CN205942753U - IC -card data writing station - Google Patents
IC -card data writing station Download PDFInfo
- Publication number
- CN205942753U CN205942753U CN201620739277.0U CN201620739277U CN205942753U CN 205942753 U CN205942753 U CN 205942753U CN 201620739277 U CN201620739277 U CN 201620739277U CN 205942753 U CN205942753 U CN 205942753U
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- CN
- China
- Prior art keywords
- clip
- card
- connector
- module
- driving mechanism
- 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.)
- Withdrawn - After Issue
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Abstract
The utility model belongs to the technical field of IC system card, specifically speaking is the device that the IC -card data were write in into. Including clamping support, clamping, clamping opening and closing driving mechanism, cross cab apron, power supply and module, wherein install on the module power supply and the output is connected with cab apron transmission excessively, it is connected with the module and can follow the slip of vertical orientation to cross the cab apron, clamping support and transition plate connected, it has a plurality of clampings to arrange along vertical direction on the clamping support, the clamping opening and closing driving mechanism install on the module for opening and shutting of drive clamping, the clamping is used for carrying out individualized data simultaneously to two IC -card pieces and writes in into. The utility model discloses efficiency is write in into to the individualized data of improvement that can be very big, has prolonged equipment life, simultaneously a large amount of equipment area that save.
Description
Technical field
This utility model belongs to IC fabrication technical field, specifically a kind of IC-card data transfer apparatus.
Background technology
The size of IC-card is that the card matrix material of IC-card is PVC (polychlorostyrene second according to unification of the motherland standard 85.6mm × 54mm
Alkene), plastics or the paper such as ABS, IC-card on the market is divided into single deck tape-recorder single or a card multicore.At present, IC-card individuation data write
Equipment whole machine flow process is:It is suitable that card station single deck tape-recorder laser marking single deck tape-recorder write by individual hair fastener master tape stepping single deck tape-recorder
Sequence reclaims, and all using the single step single deck tape-recorder method of operation, each beat is the entrance of individual card and writes card flow process whole set process.Fabrication work
Although the skill strict guarantee seriality of card, reclaiming convenience.
At present, the development of individuation data write device has been enter into bottleneck, by compressing pitch time and mechanical speed,
Through substantive equipment performance can not be improved, instead result in stabilization of equipment performance and service life reduction.
Utility model content
For the problems referred to above, the purpose of this utility model is to provide a kind of double sheet IC-card to carry out data write dress simultaneously
Put.
To achieve these goals, this utility model employs the following technical solutions:
A kind of IC-card data transfer apparatus, are arranged at and write in card work station, and described IC-card data transfer apparatus include clip
Support, clip, clip opening and closing driving mechanism, rebound, power source and module, wherein power source are arranged on module and export
End is in transmission connection with rebound, and described rebound is connected with module and can vertically slide, described clip support and mistake
Cab apron connects, and described clip support is vertically arranged with multiple clips, described clip opening and closing driving mechanism is arranged on mould
In group, for driving the folding of clip, described clip is used for carrying out individuation data write to two IC-card pieces simultaneously.
Described clip includes work station fixed plate, chip supporting plate, needle plate, needle plate fixed plate, probe and guide block, wherein needle plate
Fixed plate is fixedly mounted in work station fixed plate, and described needle plate fixed plate is provided with two needle plates, and two needle plates set respectively
There is probe, described work station fixed plate is vertically provided with guide rail slide block, described chip supporting plate is connected with guide rail slide block, institute
State chip supporting plate and be provided with two IC-cards installation stations, one end of described guide block is connected with chip supporting plate, the other end and clip are opened
Close drive mechanism to connect, described clip opening and closing driving mechanism driving chip supporting plate moves up and down.
Described clip further includes rotating mechanism, and described rotating mechanism includes connector a, power transmission shaft and cam, wherein
Power transmission shaft is installed in rotation on clip support and two ends are connected with connector a and cam respectively, described cam with described
The bearing touch that the guide block other end is provided with, described connector a is used for being connected with clip opening and closing driving mechanism, and described clip folding is driven
Motivation structure drives drive axis, thus driving cam rotation, makes guide block and chip supporting plate make elevating movement further.
Described clip opening and closing driving mechanism includes support, rotational power source and connector b, and its medium-height trestle is fixedly connected on mould
In group, described rotational power source is rack-mount and outfan is connected with connector b, and described connector b is used for and rotating machine
The connector a of structure connects.
Described connector a is convex block, and described connector b is spill block, described convex block and spill block grafting.
Described module includes bracing frame and is vertically arranged on the guide rail on support frame as described above and screw-nut body,
Wherein screw-nut body is connected with rebound by nut, and described rebound is connected with slide, and described power source is installed
At the top of support frame as described above and outfan is connected with leading screw in screw-nut body.
Advantage of the present utility model and good effect are:
1st, this utility model can greatly improve individuation data write efficiency, is changed by former technique one card of one beat
For two cards of a beat, extend service life of equipment, save occupation area of equipment simultaneously in a large number.
2nd, compared with legacy equipment, in the case that extraneous factor is constant, achievable production capacity doubles this utility model.
Brief description
Fig. 1 is scantling plan of the present utility model;
Fig. 2 is the structural representation of IC-card data transfer apparatus in this utility model;
Fig. 3 is the axonometric drawing of IC-card data transfer apparatus in this utility model;
Fig. 4 is the structural representation of clip in this utility model;
Fig. 5 is the explosive view of Fig. 4;
Fig. 6 is the structural representation of this utility model chips supporting plate;
Fig. 7 is the structural representation of rotating mechanism in this utility model;
Fig. 8 is the partial enlarged drawing of Fig. 7;
Fig. 9 is the structural representation of clip opening and closing driving mechanism in this utility model;
Figure 10 is that in this utility model, IC-card piece laterally enters card schematic diagram;
Figure 11 is that in this utility model, IC-card piece longitudinally enters card schematic diagram.
Wherein:1 is clip support, and 2 is clip, and 201 is work station fixed plate, and 202 is chip supporting plate, and 203 is an IC
Card, 204 is the second IC-card piece, and 205 is needle plate, and 206 is needle plate fixed plate, and 207 is probe, and 208 is guide rail slide block, and 209 are
Gathering sill, 210 is guide block, and 3 is rotating mechanism, and 301 is convex block, and 302 is power transmission shaft, and 303 is cam, and 4 drive for clip folding
Motivation structure, 401 is support, and 402 is rotational power source, and 403 is spill block, and 5 is rebound, and 6 is power source, and 7 is module, and 10 are
Write card work station, 20 is feed belt, and 30 is main card road, and M is horizontal, and N is longitudinally.
Specific embodiment
In order that the purpose of this utility model, technical scheme and advantage are clearer, below in conjunction with the accompanying drawings and be embodied as
Example is described in detail to this utility model.
As Figure 1-3, a kind of IC-card data transfer apparatus that this utility model provides, are arranged at and write card work station 10
Interior, described IC-card data transfer apparatus include clip support 1, clip 2, clip opening and closing driving mechanism 4, rebound 5, power source 6
And module 7, wherein power source 6 is arranged on module 7 and outfan is in transmission connection with rebound 5, described rebound 5 and module 7
Connect and can vertically slide, described clip support 1 is connected with rebound 5, along vertically side on described clip support 1
To being arranged with multiple clips 2, described clip 2 is used for carrying out individuation data write to two IC-card pieces simultaneously, and described clip is opened
Close drive mechanism 4 to be arranged on module 7, for driving the folding of clip 2.
As Figure 4-Figure 6, described clip 2 includes work station fixed plate 201, chip supporting plate 202, needle plate 205, needle plate are fixed
Plate 206, probe 207 and guide block 210, wherein needle plate fixed plate 206 are fixedly mounted in work station fixed plate 201, described needle plate
Fixed plate 206 is provided with two needle plates 205, two needle plates 205 is respectively equipped with probe 207, in described work station fixed plate 201
Vertically it is provided with guide rail slide block 208, described chip supporting plate 202 is connected with guide rail slide block 208, on described chip supporting plate 202
It is provided with two IC-cards and station is installed, one end of described guide block 210 is connected with chip supporting plate 202, the other end and clip folding drive
Mechanism 4 connects, and described clip opening and closing driving mechanism 4 driving chip supporting plate 202 moves up and down.
One end of described chip supporting plate 202 is provided with damping spring, and described damping spring is located at chip supporting plate 202 and needle plate fixed plate
Between 206, play cushioning effect when chip supporting plate 202 rises.
As Figure 7-8, described clip 2 further includes rotating mechanism 3, and described rotating mechanism 3 includes connector a, biography
Moving axis 302 and cam 303, wherein power transmission shaft 302 be installed in rotation on clip support 1 and two ends respectively with connector a
Connect with cam 303, the bearing touch that described cam 303 is provided with described guide block 210 other end, described connector a be used for
Clip opening and closing driving mechanism 4 connects, and described clip opening and closing driving mechanism 4 drives power transmission shaft 302 to rotate, thus cam 303 rotates,
Guide block 210 and chip supporting plate 202 is made to make elevating movement further.
As shown in figure 9, described clip opening and closing driving mechanism 4 includes support 401, rotational power source 402 and connector b, its
Medium-height trestle 401 is fixedly connected on module 7, and described rotational power source 402 is arranged on support 401 and outfan and connector b
Connect, described connector b is used for being connected with the connector a of rotating mechanism 3.
Described connector a is convex block 301, and described connector b is spill block 403, described convex block 301 and spill block
403 grafting.
Described module 7 includes bracing frame and is vertically arranged on the guide rail on support frame as described above and feed screw nut machine
Structure, wherein screw-nut body are connected with rebound 5 by nut, and described rebound 5 is connected with slide, described power source
6 tops being arranged on support frame as described above outfan is connected with leading screw in screw-nut body.
In the present embodiment, described power source 6 and rotational power source 402 are all using servomotor.
The operation principle of described IC-card data transfer apparatus is:
Rotational power source 402 provides power for the rotation of spill block 403, and convex block 301 is engaged with spill block 403, spill
Block 403 rotates and drives convex block 301 to rotate, and makes power transmission shaft 302 concomitant rotation, and then so that cam 303 is together rotated;With cam
When the guide block 210 of 303 contacts is subject to power up or down, chip supporting plate 202 is driven together to move along guide rail slide block 208.
The probe 207 that the ascending motion of chip supporting plate 202 is installed in needle plate fixed plate 206, makes two in needle plate fixed plate 206
Probe 207 is contacted with the first IC-card piece 203 on chip supporting plate 202 and the second IC-card piece 204 respectively, and so that probe 207 is reached
Certain decrement.During chip supporting plate 202 rises, gathering sill 209 in work station fixed plate 201 for the guide block 210
Interior slip.
After two probes 207 are contacted with the first IC-card piece 203 on chip supporting plate 202 and the second IC-card piece 204 respectively, lead to
Cross two probes 207 respectively to the chip write individuation data on the first IC-card piece 203 and the second IC-card piece 204.
In sum, described data transfer apparatus 2 pass through the relative motion between IC-card piece and probe 207, complete probe
Contact between 207 with IC card chip contact with separate, realize the break-make of data link, and complete transmission and the communication of data.
After the completion of data communication, chip supporting plate 202 and needle plate fixed plate 206 do out movement, and probe 207 is divided with IC card chip contact
From chip supporting plate 202 returns to original position, and so far IC-card individuation data write completes.
IC-card piece enters the direction writing card work station 10 and laterally enters card according to integrated artistic setting or longitudinally enter card, such as schemes
Shown in 10-11.
This utility model greatly improves individuation data write device production capacity, and the stability of equipment, and reduces and set
Received shipment line frequency degree.
The foregoing is only embodiment of the present utility model, be not intended to limit protection domain of the present utility model.All
Any modification, equivalent substitution and improvement made within spirit of the present utility model and principle, extension etc., are all contained in this reality
With in new protection domain.
Claims (6)
1. a kind of IC-card data transfer apparatus, are arranged at and write in card work station (10) it is characterised in that described IC-card data writes
Device includes clip support (1), clip (2), clip opening and closing driving mechanism (4), rebound (5), power source (6) and module (7),
Wherein power source (6) is arranged on that module (7) is upper and outfan is in transmission connection with rebound (5), described rebound (5) and module
(7) connect and can vertically slide, described clip support (1) is connected with rebound (5), on described clip support (1)
Vertically it is arranged with multiple clips (2), described clip opening and closing driving mechanism (4) is arranged on module (7), for driving card
The folding of folder (2), described clip (2) is used for carrying out individuation data write to two IC-card pieces simultaneously.
2. IC-card data transfer apparatus according to claim 1 are it is characterised in that described clip (2) includes work station admittedly
Fixed board (201), chip supporting plate (202), needle plate (205), needle plate fixed plate (206), probe (207) and guide block (210), wherein pin
Plate fixed plate (206) is fixedly mounted in work station fixed plate (201), and described needle plate fixed plate (206) is provided with two needle plates
(205), two needle plates (205) are respectively equipped with probe (207), described work station fixed plate (201) is vertically provided with
Guide rail slide block (208), described chip supporting plate (202) is connected with guide rail slide block (208), and described chip supporting plate (202) is provided with two
Individual IC-card installs station, and one end of described guide block (210) is connected with chip supporting plate (202), the other end and clip folding driving machine
Structure (4) connects, and described clip opening and closing driving mechanism (4) driving chip supporting plate (202) moves up and down.
3. IC-card data transfer apparatus according to claim 2 are it is characterised in that described clip (2) further includes to turn
Motivation structure (3), described rotating mechanism (3) includes connector a, power transmission shaft (302) and cam (303), and wherein power transmission shaft (302) can
It is rotatably mounted at clip support (1) above and two ends are connected with connector a and cam (303) respectively, described cam (303)
The bearing touch being provided with described guide block (210) other end, described connector a is used for being connected with clip opening and closing driving mechanism (4),
Described clip opening and closing driving mechanism (4) drives power transmission shaft (302) to rotate, thus carrying moving cam (303) to rotate, makes guide block further
And elevating movement made by chip supporting plate (202) (210).
4. IC-card data transfer apparatus according to claim 3 are it is characterised in that described clip opening and closing driving mechanism (4)
Including support (401), rotational power source (402) and connector b, its medium-height trestle (401) is fixedly connected on module (7), described
Rotational power source (402) is arranged on support (401) above and outfan is connected with connector b, and described connector b is used for and rotation
The connector a of mechanism (3) connects.
5. IC-card data transfer apparatus according to claim 4 are it is characterised in that described connector a is convex block
(301), described connector b is spill block (403), described convex block (301) and spill block (403) grafting.
6. IC-card data transfer apparatus according to claim 1 it is characterised in that described module (7) include bracing frame and
Vertically it is arranged on the guide rail on support frame as described above and screw-nut body, wherein screw-nut body passes through nut and mistake
Cab apron (5) connects, and described rebound (5) is connected with slide, described power source (6) be arranged on support frame as described above top,
And outfan is connected with leading screw in screw-nut body.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620739277.0U CN205942753U (en) | 2016-07-14 | 2016-07-14 | IC -card data writing station |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620739277.0U CN205942753U (en) | 2016-07-14 | 2016-07-14 | IC -card data writing station |
Publications (1)
Publication Number | Publication Date |
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CN205942753U true CN205942753U (en) | 2017-02-08 |
Family
ID=57929061
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201620739277.0U Withdrawn - After Issue CN205942753U (en) | 2016-07-14 | 2016-07-14 | IC -card data writing station |
Country Status (1)
Country | Link |
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CN (1) | CN205942753U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106228205A (en) * | 2016-07-14 | 2016-12-14 | 沈阳友联电子装备有限公司 | A kind of IC-card data transfer apparatus and method thereof |
-
2016
- 2016-07-14 CN CN201620739277.0U patent/CN205942753U/en not_active Withdrawn - After Issue
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106228205A (en) * | 2016-07-14 | 2016-12-14 | 沈阳友联电子装备有限公司 | A kind of IC-card data transfer apparatus and method thereof |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned | ||
AV01 | Patent right actively abandoned | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20170208 Effective date of abandoning: 20230310 |
|
AV01 | Patent right actively abandoned |
Granted publication date: 20170208 Effective date of abandoning: 20230310 |