CN203416491U - Circuit structure of solar mosquito eradication window - Google Patents

Circuit structure of solar mosquito eradication window Download PDF

Info

Publication number
CN203416491U
CN203416491U CN201320311297.4U CN201320311297U CN203416491U CN 203416491 U CN203416491 U CN 203416491U CN 201320311297 U CN201320311297 U CN 201320311297U CN 203416491 U CN203416491 U CN 203416491U
Authority
CN
China
Prior art keywords
circuit
voltage
circuit structure
storage battery
solar
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
Application number
CN201320311297.4U
Other languages
Chinese (zh)
Inventor
郭凯志
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nanjing College of Chemical Technology
Original Assignee
Nanjing College of Chemical Technology
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Nanjing College of Chemical Technology filed Critical Nanjing College of Chemical Technology
Priority to CN201320311297.4U priority Critical patent/CN203416491U/en
Application granted granted Critical
Publication of CN203416491U publication Critical patent/CN203416491U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Rectifiers (AREA)

Abstract

The utility model discloses a circuit structure of a solar mosquito eradication window. The circuit structure 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 grid system, which are electrically connected in series in sequence; the solar panel is used for switching solar energy into a power supply to supply power to the storage battery; voltage outputted by the storage battery is switched into a high frequency pulse power supply through the voltage stabilizing circuit and the high frequency switching circuit, the high frequency pulse power supply is switched into direct-current high-voltage static electricity to be outputted to the grid system. The circuit structure adopts solar energy as a power supply, is green and environment-friendly, reduces the energy source, can ensure the personal safety, and has the characteristics of simple and clear circuit, low noise, safety and reliability in use, good mosquito killing effect and the like.

Description

A kind of circuit structure of solar energy mosquito eradication window
Technical field
The utility model relates to a kind of solar DC high voltage circuit, belongs to new forms of energy household articles industry, particularly a kind of circuit structure of solar energy mosquito eradication window.
Background technology
Mosquito eradication window, as a new household articles, is more and more subject to the more common people and pays close attention to and use, but problem has been descended in the mosquito eradication window of market existence now: 1,, owing to adopting mains-supplied, needed power line, not only consume the energy, personal safety is brought to hidden danger; 2, mosquito eradication window is mostly to install after finishing, and supply socket is distant, also can affect attractive in appearance; 3, circuit noise is large, useful life is short, unstable properties.
Utility model content
The technical problems to be solved in the utility model 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 mosquito eradication window that noise is few.
For achieving the above object, the utility model is realized by following technical scheme:
A circuit structure for solar energy mosquito eradication 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 converted to after supply voltage solar energy to described charge in batteries; The voltage of described storage battery output, after described voltage stabilizing circuit voltage stabilizing and output voltage regulation circuit, is delivered to described high-frequency conversion circuit by the sizable direct voltage of stable output; Described high-frequency conversion circuit, is converted to high-frequency impulse power power-supply by direct voltage, then outputs to described boost rectifying circuit; Described boost rectifying circuit is exported the high-frequency impulse power power-supply of input high direct voltage static to described high-voltage fence after multiple tube, transformer and cockcroft-walton voltage multiplier circuit; High-voltage fence, comprises positive plate and negative plate.
Described solar panels, its model is SYK15-18M.
Preferably, described cockcroft-walton voltage multiplier is selected 3 to 6 grades as required.
The beneficial effects of the utility model are, owing to adopting solar energy as power supply, not only environmental protection, energy savings, can also guarantee personal safety, there is working service convenience, stable performance, the feature that noise is few, simultaneously owing to having adopted multiple tube and multistage boost rectifying circuit, power output is improved, and output voltage adjustable range is large, adjustable continuously at 0-2000V.
Accompanying drawing explanation
Fig. 1 is circuit block diagram of the present utility model;
Fig. 2 is circuit theory diagrams of the present utility model.
In accompanying drawing, main mark implication is as follows:
1, solar panels 2, storage battery 3, voltage stabilizing circuit 4, high-frequency conversion circuit 5, boost rectifying circuit 6, high-voltage fence.
Embodiment
Below in conjunction with diagram and specific embodiment, the utility model is described in further detail.
With reference to Fig. 1, circuit block diagram of the present utility model, 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.
After solar panels 1 are converted to supply voltage by solar energy, accumulators 2 charges; The voltage of storage battery 2 outputs, after voltage stabilizing circuit 3 voltage stabilizings and output voltage regulation circuit, is delivered to high-frequency conversion circuit 4 by the sizable direct voltage of stable output; High-frequency conversion circuit 4, is converted to high-frequency impulse power power-supply by direct voltage, then outputs to boost rectifying circuit 5; Boost rectifying circuit 5 is exported high direct voltage static to high-voltage fence 6 by the high-frequency impulse power power-supply of input after multiple tube, transformer and cockcroft-walton voltage multiplier circuit.
With reference to Fig. 2, circuit theory diagrams of the present utility model, 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 the positive pole of storage battery 2 and 3 ends of pressurizer LM317, for power supply, control, filter capacitor C1 is anodal to be connected with 3 ends of pressurizer LM317, ground connection after the negative pole of filter capacitor C1 negative pole and storage battery 2 is connected, 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 position of the sliding contact of regulator potentiometer RP is the output voltage of capable of regulating generator, diode D10 is for the protection of pressurizer LM317, particularly, 2 ends of the positive pole of diode D10 and pressurizer LM317 are connected, 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 regulate 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, after being connected with 4,8 ends of ic chip are connected with 2 ends of pressurizer LM317, capacitor C 4 is attempted by between 5 ends and ground of ic chip, 3 ends of resistance R 6 one end and ic chip are connected, 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, comprises 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 form multiple tube, diode D1, D2, D3, D4, D5 and capacitor C 6, C7, C8, C9 forms 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 T2,8 ends of one end of the armature winding of transformer B and ic chip are connected, the other end of the armature winding of transformer B is connected with the collector electrode of triode T1, secondary level winding one end of transformer B is connected with the negative pole of diode D1, 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 negative pole of diode D1 and the positive pole of 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 negative pole of diode D2 and the positive pole of 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 negative pole of diode D3 and the positive pole of 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 negative pole of diode D4 and the positive pole of diode D5, the positive pole of diode D5 is as the positive pole of circuit output voltage, export continuously adjustable 0-2000V voltage to high-voltage fence 6.
Further, described high-voltage fence 6, comprises positive plate and negative plate.
By reference to the accompanying drawings utility model is carried out to exemplary description above; obviously the utility model specific implementation is not subject to the restrictions described above; as long as the non-substantial improvement that has adopted method design of the present utility model and technical scheme to carry out; or without improving, method design of the present utility model and technical scheme are applied directly to other occasions, all within protection range of the present utility model.

Claims (3)

1. a circuit structure for solar energy mosquito eradication 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 mosquito eradication window according to claim 1, is characterized in that: described solar panels (1), its model is SYK15-18M.
3. the circuit structure of a kind of solar energy mosquito eradication window according to claim 1, is characterized in that: described boost rectifying circuit (5), its input triode T1 and triode T2 form multiple tube.
CN201320311297.4U 2013-05-28 2013-05-28 Circuit structure of solar mosquito eradication window Expired - Fee Related CN203416491U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320311297.4U CN203416491U (en) 2013-05-28 2013-05-28 Circuit structure of solar mosquito eradication window

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320311297.4U CN203416491U (en) 2013-05-28 2013-05-28 Circuit structure of solar mosquito eradication window

Publications (1)

Publication Number Publication Date
CN203416491U true CN203416491U (en) 2014-01-29

Family

ID=49979344

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320311297.4U Expired - Fee Related CN203416491U (en) 2013-05-28 2013-05-28 Circuit structure of solar mosquito eradication window

Country Status (1)

Country Link
CN (1) CN203416491U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103281010A (en) * 2013-05-28 2013-09-04 南京化工职业技术学院 Circuit structure of solar energy mosquito control window

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103281010A (en) * 2013-05-28 2013-09-04 南京化工职业技术学院 Circuit structure of solar energy mosquito control window

Similar Documents

Publication Publication Date Title
CN203688682U (en) Energy saving electronic load for aging inverter
CN204707032U (en) Based on the Zero voltage transition circuit of Boost
CN201937313U (en) Solar-powered fan filter unit system
CN204597611U (en) A kind of multiple-channel output photovoltaic generating system
CN203416491U (en) Circuit structure of solar mosquito eradication window
CN201688639U (en) Solar energy refrigerator
CN103281010A (en) Circuit structure of solar energy mosquito control window
CN103259424A (en) Circuit structure of mosquito killer
CN206559125U (en) A kind of vehicle-mounted photovoltaic charging system
CN202931213U (en) Thyristor alternating current voltage regulating circuit
CN202040858U (en) Solar microwave oven
CN205489763U (en) Electromechanical way of multi -functional photovoltaic power generation
CN103683938A (en) Boost circuit
CN202872639U (en) Boost circuit
CN103595249B (en) Based on the inverse DC voltage booster circuit leading switch
CN202508704U (en) Elevator energy feedback device
CN205017204U (en) Zero power consumption release circuit for anti -interference capacitors on switching power supply AC end
CN205911960U (en) Switching power supply
CN203339974U (en) Circuit structure of mosquito eradication device
CN202025956U (en) Sub-ultrasonic remote socket
CN203453976U (en) Indoor LED (light-emitting diode) illumination system of solar photovoltaic power generation
CN203180772U (en) Converter used for photovoltaic power generation system
CN204131139U (en) A kind of LED intelligent drive circuit system
CN203368353U (en) High-current power supply converting circuit
CN204696917U (en) A kind of non-isolation type vehicle power transducer

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140129

Termination date: 20140528