CN204425734U - A kind of LED lamp circuit control device - Google Patents
A kind of LED lamp circuit control device Download PDFInfo
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- CN204425734U CN204425734U CN201520111235.8U CN201520111235U CN204425734U CN 204425734 U CN204425734 U CN 204425734U CN 201520111235 U CN201520111235 U CN 201520111235U CN 204425734 U CN204425734 U CN 204425734U
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- module
- resistance
- controlled switch
- npn triode
- led light
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B20/00—Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
- Y02B20/40—Control techniques providing energy savings, e.g. smart controller or presence detection
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Abstract
The utility model discloses a kind of LED lamp circuit control device, include AC/DC power module, manual power switch, first LED light module, second LED light module, first controlled switch module, second controlled switch module, for detecting the break-make number of times detection module of described manual power switch switch on and off number of times within the unit interval, and for controlling the control module of described first controlled switch module on/off and described second controlled switch module on/off respectively according to break-make number of times detection module testing result, described break-make number of times detection module detection signal output is connected with described control module detection signal input, described first controlled switch module control signal input, described second controlled switch module control signal input is connected with described control module respectively.This case structure is simple and easy to realize, and control is convenient and flexible.
Description
[technical field]
The utility model relates to a kind of LED lamp circuit control device.
[background technology]
At present, existing illuminating lamp control device function is simple, usually only has the function controlling illuminating lamp and open and close, and a mains switch can only control an illumination light-emitting module or the action simultaneously of multiple illumination light-emitting module, and it is not easy to actual application.
Therefore, be necessary to solve as above problem.
[utility model content]
The utility model overcomes the deficiency of above-mentioned technology, provides a kind of LED lamp circuit control device, and its structure is simple and easy to realize, and manually mains switch just can control two LED light module and works respectively, and its practicality is good.
For achieving the above object, the utility model have employed following technical proposal:
A kind of LED lamp circuit control device, include AC/DC power module 10, the manual power switch 20 of alternating current is connected for controlling described AC/DC power module 10, first LED light module 30, second LED light module 40, for controlling the first controlled switch module 50 that described first LED light module 30 turns on/off with described AC/DC power module 10, for controlling the second controlled switch module 60 that described second LED light module 40 turns on/off with described AC/DC power module 10, for detecting the break-make number of times detection module 70 of described manual power switch 20 switch on and off number of times within the unit interval, and for controlling the control module 80 that described first controlled switch module 50 turns on/off and described second controlled switch module 60 turns on/off respectively according to break-make number of times detection module 70 testing result, described break-make number of times detection module 70 detection signal output is connected with described control module 80 detection signal input, described first controlled switch module 50 control signal input, described second controlled switch module 60 control signal input is connected with described control module 80 respectively.
A kind of LED lamp circuit control device as above, described first LED light module 30 positive source input, described second LED light module 40 positive source input is all connected with described AC/DC power module 10 positive source output, described first LED light module 30 power cathode input is connected with described AC/DC power module 10 power cathode output by described first controlled switch module 50, described second LED light module 40 power cathode input is connected with described AC/DC power module 10 power cathode output by described second controlled switch module 60.
A kind of LED lamp circuit control device as above, described first controlled switch module 50 includes resistance R12 ~ R15, NPN triode Q4, NPN triode Q5, PNP triode Q6, and NMOS tube J1, be connected with a control signal output of described control module 80 as the control signal input of described first controlled switch module 50 after described resistance R13 one end is connected with described resistance R14 one end, the described resistance R14 other end is connected with the base stage of described NPN triode Q5, the grounded emitter of described NPN triode Q5, the described resistance R13 other end is connected with the emitter of described NPN triode Q4, the base stage of NPN triode Q4 meets voltage 3.3V, the collector electrode of NPN triode Q4 and described resistance R15 one end, the base stage of PNP triode Q6 is connected, the described resistance R15 other end is connected with the emitter of PNP triode Q6, the collector electrode of PNP triode Q6 is connected with described resistance R12 one end, the collector electrode of the resistance R12 other end and described NPN triode Q5, the grid of described NMOS tube J1 is connected, the drain electrode of NMOS tube J1 is connected with the power cathode input of described first LED light module 30, the source electrode of NMOS tube J1 is connected with described AC/DC power module 10 power cathode output.
A kind of LED lamp circuit control device as above, described second controlled switch module 60 includes resistance R8 ~ R11, NPN triode Q1, NPN triode Q2, PNP triode Q3, and NMOS tube J2, be connected with a control signal output of described control module 80 as the control signal input of described second controlled switch module 60 after described resistance R9 one end is connected with described resistance R10 one end, the described resistance R9 other end is connected with the base stage of described NPN triode Q2, the grounded emitter of described NPN triode Q2, the described resistance R10 other end is connected with the emitter of described NPN triode Q1, the base stage of NPN triode Q1 meets voltage 3.3V, the collector electrode of NPN triode Q1 and described resistance R11 one end, the base stage of described PNP triode Q3 is connected mutually, voltage 12V is met after the described resistance R11 other end is connected with the emitter of described PNP triode Q3, the collector electrode of described PNP triode Q3 is connected with described resistance R8 one end, the described resistance R8 other end and described NPN triode Q2 collector electrode, the grid of described NMOS tube J2 is connected, the drain electrode of described NMOS tube J2 is connected with described second LED light module 40 power cathode input, the source electrode of described NMOS tube J2 is connected with described AC/DC power module 10 power cathode output.
A kind of LED lamp circuit control device as above, described break-make number of times detection module 70 includes resistance R3, resistance R4, resistance R16, and electric capacity C4, described resistance R3 one end is connected with described AC/DC power module 10 1 alternating current input as described break-make number of times detection module 70 detection signal input, the described resistance R3 other end is connected with described resistance R4 one end, the described resistance R4 other end and described resistance R16 one end, be connected with described control module 80 detection signal input as described break-make number of times detection module 70 detection signal output after described electric capacity C4 one end is connected, ground connection after the described resistance R16 other end is connected with the described electric capacity C4 other end.
A kind of LED lamp circuit control device as above, described control module 80 adopts high-speed microprocessor detection control circuit.
A kind of LED lamp circuit control device as above, the glow color of described first LED light module 30 is different from the glow color of described second LED light module 40.
Compared with prior art, the beneficial effects of the utility model are:
1, this case structure is simple and easy to realize, by arranging the break-make number of times detection module for detecting manual power switch switch on and off number of times within the unit interval on AC/DC power module 10 input, be convenient to control module controls described first controlled switch module, described second controlled switch module respectively work according to break-make number of times detection module testing result, its control is convenient and flexible.
2, described first LED light module positive source input, described second LED light module positive source input are all connected with described AC/DC power module positive source output, described first LED light module power cathode input is connected with described AC/DC power module power cathode output by described first controlled switch module, described second LED light module power cathode input is connected with described AC/DC power module power cathode output by described second controlled switch module, is convenient to actual use.
3, control module adopts high-speed microprocessor, is convenient to improve the accuracy being detected manual power switch switch on and off number of times within the unit interval by break-make number of times detection module.
[accompanying drawing explanation]
Fig. 1 is structured flowchart of the present utility model.
Fig. 2 is one of circuit diagram of the present utility model.
Fig. 3 is the first controlled switch module circuit diagram of the present utility model.
Fig. 4 is the second controlled switch module circuit diagram of the present utility model.
[embodiment]
The utility model feature and other correlated characteristic are described in further detail by embodiment below in conjunction with accompanying drawing, so that the understanding of technical staff of the same trade:
As shown in Figure 1, a kind of LED lamp circuit control device, include AC/DC power module 10, the manual power switch 20 of alternating current is connected for controlling described AC/DC power module 10, first LED light module 30, second LED light module 40, for controlling the first controlled switch module 50 that described first LED light module 30 turns on/off with described AC/DC power module 10, for controlling the second controlled switch module 60 that described second LED light module 40 turns on/off with described AC/DC power module 10, for detecting the break-make number of times detection module 70 of described manual power switch 20 switch on and off number of times within the unit interval, and for controlling the control module 80 that described first controlled switch module 50 turns on/off and described second controlled switch module 60 turns on/off respectively according to break-make number of times detection module 70 testing result, described break-make number of times detection module 70 detection signal output is connected with described control module 80 detection signal input, described first controlled switch module 50 control signal input, described second controlled switch module 60 control signal input is connected with described control module 80 respectively.
A kind of LED lamp circuit control device as above, described first LED light module 30 positive source input, described second LED light module 40 positive source input is all connected with described AC/DC power module 10 positive source output, described first LED light module 30 power cathode input is connected with described AC/DC power module 10 power cathode output by described first controlled switch module 50, described second LED light module 40 power cathode input is connected with described AC/DC power module 10 power cathode output by described second controlled switch module 60.
A kind of LED lamp circuit control device as above, described first controlled switch module 50 includes resistance R12 ~ R15, NPN triode Q4, NPN triode Q5, PNP triode Q6, and NMOS tube J1, be connected with a control signal output of described control module 80 as the control signal input of described first controlled switch module 50 after described resistance R13 one end is connected with described resistance R14 one end, the described resistance R14 other end is connected with the base stage of described NPN triode Q5, the grounded emitter of described NPN triode Q5, the described resistance R13 other end is connected with the emitter of described NPN triode Q4, the base stage of NPN triode Q4 meets voltage 3.3V, the collector electrode of NPN triode Q4 and described resistance R15 one end, the base stage of PNP triode Q6 is connected, the described resistance R15 other end is connected with the emitter of PNP triode Q6, the collector electrode of PNP triode Q6 is connected with described resistance R12 one end, the collector electrode of the resistance R12 other end and described NPN triode Q5, the grid of described NMOS tube J1 is connected, the drain electrode of NMOS tube J1 is connected with the power cathode input of described first LED light module 30, the source electrode of NMOS tube J1 is connected with described AC/DC power module 10 power cathode output.
A kind of LED lamp circuit control device as above, described second controlled switch module 60 includes resistance R8 ~ R11, NPN triode Q1, NPN triode Q2, PNP triode Q3, and NMOS tube J2, be connected with a control signal output of described control module 80 as the control signal input of described second controlled switch module 60 after described resistance R9 one end is connected with described resistance R10 one end, the described resistance R9 other end is connected with the base stage of described NPN triode Q2, the grounded emitter of described NPN triode Q2, the described resistance R10 other end is connected with the emitter of described NPN triode Q1, the base stage of NPN triode Q1 meets voltage 3.3V, the collector electrode of NPN triode Q1 and described resistance R11 one end, the base stage of described PNP triode Q3 is connected mutually, voltage 12V is met after the described resistance R11 other end is connected with the emitter of described PNP triode Q3, the collector electrode of described PNP triode Q3 is connected with described resistance R8 one end, the described resistance R8 other end and described NPN triode Q2 collector electrode, the grid of described NMOS tube J2 is connected, the drain electrode of described NMOS tube J2 is connected with described second LED light module 40 power cathode input, the source electrode of described NMOS tube J2 is connected with described AC/DC power module 10 power cathode output.
A kind of LED lamp circuit control device as above, described break-make number of times detection module 70 includes resistance R3, resistance R4, resistance R16, and electric capacity C4, described resistance R3 one end is connected with described AC/DC power module 10 1 alternating current input as described break-make number of times detection module 70 detection signal input, the described resistance R3 other end is connected with described resistance R4 one end, the described resistance R4 other end and described resistance R16 one end, be connected with described control module 80 detection signal input as described break-make number of times detection module 70 detection signal output after described electric capacity C4 one end is connected, ground connection after the described resistance R16 other end is connected with the described electric capacity C4 other end.
A kind of LED lamp circuit control device as above, described control module 80 adopts high-speed microprocessor detection control circuit.
Described a kind of LED lamp circuit control device, the glow color of described first LED light module 30 is different from the glow color of described second LED light module 40.
As mentioned above, during work, user manually mains switch 20 controls described AC/DC power module 10 and whether connects alternating current, described break-make number of times detection module 70 detects the switch on and off number of times of described manual power switch 20 in the unit interval, described control module 80 controls described first controlled switch module 50 on/off respectively according to break-make number of times detection module 70 testing result and described second controlled switch module 60 turns on/off, such as, under initial condition, when connecting described manual power switch 20, described control module 80 controls described first controlled switch module 50 and connects, first LED light module 30 carries out luminous lighting, when in 3 seconds during continuous switch twice, described control module 80 controls described first controlled switch module 50 and disconnects and control described second controlled switch module 60 and connect, described first LED light module 30 extinguishing and described second LED light module 40 is made to carry out luminous lighting, and when switch continuous in 3 seconds three times, described control module 80 controls described first controlled switch module 50 and described second controlled switch module 60 and all connects and carry out luminous lighting.
As mentioned above, in actual use, in described control module 80, high-speed microprocessor carries out power-fail memory function, automatically data before preservation power-off, so that better control, its practicality is good.
As mentioned above, what this case was protected is a kind of LED lamp circuit control device, and all identical with this case structure or close with this case embodiment technical schemes all should be shown for falling in the protection range of this case.
Claims (7)
1. a LED lamp circuit control device, it is characterized in that including AC/DC power module (10), the manual power switch (20) of alternating current is connected for controlling described AC/DC power module (10), first LED light module (30), second LED light module (40), for controlling the first controlled switch module (50) that described first LED light module (30) and described AC/DC power module (10) turn on/off, for controlling the second controlled switch module (60) that described second LED light module (40) and described AC/DC power module (10) turn on/off, for detecting the break-make number of times detection module (70) of described manual power switch (20) switch on and off number of times within the unit interval, and for controlling the control module (80) that described first controlled switch module (50) turns on/off and described second controlled switch module (60) turns on/off respectively according to break-make number of times detection module (70) testing result, described break-make number of times detection module (70) detection signal output is connected with described control module (80) detection signal input, described first controlled switch module (50) control signal input, described second controlled switch module (60) control signal input is connected with described control module (80) respectively.
2. a kind of LED lamp circuit control device according to claim 1, it is characterized in that described first LED light module (30) positive source input, described second LED light module (40) positive source input is all connected with described AC/DC power module (10) positive source output, described first LED light module (30) power cathode input is connected with described AC/DC power module (10) power cathode output by described first controlled switch module (50), described second LED light module (40) power cathode input is connected with described AC/DC power module (10) power cathode output by described second controlled switch module (60).
3. a kind of LED lamp circuit control device according to claim 2, it is characterized in that described first controlled switch module (50) includes resistance R12 ~ R15, NPN triode Q4, NPN triode Q5, PNP triode Q6, and NMOS tube J1, be connected with a control signal output of described control module (80) as the described control signal input of the first controlled switch module (50) after described resistance R13 one end is connected with described resistance R14 one end, the described resistance R14 other end is connected with the base stage of described NPN triode Q5, the grounded emitter of described NPN triode Q5, the described resistance R13 other end is connected with the emitter of described NPN triode Q4, the base stage of NPN triode Q4 meets voltage 3.3V, the collector electrode of NPN triode Q4 and described resistance R15 one end, the base stage of PNP triode Q6 is connected, the described resistance R15 other end is connected with the emitter of PNP triode Q6, the collector electrode of PNP triode Q6 is connected with described resistance R12 one end, the collector electrode of the resistance R12 other end and described NPN triode Q5, the grid of described NMOS tube J1 is connected, the drain electrode of NMOS tube J1 is connected with the power cathode input of described first LED light module (30), the source electrode of NMOS tube J1 is connected with described AC/DC power module (10) power cathode output.
4. a kind of LED lamp circuit control device according to claim 2, it is characterized in that described second controlled switch module (60) includes resistance R8 ~ R11, NPN triode Q1, NPN triode Q2, PNP triode Q3, and NMOS tube J2, be connected with a control signal output of described control module (80) as the described control signal input of the second controlled switch module (60) after described resistance R9 one end is connected with described resistance R10 one end, the described resistance R9 other end is connected with the base stage of described NPN triode Q2, the grounded emitter of described NPN triode Q2, the described resistance R10 other end is connected with the emitter of described NPN triode Q1, the base stage of NPN triode Q1 meets voltage 3.3V, the collector electrode of NPN triode Q1 and described resistance R11 one end, the base stage of described PNP triode Q3 is connected mutually, voltage 12V is met after the described resistance R11 other end is connected with the emitter of described PNP triode Q3, the collector electrode of described PNP triode Q3 is connected with described resistance R8 one end, the described resistance R8 other end and described NPN triode Q2 collector electrode, the grid of described NMOS tube J2 is connected, the drain electrode of described NMOS tube J2 is connected with described second LED light module (40) power cathode input, the source electrode of described NMOS tube J2 is connected with described AC/DC power module (10) power cathode output.
5. a kind of LED lamp circuit control device according to claim 1, it is characterized in that described break-make number of times detection module (70) includes resistance R3, resistance R4, resistance R16, and electric capacity C4, described resistance R3 one end is connected with described AC/DC power module (10) alternating current input as described break-make number of times detection module (70) detection signal input, the described resistance R3 other end is connected with described resistance R4 one end, the described resistance R4 other end and described resistance R16 one end, be connected with described control module (80) detection signal input as described break-make number of times detection module (70) detection signal output after described electric capacity C4 one end is connected, ground connection after the described resistance R16 other end is connected with the described electric capacity C4 other end.
6. a kind of LED lamp circuit control device according to claim 1-5 any one, is characterized in that described control module (80) adopts high-speed microprocessor detection control circuit.
7. a kind of LED lamp circuit control device according to claim 1-5 any one, is characterized in that the glow color of described first LED light module (30) is different from the glow color of described second LED light module (40).
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CN201520111235.8U CN204425734U (en) | 2015-02-13 | 2015-02-13 | A kind of LED lamp circuit control device |
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CN201520111235.8U CN204425734U (en) | 2015-02-13 | 2015-02-13 | A kind of LED lamp circuit control device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109315051A (en) * | 2016-03-11 | 2019-02-05 | 微通香港有限公司 | Configurable lighting system and method |
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2015
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109315051A (en) * | 2016-03-11 | 2019-02-05 | 微通香港有限公司 | Configurable lighting system and method |
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Legal Events
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C56 | Change in the name or address of the patentee | ||
CP03 | Change of name, title or address |
Address after: Huayuan road 528400 in Guangdong province Zhongshan City Xiaolan Town, No. 20 Patentee after: GUANGDONG OML TECHNOLOGY CO., LTD. Address before: Longshan Industrial Park in Guangdong Province, Zhongshan City Xiaolan Town, 528400 Patentee before: Zhongshan Ouman Technology Lighting Co.,Ltd. |
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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: 20150624 Termination date: 20200213 |