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CN201080215Y - Anti-theft alarm for motorcycle - Google Patents

Anti-theft alarm for motorcycle Download PDF

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Publication number
CN201080215Y
CN201080215Y CNU2007201248175U CN200720124817U CN201080215Y CN 201080215 Y CN201080215 Y CN 201080215Y CN U2007201248175 U CNU2007201248175 U CN U2007201248175U CN 200720124817 U CN200720124817 U CN 200720124817U CN 201080215 Y CN201080215 Y CN 201080215Y
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China
Prior art keywords
circuit
connects
mouth
power supply
relay
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Expired - Fee Related
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CNU2007201248175U
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Chinese (zh)
Inventor
符自贵
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Individual
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Individual
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Priority to CNU2007201248175U priority Critical patent/CN201080215Y/en
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Abstract

The utility model discloses an anti-theft alarm device of the motorcycle. The utility model is composed of a starting circuit, a detecting circuit and a remote alarming circuit, wherein, the starting circuit outputs starting voltage to the detecting circuit, and the detecting circuit controls the remote alarming circuit to work. The utility model is characterized in that the detecting circuit is connected with the remote alarming circuit, and the remote alarming circuit sends out radio alarming signals to the outside after obtaining the alarming power; the wireless transmitter in the remote alarming circuit adopts a mobile network cell phone. The utility model has the advantages that the utility model is not restricted by space and distance range, can remotely transmit the stolen condition to the motorcycle owner through the wireless communication network, simultaneously send out warning sound, cut off the power supply circuit of the motorcycle, and prevent the motorcycle from being stolen.

Description

Motorcycle anti-theft is stolen annunciator
Technical field
The utility model belongs to a kind of motorcycle anti-theft warning device, relates in particular to the theft-proof motorcycle anti-theft of a kind of wireless remote and steals annunciator.
Background technology
At present, traditional motorcycle anti-theft alarm comprises start-up circuit, testing circuit and warning circuit are formed, wherein start-up circuit is provided with wireless signal receiver and decoding module I C1, described wireless signal receiver receives outward sign, its mouth output actuation signal is given the input end DI of described decoder module IC1, decoder module IC1 discerns the back to outside signal decoding and starts burglar alarm, the mouth D0 output trigger voltage of decoder module IC1 is given described testing circuit, testing circuit is realized deploying troops on garrison duty, and control warning circuit work, stolen when motor bike, testing circuit produces alerting signal, sends to warning circuit, annunciator in the alerting signal generation circuit is realized on-the-spot " alarm song " warning, or carry out the call prompt of hundreds of meters scopes by wireless intercom system, when the car owner in the site of the accident, just can know alarm message.If the car owner is not nearby, just can't know whether safety of motor bike in the very first time.
The existing shortcoming of traditional motorcycle anti-theft alarm is: be subjected to space, the far and near restriction of distance, can't will steal feelings in the very first time and send the car owner at a distance to.
The utility model content
The purpose of this utility model provides a kind of motorcycle anti-theft and steals annunciator, is not subjected to space, the far and near restriction of distance, can will steal feelings in the very first time and send the car owner to.
For achieving the above object, a kind of motorcycle anti-theft described in the utility model is stolen annunciator, by start-up circuit, testing circuit and remote alarms circuit are formed, wherein start-up circuit is provided with wireless signal receiver and decoding module I C1, described wireless signal receiver receives outward sign, its mouth output actuation signal is given the input end DI of described decoder module IC1, the mouth D0 output trigger voltage of described decoder module IC1 is given described testing circuit, testing circuit control remote alarms circuit working, it is characterized in that: described testing circuit is by vibration sensor, unilateral diode D1, chemical capacitor C2, silicon control VT1, aerotron T, starting relay J1, light-emitting diode VL1, first, the second divider resistance R3, R4 and pull down resistor R13 form, wherein the end of the first divider resistance R3 connects the mouth D0 of described decoder module IC1, the other end connects the end of the described second divider resistance R4, the other end of the described second divider resistance R4 is connected in series ground connection behind the described vibration sensor, described first, the second divider resistance R3, the common port of R4 connects the positive pole of described unilateral diode D1, the negative pole of described unilateral diode D1 connects the trigger end of described silicon control VT1, the mouth D0 that the anode of this silicon control VT1 connects described decoder module IC1 receives trigger voltage, the negative terminal of silicon control VT1 connects the base stage of described aerotron T, the grounded emitter of this aerotron T, be connected with high level behind the trigger winding of the described starting relay J1 of collector series connection, one termination high level of described starting relay J1 normal open switch, the other end connects the positive pole of described light-emitting diode VL1 as the warning power supply, ground connection behind the described pull down resistor R13 of the negative pole string of this light-emitting diode VL1, the other end of described trigger winding normal open switch also connects described remote alarms circuit, described remote alarms circuit sends wireless alarm signal to the outside after obtaining described warning power supply;
Described remote alarms circuit is by dial-up circuit, reset circuit and transmitting set are formed, wherein dial-up circuit is by oscillation module NE555, dial relay J2, resistance R 7 and light-emitting diode VL2 form, the power end Vcc of described oscillation module NE555 is connected with described warning power supply, after the mouth of oscillation module NE555 is connected in series described resistance R 7, be connected with the negative terminal of described light-emitting diode VL2, the anode of described light-emitting diode VL2 connects described warning power supply, also be connected in series the trigger winding of described dial relay J2 between the mouth of described warning power supply and oscillation module NE555, the normal open switch of dial relay J2 is serially connected on the boot-strap circuit of described transmitting set, and this transmitting set is a mobile network mobile phone; Described reset circuit is consistent with the structure of dial-up circuit, and the input end of reset circuit is connected with described warning power supply, and the normal open switch of mouth reset relay J3 is serially connected on the reset circuit of described transmitting set in the reset circuit.
Warning power initiation remote alarms circuit working, oscillation module NE555 in dial-up circuit and the reset circuit is according to the concussion frequency of establishing certainly, successively send dialing instruction and reset instruction to mobile network mobile phone, after mobile network mobile phone obtains the dialing instruction, mobile network mobile phone is by GMS or the cdma wireless communication network handset dialing to the car owner, can reliably know this mobile phone alarm information for guaranteeing the car owner, the reset circuit delayed startup, mobile network mobile phone is returned to readiness for action, and dial-up circuit starts the handset dialing to the car owner once more.
Be connected with between the mouth D0 of described decoder module IC1 and the base stage of aerotron T and trigger capacitor C 3, this triggers capacitor C 3 is chemical capacitor, its anode connects described decoder module IC1, negative terminal meets described aerotron T, and the other end of described starting relay J1 normal open switch is connected with ground after also being connected in series buzzer phone B.
When the car owner left motor bike and deploys troops on garrison duty, decoder module IC1 work and output high level triggered capacitor C 3 at the abrupt release electric current, starting relay J1 moment conducting, driving buzzer phone B and light-emitting diode VL1 moment work, sends prompt tone respectively and points out light, informs that the car owner deploys troops on garrison duty successfully.
The other end of described starting relay J1 normal open switch is connected with ground after also being connected in series the trigger winding of ignition relay J4, and the normally closed switch of this ignition relay J4 is serially connected on the firing circuit of motor bike.
Behind starting relay J1 output alarm power supply, ignition relay J4 is switched on, and the normally closed switch of ignition relay J4 disconnects the firing circuit of motor bike, and motor bike can't be started.
The password of described decoder module IC1 presets end A0~A7 and is connected with the password setting K switch, and this password setting K switch is that high level is provided with switch or low level is provided with switch.
Also be provided with power circuit and provide power supply for described each element circuit, this power circuit comprises power circuit three ends 7808 and emitter three ends 7805,7805 and 7805 input end also connects motor bike 12V storage battery, 7805 mouth is described transmitting set power supply after being connected in series the second dropping resistor R10, and 7808 mouth is all the other each circuit unit and module for power supply after being connected in series the first dropping resistor R9.
Remarkable result of the present utility model is: be not subjected to space, the far and near restriction of distance, can will steal feelings by wireless communication networks in the very first time and send the car owner at a distance to, send chimes of doom simultaneously, the current supply circuit of the motor bike that breaks prevents that motor bike is stolen.
Description of drawings
Fig. 1 is a functional block diagram of the present utility model;
Fig. 2 is schematic circuit diagram of the present utility model;
Fig. 3 is a power circuit diagram of the present utility model.
The specific embodiment
Below in conjunction with the drawings and specific embodiments the utility model is described in further detail.
As Fig. 1, shown in 2: a kind of motorcycle anti-theft is stolen annunciator, by start-up circuit 1, testing circuit 2 and remote alarms circuit 3 are formed, wherein start-up circuit 1 is provided with wireless signal receiver 4 and decoding module I C1, described wireless signal receiver 4 receives outward sign, its mouth output actuation signal is given the input end DI of described decoder module IC1, the mouth D0 output trigger voltage of described decoder module IC1 is given described testing circuit 2,3 work of testing circuit 2 control remote alarms circuit, it is characterized in that: described testing circuit 2 is by vibration sensor 5, unilateral diode D1, chemical capacitor C2, silicon control VT1, aerotron T, starting relay J1, light-emitting diode VL1, first, the second divider resistance R3, R4 and pull down resistor R13 form, wherein the end of the first divider resistance R3 connects the mouth D0 of described decoder module IC1, the other end connects the end of the described second divider resistance R4, the other end of the described second divider resistance R4 is connected in series described vibration sensor 5 back ground connection, described first, the second divider resistance R3, the common port of R4 connects the positive pole of described unilateral diode D1, the negative pole of described unilateral diode D1 connects the trigger end of described silicon control VT1, the mouth D0 that the anode of this silicon control VT1 connects described decoder module IC1 receives trigger voltage, the negative terminal of silicon control VT1 connects the base stage of described aerotron T, the grounded emitter of this aerotron T, be connected with high level behind the trigger winding of the described starting relay J1 of collector series connection, one termination high level of described starting relay J1 normal open switch, the other end connects the positive pole of described light-emitting diode VL1 as the warning power supply, ground connection behind the described pull down resistor R13 of the negative pole string of this light-emitting diode VL1, the other end of described trigger winding normal open switch also connects described remote alarms circuit 3, after described remote alarms circuit 3 obtains described warning power supply, send wireless alarm signal to the outside;
As shown in Figure 2: described remote alarms circuit 3 is by dial-up circuit 7, reset circuit 8 and transmitting set 9 are formed, wherein dial-up circuit 7 is by oscillation module NE555, dial relay J2, resistance R 7 and light-emitting diode VL2 form, the power end Vcc of described oscillation module NE555 is connected with described warning power supply, after the mouth of oscillation module NE555 is connected in series described resistance R 7, be connected with the negative terminal of described light-emitting diode VL2, the anode of described light-emitting diode VL2 connects described warning power supply, also be connected in series the trigger winding of described dial relay J2 between the mouth of described warning power supply and oscillation module NE555, the normal open switch of dial relay J2 is serially connected on the boot-strap circuit of described transmitting set 9, and this transmitting set 9 is a mobile network mobile phone; Described reset circuit 8 is consistent with the structure of dial-up circuit 7, its difference is, be connected in series the trigger winding of described reset relay J3 between the mouth of described warning power supply and oscillation module NE555, the normal open switch of reset relay J3 is serially connected on the reset circuit of described transmitting set 9.
Wherein the model of wireless signal receiver 4 is 9921, and the model of decoder module IC1 is SC2272-L4, and the model of vibration sensor 5 is 460DA.
3 work of warning power initiation remote alarms circuit, oscillation module NE555 in dial-up circuit 7 and the reset circuit 8 is according to the concussion frequency of establishing certainly, successively send dialing instruction and reset instruction to mobile network mobile phone, after mobile network mobile phone obtains the dialing instruction, mobile network mobile phone is by GMS or the cdma wireless communication network handset dialing to the car owner, can reliably know this mobile phone alarm information for guaranteeing the car owner, reset circuit 8 delayed startups, mobile network mobile phone is returned to readiness for action, and dial-up circuit 7 starts the handset dialing to the car owner once more.
As shown in Figure 2: be connected with between the mouth D0 of described decoder module IC1 and the base stage of aerotron T and trigger capacitor C 3, this triggers capacitor C 3 is chemical capacitor, its anode connects described decoder module IC1, negative terminal meets described aerotron T, and the other end of described starting relay J1 normal open switch is connected with ground after also being connected in series buzzer phone B.
When the car owner left motor bike and deploys troops on garrison duty, decoder module IC1 work and output high level triggered capacitor C 3 at the abrupt release electric current, starting relay J1 moment conducting, driving buzzer phone B and light-emitting diode VL1 moment work, sends prompt tone respectively and points out light, informs that the car owner deploys troops on garrison duty successfully.
As shown in Figure 2: the other end of described starting relay J1 normal open switch is connected with ground after also being connected in series the trigger winding of ignition relay J4, and the normally closed switch of this ignition relay J4 is serially connected on the firing circuit of motor bike.
Behind starting relay J1 output alarm power supply, ignition relay J4 is switched on, and the normally closed switch of ignition relay J4 disconnects the firing circuit of motor bike, and motor bike can't be started.
The password of described decoder module IC1 presets end A0~A7 and is connected with the password setting K switch, and this password setting K switch is that high level is provided with switch or low level is provided with switch.Present embodiment is that low level is provided with switch.
As shown in Figure 3: also be provided with power circuit and provide power supply for described each element circuit, this power circuit comprises power circuit three ends 7808 and emitter three ends 7805,7805 and 7805 input end also connects motor bike 12V storage battery, 7805 mouth is described transmitting set 9 power supplies after being connected in series the second dropping resistor R10, and 7808 mouth is all the other each circuit unit and module for power supply after being connected in series the first dropping resistor R9.

Claims (5)

1. a motorcycle anti-theft is stolen annunciator, by start-up circuit (1), testing circuit (2) and remote alarms circuit (3) are formed, wherein start-up circuit (1) is provided with wireless signal receiver (4) and decoder module (IC1), described wireless signal receiver (4) receives outward sign, its mouth output actuation signal is given the input end DI of described decoder module (IC1), the mouth D0 output trigger voltage of described decoder module (IC1) is given described testing circuit (2), testing circuit (2) control remote alarms circuit (3) work, it is characterized in that: described testing circuit (2) is by vibration sensor (5), unilateral diode (D1), chemical capacitor (C2), silicon control (VT1), aerotron (T), starting relay (J1), light-emitting diode (VL1), first, second divider resistance (the R3, R4) and pull down resistor (R13) form, wherein an end of first divider resistance (R3) connects the mouth D0 of described decoder module (IC1), the other end connects an end of described second divider resistance (R4), the other end of described second divider resistance (R4) is connected in series described vibration sensor (5) back ground connection, described first, second divider resistance (the R3, R4) common port connects the positive pole of described unilateral diode (D1), the negative pole of described unilateral diode (D1) connects the trigger end of described silicon control (VT1), the mouth D0 that the anode of this silicon control (VT1) connects described decoder module (IC1) receives trigger voltage, the negative terminal of silicon control (VT1) connects the base stage of described aerotron (T), the grounded emitter of this aerotron (T), be connected with high level behind the trigger winding of the described starting relay of collector series connection (J1), one termination high level of described starting relay (J1) normal open switch, the other end connects the positive pole of described light-emitting diode (VL1) as the warning power supply, the described pull down resistor of negative pole string (R13) the back ground connection of this light-emitting diode (VL1), the other end of described trigger winding normal open switch also connects described remote alarms circuit (3), described remote alarms circuit (3) sends wireless alarm signal to the outside after obtaining described warning power supply;
Described remote alarms circuit (3) is by dial-up circuit (7), reset circuit (8) and transmitting set (9) are formed, wherein dial-up circuit (7) is by oscillation module NE555, dial relay (J2), resistance (R7) and light-emitting diode (VL2) are formed, the power end Vcc of described oscillation module NE555 is connected with described warning power supply, after the mouth of oscillation module NE555 is connected in series described resistance (R7), be connected with the negative terminal of described light-emitting diode (VL2), the anode of described light-emitting diode (VL2) connects described warning power supply, also be connected in series the trigger winding of described dial relay (J2) between the mouth of described warning power supply and oscillation module NE555, the normal open switch of dial relay (J2) is serially connected on the boot-strap circuit of described transmitting set (9), and this transmitting set (9) is a mobile network mobile phone; Described reset circuit (8) is consistent with the structure of dial-up circuit (7), the input end of reset circuit (8) is connected with described warning power supply, and the normal open switch of mouth reset relay (J3) is serially connected on the reset circuit of described transmitting set (9) in the reset circuit (8).
2. motorcycle anti-theft according to claim 1 is stolen annunciator, it is characterized in that: be connected with between the base stage of the mouth D0 of described decoder module (IC1) and aerotron (T) and trigger electric capacity (C3), this triggers electric capacity (C3) is chemical capacitor, its anode connects described decoder module (IC1), negative terminal connects described aerotron (T), and the other end of described starting relay (J1) normal open switch also is connected in series buzzer phone (B) back and is connected with ground.
3. motorcycle anti-theft according to claim 1 is stolen annunciator, it is characterized in that: the other end of described starting relay (J1) normal open switch is connected with ground after also being connected in series the trigger winding of ignition relay (J4), and the normally closed switch of this ignition relay (J4) is serially connected on the firing circuit of motor bike.
4. motorcycle anti-theft according to claim 1 is stolen annunciator, it is characterized in that: the password of described decoder module (IC1) presets end A0~A7 and is connected with password setting switch (K), and this password setting switch (K) for high level switch is set or low level is provided with switch.
5. motorcycle anti-theft according to claim 1 is stolen annunciator, it is characterized in that: also be provided with power circuit and provide power supply for described each element circuit, this power circuit comprises power circuit three ends 7808 and emitter three ends 7805,7805 and 7805 input end also connects motor bike 12V storage battery, 7805 mouth is connected in series second dropping resistor (R10) back and is described transmitting set (9) power supply, and 7808 mouth is connected in series first dropping resistor (R9) back and is all the other each circuit unit and module for power supply.
CNU2007201248175U 2007-07-25 2007-07-25 Anti-theft alarm for motorcycle Expired - Fee Related CN201080215Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2007201248175U CN201080215Y (en) 2007-07-25 2007-07-25 Anti-theft alarm for motorcycle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2007201248175U CN201080215Y (en) 2007-07-25 2007-07-25 Anti-theft alarm for motorcycle

Publications (1)

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CN201080215Y true CN201080215Y (en) 2008-07-02

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CNU2007201248175U Expired - Fee Related CN201080215Y (en) 2007-07-25 2007-07-25 Anti-theft alarm for motorcycle

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102849148A (en) * 2012-08-21 2013-01-02 东莞能创信息科技有限公司 A motorcycle anti-theft system
CN106740667A (en) * 2016-12-14 2017-05-31 重庆典果成实业有限公司 The motorcycle antitheft system of intelligent transmission signal according to user distance

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102849148A (en) * 2012-08-21 2013-01-02 东莞能创信息科技有限公司 A motorcycle anti-theft system
CN106740667A (en) * 2016-12-14 2017-05-31 重庆典果成实业有限公司 The motorcycle antitheft system of intelligent transmission signal according to user distance

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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: 20080702

Termination date: 20100725