CN106815990A - A kind of unicast dicode launches design - Google Patents

A kind of unicast dicode launches design Download PDF

Info

Publication number
CN106815990A
CN106815990A CN201510843458.8A CN201510843458A CN106815990A CN 106815990 A CN106815990 A CN 106815990A CN 201510843458 A CN201510843458 A CN 201510843458A CN 106815990 A CN106815990 A CN 106815990A
Authority
CN
China
Prior art keywords
unicast
dicode
electronic
circuit
yards
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.)
Pending
Application number
CN201510843458.8A
Other languages
Chinese (zh)
Inventor
杨远敏
蒋丹
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.)
Chongqing Zunlai Technology Co Ltd
Original Assignee
Chongqing Zunlai Technology Co Ltd
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 Chongqing Zunlai Technology Co Ltd filed Critical Chongqing Zunlai Technology Co Ltd
Priority to CN201510843458.8A priority Critical patent/CN106815990A/en
Publication of CN106815990A publication Critical patent/CN106815990A/en
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C23/00Non-electrical signal transmission systems, e.g. optical systems
    • G08C23/04Non-electrical signal transmission systems, e.g. optical systems using light waves, e.g. infrared

Abstract

A kind of unicast dicode launches design, belongs to electronic technology field, and design one is launched by a kind of unicast dicode, and a kind of unicast dicode transmitting design two is constituted respectively;Scheme is main by unicast dicode battery supply, unicast dicode button switch, unicast dicode electronic oscillating circuit, one yard of electronic switch of unicast, one yard of coded electronic circuit of unicast, one yard of transmitting insulating electron circuit of one yard of output electronic circuit of unicast or unicast, two yards of electronic switches of unicast, two yards of coded electronic circuits of unicast, two yards of transmitting insulating electron circuits of two yards of output electronic circuits of unicast or unicast, one yard of launching electronics circuit of unicast dicode launching electronics circuit or unicast, two yards of launching electronics circuit compositions of unicast;Due to using unicast dicode;Although unicast but its carrier wave can flexibly be selected using the first carrier wave and second carrier wave, two kinds of coding is again different, again can with shut whole car doors after central controlled lock automatic throw-in equipment use cooperatively, effectively raise automotive safety coefficient.

Description

A kind of unicast dicode launches design
Technical field
Belong to electronic technology field.
Background technology
Remote control coding lift-off technology, one is a very wide range of electronic technology of kind of application, is occurred quite variedly in the life of the masses, it is well known that anti-copying, security classification anti-tampering, high are the important technology indexs for representing that remote control coding lift-off technology is good and bad.From in terms of present technical merit, such as motor central lock input remote control, it is not safe enough to there is work, when lawless person nearby using power sufficiently large automobile remote-control interference unit when, may interfere with interception automobile remote controllers signal, allow its failure.Waited when in use due to interference unit and do not limited by car type and remote control kind, fixed code, specific code, rolling code can be disturbed, as long as jamming power is sufficiently large, any a vehicle can be disturbed, the order for making automobile to lock a door, the false lock phenomenon of vehicle is caused, it is dangerous, cause very big hidden danger.More there is victor, some lawless persons also can use a kind of " grabbing a yard device " to be also the special electrical devices of " reproducer ", when owner is when remote controlled locking is used, this electronic instrument can capture the radiofrequency signal and code signal of remote control, after treating that owner leaves, lawless person will be trusted with the instrument and audaciously copy code signal, carry out unlocking theft, and the major safety risks of unnecessary economic loss are caused to car owner;Single enormous amount with regard to automobile product one, there is great market.
Therefore how the interference of anti-tampering device, how anti-copying, how could realize improving use level of confidentiality degree, reduce use cost, be adapted to the product of minuscule-type-enterprise's production, also become the key subjects of this enterprise scientific research personnel.
Reach motor central lock, car alarm, closing of the door automatic throw-in equipment that above-mentioned purpose invented using our company can effectively anti-lawless person the generation for causing the false lock phenomenon of vehicle is disturbed with interference unit;
Prevent lawless person from will be trusted with the instrument and audaciously copy code signal, carry out unlocking theft, above-mentioned purpose is reached, is a kind of serious challenge, it is necessary to break through traditional mode of thinking completely, using being a kind of complete great innovation, therefore, main guiding theory of the invention is, a kind of unicast dicode launch scenario is developed, the various change selections of increase of its transmitting carrier wave and coding, improve secret and safe.
A kind of unicast dicode transmitting design also has the anti-ability of cracking very high, one be its carrier wave can or for the first carrier wave or for second carrier wave or be the third carrier wave, two be when it encode or for the first coding with the first coding combination or be the first coding with second coded combination, or be second coding with second coded combination can play optimum efficiency.So as to abundant transmitting coding techniques.There is the change of a variety of forms due to a kind of this unicast dicode transmitting design, and each version all has great importance, so this enterprise has made system innovation, proposes the scheme of the invention of system, the protection system as series.With easily production, operate has very big competitiveness well in market competition.
The content of the invention
A kind of unicast dicode transmitting design launches design one by a kind of unicast dicode, and a kind of unicast dicode transmitting design two is constituted respectively.
A kind of unicast dicode launches design one by unicast dicode battery supply, unicast dicode button switch, unicast dicode electronic oscillating circuit, one yard of electronic switch of unicast, one yard of coded electronic circuit of unicast, one yard of output electronic circuit of unicast, two yards of electronic switches of unicast, two yards of coded electronic circuits of unicast, two yards of output electronic circuits of unicast, unicast dicode launching electronics circuit composition.
A kind of unicast dicode launches design two by unicast dicode battery supply, unicast dicode button switch, unicast dicode electronic oscillating circuit, one yard of electronic switch of unicast, one yard of coding insulating electron circuit of unicast, one yard of coded electronic circuit of unicast, one yard of transmitting insulating electron circuit of unicast, one yard of launching electronics circuit of unicast, two yards of electronic switches of unicast, two yards of coding insulating electron circuits of unicast, two yards of coded electronic circuits of unicast, two yards of transmitting insulating electron circuits of unicast, two yards of launching electronics circuit compositions of unicast.
The unicast of a kind of unicast dicode transmitting design or for the first carrier wave or for second carrier wave or be the third carrier wave;A kind of dicode of unicast dicode transmitting design or the combination for the first coding and the first coding are the first coding and second coded combination, or are second coding and second coded combination.
Scheme one:Unicast dicode button switch one end connects unicast dicode battery supply positive pole, and the unicast dicode button switch other end is connected with unicast dicode electronic oscillating circuit power end, unicast dicode launching electronics circuit power end respectively;Unicast dicode electronic oscillating circuit ground wire, unicast dicode launching electronics circuit ground is connected with unicast dicode electronic cell power circuit ground wire respectively, and two output ends of unicast dicode electronic oscillating circuit connect one yard of electronic switch of unicast, two yards of the two of electronic switch control ends of unicast and are connected respectively;One yard of electronic switch of unicast, two yards of power ends of electronic switch of unicast are connected with the unicast positive level of dicode battery supply respectively, one yard of electronic switch of unicast, two yards of ground terminals of electronic switch of unicast are connected with unicast dicode battery supply ground terminal respectively, one yard of electronic switch output end of unicast and one yard of coded electronic circuit power end of unicast, one yard of output electronic circuit power end of unicast is connected, one yard of coded electronic circuit ground of unicast, one yard of output electronic circuit ground wire of unicast is connected with unicast dicode battery supply ground wire;One yard of output electronic circuit input of one yard of coded electronic circuit code output end of unicast and unicast is connected, and one yard of output electronic circuit output end of unicast is connected with unicast dicode launching electronics circuit input end;Two yards of electronic switch output ends of unicast and two yards of coded electronic circuit power ends of unicast, two yards of output electronic circuit power ends of unicast are connected, two yards of coded electronic circuit grounds of unicast, and two yards of output electronic circuit ground wires of unicast are connected with unicast dicode battery supply ground wire;Two yards of output electronic circuit inputs of two yards of coded electronic circuit code output ends of unicast and unicast are connected, and two yards of output electronic circuit output ends of unicast are connected with unicast dicode launching electronics circuit input end.
Scheme two:Unicast dicode button switch one end connect unicast dicode battery supply positive pole, the unicast dicode button switch other end respectively with unicast dicode electronic oscillating circuit power end,,One yard of electronic switching circuit power end of unicast, two yards of electronic switching circuit power end connections of unicast;Unicast dicode electronic oscillating circuit ground wire, one yard of electronic switching circuit ground wire of unicast, two yards of electronic switching circuit ground wires of unicast are connected with unicast dicode electronic cell power circuit ground wire respectively.
Two output ends of unicast dicode electronic oscillating circuit connect one yard of electronic switch of unicast, two yards of the two of electronic switch control ends of unicast and are connected respectively.
One yard of electronic switch output end of unicast respectively with one yard of unicast coding insulating electron circuit input end, one yard of transmitting insulating electron circuit input end of unicast is connected, one yard of coding insulating electron circuit output end and unicast of unicast, one yard of coded electronic circuit power end is connected, and one yard of coded electronic circuit ground of unicast is connected with unicast dicode battery supply ground wire;One yard of launching electronics circuit input end of one yard of coded electronic circuit code output end of unicast and unicast is connected;One yard of transmitting insulating electron circuit output end and unicast of unicast, one yard of launching electronics circuit power end is connected;One yard of launching electronics circuit ground end of unicast is connected with unicast dicode battery supply ground terminal.
Two yards of electronic switch output ends of unicast respectively with two yards of unicast coding insulating electron circuit input ends, two yards of transmitting insulating electron circuit input ends of unicast are connected, two yards of coding insulating electron circuit output ends and unicast of unicast, two yards of coded electronic circuit power ends are connected, and two yards of coded electronic circuit grounds of unicast are connected with unicast dicode battery supply ground wire;Two yards of launching electronics circuit input ends of two yards of coded electronic circuit code output ends of unicast and unicast are connected;Two yards of transmitting insulating electron circuit output ends and unicast of unicast, two yards of launching electronics circuit power ends are connected;Two yards of launching electronics circuit ground ends of unicast are connected with unicast dicode battery supply ground terminal.
Its operation principle is as follows:
Scheme one:Unicast dicode button switch one end connect unicast dicode battery supply positive pole, the unicast dicode button switch other end respectively with unicast dicode electronic oscillating circuit power end,,Unicast dicode launching electronics circuit power end connects;Unicast dicode electronic oscillating circuit ground wire, unicast dicode launching electronics circuit ground is connected with unicast dicode electronic cell power circuit ground wire respectively.
When the unicast dicode button switch of unicast dicode remote controlled transmitting circuit is pressed, unicast dicode launching electronics circuit switches on power to start working and prepares transmitting.
Unicast dicode electronic oscillating circuit switches on power and also begins to work, and unicast dicode electronic oscillating circuit starts vibration, and two output ends of unicast dicode electronic oscillating circuit alternately export high and low two kinds of current potentials respectively.
Two output ends of unicast dicode electronic oscillating circuit connect one yard of electronic switch of unicast, two yards of the two of electronic switch control ends of unicast and are connected respectively;One yard of electronic switch of unicast, two yards of power ends of electronic switch of unicast are connected with the unicast positive level of dicode battery supply respectively, and one yard of electronic switch of unicast, two yards of ground terminals of electronic switch of unicast are connected with unicast dicode battery supply ground terminal respectively.
When unicast dicode electronic oscillating circuit one yard of output end of electronic switch of connection unicast is high potential, one yard of electronic switch of unicast is open-minded when one yard of electronic switch controling end of unicast is high potential, output HIGH voltage, one yard of electronic switch output end of unicast and one yard of coded electronic circuit power end of unicast, one yard of output electronic circuit power end of unicast is connected, one yard of coded electronic circuit ground of unicast, one yard of output electronic circuit ground wire of unicast is connected with unicast dicode battery supply ground wire;Started working after switching on power and encoded in one yard of coded electronic circuit power end of unicast, one yard of output electronic circuit input of one yard of coded electronic circuit code output end of unicast and unicast is connected, and one yard of output electronic circuit output end of unicast is connected with unicast dicode launching electronics circuit input end;Its coding passes to unicast dicode launching electronics circuit through one yard of output electronic circuit of signal unicast, and through unicast dicode launching electronics circuit to emission.
When unicast dicode electronic oscillating circuit two yards of output ends of electronic switch of connection unicast are low potential, two yards of electronic switch controling ends of unicast are low potential, and two yards of electronic switches of unicast close Non voltage output.
Two yards of electronic switch output ends of unicast and two yards of coded electronic circuit power ends of unicast, two yards of output electronic circuit power ends of unicast are connected, two yards of coded electronic circuit grounds of unicast, and two yards of output electronic circuit ground wires of unicast are connected with unicast dicode battery supply ground wire;Two yards of output electronic circuit inputs of two yards of coded electronic circuit code output ends of unicast and unicast are connected, and two yards of output electronic circuit output ends of unicast are connected with unicast dicode launching electronics circuit input end;Two yards of coded electronic circuits of unicast are without the electric also no signal output that do not work.
When unicast dicode electronic oscillating circuit state overturns, when unicast dicode electronic oscillating circuit one yard of output end of electronic switch of connection unicast is low potential, one yard of electronic switch of unicast closes Non voltage output.
One yard of electronic switch output end of unicast and one yard of coded electronic circuit power end of unicast, one yard of output electronic circuit power end of unicast are connected, one yard of coded electronic circuit ground of unicast, and one yard of output electronic circuit ground wire of unicast is connected with unicast dicode battery supply ground wire;One yard of output electronic circuit input of one yard of coded electronic circuit code output end of unicast and unicast is connected, and one yard of output electronic circuit output end of unicast is connected with unicast dicode launching electronics circuit input end;One yard of coded electronic circuit of unicast is without the electric also no signal output that do not work.
When unicast dicode electronic oscillating circuit two yards of output ends of electronic switch of connection unicast are high potential, two yards of electronic switches of unicast have opened voltage output when two yards of electronic switch controling ends of unicast are high potential.
Two yards of electronic switch output ends of unicast and two yards of coded electronic circuit power ends of unicast, two yards of output electronic circuit power ends of unicast are connected, two yards of coded electronic circuit grounds of unicast, and two yards of output electronic circuit ground wires of unicast are connected with unicast dicode battery supply ground wire;Started working after switching on power and encoded in two yards of coded electronic circuit power ends of unicast, two yards of output electronic circuit inputs of two yards of coded electronic circuit code output ends of unicast and unicast are connected, and two yards of output electronic circuit output ends of unicast are connected with unicast dicode launching electronics circuit input end;Its coding passes to unicast dicode launching electronics circuit through two yards of output electronic circuits of signal unicast, and through unicast dicode launching electronics circuit to emission.
Unicast dicode electronic oscillating circuit so alternately and repeatedly works, and realizes two kinds of alternations of encoded signal in unicast dicode remote controlled transmitting circuit, and unicast dicode launching electronics circuit carries out unicast dicode remote-transmitter.
Scheme two:Unicast dicode button switch one end connect unicast dicode battery supply positive pole, the unicast dicode button switch other end respectively with unicast dicode electronic oscillating circuit power end,,One yard of electronic switching circuit power end of unicast, two yards of electronic switching circuit power end connections of unicast;Unicast dicode electronic oscillating circuit ground wire, one yard of electronic switching circuit ground wire of unicast, two yards of electronic switching circuit ground wires of unicast are connected with unicast dicode electronic cell power circuit ground wire respectively.
When the unicast dicode button switch of unicast dicode remote controlled transmitting circuit is pressed, unicast dicode electronic oscillating circuit switches on power start-up operation, and the start-up operation that switches on power of one yard of electronic switch of unicast, two yards of electronic switches of unicast prepares.
Unicast dicode electronic oscillating circuit switches on power start-up operation, and two output ends that unicast dicode electronic oscillating circuit starts to vibrate unicast dicode electronic oscillating circuit export height or two electric potential signals high low each other each other respectively.
One yard of electronic switch of unicast, two yards of electronic switches of unicast switch on power to start working and prepare;When one yard of electronic switch of unicast, two yards of control ends of electronic switch of unicast are high potential, one yard of electronic switch of unicast, two yards of electronic switches of unicast will be opened output voltage, when one yard of electronic switch of unicast, two yards of control ends of electronic switch of unicast are low potential, one yard of electronic switch of unicast, two yards of electronic switches of unicast will be closed, Non voltage output.
Two output ends of unicast dicode electronic oscillating circuit are connected with one yard of electronic switch of unicast, two yards of the two of electronic switch control ends of unicast respectively.
When unicast dicode electronic oscillating circuit one yard of output end of electronic switch controling end of connection unicast is high potential, one yard of electronic switch of unicast will be opened output voltage, one yard of electronic switch output end of unicast respectively with one yard of unicast coding insulating electron circuit input end, one yard of transmitting insulating electron circuit input end of unicast is connected.
One yard of coding insulating electron circuit output end and unicast of unicast, one yard of coded electronic circuit power end is connected, and one yard of transmitting insulating electron circuit output end and unicast of unicast, one yard of launching electronics circuit power end is connected.
One yard of coded electronic circuit of unicast proceeds by coding work after switching on power, one yard of launching electronics circuit of unicast begins preparing for carrying out transmitting work after switching on power;One yard of launching electronics circuit input end of one yard of coded electronic circuit code output end of unicast and unicast is connected, and the coding that one yard of coded electronic circuit code of unicast will be finished is exported gives unicast one yard of launching electronics circuit, and one yard of launching electronics circuit of unicast is immediately to emission.
One yard of coded electronic circuit ground of unicast is connected with unicast dicode battery supply ground wire;One yard of launching electronics circuit ground end of unicast is connected with unicast dicode battery supply ground terminal.
Unicast dicode electronic oscillating circuit connection unicast two yards of output ends of electronic switch controling end will for low potential when, two yards of electronic switches of unicast will be closed Non voltage output.
Two yards of electronic switch output ends of unicast respectively with two yards of unicast coding insulating electron circuit input ends, two yards of transmitting insulating electron circuit input ends of unicast are connected, two yards of coding insulating electron circuit output ends and unicast of unicast, two yards of coded electronic circuit power ends are connected, and two yards of coded electronic circuit grounds of unicast are connected with unicast dicode battery supply ground wire;Two yards of launching electronics circuit input ends of two yards of coded electronic circuit code output ends of unicast and unicast are connected;Two yards of transmitting insulating electron circuit output ends and unicast of unicast, two yards of launching electronics circuit power ends are connected;Two yards of launching electronics circuit ground ends of unicast are connected with unicast dicode battery supply ground terminal.
Two yards of coded electronic circuit power ends of unicast and two yards of equal no-voltages in launching electronics circuit power end of unicast do not work by without electric wave to emission.
When unicast dicode electronic oscillating circuit state overturns, when unicast dicode electronic oscillating circuit one yard of output end of electronic switch of connection unicast is low potential, one yard of electronic switch of unicast closes Non voltage output.
One yard of coded electronic circuit power end of one yard of electronic switch output end of unicast and unicast is connected, and one yard of coded electronic circuit ground of unicast is connected with unicast dicode battery supply ground wire;One yard of insulating electron circuit input end of one yard of coded electronic circuit code output end of unicast and unicast is connected, and one yard of insulating electron circuit output end of unicast is connected with unicast dicode launching electronics circuit input end;One yard of coded electronic circuit of unicast is without the electric also no signal output that do not work.
When unicast dicode electronic oscillating circuit two yards of output ends of electronic switch controling end of connection unicast are high potential, two yards of electronic switches of unicast will be opened output voltage, two yards of electronic switch output ends of unicast respectively with two yards of unicast coding insulating electron circuit input ends, two yards of transmitting insulating electron circuit input ends of unicast are connected.
Two yards of coding insulating electron circuit output ends and unicast of unicast, two yards of coded electronic circuit power ends are connected, and two yards of transmitting insulating electron circuit output ends and unicast of unicast, two yards of launching electronics circuit power ends are connected.
Two yards of coded electronic circuits of unicast proceed by coding work after switching on power, two yards of launching electronics circuits of unicast begin preparing for carrying out transmitting work after switching on power;Two yards of launching electronics circuit input ends of two yards of coded electronic circuit code output ends of unicast and unicast are connected, and the coding that two yards of coded electronic circuit codes of unicast will be finished is exported gives unicast two yards of launching electronics circuits, and two yards of launching electronics circuits of unicast are immediately to emission.
Two yards of coded electronic circuit grounds of unicast are connected with unicast dicode battery supply ground wire;Two yards of launching electronics circuit ground ends of unicast are connected with unicast dicode battery supply ground terminal.
Unicast dicode electronic oscillating circuit so alternately and repeatedly works, and realizes two kinds of alternations of encoded signal in unicast dicode remote controlled transmitting circuit, and unicast dicode launching electronics circuit carries out unicast dicode remote-transmitter.UntilUnicast dicodeUntill button switch disconnects.
The present invention has following outstanding advantages after implementing:
1st, unicast dicode is used due to putting into and releasing ordinary circumstance;Although unicast but its carrier wave second carrier wave of the first carrier wave of radio and infrared ray can be selected flexibly shortly, the coding of two is again different, so using decoder, grabbing a yard device and catching strong with radio scanner criminal offence resistivity.
2nd, central controlled lock is automatically switched off after and can shutting whole car doors, and warning system automatic throw-in device is used cooperatively, and convenient, modern sense is strong.Automotive safety coefficient is effectively raised, the criminal offence using interference unit, decoder etc crime one's share of expenses for a joint undertaking is prevented, is that car owner reduces unnecessary economic loss.
3rd, a kind of unicast dicode is arranged on a launch-box, easy to use.
4th, simple, easily production is installed, stable and reliable for performance.
Brief description of the drawings
Fig. 1 is a kind of schematic diagram of unicast dicode transmitting design scheme one.
In figure:Square frame 1, unicast dicode battery supply;Square frame 2, unicast dicode button switch;Square frame 3, unicast dicode electronic oscillating circuit;Square frame 4, one yard of electronic switch of unicast;Square frame 5, one yard of coded electronic circuit of unicast;Square frame 6, one yard of output electronic circuit of unicast;Square frame 7, two yards of electronic switches of unicast;Square frame 8, two yards of coded electronic circuits of unicast;Square frame 9, two yards of output electronic circuits of unicast;Square frame 10, unicast dicode launching electronics circuit.
Fig. 2 is another schematic diagram of unicast dicode transmitting design scheme two.
In figure:Square frame 1, unicast dicode battery supply;Square frame 2, unicast dicode button switch;Square frame 3, unicast dicode electronic oscillating circuit;Square frame 4, one yard of electronic switch of unicast;Square frame 5-1, one yard of coding insulating electron circuit of unicast;Square frame 6-1, one yard of coded electronic circuit of unicast;Square frame 7-1, one yard of transmitting insulating electron circuit of unicast;Square frame 8-1, one yard of launching electronics circuit of unicast;Square frame 9-1, two yards of electronic switches of unicast;Square frame 10-1, two yards of coding insulating electron circuits of unicast;Square frame 11, two yards of coded electronic circuits of unicast;Square frame 12, two yards of transmitting insulating electron circuits of unicast;Square frame 13, two yards of launching electronics circuits of unicast.
Specific embodiment
Fig. 1, Fig. 2, a kind of mode for respectively representing a kind of transmitting design specific implementation of unicast dicode, its specific embodiment are essentially identical.
First, circuit control panel is made:Electronic control panel is made according to the relation indicated in figure first, and electronic control panel will be made, loaded in the launch-box supporting with it.
2nd, plug-in unit welding is carried out to circuit control panel according to Fig. 1, Fig. 2.
3rd, check and hot- line test.
Associated contacts are checked with avometer, or oscillograph.
1st, unicast dicode button switch is checked with ohmmeter first;Unicast dicode button switch is pressed or decontroled with hand;Unicast dicode button switch input is checked with ohmmeter, whether signal output part break-make is good.
2nd, energization inspection, debugging are carried out to making electronic control panel.
(1), billboard, check element whether weld correctly, whether there is rosin joint, solder skip, short circuit phenomenon.
(2), billboard check it is errorless after, ensure it without switching on power after short circuit phenomenon with ohm table look-up electronic control panel zero line and ground terminal.
(3), with avometer or oscillograph to checking that making electronic control panel carries out energization inspection, debugging, by avometer positive pole or oscillograph positive signal input test respectively each unit circuit exit point or with input endpoint junction.
(4), inspection to unicast dicode electronic oscillating circuit, test two output ends of unicast dicode electronic oscillating circuit respectively with avometer positive pole or oscillograph positive signal input, unicast dicode electronic oscillating circuit will start working after switching on power, be vibrated;Two output ends for testing unicast dicode electronic oscillating circuit respectively with avometer positive pole or oscillograph positive signal input will respectively export height or two electric potential signals high low each other each other;If can't detect, should check whether that element insertion makes a mistake with welding.
(5), to the two yards of inspections of electronic switch of one yard of electronic switch of unicast and unicast.
The power end for testing one yard of electronic switch of unicast and two yards of electronic switches of unicast respectively with avometer positive pole or oscillograph positive signal input is connected after having operating voltage, test the control end and output end of one yard of electronic switch of unicast and two yards of electronic switches of unicast respectively with avometer positive pole or oscillograph positive signal input, when one yard of electronic switch of unicast is high potential with two yards of control ends of electronic switch of unicast, one yard of electronic switch of unicast has voltage output with the output end of two yards of electronic switches of unicast, when one yard of electronic switch of unicast is low potential with two yards of control ends of electronic switch of unicast, one yard of electronic switch of unicast whether there is pressure output with the output end of two yards of electronic switches of unicast.
If can't detect, should check whether that element insertion makes a mistake with welding.
(6), two yards of codings of the output of one yard of unicast coding or insulating electron circuit and unicast are exported or insulating electron circuit is checked.
Oscillograph positive signal input is tested the two yards of coding outputs of one yard of coding output of unicast or insulating electron circuit and unicast or is isolated respectively.
The input and output end of electronic circuit, when the input of one yard of coding output of unicast or the two yards of coding outputs of insulating electron circuit and unicast or insulating electron circuit has signal input, the output end one of one yard of coding output of unicast or the two yards of coding outputs of insulating electron circuit and unicast or insulating electron circuit is surely tested to identical signal;If can't detect, should check whether that welding makes a mistake or component wear.
(7), two yards of coded electronic circuits of one yard of coded electronic circuit of unicast and unicast are checked.
The power end for testing one yard of electronic switch of unicast and two yards of electronic switches of unicast respectively with avometer positive pole or oscillograph positive signal input is connected after having operating voltage, it is input into one yard of coded electronic circuit of unicast and two yards of output ends of coded electronic circuit of unicast with oscillograph positive signal, normally by test to its encoded signal;If can't detect, should check whether that welding makes a mistake or component wear.
(8), inspection to one yard of launching electronics circuit of unicast, two yards of launching electronics circuits of unicast and unicast dicode launching electronics circuit, the power end for testing one yard of electronic switch of unicast and two yards of electronic switches of unicast respectively with avometer positive pole or oscillograph positive signal input is connected after having operating voltage, the output end in one yard of launching electronics circuit of unicast, two yards of launching electronics circuits of unicast and unicast dicode launching electronics circuit is input into oscillograph positive signal, normally by test to its transmission signal;If can't detect, should check whether that welding makes a mistake or component wear.

Claims (1)

1. a kind of unicast dicode transmitting design launches design one by a kind of unicast dicode, and a kind of unicast dicode transmitting design two is constituted respectively;
A kind of unicast dicode launches design one by unicast dicode battery supply, unicast dicode button switch, unicast dicode electronic oscillating circuit, one yard of electronic switch of unicast, one yard of coded electronic circuit of unicast, one yard of output electronic circuit of unicast, two yards of electronic switches of unicast, two yards of coded electronic circuits of unicast, two yards of output electronic circuits of unicast, unicast dicode launching electronics circuit composition;
A kind of unicast dicode launches design two by unicast dicode battery supply, unicast dicode button switch, unicast dicode electronic oscillating circuit, one yard of electronic switch of unicast, one yard of coding insulating electron circuit of unicast, one yard of coded electronic circuit of unicast, one yard of transmitting insulating electron circuit of unicast, one yard of launching electronics circuit of unicast, two yards of electronic switches of unicast, two yards of coding insulating electron circuits of unicast, two yards of coded electronic circuits of unicast, two yards of transmitting insulating electron circuits of unicast, two yards of launching electronics circuit compositions of unicast;
The unicast of a kind of unicast dicode transmitting design or for the first carrier wave or for second carrier wave or be the third carrier wave;A kind of dicode of unicast dicode transmitting design or the combination for the first coding and the first coding are the first coding and second coded combination, or are second coding and second coded combination;
Scheme one:Unicast dicode button switch one end connects unicast dicode battery supply positive pole, and the unicast dicode button switch other end is connected with unicast dicode electronic oscillating circuit power end, unicast dicode launching electronics circuit power end respectively;Unicast dicode electronic oscillating circuit ground wire, unicast dicode launching electronics circuit ground is connected with unicast dicode electronic cell power circuit ground wire respectively, and two output ends of unicast dicode electronic oscillating circuit connect one yard of electronic switch of unicast, two yards of the two of electronic switch control ends of unicast and are connected respectively;One yard of electronic switch of unicast, two yards of power ends of electronic switch of unicast are connected with the unicast positive level of dicode battery supply respectively, one yard of electronic switch of unicast, two yards of ground terminals of electronic switch of unicast are connected with unicast dicode battery supply ground terminal respectively, one yard of electronic switch output end of unicast and one yard of coded electronic circuit power end of unicast, one yard of output electronic circuit power end of unicast is connected, one yard of coded electronic circuit ground of unicast, one yard of output electronic circuit ground wire of unicast is connected with unicast dicode battery supply ground wire;One yard of output electronic circuit input of one yard of coded electronic circuit code output end of unicast and unicast is connected, and one yard of output electronic circuit output end of unicast is connected with unicast dicode launching electronics circuit input end;Two yards of electronic switch output ends of unicast and two yards of coded electronic circuit power ends of unicast, two yards of output electronic circuit power ends of unicast are connected, two yards of coded electronic circuit grounds of unicast, and two yards of output electronic circuit ground wires of unicast are connected with unicast dicode battery supply ground wire;Two yards of output electronic circuit inputs of two yards of coded electronic circuit code output ends of unicast and unicast are connected, and two yards of output electronic circuit output ends of unicast are connected with unicast dicode launching electronics circuit input end;
Scheme two:Unicast dicode button switch one end connect unicast dicode battery supply positive pole, the unicast dicode button switch other end respectively with unicast dicode electronic oscillating circuit power end,,One yard of electronic switching circuit power end of unicast, two yards of electronic switching circuit power end connections of unicast;Unicast dicode electronic oscillating circuit ground wire, one yard of electronic switching circuit ground wire of unicast, two yards of electronic switching circuit ground wires of unicast are connected with unicast dicode electronic cell power circuit ground wire respectively;
Two output ends of unicast dicode electronic oscillating circuit connect one yard of electronic switch of unicast, two yards of the two of electronic switch control ends of unicast and are connected respectively;
One yard of electronic switch output end of unicast respectively with one yard of unicast coding insulating electron circuit input end, one yard of transmitting insulating electron circuit input end of unicast is connected, one yard of coding insulating electron circuit output end and unicast of unicast, one yard of coded electronic circuit power end is connected, and one yard of coded electronic circuit ground of unicast is connected with unicast dicode battery supply ground wire;One yard of launching electronics circuit input end of one yard of coded electronic circuit code output end of unicast and unicast is connected;One yard of transmitting insulating electron circuit output end and unicast of unicast, one yard of launching electronics circuit power end is connected;One yard of launching electronics circuit ground end of unicast is connected with unicast dicode battery supply ground terminal;
Two yards of electronic switch output ends of unicast respectively with two yards of unicast coding insulating electron circuit input ends, two yards of transmitting insulating electron circuit input ends of unicast are connected, two yards of coding insulating electron circuit output ends and unicast of unicast, two yards of coded electronic circuit power ends are connected, and two yards of coded electronic circuit grounds of unicast are connected with unicast dicode battery supply ground wire;Two yards of launching electronics circuit input ends of two yards of coded electronic circuit code output ends of unicast and unicast are connected;Two yards of transmitting insulating electron circuit output ends and unicast of unicast, two yards of launching electronics circuit power ends are connected;Two yards of launching electronics circuit ground ends of unicast are connected with unicast dicode battery supply ground terminal.
CN201510843458.8A 2015-11-27 2015-11-27 A kind of unicast dicode launches design Pending CN106815990A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510843458.8A CN106815990A (en) 2015-11-27 2015-11-27 A kind of unicast dicode launches design

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510843458.8A CN106815990A (en) 2015-11-27 2015-11-27 A kind of unicast dicode launches design

Publications (1)

Publication Number Publication Date
CN106815990A true CN106815990A (en) 2017-06-09

Family

ID=59102589

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510843458.8A Pending CN106815990A (en) 2015-11-27 2015-11-27 A kind of unicast dicode launches design

Country Status (1)

Country Link
CN (1) CN106815990A (en)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202472914U (en) * 2012-03-18 2012-10-03 宁永敭 Single-wave and double-code, double-wave and double-code remote control transmitter
CN202472926U (en) * 2011-02-22 2012-10-03 宁永敭 Single-wave double-code, double-wave double-code remote-control transmitting device
CN103136917A (en) * 2011-12-02 2013-06-05 蒋丹 Automobile hybrid remote control transmitting device
CN204597939U (en) * 2015-05-10 2015-08-26 重庆尊来科技有限责任公司 Dicode becomes code reflector

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202472926U (en) * 2011-02-22 2012-10-03 宁永敭 Single-wave double-code, double-wave double-code remote-control transmitting device
CN103136917A (en) * 2011-12-02 2013-06-05 蒋丹 Automobile hybrid remote control transmitting device
CN202472914U (en) * 2012-03-18 2012-10-03 宁永敭 Single-wave and double-code, double-wave and double-code remote control transmitter
CN204597939U (en) * 2015-05-10 2015-08-26 重庆尊来科技有限责任公司 Dicode becomes code reflector

Similar Documents

Publication Publication Date Title
CN202472926U (en) Single-wave double-code, double-wave double-code remote-control transmitting device
CN103136917A (en) Automobile hybrid remote control transmitting device
CN106815990A (en) A kind of unicast dicode launches design
CN106815992A (en) A kind of remote-controlled launcher
CN106921400A (en) A kind of unicast dicode receives design
CN106887128A (en) A kind of security type automobile remote-control transmitter
CN106856036A (en) A kind of reinforced motor vehicle remote-transmitter mode
CN106875644A (en) The coded excitation device of two carrier wave three
CN106887127A (en) A kind of safety vehicle remote-controlled launcher
CN106815999A (en) A kind of double wave dicode launches design
CN106856035A (en) A kind of multi-code transmitter design
CN106887131A (en) A kind of automobile multi-code transmitter device
CN106815995A (en) Double wave dicode remote control transmitter
CN106846784A (en) A kind of strong multi-code smooth sea solid size mixing transmitting design
CN106856037A (en) A kind of four yards of automobile remote-control transmitting designs of double wave
CN106926813B (en) A kind of reinforced motor vehicle remote control reception mode
CN106920376A (en) A kind of double wave dicode receives design
CN106846766A (en) A kind of automobile primary Baudot code subwave solid size remote control transmitter
CN106921399A (en) A kind of trigram double wave receives design
CN106935009A (en) A kind of encryption safe emitter
CN106935010A (en) A kind of digital secrecy remote control transmitter
CN106846764A (en) A kind of trigram double wave launches design
CN106936456A (en) A kind of multi-code receives design
CN106199481B (en) Current transformer working state monitoring system and control method thereof
CN106920375A (en) A kind of four yards of automobile remote control receivers of double wave

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20170609