CN2753148Y - Remote-controlled electric-shock mosquito eradicating lamp - Google Patents

Remote-controlled electric-shock mosquito eradicating lamp Download PDF

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Publication number
CN2753148Y
CN2753148Y CN 200420094895 CN200420094895U CN2753148Y CN 2753148 Y CN2753148 Y CN 2753148Y CN 200420094895 CN200420094895 CN 200420094895 CN 200420094895 U CN200420094895 U CN 200420094895U CN 2753148 Y CN2753148 Y CN 2753148Y
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CN
China
Prior art keywords
triode
resistance
type flip
flip flop
infrared
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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
CN 200420094895
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Chinese (zh)
Inventor
王太财
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.)
Liu Guangming
Original Assignee
王太财
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Filing date
Publication date
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Priority to CN 200420094895 priority Critical patent/CN2753148Y/en
Application granted granted Critical
Publication of CN2753148Y publication Critical patent/CN2753148Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a remote control and electric shock mosquito killing lamp which comprises a lamp tube, a high voltage electric shock net and a seat frame. The utility model is characterized in that the mosquito killing lamp also comprises an infrared remote controller which comprises a transmitting device and a receiving device, wherein the transmitting device comprises a switch K, a capacitance C2, a power supply E1 and an oscillator which is composed of a triode T1, a triode T2, a resistance R1, a resistance R2, a capacitance C1 and an infrared transmitting tube IR. The receiving device comprises an infrared receiving head, a D trigger, an optical coupling bidirectional thyristor, a resistance R3, a resistance R4, a capacitance C3 and a coupling capacitance C4. The 3 end and the 4 end of the optical coupling bidirectional thyristor are connected with the positive pole wire of a power supply wire. A user can control the connection or disconnection through the button switch of the transmitting device of the infrared remote controller. Thereby, the utility model can prevent a human body from being irradiated and the operation is convenient.

Description

Remote control electric shock Mosquito killer lamp
Technical field
The utility model relates to a kind of wireless remote controller, especially a kind of remote controlled lantern.
Background technology
At present, electric shock Mosquito killer lamp of the prior art comprises fluorescent tube, high voltage shock net, mounting, and fluorescent tube is a ultraviolet lamp, and switch needs the people to go directly, and the Push switch button opens or closes Mosquito killer lamp, often the human exposure meeting is caused damage; The Mosquito killer lamp that shocks by electricity in addition often is installed in the eminence of wall, opens or closes inconvenience.
Summary of the invention
The purpose of this utility model is: a kind of remote control Mosquito killer lamp is provided, and it can not only prevent human exposure, and easy to operate.
The utility model is achieved in that a kind of remote control electric shock Mosquito killer lamp comprises fluorescent tube, high voltage shock net, mounting, its special character is: also comprise IR remote controller, described IR remote controller comprises emitter, receiving system, and emitter comprises by triode T 1, triode T 2, resistance R 1, R 2, capacitor C 1, infrared transmitting tube IR forms oscillator, K switch, capacitor C 2, power supply E 1Triode T 1Be input pipe, triode T 2Be driving tube, triode T 1, T 2, constitute multiple tube, infrared transmitting tube IR is connected on triode T 2Colelctor electrode, resistance R 1, R 2After the series connection, an end and triode T 1Colelctor electrode connects, the other end and triode T 2Emitter stage connects, in resistance R 1, R 2Between energising hold C 1Be connected on infrared transmitting tube IR negative pole end, triode T 1Base stage be connected on resistance R 1, R 2Between; Described receiving system comprises infrared receiving terminal, d type flip flop, optocoupler bidirectional thyristor SCR, resistance R 3, R 4, capacitor C 3, C 4The output U of infrared receiving terminal 0The CP end, the CP end that connect d type flip flop pass through capacitor C 3Ground connection, the Q of d type flip flop, D link to each other, the SD end ground connection of d type flip flop, the RD of d type flip flop terminates at coupling capacitance C 4With resistance R 3Between, R 3Ground connection, C 4Connect positive source, the Q end of d type flip flop passes through resistance R 4Connect input 1 connection, the 2 end ground connection of optocoupler bidirectional thyristor SCR, 3,4 terminations of optocoupler bidirectional thyristor SCR are gone into the electrode line of power line.
The utility model remote control Mosquito killer lamp, owing on power line, insert the receiving system of IR remote controller, the press button of the emitter by IR remote controller, the i.e. energising of controlled fluorescent tube, high voltage shock net or outage, so it is can not only prevent, and easy to operate to human exposure.
Description of drawings
Fig. 1 is the electrical schematic diagram of the emitter of the utility model remote control Mosquito killer lamp.
Fig. 2 is the electrical schematic diagram of the receiving system of the utility model remote control Mosquito killer lamp.
Embodiment
Below in conjunction with accompanying drawing the utility model is further described.
As shown in Figure 1, a kind of remote control electric shock Mosquito killer lamp comprises fluorescent tube, high voltage shock net, mounting, IR remote controller.Described IR remote controller comprises emitter, receiving system, and emitter comprises by triode T 1, triode T 2, resistance R 1, R 2, capacitor C 1, infrared transmitting tube IR forms oscillator, K switch, capacitor C 2, power supply E 1The contact 2 of K switch is that normally-closed contact, contact 3 are normally opened contacts, and under the obsolete state of emitter, capacitor C is connected with contact 2 in contact 1 2With power supply E 1Parallel connection, capacitor C 2Negative pole and power supply E 1Negative pole connects; Under the state that emitter uses, triode T is connected with contact 3 in contact 1 1Be input pipe, triode T 2Be driving tube, triode T 1, T 2Constitute multiple tube, triode T 1Emitter stage is connected with K switch contact 3, T 2Colelctor electrode and infrared transmitting tube IR are connected resistance R with K switch contact 3 after connecting 1, R 2After the series connection, an end and triode T 1Emitter stage connects, the other end and triode T 2Emitter stage connects, triode T 2Emitter stage and power supply E 1Negative pole connects, in resistance R 1, R 2Between energising hold C 1Be connected on infrared transmitting tube IR negative pole end, triode T 1Base stage be connected on resistance R 1, R 2Between; As shown in Figure 2, described receiving system comprise infrared receiving terminal 5., d type flip flop, optocoupler bidirectional thyristor SCR, resistance R 3, R 4, capacitor C 3, C 4Infrared receiving terminal is a termination 5V positive source 5., other end ground connection, infrared receiving terminal output U 5. 0The CP end, the CP end that connect d type flip flop pass through capacitor C 3Ground connection, the Q of d type flip flop, D link to each other, the SD end ground connection of d type flip flop, the RD of d type flip flop terminates at coupling capacitance C 4With resistance R 3Between, resistance R 3Ground connection, C 3Connect the 5V positive source, the Q end of d type flip flop passes through resistance R 4Connect 3,4 electrode lines that insert power lines of input 1,2 end ground connection, the optocoupler bidirectional thyristor SCR of optocoupler bidirectional thyristor SCR.
Use the time, the contact 1 of K switch is contacted with contact 3, then infrared emission tube IR sends infrared ray, after 5. infrared receiving terminal receives infrared pulse signal, by U 0Negative pulse of end output, this pulse is as d type flip flop CP end trigger impulse.D type flip flop Q holds output, and optocoupler bidirectional thyristor SCR is with power connection.
R 12.2 kilohm, R 25.6 kilohm, R 31 kilohm, R 4470 kilohms,
C 10.01 farad, C 21000 microfarads, C 34700 farads, C 422 microfarads,
T 1Model 9012, T 2Model 9013, d type flip flop model C D4013.

Claims (1)

1, a kind of remote control electric shock Mosquito killer lamp comprises fluorescent tube, high voltage shock net, mounting, and it is characterized in that: also comprise IR remote controller, described IR remote controller comprises emitter, receiving system, and emitter comprises by triode (T 1), triode (T 2), resistance (R 1, R 2), electric capacity (C 1), the oscillator formed of infrared transmitting tube (IR), switch (K), electric capacity (C 2), power supply (E 1); Triode (T 1) be input pipe, triode (T 2) be driving tube, triode (T 1, T 2) constituting multiple tube, infrared transmitting tube (IR) is connected on triode (T 2) colelctor electrode, resistance (R 1, R 2) after the series connection, an end and triode (T 1) the colelctor electrode connection, the other end and triode (T 2) the emitter stage connection, at resistance (R 1, R 2) between energising hold (C 1) be connected on infrared transmitting tube (IR) negative pole end, triode (T 1) base stage be connected on resistance (R 1, R 2) between; Described receiving system comprise infrared receiving terminal 5., d type flip flop, optocoupler bidirectional thyristor (SCR), resistance (R 3, R 4), electric capacity (C 3, C 4); Infrared receiving terminal output (U 5. 0) connect (CP) end, (CP) end of d type flip flop by electric capacity (C 3) ground connection, (Q, the D) of d type flip flop links to each other, d type flip flop " (SD) end ground connection, (RD) of d type flip flop terminates at coupling capacitance (C 4) and resistance (R 3) between, resistance (R 3) ground connection, coupling capacitance (C 4) connecing positive source, the Q end of d type flip flop is by resistance (R 4) input (1) that meets optocoupler bidirectional thyristor (SCR) connects, (3,4) termination of (2) end ground connection, optocoupler bidirectional thyristor (SCR) is gone into the electrode line of power line.
CN 200420094895 2004-11-09 2004-11-09 Remote-controlled electric-shock mosquito eradicating lamp Expired - Fee Related CN2753148Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200420094895 CN2753148Y (en) 2004-11-09 2004-11-09 Remote-controlled electric-shock mosquito eradicating lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200420094895 CN2753148Y (en) 2004-11-09 2004-11-09 Remote-controlled electric-shock mosquito eradicating lamp

Publications (1)

Publication Number Publication Date
CN2753148Y true CN2753148Y (en) 2006-01-25

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CN 200420094895 Expired - Fee Related CN2753148Y (en) 2004-11-09 2004-11-09 Remote-controlled electric-shock mosquito eradicating lamp

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CN (1) CN2753148Y (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104206369A (en) * 2014-08-26 2014-12-17 济南祥辰科技有限公司 Anti-electric-shock frequency oscillation insect-killing lamp
CN104472456A (en) * 2014-12-03 2015-04-01 广西大学 Automatic cockroach hunting and killing appliance
CN105941373A (en) * 2016-05-27 2016-09-21 王增飞 A low-noise intelligent killing mosquito eradication device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104206369A (en) * 2014-08-26 2014-12-17 济南祥辰科技有限公司 Anti-electric-shock frequency oscillation insect-killing lamp
CN104472456A (en) * 2014-12-03 2015-04-01 广西大学 Automatic cockroach hunting and killing appliance
CN105941373A (en) * 2016-05-27 2016-09-21 王增飞 A low-noise intelligent killing mosquito eradication device

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
ASS Succession or assignment of patent right

Owner name: LIU GUANGMING

Free format text: FORMER OWNER: WANG TAICAI

Effective date: 20081114

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20081114

Address after: Guangdong Province Dongfeng Town Lek Industrial Zone Third Boya Electric Appliance Factory, zip code: 528425

Patentee after: Liu Guangming

Address before: Guangdong Dongfeng Dongfeng Town, third, Zhongshan province zip code: 528425

Patentee before: Wang Taicai

C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20060125

Termination date: 20091209