CN201397528Y - Control circuit used for intelligent remote-control anti-theft door without lock hole - Google Patents

Control circuit used for intelligent remote-control anti-theft door without lock hole Download PDF

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Publication number
CN201397528Y
CN201397528Y CN2009200905200U CN200920090520U CN201397528Y CN 201397528 Y CN201397528 Y CN 201397528Y CN 2009200905200 U CN2009200905200 U CN 2009200905200U CN 200920090520 U CN200920090520 U CN 200920090520U CN 201397528 Y CN201397528 Y CN 201397528Y
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China
Prior art keywords
relay
terminal
contact
sensor
connects
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Expired - Fee Related
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CN2009200905200U
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Chinese (zh)
Inventor
王浩
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American house for American exchange (Beijing) Agel Ecommerce Ltd
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Xuzhou Yujia Electronic Science & Technology Development Co Ltd
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Abstract

The utility model discloses a control circuit used for an intelligent remote-control anti-theft door without a lock hole. The circuit adopts the scheme that a connection point between a door closing sensor and a locking sensor is connected with positive input terminals of a remote-control receiving board and a telephone control board through the positive pole and a resistor of a diode; a first relay is connected between the negative output terminals of the remote-control receiving board and the telephone control board and the ground in series, one end of a lock motor is grounded through the contact point of the first relay, the contact point of the first relay is connected with a middle terminal of an unlocking sensor, the other end of the lock motor is connected with a contact point of athird relay through the other contact point of the first relay; the upper terminal of the unlocking sensor is connected with the positive pole of a direct current source, and the lower terminal of theunlocking sensor is connected with a door control circuit. The rolling code method is adopted, the coincident code rate is approximately one of 4 billionth, and a remote controller copied by law-breakers can be eliminated; the telephone number input beforehand can be used for calling the fixed telephone at home to input the door opening code to open the door, and the circuit can not be interferedby an interference unit, and is especially suitable for the remote-control anti-theft door.

Description

Non-hole intelligent remote-control anti-theft gate control circuit
Technical field
The utility model relates to a kind of control circuit of Remote-controlled theft-proof door.
Background technology
The control circuit of present remote control gate comprises remote control circuit and receiving circuit, the remote control circuit control receiving circuit that transmits, the motion of the small electrical control door lock that receiving circuit control is common.The uprising poor performance of this circuit is not suitable for using on antitheft door.The function that does not have rolling coding, easy disturbed device disturbs, and theftproof performance is poor.The function that does not have phone gauge tap antitheft door in addition, just in case the telepilot loss, then can't open the door.
Summary of the invention
The purpose of this utility model is that a kind of non-hole intelligent remote-control anti-theft gate control circuit will be provided, and this control circuit can not disturb by disturbed device, and can control the switch of antitheft door by phone.
The purpose of this utility model is achieved in that this control circuit comprises remote control dash receiver and phone control panel, dc power anode connects delay circuit by the pass door sensor and the pass lock sensor of series connection, contact between pass door sensor and the pass lock sensor connects the positive pole of diode, the negative pole of diode connects the positive input terminal of remote control dash receiver and the positive input terminal of phone control panel by resistance, be serially connected with electric capacity between the positive input terminal of the positive input terminal of remote control dash receiver and phone control panel and the ground, the negative input end ground connection of the negative input end of remote control dash receiver and phone control panel; The positive output end of the positive output end of remote control dash receiver and phone control panel connects dc power anode jointly, be serially connected with first relay between the negative output terminal of the negative output terminal of remote control dash receiver and phone control panel and the ground, one end of lock motor is by the contact ground connection of first relay, the contact of first relay connects the middle terminal of the sensor of unblanking, the other end of lock motor connects a contact of the 3rd relay by another contact of first relay, the unblank upper terminal of sensor connects dc power anode, and the lower terminal of the sensor of unblanking connects gating circuit.
Described gating circuit comprises door motor, one end of door motor connects the lower terminal of the sensor of unblanking by the contact of the 4th relay, the other end of door motor passes through another contact ground connection of the 4th relay again by resistance, the other end of door motor also joins with the diode anode of optocoupler, the diode negative terminal of optocoupler connects the diode anode of another optocoupler by potentiometer, the contact of last termination the 5th relay of optocoupler output terminal, the contact of the 5th relay connects an end of the 4th relay and an end of the 6th relay, the other end ground connection of the 6th relay, be connected to the 5th relay between the lower end of optocoupler output terminal and the ground, the contact of one termination the 6th relay of the 4th relay, the contact of the 6th relay connects the upper end of another optocoupler output terminal by the contact of the 7th relay, be connected to the 7th relay between the lower end of another optocoupler output terminal and the ground, be connected to potentiometer between the negative terminal of the diode of another optocoupler and the other end of door motor, the terminal of another contact of the 4th relay links to each other with the terminal of the diode of another optocoupler upper end, and the upper end of two optocoupler output terminals (being the collector of triode end) links to each other with the lower terminal of the sensor of unblanking.
The utility model adopts the rolling coding mode, and after each the use, the coding of telepilot transmitter and receiver compiles sign indicating number again automatically, and adopts 2 32 power coded systems, and the repetition rate of coding is about 1/4000000000th, can stop the lawless person and duplicate telepilot.Just in case remote control transmitter is lost, owner can dial oneself landline telephone with in the phone of prior input any one.Import door-opening password then, antitheft door can be opened automatically.Simultaneously, owner can also make amendment to the telepilot password, steals in case the remote control transmitter of losing is examined by the lawless person.Can not disturb by disturbed device, do not worry forgetting yet and close the door, lock a door.
Description of drawings
Fig. 1 is a remote-control receiving circuit structural representation of the present utility model.
Embodiment
In Fig. 1, dc power anode+12V connects delay circuit by the pass door sensor and the pass lock sensor of series connection, dc power anode+12V meets the input end PORT1 that closes door sensor, the output terminal PORT2 that closes door sensor meets the input end PORT3 that closes lock sensor, and the output terminal PORT4 that closes lock sensor connects the contact 1 of capacitor C 2 positive poles, resistance R 6 upper ends, relay K 2 upper ends and the relay K 2 of delay circuit.
Contact between the input end PORT3 of the output terminal PORT2 of pass door sensor and pass lock sensor connects the positive pole of diode D0, the negative pole of diode D0 meets the positive input terminal JP11-1 of remote control dash receiver and the positive input terminal JP1-1 of phone control panel by resistance R 1, is serially connected with capacitor C 1 between the positive input terminal JP11-1 of remote control dash receiver and the positive input terminal JP1-1 of phone control panel and the ground.The negative input end ground connection of the negative input end of remote control dash receiver and phone control panel.
The positive output end JP3-2 of remote control dash receiver and the positive output end JP33-1 of phone control panel meet dc power anode+12V jointly, are serially connected with first relay K 21 between the negative output terminal JP3-1 of remote control dash receiver and the negative output terminal JP33-2 of phone control panel and the ground.One end PORT6 of lock motor is by contact 2,6 ground connection of first relay K 21, the contact 4 of first relay K 21 meets the middle terminal PORT12 of the sensor of unblanking, the other end PORT5 of lock motor is by another contact 1,5 connecting terminal POD1 of first relay K 21, terminals P OD1 succeeds the contact 3 of electrical equipment K3, the unblank upper terminal PORT13 of sensor meets dc power anode+12V, and the lower terminal PORT11 of the sensor of unblanking connects the contact 5 and the contact 4 of the 4th relay K 22 of gating circuit.
Gating circuit comprises door motor, one end PORT10 of door motor meets the lower terminal PORT11 of the sensor of unblanking by the contact 1,5 of the 4th relay K 22, and the other end PORT9 of door motor is another contact 2,6 ground connection by the 4th relay K 22 again by resistance R 13.The other end PORT9 of door motor also joins with the diode anode Port131 of optocoupler, the diode negative terminal PORT132 of optocoupler meets the diode anode PORT135 of another optocoupler by potentiometer R43, the upper end PORT133 of optocoupler output terminal connects the contact 1 of the 5th relay K 5, the contact 3 of the 5th relay K 5 connects an end 7 of the 4th relay K 22 and an end 4 of the 6th relay K 6, the other end ground connection of the 6th relay K 6 is connected to the 5th relay K 5 between the lower end PORT134 of optocoupler output terminal and the ground.One end 7 of the 4th relay connects the contact 1 of the 6th relay K 6, the contact 3 of the 6th relay K 6 meets the upper end PORT137 of another optocoupler output terminal by the contact 2,1 of the 7th relay, be connected to the 7th relay K 7 between the lower end PORT138 of another optocoupler output terminal and the ground, be connected to potentiometer R15 between the negative terminal PORT136 of the diode of another optocoupler and the other end PORT9 of door motor.The terminals P OD2 of the contact 2 of the 4th relay k22 links to each other with the terminals P OD2 of the diode of another optocoupler upper end port135.PORT133, PORT137 link to each other with the lower terminal PORT11 of the sensor of unblanking in the upper end of two optocoupler output terminals (being the collector of triode end).
Direct supply+12V through closing door sensor input end PORT1 and positive pole that output terminal PORT2 delivers to diode D0 and close the input end PORT3 of lock sensor, be filtered into the remote control dash receiver and the phone control panel provides power supply through capacitor C 1.The gauge tap signal of remote control dash receiver and phone control panel is delivered to the contact 7 of relay K 21 through output terminal JP3, JP33.During standby, the middle terminal PORT12 of the sensor of unblanking connects upper terminal PORT13.The lower terminal PORT11 output+12V of sensor closes gating circuit after unblanking.In this moment terminal PORT12+12V electricity disappears.
Shut under the state non-, the output terminal PORT4 that closes lock sensor is straight-through with the input end PORT3 that closes lock sensor.Capacitor C 2, resistance R 5, resistance R 4, resistance R 6, resistance R 7, triode Q1, triode Q2, relay K 2 are formed delay circuit.The contact 5 that direct supply+12V delivers to relay K 21 through the contact 3 of relay K 3 makes the lock machine operation.Do not finish the work of locking if the lock motor is overtime, then contact 3 outages of relay K 3, the contact 2 of relay K 3 the electric hummer LS1 that makes reports to the police.
When the diode anode PORT131 of optocoupler and the voltage between diode negative terminal PORT132 increase, electric current between the upper end PORT133 of optocoupler output terminal and the lower end PORT134 of optocoupler output terminal increases, make relay K 5 adhesives, the contact 3 of relay K 5 gets the contact 4 of electric and relay K 6, the contact 7 of relay K 22 links, and makes relay K 6, relay K 22 adhesives.After relay K 5 is released into, because the self-locking action of relay K 6 makes relay K 6, relay K 22 continue adhesive.Have only when opening the door and put in place when being hampered, voltage increases between the diode anode PORT135 of another optocoupler and diode negative terminal PORT136, make that electric current increases between the lower end PORT138 of the upper end PORT137 of another optocoupler output terminal and output terminal, make relay K 7 adhesives, make the contact 2 of relay K 7 cut off the power supply, contact 3 dead electricity of the relay K 6 that links with the contact 2 of relay K 7, thus relay K 6, relay K 22 dead electricity discharge door beginning reverse operation.
It is GM2280-1 that remote control transmitter adopts model, and the model of remote control dash receiver is GM2280, and the model of phone control panel is Z-15GW.The model of two optocouplers is 817B.Close door sensor, close lock sensor and the model of the sensor of unblanking is V-152-1C25.

Claims (2)

1. non-hole intelligent remote-control anti-theft gate control circuit, this control circuit comprises remote control dash receiver and phone control panel, it is characterized in that dc power anode connects delay circuit by the pass door sensor and the pass lock sensor of series connection, contact between pass door sensor and the pass lock sensor connects the positive pole of diode, the negative pole of diode connects the positive input terminal of remote control dash receiver and the positive input terminal of phone control panel by resistance, be serially connected with electric capacity between the positive input terminal of the positive input terminal of remote control dash receiver and phone control panel and the ground, the negative input end ground connection of the negative input end of remote control dash receiver and phone control panel; The positive output end of the positive output end of remote control dash receiver and phone control panel connects dc power anode jointly, be serially connected with first relay between the negative output terminal of the negative output terminal of remote control dash receiver and phone control panel and the ground, one end of lock motor is by the contact ground connection of first relay, the contact of first relay connects the middle terminal of the sensor of unblanking, the other end of lock motor connects a contact of the 3rd relay by another contact of first relay, the unblank upper terminal of sensor connects dc power anode, and the lower terminal of the sensor of unblanking connects gating circuit.
2. non-hole intelligent remote-control anti-theft gate control circuit according to claim 1, it is characterized in that gating circuit comprises door motor, one end of door motor connects the lower terminal of the sensor of unblanking by the contact of the 4th relay, the other end of door motor passes through another contact ground connection of the 4th relay again by resistance, the other end of door motor also joins with the diode anode of optocoupler, the diode negative terminal of optocoupler connects the diode anode of another optocoupler by potentiometer, the contact of last termination the 5th relay of optocoupler output terminal, the contact of the 5th relay connects an end of the 4th relay and an end of the 6th relay, the other end ground connection of the 6th relay, be connected to the 5th relay between the lower end of optocoupler output terminal and the ground, the contact of one termination the 6th relay of the 4th relay, the contact of the 6th relay connects the upper end of another optocoupler output terminal by the contact of the 7th relay, be connected to the 7th relay between the lower end of another optocoupler output terminal and the ground, be connected to potentiometer between the negative terminal of the diode of another optocoupler and the other end of door motor, the terminal of another contact of the 4th relay links to each other with the terminal of the diode of another optocoupler upper end, and the upper end of two optocoupler output terminals links to each other with the lower terminal of the sensor of unblanking.
CN2009200905200U 2009-05-21 2009-05-21 Control circuit used for intelligent remote-control anti-theft door without lock hole Expired - Fee Related CN201397528Y (en)

Priority Applications (1)

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CN2009200905200U CN201397528Y (en) 2009-05-21 2009-05-21 Control circuit used for intelligent remote-control anti-theft door without lock hole

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Application Number Priority Date Filing Date Title
CN2009200905200U CN201397528Y (en) 2009-05-21 2009-05-21 Control circuit used for intelligent remote-control anti-theft door without lock hole

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110785634A (en) * 2017-06-30 2020-02-11 法国大陆汽车公司 Current sensor
US11512499B2 (en) 2018-10-23 2022-11-29 Shenzhen Kaadas Intelligent Technology Co., Ltd Control circuit and control method for smart lock

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110785634A (en) * 2017-06-30 2020-02-11 法国大陆汽车公司 Current sensor
CN110785634B (en) * 2017-06-30 2022-05-13 法国大陆汽车公司 Current sensor
US11410544B2 (en) 2017-06-30 2022-08-09 Continental Automotive France Sensor having duplicate detection lines
US11512499B2 (en) 2018-10-23 2022-11-29 Shenzhen Kaadas Intelligent Technology Co., Ltd Control circuit and control method for smart lock

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Owner name: MEIZHAI MEIHUAN (BEIJING) E-COMMERCE CO., LTD.

Free format text: FORMER OWNER: XUZHOU YUJIA ELECTRONIC TECHNOLOGY CO., LTD.

Effective date: 20131231

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Address after: 101149 Beijing city Tongzhou District Lu Tong Street No. 198 room 2301 South Bay canal

Patentee after: American house for American exchange (Beijing) Agel Ecommerce Ltd

Address before: 221116 No. 26, Tianjin Road, Copper Mt. New District, Jiangsu, Xuzhou

Patentee before: Xuzhou Yujia Electronic Science & Technology Development Co., Ltd.

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Granted publication date: 20100203

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