CN200992864Y - Electricity-saving infrared electronic lock core - Google Patents

Electricity-saving infrared electronic lock core Download PDF

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Publication number
CN200992864Y
CN200992864Y CN 200620175797 CN200620175797U CN200992864Y CN 200992864 Y CN200992864 Y CN 200992864Y CN 200620175797 CN200620175797 CN 200620175797 CN 200620175797 U CN200620175797 U CN 200620175797U CN 200992864 Y CN200992864 Y CN 200992864Y
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CN
China
Prior art keywords
lock core
infrared
infrared ray
electronic lock
electronic
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
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CN 200620175797
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Chinese (zh)
Inventor
连智民
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WFE Technology Corp
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WFE Technology Corp
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Publication date
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Priority to CN 200620175797 priority Critical patent/CN200992864Y/en
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Publication of CN200992864Y publication Critical patent/CN200992864Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a compact wireless RF identifying device, in particular to a power conservation infrared ray electric lock core, which gets help from start of an infrared ray induction device identifying device, so as to save electric power. The utility model comprises an electric lock core, an infrared ray induction device, a wireless RF identifying device and a power supply component; wherein the infrared ray induction device is positioned at one end of the lock core; moreover, the infrared ray induction device comprises an infrared ray receiver; the wireless RF identifying device and the infrared ray induction device is electric connected; the power supply component and the electric lock core start component is electric connected as well. When the infrared ray induction device detects human or objects in preset scope, the wireless RF identifying device start to identify; as the identification is right, the wireless RF identifying device further drives the electric lock core start component and unlock the electric lock core. When detect no human or objects, the wireless RF identifying device control the infrared ray induction device enter into an electric power conservation mode, thus saving electric power.

Description

Power conservation type infrared electronic core
Technical field
The utility model relates to a kind of electronic lock core structure, especially refers to a kind of radio frequency identification device that is combined with, and can be by the startup of infrared rays sensing apparatus control recognition device, to save the power conservation type infrared electronic core of electric power.
Background technology
The development of lockset is maked rapid progress, and the kind pattern is various, wherein, the structural principle of common mechanical formula lockset, be the configuration that utilizes locking bolt in the core, and utilize exclusive on the key with the corresponding tongue and groove indentation design of locking bolt, and then make the locking bolt in spoon ditch move to the precalculated position, could rotate or move axially core, to reach antitheft purpose.Yet this kind mechanical lockset only possesses single pinning function, if utilize proper implements, this kind lockset still can be cracked within a certain period of time, and key easily is copied, and safety is not good.
Radio frequency identification device (radio frequency identification system, RFID) be to utilize radiofrequency signal to transmit and receive label (tag) the distinctive recognition data of being deposited with wireless mode, when this system starts, can produce the radio signal of CF by reading machine (reader), start the program in the label inside chip, and then generation rf wave, and the identification code in the chip internal memory (ID Code) or other are stored message pass reading machine back, through after the decoding, just can finish the function of identification or deciphering again.Because it has the convenience that need not take out just in the directly use of identification, the authorized identification codes high security of duplicate copy and card or the label advantage that do not need additional power source to use easily, on each aspect in being widely used in living.Yet read the lasting radio signal of CF that produces of function to detect card or label at any time for making, need constant supply reading machine power supply to keep its holding state, and cause electric power consumption useless, particularly with the electronic lock of battery as power source, its power consumption situation is even more serious.Therefore if radio frequency identification device can be applied on the core, simultaneously further combined with a sensing system, utilize its induction earlier to enter the personnel or the object of read range, restart reading machine, can save the security protection usefulness that system's required electric power also can be strengthened lockset.
The utility model content
For need continuing to be in holding state, the reading machine that solves the set radio frequency identification device of electronic lock causes the useless shortcoming of power supply consumption, the utility model provides a kind of power conservation type infrared electronic core that is combined with the infrared rays sensing apparatus, detecting by the infrared rays sensing apparatus, only have when personnel or object enter sensing range, just start the radio frequency identification device that is provided with in the electronic lock core and carry out identification, to open lockset, therefore can reach the purpose of saving power supply and prolonging antitheft usefulness.
For reaching above-mentioned purpose, the utility model provides a kind of power conservation type infrared electronic core, it comprises: an electronic lock core, an infrared rays sensing apparatus, a radio frequency identification device and a power supply delivery member, wherein, the infrared rays sensing apparatus is arranged in an end of core, and the infrared rays sensing apparatus comprises an infrared transceiver; Radio frequency identification device is arranged in an end of infrared transceiver, and it can electrically connect with the associated components of infrared rays sensing apparatus, power supply delivery member and unlocking electronic core.The infrared transceiver set when the infrared rays sensing apparatus arrives personnel or object at the preset range internal induction, can make radio frequency identification device carry out identification, the associated components of the correct back of identification promptly further driving unlocking electronic core, and open electronic lock core.When the infrared rays sensing apparatus was responded to less than personnel or object, radio frequency identification device can't start, and therefore can make this recognition device need not continue to launch radio-frequency (RF) signal, to save electric power.
Compared with prior art, the utlity model has following advantage:
The utility model power conservation type infrared electronic core, can utilize the distinctive high security identification code of its set radio frequency identification device, with the protection effectiveness of strengthening lockset and promote anti-theft feature, and can be by being provided with the infrared rays sensing apparatus of infrared transceiver, induction just starts the design of this recognition device when entering interior personnel of sensing range or object, significantly to save the required electric power of standby.
Description of drawings
Fig. 1 is the exploded perspective view of the utility model embodiment power conservation type infrared electronic core;
Fig. 2 is the combination stereogram of the utility model embodiment power conservation type infrared electronic core;
Cross-sectional schematic when Fig. 3 does not engage for the forward and backward clutch of the utility model embodiment power conservation type infrared electronic core before unblanking;
Cross-sectional schematic when Fig. 4 engages for the forward and backward clutch of the utility model embodiment power conservation type infrared electronic core after unblanking.
The primary clustering symbol description is as follows:
10 infrared rays sensing apparatus
11 enclosing covers, 12 diffusers
13 shells, 14 infrared transceivers
141 transmitters, 142 receivers
15 accommodation seats
20 electronic lock cores
Clutch part before 30
31 axial regions
40 conducting subassemblies
50 cams
51 shifting blocks
60 back clutch parts
61 engaging grooves
70 start groups of motors
72 nuts, 73 screw rods
74 cover bodies
The 80 knob hearts
90 housings
100 knobs
101 power supply delivery member
110 radio frequency identification devices
The specific embodiment
Referring to figs. 1 through shown in Figure 4, be three-dimensional exploded view, three-dimensional combination figure and the sectional view of the utility model embodiment power conservation type infrared electronic core.The utility model power conservation type infrared electronic core comprises an infrared rays sensing apparatus 10, an electronic lock core 20, one preceding clutch part 30, a back clutch part 60, a start groups of motors 70, a knob heart 80 and a radio frequency identification device 110; Wherein, infrared rays sensing apparatus 10 electrically connects with radio frequency identification device 110; One end of electronic lock core 20 is connected with mutually with infrared rays sensing apparatus 10, and the other end of electronic lock core 20 then butt has preceding clutch part 30; Start groups of motors 70 1 ends are connected with mutually with back clutch part 60, and back clutch part 60 can engage with preceding clutch part 30, and start groups of motors 70 other ends then are equipped with the knob heart 80, and radio frequency identification device 110 can drive start groups of motors 70, make its interlock associated components, and then open lockset.Therefore when personnel or object enter sensing range, infrared rays sensing apparatus 10 can detect these personnel or object, carry out identification and start radio frequency identification device 110, after the identifying information affirmation is errorless, can further drive start groups of motors 70, make it promote back clutch part 60, and make back clutch part 60 pass forward and engage with preceding clutch part 30, just can rotate the electronic lock core 20 and the knob heart 80 simultaneously this moment, utilizes the knob heart 80 that rotates to drive a cam 50 again, to open lockset.And when sensing range there is no the personnel of detecting or object, do not start radio frequency identification device 110, make this recognition device 102 need not continue emitting radio frequency signal, to save electric power.
Infrared rays sensing apparatus 10, it is arranged in an end of electronic lock core 20, infrared rays sensing apparatus 10 is provided with an infrared transceiver 14, and a termination of infrared transceiver 14 is provided with radio frequency identification device 110, and radio frequency identification device 110 electrically connects with infrared rays sensing apparatus 10; Infrared transceiver 14 is embedded in the accommodation seat 15, and being covered with a diffuser 12, it can prevent that moisture from infiltrating electronic lock inside, so that infrared transceiver 14 and inner other electronic installation energy normal operation, and make the penetrable electronic lock of the infrared rays of launching, to carry out sensing; Whole infrared rays sensing apparatus 10 is coated by a shell 13, and is sheathed with one in an end face of shell 13 and is the enclosing cover 11 of Openworks shape with diffuser 12 relative position places, thereby diffuser 12 can be embedded in herein.In addition, infrared transceiver 14 is made up of a transmitter 141 and a receiver 142, wherein, transmitter 141 can exhale infrared rays and enter the personnel or the object of sensing range with detecting, and when it recorded personnel or object, this infrared rays just can be by in these personnel or the object reflected back receiver 142, this moment, receiver 142 can further start radio frequency identification device 110, make it carry out identification, after the identifying information affirmation is errorless, could open lockset.And lockset was opened after 5 seconds, and when sensing range there is no the personnel of detecting or object, infrared rays sensing apparatus 10 can be controlled radio frequency identification device 110 and enter battery saving mode, made this recognition device 102 need not continue to launch radio-frequency (RF) signal, to save electric power.On the other hand, infrared rays sensing apparatus 10 also can be set the frequency of its detecting emission, makes it possess its detecting function simultaneously under the situation of minimum power consumption, and further saves required electric power.
Electronic lock core 20, one end and infrared rays sensing apparatus 10 connect, its other end then connects with preceding clutch part 30, thereby confirm errorless and drive associated component and when back clutch part 60 is engaged with preceding clutch part 30 at identifying information, can rotate the electronic lock core 20 and the knob heart 80 simultaneously, to open lockset.
Preceding clutch part 30, it supports the other end of being located at electronic lock core 20, and the other end of preceding clutch part 30 then is provided with an axial region 31, engages with back clutch part 60 for preceding clutch part 30.
Back clutch part 60, its with start groups of motors 70 mutually interlock connect establish and can before and after displacement, when back clutch part 60 forward during displacement, just can engage, thereby rotate electronic lock core 20, and then open lockset with this preceding clutch part 30.
Start groups of motors 70, itself and radio frequency identification device 110 electrically connects, and can be by the driving of radio frequency identification device 110, and makes the associated components of start groups of motors 70 interlock unlocking electronic cores 20.Start groups of motors 70 1 terminations are provided with the knob heart 80, its other end then is connected with a screw rod 73, and this screw rod 73 and a nut 72 bolts, and nut 72 double teams and being embedded are fixed in the cover body 74, and because of cover body 74 only can spacingly move, so nut 72 and cover body 74 can't be with screw rod 73 rotations, thereby when start groups of motors 70 rotating screw bolts 73, order about nut 72 together with cover body 74 slippage but not original place rotation forward, to promote back clutch part 60.After radio frequency identification device 110 confirms that institute's identifying information of receiving is errorless, can back information to start groups of motors 70, with further startup start groups of motors 70, and make member that its driving and passing be correlated with and unlocking electronic core 20.Wherein, back clutch part 60 is provided with an engaging groove 61, can be when reach for back clutch part 60 is driven by start groups of motors 70, in order to the axial region 31 of clutch part 30 before ccontaining, and then engage with preceding clutch part 30; In addition, 30 of back clutch part 60 and preceding clutch parts are equiped with a conducting subassembly 40, thereby electrically connect preceding clutch part 30 and back clutch part 60.
Aforementioned those members beyond infrared rays sensing apparatus 10 and the radio frequency identification device 110 are installed in the housing 90, and housing 90 can be connected with knob 100 by an end of the knob heart 80, be equiped with a power supply delivery member 101 in the knob 100, power supply delivery member 101 is a dry cell, and it can electrically connect with radio frequency identification device 110, and the power supply of set electronic installation in the electronic lock core 20 is provided; Housing 90 offers breach with a ccontaining cam 50, this cam 50 is fixed in the knob heart 80, and cam 50 is equipped with a shifting block 51, and can rotate the electronic lock core 20 and the knob heart 80 by reversing of key 10 time, the unlocking electronic core 20 to drive cam 50 and interlock pivot shifting block 51.
With reference to shown in Figure 4, this figure is the start sectional view of the utility model embodiment power conservation type infrared electronic core.Transmitter 141 can exhale infrared rays, when personnel or object enter sensing range, this infrared rays just can be by in these personnel or the object reflected back receiver 142, the receiver 142 that receives signal can further start radio frequency identification device 110 (with reference to Fig. 1), make identifying information or other storage message of these personnel of its identification or object institute tool, if comparison result is correct, then this recognition device 102 (with reference to Fig. 1) promptly is passed to start groups of motors 70 according to preset program with signal, and startup start groups of motors 70, driving the coupled screw rod of establishing 73 is rotated, order about nut 72 again and slide onto a distance forward together with cover body 74, and the related back clutch part 60 that makes is passed forward, thereby the engaging groove 61 (with reference to Fig. 1) of back clutch part 60 is engaged with the axial region 31 (with reference to Fig. 1) of preceding clutch part 30, can rotate the electronic lock core 20 and the knob heart 80 this moment simultaneously, and interlock pivot cam 50 set shifting blocks 51 and open lockset.On the other hand, when the infrared rays sensing apparatus was not sensed personnel or object, radio frequency identification device 110 (with reference to Fig. 1) can't start, and made it need not continue emitting radio frequency signal, to save electric power.
More than disclosed only be several specific embodiment of the present utility model, still, the utility model is not limited thereto, any those skilled in the art can think variation all should fall into protection domain of the present utility model.

Claims (5)

1, a kind of power conservation type infrared electronic core is characterized in that, comprising:
One electronic lock core;
One infrared rays sensing apparatus is arranged in an end of this electronic lock core, and this infrared rays sensing apparatus comprises an infrared transceiver;
One recognition device electrically connects with this infrared rays sensing apparatus, start by receiving the signal that this infrared rays sensing apparatus transmitted, this recognition device simultaneously and this electronic lock core electrically connect, further open this electronic lock core; And
One power supply delivery member, this power supply delivery member and this recognition device electrically connect.
2, power conservation type infrared electronic core according to claim 1 is characterized in that this recognition device is a radio frequency identification device RFID.
3, power conservation type infrared electronic core according to claim 1 is characterized in that this power supply delivery member is a dry cell.
4, power conservation type infrared electronic core according to claim 1 is characterized in that this infrared transceiver is covered with a diffuser.
5, as power conservation type infrared electronic core as described in claim 1 or 4, it is characterized in that this infrared transceiver is embedded in the accommodation seat, this accommodation seat is coated with a shell, and an end face of this shell is sheathed with the enclosing cover of a hollow out.
CN 200620175797 2006-12-29 2006-12-29 Electricity-saving infrared electronic lock core Expired - Fee Related CN200992864Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200620175797 CN200992864Y (en) 2006-12-29 2006-12-29 Electricity-saving infrared electronic lock core

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200620175797 CN200992864Y (en) 2006-12-29 2006-12-29 Electricity-saving infrared electronic lock core

Publications (1)

Publication Number Publication Date
CN200992864Y true CN200992864Y (en) 2007-12-19

Family

ID=38945941

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200620175797 Expired - Fee Related CN200992864Y (en) 2006-12-29 2006-12-29 Electricity-saving infrared electronic lock core

Country Status (1)

Country Link
CN (1) CN200992864Y (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102094551A (en) * 2010-12-29 2011-06-15 东莞市依时利科技有限公司 Disposable separated-type passive electronic tag lock for RFID (Radio Frequency Identification)
CN102393977A (en) * 2011-07-25 2012-03-28 苏州中研纺织科技有限公司 Electronic door lock
CN102737426A (en) * 2012-06-05 2012-10-17 深圳光启创新技术有限公司 Infrared induction type chargeable photon door lock
CN103184818A (en) * 2011-12-27 2013-07-03 东莞市邦正实业投资有限公司 Wireless remote control electronic lock, electronic lock component and furniture
CN107288435A (en) * 2017-07-28 2017-10-24 上海悦鑫五金制品有限公司 Electronic lock cylinder

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102094551A (en) * 2010-12-29 2011-06-15 东莞市依时利科技有限公司 Disposable separated-type passive electronic tag lock for RFID (Radio Frequency Identification)
CN102393977A (en) * 2011-07-25 2012-03-28 苏州中研纺织科技有限公司 Electronic door lock
CN103184818A (en) * 2011-12-27 2013-07-03 东莞市邦正实业投资有限公司 Wireless remote control electronic lock, electronic lock component and furniture
CN102737426A (en) * 2012-06-05 2012-10-17 深圳光启创新技术有限公司 Infrared induction type chargeable photon door lock
CN107288435A (en) * 2017-07-28 2017-10-24 上海悦鑫五金制品有限公司 Electronic lock cylinder

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20071219

Termination date: 20151229

EXPY Termination of patent right or utility model