WO2014011654A1 - Apparatus for thermal printing or embossing - Google Patents
Apparatus for thermal printing or embossing Download PDFInfo
- Publication number
- WO2014011654A1 WO2014011654A1 PCT/US2013/049754 US2013049754W WO2014011654A1 WO 2014011654 A1 WO2014011654 A1 WO 2014011654A1 US 2013049754 W US2013049754 W US 2013049754W WO 2014011654 A1 WO2014011654 A1 WO 2014011654A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- carrier film
- printed image
- signal
- sensor
- coloring agent
- 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.)
- Ceased
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41J—TYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
- B41J17/00—Mechanisms for manipulating page-width impression-transfer material, e.g. carbon paper
- B41J17/38—Mechanisms for manipulating page-width impression-transfer material, e.g. carbon paper for dealing with the impression-transfer material after use
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41J—TYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
- B41J2/00—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
- B41J2/315—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of heat to a heat sensitive printing or impression-transfer material
- B41J2/32—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of heat to a heat sensitive printing or impression-transfer material using thermal heads
- B41J2/325—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of heat to a heat sensitive printing or impression-transfer material using thermal heads by selective transfer of ink from ink carrier, e.g. from ink ribbon or sheet
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41J—TYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
- B41J3/00—Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
- B41J3/38—Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed for embossing, e.g. for making matrices for stereotypes
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41J—TYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
- B41J35/00—Other apparatus or arrangements associated with, or incorporated in, ink-ribbon mechanisms
- B41J35/38—Feeding the ink ribbon to waste after use
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41J—TYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
- B41J2202/00—Embodiments of or processes related to ink-jet or thermal heads
- B41J2202/30—Embodiments of or processes related to thermal heads
- B41J2202/38—Test pattern thermal printing
Definitions
- the invention relates to an apparatus for thermal printing or embossing with the features of the preamble of claim 1, to a process for printed image inspection in thermal printing or embossing with the features of the preamble of claim 17 and also to a computer program with program code with the features of claim 20.
- Two known printing processes are thermal transfer printing and thermal sublimation printing. These two printing processes are based on the basic principle that a carrier film coated with coloring agents is brought up to the medium to be printed and is heated by means of a thermal printhead. This thermal printhead has a multiplicity of heating elements, which can be individually heated and represent individual picture elements - that is to say pixels - for this printing process.
- a heated heating element has the effect that the coloring agent at the corresponding point of the carrier film dissolves and is taken up by the medium to be printed, where it in turn solidifies .
- ink particles are dissolved in sections from the ribbon and transferred to the object to be printed.
- the detachment of the coloring agent is brought about in thermal transfer printing by the coloring agent being melted, whereas in thermal sublimation printing the coloring agent is transformed into a gaseous state.
- any desired pattern or image can be created on the medium to be printed.
- a further known process provides that a carrier film coated with coloring agents in the way described is in turn brought up to the medium to be printed, but this time is heated by means of a die-like block, on which a contour corresponding to the desired printed image is structured in a fixed state. Although the entire die is heated here, the carrier film is only contacted by it at the contoured points, as a result of which the transfer of the ink particles from the ribbon to the medium to be printed only occurs at these points.
- This process is also referred to as a hot embossing process and corresponds in its ink transfer mechanism to thermal transfer printing and thermal sublimation printing, with the only difference being that the contour to be printed is predetermined by the forming of the die.
- thermal printing consequently always means equally the processes of thermal transfer printing, thermal sublimation printing and the hot embossing process. It does not mean direct thermal printing, in which the medium to be printed is itself heat-sensitive and is heated directly. It correspondingly applies that the term thermal printing process likewise means the thermal transfer printing process, the thermal sublimation printing process and the hot embossing process .
- thermal printing processes are known for offering a high level of printing quality and good durability.
- thermal transfer printing for example, is regularly used for printing labels in packaging systems.
- an inspection of the correct printing result is important. This conventionally takes place by a camera continuously recording the printed medium that comes from the thermal transfer printer and comparing the recorded pattern on the printed medium with the corresponding image data transmitted to the printer. A deviation between the desired pattern and the actual pattern conseguently means that there is a defective print .
- this type of print inspection has several disadvantages. Firstly, it reguires a camera and an image detection system, which are both arranged outside the actual thermal transfer printer. Furthermore, the image signal, which defines the desired pattern to be printed and is always located inside the thermal transfer printer, must be passed to the external image detection system. Furthermore, depending on the color contrast between the medium to be printed and the printing ink, the image detection may be made more difficult and, in particular, react sensitively to changes of one or the other color during printing operation . A readjustment between the image detection system and the thermal transfer printer may also be necessary for instance whenever there is for instance a change to a new character set during printing operation.
- the coloring agent disappears precisely at those points of the carrier film at which it has been transferred to the printable medium by heating the heating elements of the thermal printhead or of the block.
- the coloring agent does not necessarily disappear completely from the heated point, it does fade noticeably, and does so all the more the fuller the desired color depth is at the point concerned on the medium to be printed. Since a transparent carrier film is left behind at the point at which ink particles have been removed from the ribbon, the carrier film after the printing operation in this way offers a negative of the pattern that is actually printed. Specifically because of this transparency of the carrier film, this negative also has a very great contrast.
- the apparatus for thermal printing or embossing accordingly has a sensor device, which can record the pattern on the carrier film after the printing operation and on this basis generates a signal.
- the process according to the proposal comprises specifically these steps. Therefore, the proposal concerns an indirect printed image inspection, since it is not the actual printed object but only the carrier film used for it that is investigated. This makes possible for instance a genuine pixel inspection of the printhead that detects not only electrical but also mechanical damage.
- the evaluation electronics can be of a simpler and lower- cost configuration.
- Performing the printed image inspection within the apparatus for thermal printing or embossing makes possible a compact and low-cost arrangement of the inspection device within this apparatus.
- Such an integrated apparatus for thermal printing or embossing and inspection can be accommodated in an encapsulated housing. This makes a stable and protected industrial design possible.
- the investigation of the carrier film offers contrast conditions that are always constant, irrespective of what kind of background color the printed object has.
- Using the pattern on the carrier film for assessing the printing quality allows changes to the product after printing not to influence the result of this check.
- the carrier film itself would of course not be affected by such a situation.
- the printed image signal Since the printed image signal must in any case be located within the apparatus for the printing operation itself, it can consequently also be used at the same time within the apparatus for the inspection. This dispenses with the necessity for the signal to be brought out to an external unit and for possible synchronization, and also obviates the risk of transmission problems m this data communication.
- the fact that the checking of the carrier film can also take place directly after the printing operation and that it is not necessary for instance to wait until the object to be checked has been transported further over a certain distance means that it is also possible for the inspection of the printed image to be almost in real time .
- the subject matter of claim 7 describes an exemplary embodiment in which the recorded image data are checked not only for instance with regard to their conformity with the printed image signal but also checked for whether there are major portions of the carrier film with a completely preserved coloring agent layer. In such a case, a corresponding signal is generated and can be used for the purpose of using these portions for another printing operation.
- a particularly elegant way of recording the negative pattern on the carrier film is offered by the subject matter of claim 9, in which the carrier film is illuminated from its rear side.
- the points of the carrier film without coloring agent show up brightly, so that they can be clearly recorded by an image sensor from the other side, against the light as it were .
- Figure 1 shows an apparatus according to the proposal for thermal printing or embossing in an entirely schematic representation.
- the apparatus represented in the drawing for thermal printing or embossing may be both a completely independent device and a modular thermal printer, which as a module forms a component part of a larger machine, such as for instance of a packaging installation.
- the apparatus 1 for thermal printing or embossing - which here by way of example, and with preference, is a thermal transfer printer - comprises a film conveying section 2 for a carrier film 4 coated with a coloring agent 3.
- the film conveying section refers to a structure, such as for example a channel or a system of deflecting rollers, that predetermines a run of the transfer film 4 through the thermal printer 1.
- the carrier film 4 is a special type of film for the thermal printing process, which has taken up the coloring agent 3. Local heating of the carrier film 4 leads to a detachment of the coloring agent 3 specifically at the point that is heated. In thermal transfer printing, this takes place by liguefaction and in thermal sublimation printing it takes place by transformation into the gaseous state. At the point concerned of the carrier film 4 there then remains either no coloring agent 3 at all (thermal transfer printing) or a residue of coloring agent that is inversely proportional to the color depth used for the print (thermal sublimation printing) . The same also applies correspondingly to the hot embossing process.
- the apparatus 1 has a printing support 5 for a printable medium 6.
- the printing support 5 may be a simple baseplate or else a printing roller. Normal paper, or else label paper, come into consideration by way of example as the printable medium 6.
- the apparatus 1 has a printhead 7 for selectively heating the carrier film 4 in accordance with a predetermined printed image .
- the apparatus 1 has a sensor device 9, which is set up for recording a remaining pattern of the coloring agent 3 on the carrier film 4 after the heating of the carrier film 4 and is also set up for generating a sensor signal on the basis of the recorded pattern.
- the prior heating at a specific point of the carrier film 4 leads to either complete removal or at least partial removal of the coloring agent at this very point, such a recording of the remaining pattern of the coloring agent 3 on the carrier film 4 - therefore a negative of the printed image that is actually printed - and a correspondingly generated sensor signal provide indications as to whether, and at which points, a successful color transfer has taken place from the carrier film 4 to the medium 6 to be printed.
- the printhead 7 is a block for hot embossing, the block corresponding to the predetermined printed image.
- the block in this sense is a die, which often consists of a metal such as brass, copper or magnesium and has a surface with a contour that reproduces the predetermined printed image. This unchanging contour, with respect to the respective block, then defines those points at which ink is transferred from the carrier film 4 to the medium 6 to be printed.
- An alternative preferred embodiment is characterized in that the printhead 7 is a thermal printhead 7a, with heating elements 8 for selectively heating the carrier film 4 on the basis of a printed image signal, which corresponds to a predetermined printed image.
- This embodiment relates to apparatuses, both for the thermal transfer printing process and for the thermal sublimation printing process.
- the heating elements 8 are regularly arranged in a series, which lies transversely in relation to the running direction of the film conveying section 2.
- the number of heating elements 8 thereby defines a resolution in the transverse direction of the carrier film 4.
- the resolution in the longitudinal direction - corresponding to the running direction of the carrier film 4 according to the film conveying section 2 - is then determined by the increments in which the thermal printhead 7a is advanced in relation to the carrier film 4 between individual heating operations .
- the printed image signal corresponds to a predetermined printed image, so that the coloring agent 3 is transferred from the carrier film 4 to the printable medium 6 in accordance with the predetermined printed image.
- the printed image signal may for instance define a bitmap and relate either to a specific heating configuration for an individual printing point in the longitudinal direction of the carrier film 4, or else to an entire longitudinal portion of the carrier film 4 with accordingly multiple printing points.
- the apparatus 1 comprises a logic unit 10 for detecting a defective print on the basis of the sensor signal.
- the logic unit 10 is preferably set up for detecting a defective print on the basis of the sensor signal and the printed image signal.
- the logic unit 10 may in this case provide any desired separate or joint processing of the sensor signal and the printed image signal, it being possible in principle for both signals to be both in analog form and in digital form. There is, in principle, a defect whenever the printed image corresponding to the printed image signal deviates from the printed image recorded by the sensor device. Further advantages arise from the fact that this logic unit 10 is set up for the purpose of generating a defect detection signal on the basis of a comparison of the sensor signal and the printed image signal.
- the defect detection signal may be, for example, a binary indication of whether there is in the first place any defect corresponding to a lack of conformity between the printed image and the recorded pattern. This may in particular mean that a defect detection signal can only be generated in the first place when a defect has been positively detected. Alternatively, the defect detection signal may also indicate with any desired accuracy, such as for instance for each individual pixel point corresponding to an individual heating element 8, whether and to what extent there is conformity or not. The defect detection signal may be used for instance for the purpose of issuing a warning recognizable to the user or, if the apparatus according to the invention is used in a packaging machine, actuating a diverter within the packaging machine and thereby rejecting defectively printed objects.
- the logic unit 10 is set up for the purpose of generating a defect detection signal that corresponds to a detected defect when the pattern of the coloring agent 3 recorded by the sensor device 9, which corresponds to the sensor signal, deviates from a negative of a printed image, which corresponds to the printed image signal.
- the logic unit 10 can not only detect on this basis printing defects in the narrower sense - that is to say in particular minor deviations between the desired printed image and the actual pattern on the medium 6 to be printed - but can also detect other condition-related matters as well as further defect situations. It may for instance automatically detect the width of the loaded carrier film, any folding in - li the carrier film or else tearless pulling out of ribbon from the thermal printer caused by sticking the printed object.
- An automatic correction of the activation of the heating elements 8 may also be realized with the aid of the logic unit 10.
- the heating elements 8 are always provided with the same heating voltage for heating when printing by the respective heating element 8 is intended to take place, and indeed not supplied with this heating voltage when the respective heating element 8 is not intended to print.
- the same heating voltage may however lead to a different temperature at the heating element 8, and conseguently to a different printing result at the picture element concerned.
- the logic unit 10 may therefore also carry out a correction of the heating voltage at each heating element 8 on the basis of the sensor signal. If for instance a picture element is printed too large, this may indicate an increased temperature at a heating element 8, which in turn may lead to a corrected lowering of the heating voltage at this heating element 8. Conversely, if the print of a picture element covers too small an area, the correction may lead to an increase in the heating voltage at this heating element 8.
- the logic unit 10 is set up for the purpose of detecting on the basis of the sensor signal portions on the carrier film 4 on which the coloring agent 3 has remained completely and generating a corresponding print spacing signal. This detection takes place on portions of the carrier film 4 on which the heating by the printhead 7 must have already taken place. In this way, print spacings can be detected and unused parts of the carrier film 4 with the corresponding coloring agents 3 can be re-used, for instance by the carrier film 4 being automatically rewound to these unused portions.
- Such an automatic ribbon saving system ensures more effective use of the ribbon .
- the logic unit 10 is set up for the purpose of determining on the basis of the sensor signal a running-through speed of the carrier film 4 and generating a corresponding speed signal. In this way, both the consumption of the carrier film 4 can be measured and the circumferential speed can be determined. This in turn can form the basis for regulating the speed of that drive that moves the carrier film 4 along the film conveying section 2.
- the sensor device 9 comprises an image sensor 11 and a light source 12 aligned in the direction of the image sensor 11, the light source 12 being set up for the purpose of illuminating the carrier film 4 such that the remaining pattern of the coloring agent 3 on the carrier film 4 is recorded as a negative by the image sensor 11.
- the image sensor 11 being arranged on one side of the carrier film 4 such that its detection range is directed onto the carrier film 4, while the light source 12 is arranged on the other side of the carrier film 4, aligned opposed to and in the direction of this image sensor 11, to be precise such that, when there is a carrier film 4 with completely preserved coloring agent 3, no light passes from the light source 12 into the image sensor 11.
- a further advantage of such an arrangement is that the image sensor 11 is shielded by the carrier film 4 from the medium 6 to be printed and is conseguently likewise protected from soiling.
- the image sensor 11 is a line-scan camera 11a.
- the light source 12 comprises light-emitting diodes.
- the apparatus 1 for thermal printing or embossing preferably has a traveling device for producing a relative movement between the sensor device 9 and the carrier film 4 on the film conveying section 2.
- the traveling device may in this case be set up for conveying the carrier film 4 past the printhead 7 and the sensor device 9.
- a means for moving the carrier film 4 along the film conveying section 2 is in any case always necessary, since the carrier film 4 is usually unwound from a strip and has a much greater length in comparison with the dimensions of the apparatus 1.
- This m any case necessary conveying mechanism is therefore also used in this variant for the purpose of bringing about the relative movement between the sensor device 9 and the carrier film 4 by a movement of the carrier film 4.
- the line-scan camera 11a therefore evaluates the printed image during the transport of the carrier film 4.
- the carrier film 4 is pressed onto the print support 5 by means of a pressing force exerted from the printhead 7 and that the film conveying section 2 runs such that both the sensor device 9 and a portion of the carrier film 4 that is recorded by the sensor device 9 are at a distance from the print support 5. In this way, the carrier film 4 can be deflected from the contact point between the printhead 7 and the print support 5 to a point at a distance from the print support 5. This provides adeguate space for placing the sensor device 9 there .
- the traveling device is set up for the purpose of moving the printhead 7 and the sensor device 9 jointly along the film conveying section 2. There therefore takes place a simultaneously occurring movement of the printhead 7 and the sensor device 9, which are moved along the film conveying section 2.
- the carrier film 4 is conveyed further on the film conveying section and the printhead 7 is returned jointly with the sensor device 9, in a way similar to the carriage return on a mechanical typewriter.
- the line-scan camera 11a is made to travel together with the printhead 7 and the evaluation of the printed image accordingly takes place during this joint movement.
- the sensor device 9 is set up for the purpose of recording the remaining pattern of the coloring agent 3 on the carrier film during the relative movement between the sensor device 9 and the carrier film 4.
- a further teaching of the invention relates to a process for printed image inspection in thermal printing or embossing that comprises the conveying of a carrier film coated with a coloring agent along a section within an apparatus for thermal printing or embossing.
- the process according to the invention additionally comprises the heating of the carrier film in accordance with a predetermined printed image, so that the coloring agent is transferred from the carrier film to a printable medium in accordance with the predetermined printed image.
- the process according to the invention also comprises the recording of a remaining pattern of the coloring agent on the carrier film after the heating of the carrier film within the apparatus for thermal printing or embossing and the generation of a sensor signal on the basis of the recorded pattern.
- a preferred refinement of this process provides that the heating of the carrier film takes place on the basis of a printed image signal, which corresponds to the predetermined printed image.
- the invention also relates to a computer program with program code for carrying out all of the process steps of the process according to the invention when the computer program is performed in a computer.
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Description
Claims
Priority Applications (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| GB1422972.8A GB2517632B (en) | 2012-07-09 | 2013-07-09 | Apparatus for thermal printing or embossing |
| US14/412,244 US9283770B2 (en) | 2012-07-09 | 2013-07-09 | Apparatus for thermal printing or embossing |
| CN201380035229.2A CN104619506B (en) | 2012-07-09 | 2013-07-09 | For thermally printed or hot padding equipment |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102012013487.8A DE102012013487B4 (en) | 2012-07-09 | 2012-07-09 | Device for thermal printing or embossing |
| DE102012013487.8 | 2012-07-09 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2014011654A1 true WO2014011654A1 (en) | 2014-01-16 |
Family
ID=48833075
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US2013/049754 Ceased WO2014011654A1 (en) | 2012-07-09 | 2013-07-09 | Apparatus for thermal printing or embossing |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US9283770B2 (en) |
| CN (1) | CN104619506B (en) |
| DE (1) | DE102012013487B4 (en) |
| GB (1) | GB2517632B (en) |
| WO (1) | WO2014011654A1 (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112123922A (en) * | 2020-09-23 | 2020-12-25 | 湖南鼎一致远科技发展有限公司 | A thermal transfer printer, cloud encryption management system and method |
| US11260650B2 (en) | 2017-06-28 | 2022-03-01 | Videojet Technologies Inc. | Transfer printer and method |
Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR102898206B1 (en) * | 2019-05-21 | 2025-12-09 | 프레제니우스 카비 도이치란트 게엠베하 | System and method for producing medical packaging |
| CN113874215B (en) * | 2019-05-21 | 2024-06-18 | 费森尤斯卡比德国有限公司 | Apparatus and method for manufacturing medical packaging |
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| JPS6019542A (en) * | 1983-07-14 | 1985-01-31 | Nec Corp | Method for inspection of printing of dot matrix printer |
| US20070035597A1 (en) * | 2002-08-20 | 2007-02-15 | Palo Alto Research Center Incorporated | Digital lithography using real time quality control |
| US20110074904A1 (en) * | 2009-09-30 | 2011-03-31 | Marcus Michael A | Method for controlling peel position in a printer |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3614430A (en) * | 1969-03-10 | 1971-10-19 | Pitney Bowes Alpex | Fluorescent-ink-imprinted coded document and method and apparatus for use in connection therewith |
| US4819083A (en) * | 1986-01-31 | 1989-04-04 | Konishiroku Photo Industry Co., Ltd. | Moving type image recording apparatus |
| JPS63197669A (en) | 1987-02-12 | 1988-08-16 | Canon Inc | Transfer recording device |
| JP3265581B2 (en) * | 1990-02-26 | 2002-03-11 | 株式会社デンソー | Facsimile system using facsimile machine with security function |
| EP0586265A1 (en) | 1992-06-24 | 1994-03-09 | Axiohm | Operation Register Device for thermal transfer printers |
| JPH0619542A (en) | 1992-07-03 | 1994-01-28 | Kubota Corp | Traveling controller for automatic travel working vehicle |
| FR2712842B1 (en) | 1993-11-24 | 1996-01-12 | Axiohm | Device for recording impressions made by a thermal printer by transfer. |
| GB9506214D0 (en) * | 1995-03-27 | 1995-05-17 | Ultra Electronics Ltd | Imaging |
| JP2001251459A (en) * | 2000-03-07 | 2001-09-14 | Rohm Co Ltd | Image processing apparatus |
| JP4929032B2 (en) | 2007-04-26 | 2012-05-09 | 日本電産サンキョー株式会社 | Printing device |
-
2012
- 2012-07-09 DE DE102012013487.8A patent/DE102012013487B4/en active Active
-
2013
- 2013-07-09 GB GB1422972.8A patent/GB2517632B/en active Active
- 2013-07-09 CN CN201380035229.2A patent/CN104619506B/en active Active
- 2013-07-09 US US14/412,244 patent/US9283770B2/en active Active
- 2013-07-09 WO PCT/US2013/049754 patent/WO2014011654A1/en not_active Ceased
Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS6019542A (en) * | 1983-07-14 | 1985-01-31 | Nec Corp | Method for inspection of printing of dot matrix printer |
| US20070035597A1 (en) * | 2002-08-20 | 2007-02-15 | Palo Alto Research Center Incorporated | Digital lithography using real time quality control |
| US20110074904A1 (en) * | 2009-09-30 | 2011-03-31 | Marcus Michael A | Method for controlling peel position in a printer |
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US11260650B2 (en) | 2017-06-28 | 2022-03-01 | Videojet Technologies Inc. | Transfer printer and method |
| US11801689B2 (en) | 2017-06-28 | 2023-10-31 | Videojet Technologies Inc. | Tape drive and method |
| US11919320B2 (en) | 2017-06-28 | 2024-03-05 | Videojet Technologies Inc. | Transfer printer and method |
| CN112123922A (en) * | 2020-09-23 | 2020-12-25 | 湖南鼎一致远科技发展有限公司 | A thermal transfer printer, cloud encryption management system and method |
Also Published As
| Publication number | Publication date |
|---|---|
| US9283770B2 (en) | 2016-03-15 |
| US20150174913A1 (en) | 2015-06-25 |
| CN104619506A (en) | 2015-05-13 |
| DE102012013487B4 (en) | 2024-06-13 |
| DE102012013487A1 (en) | 2014-01-09 |
| CN104619506B (en) | 2017-05-31 |
| GB2517632B (en) | 2019-12-18 |
| GB2517632A (en) | 2015-02-25 |
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