CN206765594U - A kind of thermal transfer ribbon exertion mechanism and thermal transfer printer - Google Patents
A kind of thermal transfer ribbon exertion mechanism and thermal transfer printer Download PDFInfo
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- CN206765594U CN206765594U CN201720610902.6U CN201720610902U CN206765594U CN 206765594 U CN206765594 U CN 206765594U CN 201720610902 U CN201720610902 U CN 201720610902U CN 206765594 U CN206765594 U CN 206765594U
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- thermal transfer
- carbon ribbon
- ribbon
- limiting plate
- connecting portion
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Abstract
It the utility model is related to thermal transfer printing technique field, more particularly to a kind of thermal transfer ribbon exertion mechanism and the thermal transfer printer with the thermal transfer ribbon exertion mechanism, thermal transfer ribbon exertion mechanism includes support frame, carbon ribbon provides axle and dust cover, wherein, the both ends that carbon ribbon provides axle are connected with support frame respectively, for supporting carbon ribbon to roll up, the both ends of dust cover are detachably connected with support frame respectively, and dust cover at least covers the top that carbon ribbon provides axle, when carbon ribbon volume is arranged on carbon ribbon granting axle, dust cover at least covers the top of carbon ribbon volume, therefore prevent carbon ribbon from rolling up surface laying dust, good printing effect can be ensured;Thermal transfer printer has the advantages of printing effect is good because having used above-mentioned thermal transfer ribbon exertion mechanism.
Description
Technical field
It the utility model is related to thermal transfer printing technique field, more particularly to a kind of thermal transfer ribbon exertion mechanism and there is the carbon ribbon
The thermal transfer printer of providing gear.
Background technology
Thermal transfer printing type refers to use special carbon ribbon, by heating by the carbon dust coating transfer on carbon ribbon to paper
A kind of or printing type on other kinds of print media.Carbon dust coated substance on carbon ribbon has stronger adhesive force, beats
Print off the word come or pattern is not influenceed by extraneous factor, can for a long time preserve, be colour-fast, will not change because of environment temperature
Or contact solvent and change colour.The advantages of based on Thermal-printing Technology, thermal transfer printer have obtained extensively in fields such as logistics, traffic
General application.
Thermal transfer printer includes thermal printer head, thermal transfer ribbon exertion mechanism and carbon ribbon recovering mechanism, wherein, carbon ribbon dispenser
Structure is used in print procedure provide carbon ribbon for printing mechanism, and thermal printer head, which is used to after the carbon dust on carbon ribbon is melted be transferred to, to be beaten
The image or word of setting are generated on print medium, carbon ribbon recovering mechanism is used to reclaim used carbon ribbon.In the related art, carbon ribbon
Providing gear includes left support plate, right support plate and support shaft, wherein, the both ends of support shaft are matched somebody with somebody with two supporting plate grafting respectively
Close;The carbon ribbon that carbon ribbon volume includes core cylinder and is wrapped on core cylinder.When in use, support shaft is plugged in the core cylinder of carbon ribbon volume,
Then both ends are arranged on thermal transfer ribbon exertion mechanism respectively with left support plate and right support plate grafting so as to which carbon ribbon be rolled up.
The problem of this thermal transfer ribbon exertion mechanism, is that in storage process and long-time is in the case of, and dust holds
The surface of untapped carbon ribbon is easily covered in, in print procedure, because thermal printer head can not melt the carbon dust covered with dust, from
And occur that printing writing is smudgy, situation of even blank, have a strong impact on printing effect.
Utility model content
The purpose of this utility model is to provide a kind of thermal transfer ribbon exertion mechanism that can prevent carbon ribbon laying dust.
Another object of the present utility model is to provide a kind of thermal transfer printer using above-mentioned thermal transfer ribbon exertion mechanism.
To use following technical scheme up to this purpose, the utility model:
A kind of thermal transfer ribbon exertion mechanism, including:
Support frame, carbon ribbon provide axle and dust cover, wherein, the both ends that the carbon ribbon provides axle connect with support frame as described above respectively
Connect, for supporting untapped carbon ribbon to roll up;The both ends of the dust cover are detachably connected with support frame as described above respectively, and described anti-
Dust hood at least covers the top that the carbon ribbon provides axle.
Preferably, support frame as described above includes:
The first supporting plate and the second supporting plate set with respect to parallel interval, wherein, it is provided with first supporting plate
First connecting portion, second connecting portion is provided with second supporting plate, and the carbon ribbon provides the both ends of axle respectively by described
First connecting portion and second connecting portion are detachably connected with support frame as described above.
Preferably, the dust cover includes:
Cover body and the first connection component and the second connection component for being separately positioned on the cover body both ends, wherein, it is described
First connection component is detachably connected with the first connecting portion, and second connection component and the second connecting portion are detachable
Connection.
Preferably, the cover body includes:
The first side wall, second sidewall and the connection wall being connected between the first side wall and second sidewall, described
One connection component is arranged on the first side wall, and second connection component is arranged in the second sidewall.
Preferably, the section of the connection wall is in circular arc, and its radius is more than the half of the untapped carbon ribbon volume
Footpath.
Preferably, first connection component includes the first limiting plate, the second limiting plate, the 3rd limiting plate, the 4th limit
Position plate and the second grab, wherein:
First limiting plate, the second limiting plate, the 3rd limiting plate, the 4th limiting plate and the second grab first end with
The cover body is fixedly connected;First limiting plate and the second limiting plate parallel to first supporting plate and with described first
The outer surface of fagging is oppositely arranged;3rd limiting plate is vertical with first limiting plate to be fixedly connected, and the described 4th is spacing
Plate is vertical with second limiting plate to be fixedly connected, the 3rd limiting plate and the 4th limiting plate respectively with the first connecting portion
Rear and front end clamping;
Fluted, second grab and groove clamping engagement are set in the first connecting portion.
Preferably, the first end that the carbon ribbon provides axle is provided with plug connector, the second end that the carbon ribbon provides axle is set
It is equipped with mounting hole;
The first connecting portion includes gap and the first grab, and first grab is oppositely arranged with the gap, described
Plug connector and the gap grafting, and with the first grab clamping;
The second connecting portion also includes rotating shaft and baffle plate, wherein, the rotating shaft coordinates with the second supporting plate grafting,
Being rotated around own axes relative to second supporting plate, the baffle plate is fixedly connected with the rotating shaft, and the rotating shaft
First end protrudes from the baffle plate and extended to the direction of first supporting plate, the first end of the rotating shaft and the mounting hole
Grafting coordinates.
Preferably, the second connecting portion also includes protective cover, the protective cover is located at the rotating shaft positioned at described
Second supporting plate is on the side of the baffle plate.
Preferably, second connection component is the opening to match with the protective cover, the opening can be with institute
State protective cover clamping engagement.
A kind of thermal transfer printer, including carbon ribbon recovering mechanism and the thermal transfer ribbon exertion mechanism described in any of the above item, along carbon
Tape feeding direction, the thermal transfer ribbon exertion mechanism are located at the upstream of the carbon ribbon recovering mechanism, and the carbon ribbon recovering mechanism includes carbon
Band recovery axle, the both ends of the carbon ribbon recovery axle are connected with support frame as described above respectively, for reclaiming used carbon ribbon.
The beneficial effects of the utility model:
Thermal transfer ribbon exertion mechanism provided by the utility model, including support frame, carbon ribbon provide axle and dust cover, wherein, carbon ribbon
The both ends for providing axle are connected with support frame respectively, and for supporting carbon ribbon to roll up, the both ends of dust cover detachably connect with support frame respectively
Connect, and dust cover at least covers the top that carbon ribbon provides axle, when carbon ribbon volume is arranged on carbon ribbon granting axle, dust cover is at least
The top of carbon ribbon volume is covered, therefore prevents carbon ribbon from rolling up surface laying dust, good printing effect can be ensured.
Thermal transfer printer provided by the utility model, because it using thermal transfer ribbon exertion mechanism provided by the utility model,
Therefore there is the advantages of printing effect is good.
Brief description of the drawings
Fig. 1 is the axonometric drawing of thermal transfer ribbon exertion mechanism provided by the utility model;
Fig. 2 is the front view of thermal transfer ribbon exertion mechanism provided by the utility model;
Fig. 3 is the decomposition texture schematic diagram of thermal transfer ribbon exertion mechanism provided by the utility model;
Fig. 4 is the structural representation of the dust cover of thermal transfer ribbon exertion mechanism provided by the utility model;
Fig. 5 is that the carbon ribbon of thermal transfer ribbon exertion mechanism provided by the utility model provides the structural representation of axle;
Fig. 6 is the structural representation of thermal transfer printer provided by the utility model.
In figure:
200- printing mechanisms;300- thermal transfer ribbon exertion mechanisms;400- carbon ribbon recovering mechanisms;500- drive mechanisms;600- media
Transfer passage;
301- support frames;302- carbon ribbons provide axle;303- dust covers;
The supporting plates of 3011- first;The supporting plates of 3012- second;3013- first connecting portions;3014- second connecting portions;
30131- gap;The grabs of 30132- first;30133- grooves;
30141- rotating shafts;30142- baffle plates;30143- protective covers;
3021- plug connectors;3022- mounting holes;
3031- cover bodies;The connection components of 3032- first;The connection components of 3033- second;
30311- the first side walls;30312- second sidewalls;30313- connection walls;
The limiting plates of 30321- first;The limiting plates of 30322- second;The limiting plates of 30323- the 3rd;The limiting plates of 30324- the 4th;
The grabs of 30325- second;
30331- latches;
601- is exported;602- entrances.
Embodiment
For make present invention solves the technical problem that, the technical scheme that uses and the technique effect that reaches it is clearer, below
Technical scheme is further illustrated with reference to accompanying drawing and by embodiment.
In this application, unless limited otherwise, term " fore-and-aft direction " refers to the direction that AB arrows are signified in Fig. 1, term
" left and right directions " refers to the direction that CD arrows are signified in Fig. 1, and term " above-below direction " refers to the direction that EF arrows are signified in Fig. 1,
Remaining direction, reference data is used as using above-mentioned direction.
As Figure 1-Figure 5, the utility model provides a kind of thermal transfer ribbon exertion mechanism, including support frame 301, carbon ribbon provide axle
302 and dust cover 303, wherein, the both ends that carbon ribbon provides axle 302 are connected with support frame 301 respectively, for supporting carbon ribbon to roll up;It is anti-
The both ends of dust hood 303 are detachably connected with support frame 301 respectively, and dust cover 303 at least covers the top that carbon ribbon provides axle 302,
When carbon ribbon volume is arranged on carbon ribbon granting axle 302, dust cover 303 at least covers the top of carbon ribbon volume, therefore can cover
Carbon ribbon is rolled up.
Specifically, support frame 301 includes the first supporting plate 3011 and the second supporting plate 3012 that relative parallel interval is set,
The both ends that carbon ribbon provides axle 302 are connected with the first supporting plate 3011 and the second supporting plate 3012 respectively;Further, support frame is also
Including the first connecting portion 3013 being arranged in the first supporting plate 3011 and the second connection being arranged in the second supporting plate 3012
Portion 3014, the both ends that carbon ribbon provides axle 302 respectively can with support frame 301 by first connecting portion 3013 and second connecting portion 3014
Dismantling connection, and can freely be rotated around own axes;Dust cover 303 covers the top that carbon ribbon provides axle 302, dust cover 303
Including cover body 3031 and first connection component 3032 and the second connection component 3033 at the both ends of cover body 3031 are separately positioned on, its
In, the first connection component 3032 and first connecting portion 3013 are detachably connected, the second connection component 3033 and second connecting portion
3014 is detachably connected, so that dust cover 303 and support frame 301 are detachably connected.
The first end that carbon ribbon provides axle 302 is provided with plug connector 3021, and the second end that carbon ribbon provides axle 302 is provided with installation
Hole 3022.First connecting portion 3013 includes the grab 30132 of gap 30131 and first, wherein, the first grab 30132 and gap
30131 is relative, and the first grab 30132 is flexible, the plug connector 3021 of carbon ribbon granting axle 302 and the grafting of gap 30131, and with
First grab clamping 30132, the first grab 30132 limitation carbon ribbon are provided axle 302 and departed from from gap 30131.Second connecting portion
3014 include the rotating shaft 30141 coordinated with the grafting of the second supporting plate 3012 and the baffle plate 30142 being fixedly connected with rotating shaft 30141,
And the first end of rotating shaft 30141 protrudes from baffle plate 30142 and extended towards the first supporting plate 3011, the second end of rotating shaft 30141 is worn
The second supporting plate 3012 is crossed, and protrudes from the second supporting plate 3012, wherein, rotating shaft 30141 can be around own axes relative to
Two supporting plates 3012 rotate, and the grafting of mounting hole 3022 that axle 302 is provided in rotating shaft 30141 with carbon ribbon coordinates, and can drive carbon ribbon granting
The axis that axle 302 provides axle 302 relative to the second supporting plate 3012 around carbon ribbon together rotates.
Further, second connecting portion 3014 also includes protective cover 30143, and protective cover 30143 is located at the second supporting plate
3012 away from the side of baffle plate 30142, be located at outside rotating shaft 30141.Protective cover 30143 can be it is cylindric or cube
Body shape, its axis is perpendicular to the second supporting plate 3012.
The cover body 3031 of dust cover 303 includes the first side wall 30311, second sidewall 30312 and is connected between the two
Connection wall 30313, wherein, the section of connection wall 30313 is in circular arc, and its radius is more than maximum half of untapped carbon ribbon volume
Footpath, the first connection component 3032 are arranged on the first side wall 30311, and the second connection component 3033 is arranged on second sidewall 30312
On.It is arranged such, top of the dust cover 303 except covering untapped carbon ribbon volume, also covers untapped carbon ribbon volume
The left and right sides, therefore, the sealing of dust cover 303 can be strengthened, improve the dust-proof effect of dust cover 303.
First connection component 3032 include the first limiting plate 30321, the second limiting plate 30322, the 3rd limiting plate 30323,
4th limiting plate 30324 and the second grab 30325, wherein, the first end of the above is fixedly connected with cover body 3031, and first
The limiting plate 30322 of limiting plate 30321 and second parallel to the first supporting plate 3011 and with the outer surface phase of the first supporting plate 3011
It is right;3rd limiting plate 30323 and the 4th limiting plate 30324 extend along perpendicular to the direction of the first supporting plate 3011, and the 3rd is spacing
The limiting section 30324 of portion 30323 and the 4th is located at the front and rear sides of first connecting portion 3013, the 3rd limiting section 30323 and the 4th limit
Width of the spacing distance with first connecting portion 3013 along the longitudinal direction of both position portions 30324 along the longitudinal direction is adapted, and the 3rd
The rear and front end clamping with first connecting portion 3013 respectively of the limiting plate 30324 of limiting plate 30323 and the 4th, both prevent at common limit
The position of dust hood 303 along the longitudinal direction;Second grab 30325 and the clamping of first connecting portion 3013, it is preferred that first connecting portion
3013 set fluted 30133, and the second grab 30325 is engaged by clamping with groove 30133.Preferably, the 3rd limiting plate 30323 with
First limiting plate 30321 is vertically fixedly connected, and the 4th limiting plate 30324 is vertical with the second limiting plate 30322 to be fixedly connected.
The opening that second connection component 3033 matches for geomery with the geomery of protective cover 30143, the open energy
It is enough to be engaged by clamping with protective cover 30143, meanwhile, the second grab 30325 and the clamping of groove 30133 of the first connection component 3032 are matched somebody with somebody
Close, so that dust cover 303 is fixedly connected with support frame 301.Further, protective cover 30143 is cylindric, the second connection group
Part 3033 is circular arc, and the central angle of the second connection component 3033 is more than or equal to 180 °;Further, the second connection component
3033 are provided with multiple latches 30331, the tooth top of multiple latches 30331 be located on same circular arc and respectively with protective cover
30143 outer rim abuts, so that the second connection component 3033 is engaged by clamping with protective cover 30143.In this way, it can prevent
Because caused by material deforms the second connection component 3033 and protective cover 30143 can not clamping or clamping loosely the problem of.
In addition, in other embodiments, the second connection component 3033 can directly with the clamping of the second supporting plate 3012,
Neck is set in the second supporting plate 3012, and the second connection component 3033 includes grab, grab and neck clamping, so that the second connection
Component 3033 is connected with the second supporting plate 3012.
Carbon ribbon granting axle 302 when in use, is plugged on carbon ribbon volume by thermal transfer ribbon exertion mechanism provided by the utility model first
Core cylinder in, the mounting hole 3022 that carbon ribbon is provided to axle 302 is socketed in rotating shaft 30141 and abutted with baffle plate 30142, plug connector
3021 are plugged in the gap 30131 of first connecting portion 3013, and the first grab 30132 locking carbon ribbon provides the position of axle 302, from
And carbon ribbon is provided axle 302 and be installed along with together with carbon ribbon volume on support frame 301;Then by the first connection group of dust cover 303
Part 3032 is connected with the first supporting plate 3011, and the second connection component 3033 is connected with the second supporting plate 3012, wherein, the first connection
3rd limiting plate 30323 of component 3032 and the 4th limiting plate 30324 are connected to the rear and front end of first connecting portion 3013, and second
Grab 30325 is engaged by clamping with groove 30133, and the second connection component 3033 is engaged by clamping with protective cover 30122, so that dust-proof
Cover 303 is fixedly connected with support frame 301, and now dust cover 303 covers carbon ribbon volume, prevents carbon ribbon from rolling up surface laying dust, therefore can
Ensure good printing effect.
As shown in fig. 6, the utility model also provides a kind of thermal transfer printer, including printing mechanism 200, carbon ribbon dispenser
Structure 300, carbon ribbon recovering mechanism 400, drive mechanism 500 and media transport path 600, wherein, media transport path 600 includes
Outlet 601 and entrance 602;Printing mechanism 200 is arranged on media transport path 600, for printed on medium word or
Person's pattern;Along carbon ribbon conveying direction, thermal transfer ribbon exertion mechanism 300 is located at the upstream of carbon ribbon recovering mechanism 400, wherein, carbon ribbon granting
Mechanism 300 is used to provide carbon ribbon for printing mechanism 200, and the operation principle of the structure of thermal transfer ribbon exertion mechanism 300 is as described above, herein
Repeat no more, carbon ribbon recovering mechanism 400 is used to reclaim used carbon ribbon, and carbon ribbon recovering mechanism 400 includes carbon ribbon recovery axle, carbon
Both ends with recovery axle are connected with support frame 301 respectively, for reclaiming used carbon ribbon;Drive mechanism 500 include motor and
The multigroup disk roller being arranged in media transport path 600, motor drive each disk roller to rotate, can driven in media transport path 600
Medium movement.
At work, carbon ribbon volume be arranged on thermal transfer ribbon exertion mechanism 300 on, dust cover cover on carbon ribbon volume top, carbon ribbon from
Entrance 602 enters media transport path 600, by being left after printing mechanism 200 from outlet 601, finally by carbon ribbon recovering mechanism
400 recovery;Medium equally enters media transport path 600 from entrance 602, is conveyed under the driving of drive mechanism 500 along medium
Passage 600 is moved, and print procedure is completed when by printing mechanism 200, finally leaves thermal transfer printer from outlet 601.
Thermal transfer printer provided by the utility model has used thermal transfer ribbon exertion mechanism provided by the utility model, due to this
The thermal transfer ribbon exertion mechanism that utility model provides is provided with dust cover, can prevent carbon ribbon surface laying dust, ensures good printing effect
Fruit, therefore, thermal transfer printer provided by the utility model have the advantages of printing effect is good.
Obviously, above-described embodiment of the present utility model is used for the purpose of clearly illustrating the utility model example, and
It is not the restriction to embodiment of the present utility model.For those of ordinary skill in the field, in described above
On the basis of can also make other changes in different forms.There is no need and unable to give all embodiments
It is exhaustive.All made within spirit of the present utility model and principle all any modification, equivalent and improvement etc., should be included in
Within the protection domain of the utility model claims.
Claims (10)
- A kind of 1. thermal transfer ribbon exertion mechanism, it is characterised in that including:Support frame, carbon ribbon provide axle and dust cover, wherein, the both ends that the carbon ribbon provides axle are connected with support frame as described above respectively, For supporting untapped carbon ribbon to roll up;The both ends of the dust cover are detachably connected with support frame as described above respectively, and described dust-proof Cover at least covers the top that the carbon ribbon provides axle.
- 2. thermal transfer ribbon exertion mechanism according to claim 1, it is characterised in that support frame as described above includes:The first supporting plate and the second supporting plate set with respect to parallel interval, wherein, it is provided with first in first supporting plate Connecting portion, second connecting portion is provided with second supporting plate, and the both ends that the carbon ribbon provides axle pass through described first respectively Connecting portion and second connecting portion are detachably connected with support frame as described above.
- 3. thermal transfer ribbon exertion mechanism according to claim 2, it is characterised in that the dust cover includes:Cover body and the first connection component and the second connection component for being separately positioned on the cover body both ends, wherein, described first Connection component is detachably connected with the first connecting portion, and second connection component detachably connects with the second connecting portion Connect.
- 4. thermal transfer ribbon exertion mechanism according to claim 3, it is characterised in that the cover body includes:The first side wall, second sidewall and the connection wall being connected between the first side wall and second sidewall, described first connects Connected components are arranged on the first side wall, and second connection component is arranged in the second sidewall.
- 5. thermal transfer ribbon exertion mechanism according to claim 4, it is characterised in that the section of the connection wall is in circular arc, and Its radius is more than the radius of the untapped carbon ribbon volume.
- 6. thermal transfer ribbon exertion mechanism according to claim 4, it is characterised in that it is spacing that first connection component includes first Plate, the second limiting plate, the 3rd limiting plate, the 4th limiting plate and the second grab, wherein:First limiting plate, the second limiting plate, the 3rd limiting plate, the 4th limiting plate and the second grab first end with it is described Cover body is fixedly connected;First limiting plate and the second limiting plate parallel to first supporting plate and with first supporting plate Outer surface be oppositely arranged;3rd limiting plate is vertical with first limiting plate to be fixedly connected, the 4th limiting plate with Second limiting plate is vertically fixedly connected, the 3rd limiting plate and the 4th limiting plate respectively with before the first connecting portion Both ends clamping afterwards;Fluted, second grab and groove clamping engagement are set in the first connecting portion.
- 7. thermal transfer ribbon exertion mechanism according to claim 3, it is characterised in that the first end that the carbon ribbon provides axle is provided with Plug connector, the second end that the carbon ribbon provides axle are provided with mounting hole;The first connecting portion includes gap and the first grab, and first grab is oppositely arranged with the gap, the grafting Part and the gap grafting, and with the first grab clamping;The second connecting portion also includes rotating shaft and baffle plate, wherein, the rotating shaft and the second supporting plate grafting coordinate, can be around Own axes are rotated relative to second supporting plate, and the baffle plate is fixedly connected with the rotating shaft, and the first of the rotating shaft End protrudes from the baffle plate and extended to the direction of first supporting plate, the first end of the rotating shaft and the mounting hole grafting Coordinate.
- 8. thermal transfer ribbon exertion mechanism according to claim 7, it is characterised in that the second connecting portion also includes protective cover, The protective cover is located at the rotating shaft and is located at second supporting plate on the side of the baffle plate.
- 9. thermal transfer ribbon exertion mechanism according to claim 8, it is characterised in that second connection component be and the protection The opening to match is covered, the opening can be engaged by clamping with the protective cover.
- 10. a kind of thermal transfer printer, it is characterised in that including carbon ribbon recovering mechanism and as described in claim any one of 1-9 Thermal transfer ribbon exertion mechanism, along carbon ribbon conveying direction, the thermal transfer ribbon exertion mechanism is located at the upstream of the carbon ribbon recovering mechanism, described Carbon ribbon recovering mechanism includes carbon ribbon recovery axle, and the both ends of the carbon ribbon recovery axle are connected with support frame as described above respectively, for reclaiming Used carbon ribbon.
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CN201720610902.6U CN206765594U (en) | 2017-05-27 | 2017-05-27 | A kind of thermal transfer ribbon exertion mechanism and thermal transfer printer |
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CN201720610902.6U CN206765594U (en) | 2017-05-27 | 2017-05-27 | A kind of thermal transfer ribbon exertion mechanism and thermal transfer printer |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111114137A (en) * | 2019-12-27 | 2020-05-08 | 厦门汉印电子技术有限公司 | Thermal transfer printing coding machine and method and device for measuring reel radius thereof, and storage medium |
CN111923604A (en) * | 2020-07-08 | 2020-11-13 | 任明康 | Thermal transfer printer |
-
2017
- 2017-05-27 CN CN201720610902.6U patent/CN206765594U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111114137A (en) * | 2019-12-27 | 2020-05-08 | 厦门汉印电子技术有限公司 | Thermal transfer printing coding machine and method and device for measuring reel radius thereof, and storage medium |
CN111114137B (en) * | 2019-12-27 | 2021-01-05 | 厦门汉印电子技术有限公司 | Thermal transfer printing coding machine and method and device for measuring reel radius thereof, and storage medium |
CN111923604A (en) * | 2020-07-08 | 2020-11-13 | 任明康 | Thermal transfer printer |
CN111923604B (en) * | 2020-07-08 | 2021-09-21 | 南京蓝欣电子材料有限公司 | Thermal transfer printer |
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