capacity C7 of the resistance R3, the other end ground connection of the electric capacity C7 respectively;
The other end of the negative pole and electric capacity C6 of the electrochemical capacitor C5 is simultaneously connected on the bridge rectifier diode;
The inductance L4, inductance L5, inductance L6 and inductance L7 are cascaded successively from beginning to end, the other end of the inductance L4
Connect the positive pole of the diode D8, the negative pole of the diode D8 connects the positive pole of the diode D7, the diode D7
Negative pole connect one end of outfan OUT1 and electric capacity C9, the other end of electric capacity C9 connects the electric capacity C8, the diode D5
Negative pole, and the other end of electric capacity C9 is also connected with the connection end of the inductance L4 and inductance L5, and the other end of the electric capacity C8 connects
Meet outfan OUT2;
The connection end of the inductance L4 and inductance L5 connects the positive pole of the diode D6, the negative pole of the diode D6 with
The positive pole connection of the diode D5;
The inductance L5 is connected the other end of electric capacity C8 with the junction of inductance L6, and is grounded;
The inductance L6 is connected the positive pole of the diode D4 with the junction of inductance L7, and its negative pole connects the resistance R4
One end, the resistance R4 the other end connection power supply VCC;
The other end of the inductance L7 connects the positive pole of the diode D3, and its negative pole connects resistance R5, the resistance R5
The other end add 13V voltages.
The inductance L1 and the band core inductance that the inductance L2 is same core;
The inductance L3, the inductance L4, inductance L5, inductance L6 and the band core inductance that inductance L7 is same core;
The source electrode of the N-channel MOS pipe Q1 is connected at the J3 of port, and its grid is connected to port OUT3;
The positive pole of the negative pole, the negative pole of light emitting diode D2 and diode D4 of the electrochemical capacitor C5 connects equipotential voltage.
Further, the power circuit includes resistance R6, resistance R7, resistance R8, electric capacity C10, electrochemical capacitor C11, two poles
Pipe D9 and stabilivolt D10;The resistance R6 and resistance R7 series connection, the resistance R7 the other end connection resistance R8, electric capacity C10 and
The negative pole of diode D9, the other end of the resistance R8 connect positive pole, the negative pole of stabilivolt D10 and the power supply of electrochemical capacitor C11
Another termination of the negative pole of VCC, the electrochemical capacitor C11, the positive pole of stabilivolt D10, the positive pole of diode D9 and electric capacity C10
Ground, the other end of the resistance R6 are connected to port HV.
Further, the oscillating circuit includes resistance R9, resistance R10, resistance R11, resistance R12, resistance R13, resistance
R14, resistance R15, resistance R16, resistance R17, electric capacity C12, electrochemical capacitor C13, electric capacity C14, electric capacity C15, electric capacity C16, vibration
Chip IC 1 and opto-coupler chip IC2;
The vibration chip IC 1 is provided with 8 ports, and its port 1 is connected with the resistance R11, its port 2 and the resistance
R17, resistance R15 connect, and are connected with the other end of the resistance R11, and its port 3 is connected with electric capacity C16 and resistance R14 respectively
Connect, its port 4 is connected with the resistance R13 and electric capacity C15, the other end and the electric capacity of its port 5 and the resistance R13
C14 connects, and its port 6 is connected with the positive pole of the resistance R10, electric capacity C12 and the electrochemical capacitor C13, its port 7 with it is described
Resistance R12 connects, the other end of its port 8 and the electrochemical capacitor C13, electric capacity C12, electric capacity C16, electric capacity C15 and electric capacity C14
Connection;
The resistance R10 is connected with the R9, another termination+300V voltages of the resistance R9;
The other end connectivity port OUT3 of the resistance R12;
The other end connectivity port J3 of the resistance R14;
The other end of the resistance R17 is connected with port HV;
The opto-coupler chip IC2 is provided with 4 ports, and its port 1 is connected with the resistance R16, and the resistance R16's is another
End is connected with port PO WCONT;Its port 2 is grounded;Its port 3 is connected with the other end of the resistance R15, its port 4 and institute
The port 8 for stating vibration chip IC 1 connects.
The beneficial effects of the utility model are:This utility model increased pulse on the premise of drive module is not increased
The quantity of lamp, greatly reduces production and the use cost of pulse lamp apparatus, and this utility model simplifies control module in addition, will
Control is integrated in drive module, simplifies control and the maintenance cost of flashlight, and this utility model adopts multiple flashlights simultaneously
Drive module is connected to after connection, line is greatly reduced so that overall structure is more succinct, it is more convenient and high to use and assemble
Effect.
Description of the drawings
Fig. 1 is integral module structured flowchart of the present utility model.
Fig. 2 is the circuit structure diagram of charging circuit.
Fig. 3 is the circuit structure diagram of power circuit.
Fig. 4 is the circuit structure diagram of oscillating circuit.
In figure:011- charging circuits, 012- oscillating circuits, 013- power circuits;021- pulse fluorescent tube modules;
The first filtration modules of 0111-, the first rectification modules of 0112-, 0113- voltage changing modules, the second rectification modules of 0114-,
The second filtration modules of 0115-.
Specific embodiment
Below in conjunction with accompanying drawing, this utility model is described further.
As shown in figure 1, this programme includes charging circuit 011, oscillating circuit 012 and power circuit 013;Wherein, charge electricity
Road 011 includes the first filtration module 0111, the first rectification module 0112, voltage changing module 0113, the second rectification module 0114 and
Two filtration modules 0115;
Be by the alternating current power supply of 220V after the filter rectification of the first filtration module 0111 and the first rectification module 0112,
Export a stable direct current signal;The direct current signal passes through the collective effect of power circuit 013 and oscillating circuit 012, output again
One high-frequency pulse voltage signal, then the pulse voltage signal of boosting one high voltagehigh frequency of generation through voltage changing module 0113, the height
The pulse voltage signal of frequency high pressure sequentially passes through the rectification and filtering of the second rectification module 0114 and the second filtration module 0115 again
Effect, one stable DC pulse signal of final output are loaded onto the two ends of pulse fluorescent tube module 021, the flashlight pipe die
Block 021 is formed in parallel by several pulse fluorescent tubes.
Wherein, charging circuit particular circuit configurations as shown in Fig. 2 including:Resistance R1, resistance R2, resistance R3, resistance
R4, resistance R5, resistance R6, electric capacity C1, electric capacity C2, electric capacity C3, electric capacity C4, electrochemical capacitor C5, electric capacity C6, electric capacity C7, electric capacity C8,
It is electric capacity C9, inductance L1, inductance L2, inductance L3, inductance L4, inductance L5, inductance L6, inductance L7, bridge rectifier diode D1, luminous
Diode D2, diode D3, diode D4, diode D5, diode D6, diode D7, diode D8 and N-channel MOS pipe Q1;
One end connection alternating current power supply of the resistance R1, one end of its other end connection electric capacity C1 and one end of inductance L1,
The other end of the inductance L1 connects electric capacity C2, electric capacity C4 and bridge rectifier diode D1 respectively;
One end connection alternating current power supply of inductance L2, its other end connection electric capacity C3, electric capacity C4 and bridge rectifier diode D1,
The other end of the electric capacity C3 is connected with the other end of the electric capacity C2;
One end of inductance L3 connects the bridge rectifier diode D1, the positive pole of electrochemical capacitor C5 and electric capacity C6, inductance L3
The other end connect the drain electrode of N-channel MOS pipe Q1, the source electrode connection resistance R3 of the N-channel MOS pipe Q1, its grid connection electricity
One end of resistance R2, the other end of the resistance R2 connect the positive pole of the light emitting diode D2, and the light emitting diode D2's is negative
Pole connects one end of the other end and electric capacity C7 of the resistance R3, the other end ground connection of the electric capacity C7 respectively;
The other end of the negative pole and electric capacity C6 of the electrochemical capacitor C5 is simultaneously connected on the bridge rectifier diode;
The inductance L4, inductance L5, inductance L6 and inductance L7 are cascaded successively from beginning to end, the other end of the inductance L4
Connect the positive pole of the diode D8, the negative pole of the diode D8 connects the positive pole of the diode D7, the diode D7
Negative pole connect one end of outfan OUT1 and electric capacity C9, the other end of electric capacity C9 connects the electric capacity C8, the diode D5
Negative pole, and the other end of electric capacity C9 is also connected with the connection end of the inductance L4 and inductance L5, and the other end of the electric capacity C8 connects
Meet outfan OUT2;
The connection end of the inductance L4 and inductance L5 connects the positive pole of the diode D6, the negative pole of the diode D6 with
The positive pole connection of the diode D5;
The inductance L5 is connected the other end of electric capacity C8 with the junction of inductance L6, and is grounded;
The inductance L6 is connected the positive pole of the diode D4 with the junction of inductance L7, and its negative pole connects the resistance R4
One end, the resistance R4 the other end connection power supply VCC;
The other end of the inductance L7 connects the positive pole of the diode D3, and its negative pole connects resistance R5, the resistance R5
The other end add 13V voltages.
The inductance L1 and the band core inductance that the inductance L2 is same core;
The inductance L3, the inductance L4, inductance L5, inductance L6 and the band core inductance that inductance L7 is same core;
The source electrode of the N-channel MOS pipe Q1 is connected at the J3 of port, and its grid is connected to port OUT3;
The positive pole of the negative pole, the negative pole of light emitting diode D2 and diode D4 of the electrochemical capacitor C5 connects equipotential voltage.
The particular circuit configurations of power circuit are as shown in figure 3, including resistance R6, resistance R7, resistance R8, electric capacity C10, electrolysis
Electric capacity C11, diode D9 and stabilivolt D10;The resistance R6 and resistance R7 series connection, the other end connection resistance of the resistance R7
The negative pole of R8, electric capacity C10 and diode D9, the positive pole of the other end connection electrochemical capacitor C11 of the resistance R8, stabilivolt D10
Negative pole and the negative pole of power supply VCC, the electrochemical capacitor C11, the positive pole of stabilivolt D10, the positive pole of diode D9 and electric capacity C10
Other end ground connection, the other end of the resistance R6 is connected to port HV.
The particular circuit configurations of oscillating circuit are as shown in figure 4, including resistance R9, resistance R10, resistance R11, resistance R12, electricity
Resistance R13, resistance R14, resistance R15, resistance R16, resistance R17, electric capacity C12, electrochemical capacitor C13, electric capacity C14, electric capacity C15, electricity
Hold C16, vibration chip IC 1 and opto-coupler chip IC2;
The vibration chip IC 1 is provided with 8 ports, and its port 1 is connected with the resistance R11, its port 2 and the resistance
R17, resistance R15 connect, and are connected with the other end of the R11, and its port 3 is connected with electric capacity C16 and resistance R14 respectively, its
Port 4 is connected with the resistance R13 and electric capacity C15, and its port 5 is connected with the other end and the electric capacity C14 of the resistance R13
Connect, its port 6 is connected with the positive pole of the resistance R10, electric capacity C12 and the electrochemical capacitor C13, its port 7 and the resistance
R12 connects, and its port 8 is connected with the other end of the electrochemical capacitor C13, electric capacity C12, electric capacity C16, electric capacity C15 and electric capacity C14
Connect;
The resistance R10 is connected with the R9, another termination+300V voltages of the resistance R9;
The other end connectivity port OUT3 of the resistance R12;
The other end connectivity port J3 of the resistance R14;
The other end of the resistance R17 is connected with port HV;
The opto-coupler chip IC2 is provided with 4 ports, and its port 1 is connected with the resistance R16, and the resistance R16's is another
End is connected with port PO WCONT;Its port 2 is grounded;Its port 3 is connected with the other end of the resistance R15, its port 4 and institute
The port 8 for stating vibration chip IC 1 connects.
Ultimate principle of the present utility model and principal character and advantage of the present utility model has been shown and described above.One's own profession
The technical staff of industry it should be appreciated that this utility model is not restricted to the described embodiments, described in above-described embodiment and description
Simply illustrate principle of the present utility model, without departing from the spirit and scope of the present invention, this utility model also has
Various changes and modifications, these changes and improvements are both fallen within the range of claimed this utility model.This utility model is required
Protection domain is by appending claims and its equivalent thereof.
Claims (5)
1. a kind of single module drive circuit of multiple flashlights, it is characterised in that including charging circuit, oscillating circuit and power supply electricity
Road;The charging circuit includes:First filtration module, the first rectification module, voltage changing module, the second rectification module and the second filtering
Module;
The input ac power connection of first filtration module, the output of first filtration module and the first rectification mould
The input connection of block, for exporting a stable direct current signal;
The output of first rectification module is connected with the power circuit, and the power circuit is connected with the oscillating circuit,
The oscillating circuit is connected with the voltage changing module, for producing vibration, the direct current signal is changed into high-frequency pulse voltage
Signal;
The voltage changing module is connected with second rectification module, and second rectification module is connected with second filtration module
Connect, for being stable DC pulse signal by high-frequency pulse voltage signal output.
2. the single module drive circuit of multiple flashlights as claimed in claim 1, it is characterised in that second filtration module
Outfan parallel connection several pulse fluorescent tubes.
3. the single module drive circuit of multiple flashlights as claimed in claim 1, it is characterised in that the charging circuit bag
Include:Resistance R1, resistance R2, resistance R3, resistance R4, resistance R5, resistance R6, electric capacity C1, electric capacity C2, electric capacity C3, electric capacity C4, electrolysis
Electric capacity C5, electric capacity C6, electric capacity C7, electric capacity C8, electric capacity C9, inductance L1, inductance L2, inductance L3, inductance L4, inductance L5, inductance L6,
Inductance L7, bridge rectifier diode D1, light emitting diode D2, diode D3, diode D4, diode D5, diode D6, two poles
Pipe D7, diode D8 and N-channel MOS pipe Q1;
One end connection alternating current power supply of the resistance R1, one end of its other end connection electric capacity C1 and one end of inductance L1, it is described
The other end of inductance L1 connects electric capacity C2, electric capacity C4 and bridge rectifier diode D1 respectively;
One end connection alternating current power supply of inductance L2, its other end connection electric capacity C3, electric capacity C4 and bridge rectifier diode D1 are described
The other end of electric capacity C3 is connected with the other end of the electric capacity C2;
One end of inductance L3 connects the bridge rectifier diode D1, the positive pole of electrochemical capacitor C5 and electric capacity C6, and inductance L3's is another
One end connects the drain electrode of N-channel MOS pipe Q1, and the source electrode connection resistance R3 of the N-channel MOS pipe Q1, its grid connect resistance R2
One end, the other end of the resistance R2 connects the positive pole of the light emitting diode D2, the negative pole point of the light emitting diode D2
Do not connect one end of the other end and electric capacity C7 of the resistance R3, the other end ground connection of the electric capacity C7;
The other end of the negative pole and electric capacity C6 of the electrochemical capacitor C5 is simultaneously connected on the bridge rectifier diode;
The inductance L4, inductance L5, inductance L6 and inductance L7 are cascaded successively from beginning to end, the other end connection of the inductance L4
The positive pole of the diode D8, the negative pole of the diode D8 connect the positive pole of the diode D7, and the diode D7's is negative
Pole connects one end of outfan OUT1 and electric capacity C9, the other end of electric capacity C9 connect the electric capacity C8, the diode D5 it is negative
Pole, and the other end of electric capacity C9 is also connected with the connection end of the inductance L4 and inductance L5, the other end connection of the electric capacity C8 is defeated
Go out to hold OUT2;
The connection end of the inductance L4 and inductance L5 connects the positive pole of the diode D6, the negative pole of the diode D6 with it is described
The positive pole connection of diode D5;
The inductance L5 is connected the other end of electric capacity C8 with the junction of inductance L6, and is grounded;
The inductance L6 is connected the positive pole of the diode D4 with the junction of inductance L7, and its negative pole connects the one of the resistance R4
End, the other end connection power supply VCC of the resistance R4;
The other end of the inductance L7 connects the positive pole of the diode D3, and its negative pole connects resistance R5, and the resistance R5's is another
One end adds 13V voltages;
The inductance L1 and the band core inductance that the inductance L2 is same core;
The inductance L3, the inductance L4, inductance L5, inductance L6 and the band core inductance that inductance L7 is same core;
The source electrode of the N-channel MOS pipe Q1 is connected at the J3 of port, and its grid is connected to port OUT3;
The positive pole of the negative pole, the negative pole of light emitting diode D2 and diode D4 of the electrochemical capacitor C5 connects equipotential voltage.
4. the single module drive circuit of multiple flashlights as claimed in claim 1, it is characterised in that the power circuit includes
Resistance R6, resistance R7, resistance R8, electric capacity C10, electrochemical capacitor C11, diode D9 and stabilivolt D10;The resistance R6 and resistance
R7 connects, the other end connection resistance R8 of the resistance R7, the negative pole of electric capacity C10 and diode D9, and the resistance R8's is another
End connects positive pole, the negative pole of stabilivolt D10 and the power supply VCC of electrochemical capacitor C11, the negative pole of the electrochemical capacitor C11, stabilivolt
The other end ground connection of the positive pole, the positive pole of diode D9 and electric capacity C10 of D10, the other end of the resistance R6 are connected to port HV.
5. the single module drive circuit of multiple flashlights as claimed in claim 1, it is characterised in that the oscillating circuit includes
Resistance R9, resistance R10, resistance R11, resistance R12, resistance R13, resistance R14, resistance R15, resistance R16, resistance R17, electric capacity
C12, electrochemical capacitor C13, electric capacity C14, electric capacity C15, electric capacity C16, vibration chip IC 1 and opto-coupler chip IC2;
The vibration chip IC 1 is provided with 8 ports, and its port 1 is connected with the resistance R11, its port 2 and the resistance R17,
Resistance R15 connects, and is connected with the other end of the resistance R11, and its port 3 is connected with electric capacity C16 and resistance R14 respectively, its
Port 4 is connected with the resistance R13 and electric capacity C15, and its port 5 is connected with the other end and the electric capacity C14 of the resistance R13
Connect, its port 6 is connected with the positive pole of the resistance R10, electric capacity C12 and the electrochemical capacitor C13, its port 7 and the resistance
R12 connects, and its port 8 is connected with the other end of the electrochemical capacitor C13, electric capacity C12, electric capacity C16, electric capacity C15 and electric capacity C14
Connect;
The resistance R10 is connected with the R9, another termination+300V voltages of the resistance R9;
The other end connectivity port OUT3 of the resistance R12;
The other end connectivity port J3 of the resistance R14;
The other end connectivity port HV of the resistance R17;
The opto-coupler chip IC2 is provided with 4 ports, and its port 1 is connected with the resistance R16, the other end of the resistance R16 with
Port PO WCONT connects;Its port 2 is grounded;Its port 3 is connected with the other end of the resistance R15, and its port 4 is shaken with described
The port 8 for swinging chip IC 1 connects.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620770506.5U CN206100585U (en) | 2016-07-20 | 2016-07-20 | Single modular dirve circuit of a plurality of pulse modulations |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620770506.5U CN206100585U (en) | 2016-07-20 | 2016-07-20 | Single modular dirve circuit of a plurality of pulse modulations |
Publications (1)
Publication Number | Publication Date |
---|---|
CN206100585U true CN206100585U (en) | 2017-04-12 |
Family
ID=58466608
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201620770506.5U Expired - Fee Related CN206100585U (en) | 2016-07-20 | 2016-07-20 | Single modular dirve circuit of a plurality of pulse modulations |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN206100585U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106028608A (en) * | 2016-07-20 | 2016-10-12 | 常州市兰诺光电科技有限公司 | A single-module driving circuit for a plurality of pulse lamps |
-
2016
- 2016-07-20 CN CN201620770506.5U patent/CN206100585U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106028608A (en) * | 2016-07-20 | 2016-10-12 | 常州市兰诺光电科技有限公司 | A single-module driving circuit for a plurality of pulse lamps |
CN106028608B (en) * | 2016-07-20 | 2018-10-26 | 常州市兰诺光电科技有限公司 | The single module driving circuit of multiple flashlights |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN106374770A (en) | Input and output common-ground boost-buck photovoltaic grid-connected inverter and control method thereof | |
CN201199869Y (en) | Grid system self-rotation device for clearing and eradicating insect | |
CN105744678B (en) | Electrochemical capacitor LED driver is gone based on PWM duty cycle control strategy | |
CN205320350U (en) | LED (Light emitting diode) driving power | |
CN206100585U (en) | Single modular dirve circuit of a plurality of pulse modulations | |
CN109068444A (en) | A kind of single-stage non-isolation type valley fill type no electrolytic capacitor LED drive power and switching method | |
CN103220856B (en) | Self-adapting light emitting diode (LED) driving power circuit | |
CN106028608B (en) | The single module driving circuit of multiple flashlights | |
CN101873746B (en) | Constant current source driving circuit for medium and high power LED lamps | |
CN106061086B (en) | A kind of pulse strong-light device of more fluorescent tube sequential illuminations | |
CN205902181U (en) | Pulse highlight device that many fluorescent tubes were lighted in proper order | |
CN204795697U (en) | No ripple led lamp power supply circuit | |
CN208989209U (en) | The control circuit of wireless charging type electric toothbrush | |
CN207460560U (en) | A kind of LED constant current driving power | |
CN204130906U (en) | A kind of negative ion generating device of LC oscillating circuit regulation and control | |
CN209627763U (en) | A kind of intelligent LED lamp circuit | |
CN2143405Y (en) | Electronic mosquito and fly killing lamp | |
CN207201032U (en) | A kind of half-bridge Resonant tube isolated drive circuit for LED | |
CN203951638U (en) | A kind of circuit of LED lamp driver | |
CN204859676U (en) | LED drive arrangement | |
CN204795774U (en) | A light circuit for electric power overhauld night | |
CN204539566U (en) | A kind of New LED driving power | |
CN106793274A (en) | LED driver without electrolytic capacitors based on electric capacity series parallel structure | |
CN201682677U (en) | HID lamp electronic ballast applicable to solar energy lighting system | |
CN207939412U (en) | A kind of special stability and high efficiency DC electronic rectifier circuit of solar insect-killing light |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170412 Termination date: 20200720 |