CN103281010A - Circuit structure of solar energy mosquito control window - Google Patents

Circuit structure of solar energy mosquito control window Download PDF

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Publication number
CN103281010A
CN103281010A CN201310213354XA CN201310213354A CN103281010A CN 103281010 A CN103281010 A CN 103281010A CN 201310213354X A CN201310213354X A CN 201310213354XA CN 201310213354 A CN201310213354 A CN 201310213354A CN 103281010 A CN103281010 A CN 103281010A
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China
Prior art keywords
circuit
voltage
solar energy
storage battery
power supply
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Pending
Application number
CN201310213354XA
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Chinese (zh)
Inventor
郭凯志
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Nanjing College of Chemical Technology
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Nanjing College of Chemical Technology
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Application filed by Nanjing College of Chemical Technology filed Critical Nanjing College of Chemical Technology
Priority to CN201310213354XA priority Critical patent/CN103281010A/en
Publication of CN103281010A publication Critical patent/CN103281010A/en
Pending legal-status Critical Current

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Abstract

The invention discloses a circuit structure of a solar energy mosquito control window. The circuit structure of the solar energy mosquito control window is characterized by comprising a solar panel, a storage battery, a voltage stabilizing circuit, a high-frequency switching circuit, a boosting rectifying circuit and a high-voltage grid, wherein the solar panel, the storage battery, the voltage stabilizing circuit, the high-frequency switching circuit, the boosting rectifying circuit and the high-voltage grid are sequentially connected in series. Solar energy in converted to a power supply by the solar panel, and the power supply charges the storage battery; the storage battery output voltage is converted to a high-frequency impulse-power power supply through the voltage stabilizing circuit and the high-frequency switching circuit; the high-frequency impulse-power power supply is converted to direct-current high-voltage static electricity through the boosting rectifying circuit, and the direct-current high-voltage static electricity is output to the high-voltage grid through the boosting rectifying circuit. The circuit structure of the solar energy mosquito control window has the advantages of being simple and distinct in circuit, small in noise, safe and reliable to use, good in mosquito killing effect and the like because the solar energy is adopted as the power supply, and is environment-friendly, energy is saved, and personal safety can be guaranteed.

Description

A kind of circuit structure of solar energy kill mosquito window
Technical field
The present invention relates to a kind of solar DC high voltage circuit, belong to new forms of energy household articles industry, particularly a kind of circuit structure of solar energy kill mosquito window.
Background technology
The kill mosquito window is as a new household articles, and more and more be subjected to more common people's concern and use, but problem has been descended in the kill mosquito window of market existence now: 1, because the employing mains-supplied needs power line, not only consumes energy is brought hidden danger to personal safety; 2, the kill mosquito window mostly is to install behind finishing, and the supply socket distance is far away, also can influence attractive in appearance; 3, the circuit noise is big, useful life short, unstable properties.
Summary of the invention
The technical problem to be solved in the present invention is to provide that a kind of employing is solar powered, circuit is simple, working service is convenient, stable performance, the circuit structure of a kind of solar energy kill mosquito window that noise is few.
For achieving the above object, the present invention realizes by following technical scheme:
A kind of circuit structure of solar energy kill mosquito window is characterized in that, comprises the solar panels, storage battery, voltage stabilizing circuit, high-frequency conversion circuit, boost rectifying circuit, the high-voltage fence that are electrically connected in series successively.
Described solar panels are given described charge in batteries after solar energy is converted to supply voltage; The voltage of described storage battery output is delivered to described high-frequency conversion circuit with the stable sizable direct voltage of output behind described voltage stabilizing circuit voltage stabilizing and output voltage regulation circuit; Described high-frequency conversion circuit is converted to the high-frequency impulse power power-supply with direct voltage, outputs to described boost rectifying circuit then; Described boost rectifying circuit is exported high direct voltage static with the high-frequency impulse power power-supply of input and is given described high-voltage fence behind multiple tube, transformer and cockcroft-walton voltage multiplier circuit; Described high-voltage fence comprises positive plate and negative plate.
Described solar panels, its model are SYK15-18M.
Preferably, described cockcroft-walton voltage multiplier is selected 3 to 6 grades as required.
The invention has the beneficial effects as follows, owing to adopt solar energy as power supply, not only environmental protection, energy savings, can also guarantee personal safety, have working service convenience, stable performance, the characteristics that noise is few, simultaneously owing to adopted multiple tube and multistage boost rectifying circuit, power output is improved, and the output voltage adjustable range is big, and is adjustable continuously at 0-2000V.
Description of drawings
Fig. 1 is circuit block diagram of the present invention;
Fig. 2 is circuit theory diagrams of the present invention.
The main mark implication is as follows in the accompanying drawing:
1, solar panels 2, storage battery 3, voltage stabilizing circuit 4, high-frequency conversion circuit 5, boost rectifying circuit 6, high-voltage fence.
Embodiment
The present invention is described in further detail below in conjunction with diagram and specific embodiment.
With reference to Fig. 1, circuit block diagram of the present invention comprises the solar panels 1, storage battery 2, voltage stabilizing circuit 3, high-frequency conversion circuit 4, boost rectifying circuit 5, the high-voltage fence 6 that are electrically connected in series successively.
Accumulators 2 charged after solar panels 1 were converted to supply voltage with solar energy; The voltage of storage battery 2 outputs is delivered to high-frequency conversion circuit 4 with the stable sizable direct voltage of output behind voltage stabilizing circuit 3 voltage stabilizings and output voltage regulation circuit; High-frequency conversion circuit 4 is converted to the high-frequency impulse power power-supply with direct voltage, outputs to boost rectifying circuit 5 then; Boost rectifying circuit 5 is exported high direct voltage static with the high-frequency impulse power power-supply of input and is given high-voltage fence 6 behind multiple tube, transformer and cockcroft-walton voltage multiplier circuit.
With reference to Fig. 2, circuit theory diagrams of the present invention, described solar panels 1, its model is SYK15-18M.
Further; described voltage stabilizing circuit 3; comprise switch S; pressurizer LM317; filter capacitor C1; capacitor C 2; resistance R 2; resistance R 3; potentiometer RP and diode D10; resistance R 2 wherein; resistance R 3; potentiometer RP forms output voltage regulation circuit; particularly; switch S is attempted by between 3 ends of the positive pole of storage battery 2 and pressurizer LM317; be used for power supply control; filter capacitor C1 is anodal to be connected with 3 ends of pressurizer LM317; the negative pole of filter capacitor C1 negative pole and storage battery 2 is connected back ground connection; capacitor C 2 is attempted by 1 end and the ground of pressurizer LM317; resistance R 2; potentiometer RP and resistance R 3 are connected in series successively; form output voltage regulation circuit; particularly; 2 ends of the other end of resistance R 2 and pressurizer 317 are connected; the other end ground connection of resistance R 3; 1 end of the sliding contact of potentiometer RP and pressurizer LM317 is connected; the output voltage of generator can be adjusted in the position of the sliding contact of regulator potentiometer RP; diode D10 is for the protection of pressurizer LM317; particularly; 2 ends of the positive pole of diode D10 and pressurizer LM317 are connected, and 3 ends of the negative pole of diode D10 and pressurizer LM317 are connected.
Further, described high-frequency conversion circuit 4 comprises ic chip, resistance R 4, potentiometer R5, resistance R 6, capacitor C 3 and capacitor C 4.Wherein ic chip is 555 integrated circuits, particularly, resistance R 4 is attempted by between 8 ends and 7 ends of ic chip, potentiometer R5 is attempted by between 7 ends and 2 ends of ic chip, the size of regulator potentiometer R5 can be regulated frequency of oscillation, capacitor C 3 is attempted by between 2 ends and ground of ic chip, 2 ends of ic chip are connected with 6 ends, 8 ends of ic chip are connected the back and are connected with 2 ends of pressurizer LM317 with 4, capacitor C 4 is attempted by between 5 ends and ground of ic chip, 3 ends of resistance R 6 one ends and ic chip are connected, and the base stage of the other end of resistance R 6 and triode T1 is connected the output as high-frequency conversion circuit 3.
Further, described boost rectifying circuit 5, comprise triode T1 and T2, transformer B, diode D1, D2, D3, D4, D5 and capacitor C 6, C7, C8, C9, wherein, triode T1 and triode T2 constitute multiple tube, diode D1, D2, D3, D4, D5 and capacitor C 6, C7, C8, C9 constitutes cockcroft-walton voltage multiplier, particularly, the emitter of triode T1 is connected with the base stage of triode T2, the collector electrode of triode T1 is connected with the collector electrode of triode T2, the grounded emitter of triode T2, one end of the elementary winding of transformer B and 8 ends of ic chip are connected, the other end of the elementary winding of transformer B is connected with the collector electrode of triode T1, secondary level winding one end of transformer B and the negative pole of diode D1 are connected, the other end ground connection of the secondary level of transformer B winding, the positive pole of diode D1 is connected with the negative pole of diode D2, capacitor C 6 is attempted by between the positive pole of the negative pole of diode D1 and diode D2, the positive pole of diode D2 is connected with the negative pole of diode D3, capacitor C 7 is attempted by between the positive pole of the negative pole of diode D2 and diode D3, the positive pole of diode D3 is connected with the negative pole of diode D4, capacitor C 8 is attempted by between the positive pole of the negative pole of diode D3 and diode D4, the positive pole of diode D4 is connected with the negative pole of diode D5, capacitor C 9 is attempted by between the positive pole of the negative pole of diode D4 and diode D5, the positive pole of diode D5 is exported continuously adjustable 0-2000V voltage and is given high-voltage fence 6 as the positive pole of circuit output voltage.
Further, described high-voltage fence 6 comprises positive plate and negative plate.
By reference to the accompanying drawings exemplary description is carried out in invention above; obviously specific implementation of the present invention is not subjected to the restriction of aforesaid way; as long as the non-substantial improvement of having adopted method design of the present invention and technical scheme to carry out; perhaps without improving method design of the present invention and technical scheme are applied directly to other occasions, all within protection scope of the present invention.

Claims (3)

1. the circuit structure of a solar energy kill mosquito window is characterized in that: comprise the solar panels (1), storage battery (2), voltage stabilizing circuit (3), high-frequency conversion circuit (4), boost rectifying circuit (5), the high-voltage fence (6) that are electrically connected in series successively.
2. the circuit structure of a kind of solar energy kill mosquito window according to claim 1, it is characterized in that: described solar panels (1), its model are SYK15-18M.
3. the circuit structure of a kind of solar energy kill mosquito window according to claim 1 is characterized in that: described boost rectifying circuit (5), its input triode T1 and triode T2 formation multiple tube.
CN201310213354XA 2013-05-28 2013-05-28 Circuit structure of solar energy mosquito control window Pending CN103281010A (en)

Priority Applications (1)

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CN201310213354XA CN103281010A (en) 2013-05-28 2013-05-28 Circuit structure of solar energy mosquito control window

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Application Number Priority Date Filing Date Title
CN201310213354XA CN103281010A (en) 2013-05-28 2013-05-28 Circuit structure of solar energy mosquito control window

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105021973A (en) * 2015-03-11 2015-11-04 葛洲坝易普力股份有限公司 Digital display type capacitor discharger and detection method
CN108173445A (en) * 2016-12-05 2018-06-15 施慧 A kind of easy DC/AC inverter power supply devices

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2527105Y (en) * 2002-04-01 2002-12-25 樊维亚 Solar high voltage insects-killing lamp
US6618984B1 (en) * 2002-11-04 2003-09-16 Guining Li Mosquito attraction and killing system with operation solely based on utilization of sunlight and water
CN201241586Y (en) * 2008-08-08 2009-05-20 陈锦建 Solar multifunctional window
CN102404904A (en) * 2010-09-15 2012-04-04 漳州国绿太阳能科技有限公司 Control device of solar street lamp
CN203416491U (en) * 2013-05-28 2014-01-29 南京化工职业技术学院 Circuit structure of solar mosquito eradication window

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2527105Y (en) * 2002-04-01 2002-12-25 樊维亚 Solar high voltage insects-killing lamp
US6618984B1 (en) * 2002-11-04 2003-09-16 Guining Li Mosquito attraction and killing system with operation solely based on utilization of sunlight and water
CN201241586Y (en) * 2008-08-08 2009-05-20 陈锦建 Solar multifunctional window
CN102404904A (en) * 2010-09-15 2012-04-04 漳州国绿太阳能科技有限公司 Control device of solar street lamp
CN203416491U (en) * 2013-05-28 2014-01-29 南京化工职业技术学院 Circuit structure of solar mosquito eradication window

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105021973A (en) * 2015-03-11 2015-11-04 葛洲坝易普力股份有限公司 Digital display type capacitor discharger and detection method
CN105021973B (en) * 2015-03-11 2019-07-30 葛洲坝易普力股份有限公司 A kind of digital display type capacitance discharger and detection method
CN108173445A (en) * 2016-12-05 2018-06-15 施慧 A kind of easy DC/AC inverter power supply devices

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Application publication date: 20130904