CN201372952Y - Wireless stepless modulation controller - Google Patents

Wireless stepless modulation controller Download PDF

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Publication number
CN201372952Y
CN201372952Y CN200920130398U CN200920130398U CN201372952Y CN 201372952 Y CN201372952 Y CN 201372952Y CN 200920130398 U CN200920130398 U CN 200920130398U CN 200920130398 U CN200920130398 U CN 200920130398U CN 201372952 Y CN201372952 Y CN 201372952Y
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China
Prior art keywords
fan
coupled
control
utmost point
bidirectional triode
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Expired - Fee Related
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CN200920130398U
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Chinese (zh)
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涂柏生
高丽明
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SHENZHEN BOJUXING INDUSTRIAL DEVELOPMENT Co Ltd
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SHENZHEN BOJUXING INDUSTRIAL DEVELOPMENT Co Ltd
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Abstract

The utility model relates to a wireless stepless modulation controller, which is used for controlling an illuminating lamp and a fan simultaneously and comprises a receiving controller and an external remote controller, wherein the external remote controller is used for sending control instructions to the receiving controller, and the receiving controller alternatively controls operation of the fan or brightness of the illuminating lamp according to the control instructions. Compared with the conventional fan control, the wireless stepless modulation controller utilizing the wireless remote control technique to control the fan is more convenient and faster in use. By combining control devices of the fan and the illuminating lamp, the wireless stepless modulation controller realizes dual-purpose, increases utilization rate, has wide application range, convenient use, simple operation and small volume and has functions of speed regulation, dimming, remote control and the like. By utilizing the remote controller to control, the wireless stepless modulation controller is isolated from high voltage totally, greatly increases safety coefficient and has more convenient use compared with a mechanical switch. Further, the wireless stepless modulation controller is convenient in use, beautiful in installation, high in market demands and low in cost.

Description

A kind of wireless stepless modulation controller
Technical field
The utility model relates to controller, more particularly, relates to a kind of wireless stepless modulation controller.
Background technique
Ceiling fan is divided into industrial ceiling fan and decorates ceiling fan (being called Lamp with ceiling fan abroad), and what domestic most families and factory the inside were used all is industrial ceiling fan.The industry ceiling fan be main status at home, decorate ceiling fan mainly abroad (mainly be the U.S., U.S. government's suggestion is installed ceiling fan at air-conditioned room) as a kind of ancillary apparatus use of air-conditioning.It is beautiful to decorate the ceiling fan outward appearance, often is furnished with the fan blade and the lamp decoration of the different styles of different colours, generally uses a teleswitch.It is low to decorate ceiling fan rotating ratio traditional industry ceiling fan in the use, and air quantity is little, but clockwise and anticlockwise, and its effect mainly is in order to regulate air flows.According to external, in air-conditioned room, use and decorate ceiling fan than not using the energy-conservation 15%-35% of ceiling fan.At present, the Drawing switch circuit arrangement of control ceiling fan and lamp brightness only can select to adjust the brightness of the rotating speed and the Lamp with ceiling fan of ceiling fan with the switch speed of switch.
The model utility content
The technical problems to be solved in the utility model is, do not isolate fully at the control fan of prior art and the Drawing switch circuit arrangement of lamp brightness, have certain potential safety hazard, use inconvenient with high pressure, defectives such as efficient is low provide a kind of wireless stepless modulation controller.
The technological scheme that its technical problem that solves the utility model adopts is: construct a kind of wireless stepless modulation controller, be used for controlling simultaneously lighting burner and fan, it comprises the reception controller, and to the external remote of described reception controller sending controling instruction, wherein, described reception controller is selected the running of ground control fan or the brightness of adjusting lighting burner according to described control command.
In wireless stepless modulation controller described in the utility model, described reception controller comprises wireless receiving circuit, the power supply stabilization circuit that is electrically connected with described wireless receiving circuit respectively and microcontroller processor, and the fan thyristor gating circuit and the lighting burner thyristor gating circuit that are electrically connected with described microcontroller processor respectively; The output terminal of described fan thyristor gating circuit is coupled to fan, and the output circuit of described lighting burner thyristor gating circuit is coupled to lighting burner.
In wireless stepless modulation controller described in the utility model, described fan thyristor gating circuit comprises three branch road thyristor gating circuits that are connected in parallel, to be respectively applied for low grade, the middle-grade and high-grade rotating speed of control fan.
In wireless stepless modulation controller described in the utility model, the first branch road thyristor gating circuit comprises bidirectional triode thyristor Q1 and switching tube Q2, wherein,
Pin pa1, first termination power, second end that the control end of switching tube Q2 is coupled to the microcontroller processor are coupled to first utmost point of bidirectional triode thyristor Q1 and the control utmost point of coupling two-way controllable silicon Q1;
Second utmost point of bidirectional triode thyristor Q1 is coupled to fan.
In wireless stepless modulation controller described in the utility model, the second branch road thyristor gating circuit comprises bidirectional triode thyristor Q3 and switching tube Q4, wherein,
Pin pa2, first termination power, second end that the control end of switching tube Q4 is coupled to the microcontroller processor are coupled to first utmost point of bidirectional triode thyristor Q3 and the control utmost point of coupling two-way controllable silicon Q3;
Second utmost point of bidirectional triode thyristor Q3 is coupled to fan.
In wireless stepless modulation controller described in the utility model, the 3rd branch road thyristor gating circuit comprises bidirectional triode thyristor Q7 and switching tube Q8, wherein,
Pin pa3, first termination power, second end that the control end of switching tube Q8 is coupled to the microcontroller processor are coupled to first utmost point of bidirectional triode thyristor Q7 and the control utmost point of coupling two-way controllable silicon Q7;
Second utmost point of bidirectional triode thyristor Q7 is coupled to fan.
In wireless stepless modulation controller described in the utility model, the lighting burner thyristor gating circuit comprises switching tube Q5 and bidirectional triode thyristor Q6, wherein,
Pin pc1, first termination power, second end that the control end of switching tube Q5 is coupled to the microcontroller processor are coupled to first utmost point of bidirectional triode thyristor Q6 and the control utmost point of coupling two-way controllable silicon Q6;
Second utmost point of bidirectional triode thyristor Q6 is coupled to fan.
Implement wireless stepless modulation controller of the present utility model, have following beneficial effect: adopt wireless remote control technology that fan is controlled, compare, use more convenient quick with traditional fan control.The control gear of fan and lighting burner is combined, and dual-use material is increased operation rate, and Applicable scope is extensive, easy to use, simple to operate, volume is little, applied widely, have speed governing, light modulation, distant control function etc.The control of employing remote controller is isolated fully with high pressure, compares safety coefficient with mechanical switch and is greatly improved, and uses also more convenient; In addition, also have easy to use, installation is attractive in appearance, the market demand is big and cost is low.
Description of drawings
The utility model is described in further detail below in conjunction with drawings and Examples, in the accompanying drawing:
Fig. 1 is the theory diagram of the wireless stepless modulation controller of the utility model;
Fig. 2 is the circuit theory diagrams of the reception controller of Fig. 1.
Embodiment
As shown in Figure 1, in the technological scheme of wireless stepless modulation controller of the present utility model, mainly pass through AC-powered, fan and lighting burner are carried out wireless stepless modulation control, it mainly comprises external remote and receives controller, when work, external remote sends the remote control command sign indicating number with wireless transmission method to receiving controller, after the reception controller receives this instruction code, just it is carried out analysing and processing, judgement is to control to fan or to lighting burner, if fan is controlled, to judge further that the control fan just changes, counter-rotating, stop or remembering gear or the like, thereby according to the corresponding calculated result, the running of control fan; If lighting burner is controlled, be the brightness that lighting burner was opened, closed or regulated to the control lighting burner with further judging, thereby according to the corresponding calculated result, the control lighting burner.As shown in Figure 1, this remote controller mainly comprises radio transmitters and control circuit, the user is when using this remote controller to control, by the input device on the remote controller, for example load button, knob or touch screen input interface or the like, input are wanted the instruction regulated, when control circuit receives this regulating command, will handle this instruction the remote control command sign indicating number is passed through radio transmitters, send to the reception controller.In receiving controller, after wireless receiving circuit receives the remote control command sign indicating number, just be forwarded to the microcontroller processor, after the microcontroller processor carries out computing, re-send to fan thyristor gating circuit or lighting burner trigger circuit, fan or lighting burner are carried out control corresponding, in this embodiment, the power supply that receives controller adopts the Ac of 220V or 120V to power, and provides stabilized power supply by power supply stabilization circuit for wireless receiving circuit, microcontroller processor, fan thyristor gating circuit, lighting burner thyristor gating circuit.
In the preferred embodiment as shown in Figure 2, power supply adopts the Ac of 220V, the peripheral circuit that power supply stabilization circuit mainly adopts two voltage stabilizing chip U1 and U2 and diode, resistance and electric capacity to form.Wireless receiving circuit adopts wireless receiving chip U3.The fan thyristor gating circuit comprises three branch road thyristor gating circuits that are connected in parallel, to control the low grade of fan respectively, middle-grade and high-grade rotating speed, wherein, the low-grade rotating speed of the corresponding control of first branch road thyristor gating circuit fan, the second branch road thyristor gating circuit corresponding control middle-grade rotating speed of fan and the high-grade rotating speed of the corresponding control of the 3rd branch road thyristor gating circuit fan, when concrete work, for example control fan and carry out low grade when running, the microcontroller processor is respectively to the second branch road thyristor gating circuit and the 3rd branch road thyristor gating circuit, send low level, and sending the high impulse of 10 microseconds to the first branch road thyristor gating circuit, it is the square wave of 100 microseconds.
As shown in Figure 2, the first branch road thyristor gating circuit comprises bidirectional triode thyristor Q1 and switching tube Q2 and resistance R 4, R6, R15, R17, R8, R9 and R10, capacitor C 10 and C17, wherein, the control end of the switching tube Q2 pin pa1, first termination power, second end that are coupled to the microcontroller processor is coupled to first utmost point of bidirectional triode thyristor Q1 and the control utmost point of coupling two-way controllable silicon Q1; Second utmost point of bidirectional triode thyristor Q1 is coupled to fan.The second branch road thyristor gating circuit comprises bidirectional triode thyristor Q3 and switching tube Q4, and resistance R 14, R16, R18, R19 and R20, capacitor C 16, wherein, the control end of the switching tube Q4 pin pa2, first termination power, second end that are coupled to the microcontroller processor is coupled to first utmost point of bidirectional triode thyristor Q3 and the control utmost point of coupling two-way controllable silicon Q3; Second utmost point of bidirectional triode thyristor Q3 is coupled to fan.The 3rd branch road thyristor gating circuit comprises bidirectional triode thyristor Q7 and switching tube Q8, and resistance R 27, R28 and R21, and piezoresistance R26, wherein, the control end of the switching tube Q8 pin pa3, first termination power, second end that are coupled to the microcontroller processor is coupled to first utmost point of bidirectional triode thyristor Q7 and the control utmost point of coupling two-way controllable silicon Q7; Second utmost point of bidirectional triode thyristor Q7 is coupled to fan.The lighting burner thyristor gating circuit comprises switching tube Q5 and bidirectional triode thyristor Q6, and resistance R 22, R23, R24 and R25, capacitor C 18, wherein, the control end of the switching tube Q5 pin pc1, first termination power, second end that are coupled to the microcontroller processor is coupled to first utmost point of bidirectional triode thyristor Q6 and the control utmost point of coupling two-way controllable silicon Q6; Second utmost point of bidirectional triode thyristor Q6 is coupled to fan.
The utility model can also be implemented by computer program, and described program comprises whole features that can realize the utility model method, when it is installed in the computer system, by operation, can realize method of the present utility model.Computer program in the presents refers to: one group of any representation of instructing that can adopt any programming language, code or symbol to write, this instruction group makes system have information processing capability, with direct realization specific function, or after carrying out following one or two step, a) convert other Languages, coding or symbol to; B) reproduce with different forms, realize specific function.
The utility model describes by several specific embodiments, it will be appreciated by those skilled in the art that under the situation that does not break away from the utility model scope, can also carry out various conversion and be equal to alternative the utility model.In addition, at particular condition or concrete condition, can make various modifications to the utility model, and not break away from scope of the present utility model.Therefore, the utility model is not limited to disclosed specific embodiment, and should comprise the whole mode of executions that fall in the utility model claim scope.

Claims (7)

1, a kind of wireless stepless modulation controller, be used for controlling simultaneously lighting burner and fan, it is characterized in that, comprise the reception controller, and to the external remote of described reception controller sending controling instruction, wherein, described reception controller is selected the running of ground control fan or the brightness of adjusting lighting burner according to described control command.
2, wireless stepless modulation controller according to claim 1, it is characterized in that, described reception controller comprises wireless receiving circuit, the power supply stabilization circuit that is electrically connected with described wireless receiving circuit respectively and microcontroller processor, and the fan thyristor gating circuit and the lighting burner thyristor gating circuit that are electrically connected with described microcontroller processor respectively; The output terminal of described fan thyristor gating circuit is coupled to fan, and the output circuit of described lighting burner thyristor gating circuit is coupled to lighting burner.
3, wireless stepless modulation controller according to claim 2 is characterized in that, described fan thyristor gating circuit comprises three branch road thyristor gating circuits that are connected in parallel, to be respectively applied for low grade, the middle-grade and high-grade rotating speed of control fan.
4, wireless stepless modulation controller according to claim 3 is characterized in that, the first branch road thyristor gating circuit comprises bidirectional triode thyristor Q1 and switching tube Q2, wherein,
Pin pa1, first termination power, second end that the control end of switching tube Q2 is coupled to the microcontroller processor are coupled to first utmost point of bidirectional triode thyristor Q1 and the control utmost point of coupling two-way controllable silicon Q1;
Second utmost point of bidirectional triode thyristor Q1 is coupled to fan.
5, wireless stepless modulation controller according to claim 3 is characterized in that, the second branch road thyristor gating circuit comprises bidirectional triode thyristor Q3 and switching tube Q4, wherein,
Pin pa2, first termination power, second end that the control end of switching tube Q4 is coupled to the microcontroller processor are coupled to first utmost point of bidirectional triode thyristor Q3 and the control utmost point of coupling two-way controllable silicon Q3;
Second utmost point of bidirectional triode thyristor Q3 is coupled to fan.
6, wireless stepless modulation controller according to claim 3 is characterized in that, the 3rd branch road thyristor gating circuit comprises bidirectional triode thyristor Q7 and switching tube Q8, wherein,
Pin pa3, first termination power, second end that the control end of switching tube Q8 is coupled to the microcontroller processor are coupled to first utmost point of bidirectional triode thyristor Q7 and the control utmost point of coupling two-way controllable silicon Q7;
Second utmost point of bidirectional triode thyristor Q7 is coupled to fan.
7, wireless stepless modulation controller according to claim 2 is characterized in that, the lighting burner thyristor gating circuit comprises switching tube Q5 and bidirectional triode thyristor Q6, wherein,
Pin pc1, first termination power, second end that the control end of switching tube Q5 is coupled to the microcontroller processor are coupled to first utmost point of bidirectional triode thyristor Q6 and the control utmost point of coupling two-way controllable silicon Q6;
Second utmost point of bidirectional triode thyristor Q6 is coupled to fan.
CN200920130398U 2009-04-07 2009-04-07 Wireless stepless modulation controller Expired - Fee Related CN201372952Y (en)

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103994373A (en) * 2014-05-29 2014-08-20 广东中雅无线科技有限公司 Air-cooled wireless LED street lamp
CN104837258A (en) * 2015-05-08 2015-08-12 湖南工业大学 Circuit for controlling ceiling fan and lamp through single live wire
CN105352034A (en) * 2015-10-27 2016-02-24 重庆绿彰科技发展有限公司 Efficient HEPA combined type filter ventilator
CN105570172A (en) * 2014-10-29 2016-05-11 富凯集团 Control system for ventilator
CN107969042A (en) * 2017-11-27 2018-04-27 卫星电子(中山)有限公司 It is a kind of to suppress the ceiling fan that LED light shines when motor rotates
CN107979889A (en) * 2017-11-24 2018-05-01 卫星电子(中山)有限公司 A kind of Lamp with ceiling fan with stage flashing light effect
CN107995726A (en) * 2017-11-24 2018-05-04 卫星电子(中山)有限公司 A kind of circuit control device of Lamp with ceiling fan
CN108591106A (en) * 2018-05-07 2018-09-28 苏州欧普照明有限公司 a kind of intelligent fan lamp

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103994373A (en) * 2014-05-29 2014-08-20 广东中雅无线科技有限公司 Air-cooled wireless LED street lamp
CN105570172A (en) * 2014-10-29 2016-05-11 富凯集团 Control system for ventilator
CN104837258A (en) * 2015-05-08 2015-08-12 湖南工业大学 Circuit for controlling ceiling fan and lamp through single live wire
CN105352034A (en) * 2015-10-27 2016-02-24 重庆绿彰科技发展有限公司 Efficient HEPA combined type filter ventilator
CN107979889A (en) * 2017-11-24 2018-05-01 卫星电子(中山)有限公司 A kind of Lamp with ceiling fan with stage flashing light effect
CN107995726A (en) * 2017-11-24 2018-05-04 卫星电子(中山)有限公司 A kind of circuit control device of Lamp with ceiling fan
CN107995726B (en) * 2017-11-24 2019-10-18 卫星电子(中山)有限公司 A kind of circuit control device of Lamp with ceiling fan
CN107969042A (en) * 2017-11-27 2018-04-27 卫星电子(中山)有限公司 It is a kind of to suppress the ceiling fan that LED light shines when motor rotates
CN108591106A (en) * 2018-05-07 2018-09-28 苏州欧普照明有限公司 a kind of intelligent fan lamp
CN108591106B (en) * 2018-05-07 2024-05-24 苏州欧普照明有限公司 Intelligent fan lamp

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20091230

Termination date: 20170407

CF01 Termination of patent right due to non-payment of annual fee