专利摘要:
Machine of labels with microchip with printer and recorder that avoids having two separated positions and avoids the transport of one to another of the label or of the container with the same, as well as the procedure of use of the same. The machine comprises at least one printer, at least one recorder and at least one positioning means, arranged in a frame. The procedure comprises the following steps: A) print data on the label with at least one printer; B) recording data on the label microchip with at least one recorder; C) arranging the label in at least one fixing means fastened thereto by means of mooring means; D) displacement of the positioning means until the label is placed in the container after releasing it from the mooring means. (Machine-translation by Google Translate, not legally binding)
公开号:ES2612551A1
申请号:ES201730006
申请日:2017-01-04
公开日:2017-05-17
发明作者:Francisco Javier LÓPEZ BERENJENO;Antonio BERENGUER ROSA;Miguel BELLO MIR;David RAMÍREZ ROMÁN;Ricardo Granero Tormo
申请人:ORBITAL GESTION S L;Orbital Gestion Sl;
IPC主号:
专利说明:

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Label machine with microchip and use procedure
OF THE SAME
description
TECHNICAL FIELD OF THE INVENTION
The present invention is encompassed in the field of container labels with data relating to transport and storage, printed and engraved on said labels.
BACKGROUND OF THE INVENTION
In merchandise containers, a distinctive label is normally placed with the transport and storage data, including among others the type of merchandise, the number of packages, place of origin, place of destination, location in the warehouse.
For some time now the printed label, which usually includes a barcode or similar, is added a microchip in which the transport and storage data (known by its acronym in English RFID for "Radio Frequency IDentification" is recorded by radiofrequency) ).
Thus, the elaboration of each label implies two operations: printing and engraving. There are specific printers for this purpose, there are also specific recorders that record the data in the microchip by radiofrequency.
However, in the known facilities, the printer is located in one position and executes the printing of data, later and in another position the recorder records the microchip, with the consequent requirement of space to have two positions. Also, there is considerable time consumption in both operations, as it is necessary either to transport the label from one position to another or to transport the container once the label is placed, with the cost and time that this implies.
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Therefore, a printing and label recorder arrangement is necessary to avoid having two separate positions and avoid transporting the label or the container with it from one to another.
DESCRIPTION OF THE INVENTION
The present invention is established and characterized in the independent claims, while the dependent claims describe other features thereof.
The object of the invention is a microchip label machine with printer and recorder that avoids having two separate positions and avoids the transport of the label or the container with it, as well as the method of use thereof. The technical problem to solve is to configure the elements of the machine and to establish the steps of the procedure to reach the mentioned object.
In view of the foregoing, the present invention relates to a microchip label machine comprising at least one printer, of the known ones, for printing data on the label, at least one recorder, of the known ones, for recording data. in the microchip of the tag, and at least a means of colocation to place the tag on a container.
It characterizes the machine which also comprises a frame in which at least one of the printers, at least one of the recorders and at least one of the positioning means are arranged.
Also, the invention relates to a method of using a microchip label machine as cited, to carry out printing, engraving and placing microchip labels in a container. It characterizes the procedure which comprises the following stages:
a) printing data on the label with at least one printer;
b) recording data on the microchip of the label with at least one recorder;
c) disposition of the label in at least some means of placement attached in the
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themselves thanks to some means of mooring;
d) displacement of the positioning means until the label is placed in the container after its release from the mooring means.
With the expression "at least" it is meant that more than one of the aforementioned elements may be available. They shall be arranged as cited in the description and in the detailed statement, it should not be understood as that there may be some outside the frame.
Both with the machine and with the procedure the fixed object is reached that implies the direct advantages of having a printer and recorder in the same position, avoiding having several positions, with the consequent saving of space, as well as performing the printing and recording in the same position, without having to move the label, or worse, the container with the label, thus saving time and cost.
Other advantages of the machine and the procedure are cited in the detailed statement in relation to the features cited in the dependent claims.
BRIEF DESCRIPTION OF THE FIGURES
The present specification is complemented by a set of figures, illustrative of the preferred example, and never limiting the invention.
Figure 1 represents a perspective view of the machine.
Figure 2 represents an elevation view of the machine.
Figure 3 represents a side view of the machine, arrows indicating the movement of the first carriage are included.
Figure 4 represents a plan view of the machine with the container and the label, arrows indicating the movement of rotation of the arm and translation of both cars are included.
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DETAILED EXHIBITION OF THE INVENTION
Next, an embodiment of the invention is set forth with support in the figures.
A microchip label machine (1) is shown in the figures, the label (1) is shown in Figure 4, which comprises at least one printer (2), in the embodiment shown in the figures two printers (2) are included. ), to print data on the label (1), at least one recorder (3) to record data on the microchip of the label (1), shown in Figure 2, and at least one positioning means (4) to place The label (1) on a container (6), shown in Figure 4, also comprises a frame (5) in which the printer (2), the recorder (3) and the positioning means (4) are arranged.
The recorder (3) is shown in Figure 2 with a dashed line because it is an option, advantageously to save space, it could be arranged inside each printer (2), taking advantage of the electromagnetic shielding provided by the usual housing of the same.
The frame (5), as shown in the figures, in the embodiment shown is composed of profiles of the usual ones, thereby achieving a solid structure, easily available and relatively inexpensive, although it could be of any other type as elements created specifically for the specific application.
With this arrangement of printer (2) and recorder (3) in the same position the object of the invention is achieved, with the advantages cited in the section above describing the invention.
Optionally, the positioning means (4) comprise an arm (4.1), shown in figures 3 and 4, at one of whose ends there are mooring means (4.2) of the label (1). Specifically, the mooring means (4.2) may comprise a sponge (4.21), shown in Figure 2, arranged on the arm (4.1), a plastic sheet disposed on the sponge (4.21) and ford generation means, not shown, through the sponge (4.21); additionally, on the sponge (4.21) it
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a plastic sheet (4.22), shown in figures 2 and 3, may be provided. The sponge (4.21) is in itself porous, whereby the ford is transmitted, the plastic sheet (4.22) could also be porous or have perforations, such as It is shown in Figure 2. Advantageously, the sponge (4.21) and the plastic sheet (4.22) act together to absorb the irregularities of the surface of the container (6) on which the label (1) is deposited.
Preferably, the arm (4.1) is rotatably arranged on a first carriage (4.3), which is movable on a first rail (4.4), shown in Figures 2 to 4. Optionally, the arm (4.1) in The embodiment shown comprises a first electric motor (4.5) that provides a rotation movement on the first car (4.3), and also the first car (4.3) can comprise a second electric motor (4.6), shown in Figure 1, which provides a movement of translation on the first rail (4.4). This avoids the pneumatic drive used in the known technique, being usual to use motors of the servomotor type that are relatively economical and provide precise control of the movement.
Additionally, the first rail (4.4) can be arranged on a second carriage (4.7), shown in the figures, movable on a second rail (4.8). Optionally, the second carriage (4.7) comprises a third electric motor (4.9), shown in Figures 2 and 4, which provides a translation movement on the second rail (4.8). In this way, with all electric motors (4.5,4.6,4.9) the pneumatic drive is avoided with the mentioned advantages.
Another advantageous option for having all the main movements in one plane is that the rails, first (4.4) and second (4.8), are arranged orthogonally to each other, as shown in the figures.
The method of using a microchip label machine as cited, to carry out the printing, engraving and placement of microchip labels (1) in a container (6), comprises the following steps:
a) printing data on the label (1) with at least one printer (2);
b) recording data on the microchip of the label (1) with at least one recorder (3);
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c) disposition of the label (1) in at least one positioning means (4) attached thereto by means of tie-up means (4.2);
d) displacement of the positioning means (4) until the label (1) is placed in the container (6) after the release of the mooring means (4.2).
From a control, as usual, the required data of the label (1) to be printed in stage a) and recorded in stage b) are sent. Both stages can occur simultaneously or almost simultaneously, causing the two operations to be carried out in practically the same period of time. The use of several printers (2) is usually given to have options to print in black and white or in color, as well as not to stop the procedure in case of failure of one of the printers (2), as with the recorders ( 3).
Optionally, in step c) the label (1) is arranged on the plastic sheet (4.22) thanks to the ford generated by means of generation of ford. In this way, a safe and simple mooring is used that also does not damage the label (1), such as a mechanical clamp of the clamp type or similar.
Preferably, according to the embodiment shown in the figures, the arm (4.1) rotates until it faces the container (6), in addition the first carriage (4.3) can be moved to a predetermined first place, usually one that optimizes the next movement , that is to say, that minimizes the route and thus the time taken, so that in addition the second carriage (4.7) moves to a second predetermined place where it places the label (1) on the container (6), this second place can be any required point of the container (6), above, below or centered, on one of the sides or in the center with respect thereto, can also be on one of the main faces or on some side of the container (6).
The way in which the label (1) is fixed in the container (6) is known, by adhesive carrying the same label (1), although it could be by any other such as the administration of adhesive directly to the container (6) , or even apply adhesive manually to the label (1) after printing and recording and before being placed in the container (6).
权利要求:
Claims (15)
[1]
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1.-Label machine with microchip (1) comprising at least one printer (2) for printing data on the label (1), at least one recorder (3) for recording data on the microchip of the label (1) and at least some placement means (4) for placing the label (1) on a container (6), characterized in that it also comprises a frame (5) in which at least one of the printers (2) is arranged, at least one of the recorders (3) and at least one of the placement means (4).
[2]
2. -Machine according to claim 1 wherein the positioning means (4) comprise an arm (4.1) at one of whose ends are mooring means
(4.2) of the label (1).
[3]
3. -Machine according to claim 2 in which the mooring means (4.2) comprise a sponge (4.21) disposed on the arm (4.1), a plastic sheet disposed on the sponge (4.21) and means of generation of ford through of the sponge (4.21).
[4]
4. -Machine according to claim 3 in which a plastic sheet (4.22) is arranged on the sponge (4.21).
[5]
5. Machine according to any of claims 2 to 4 wherein the arm (4.1) is rotatably arranged on a first carriage (4.3), which is movable on a first rail (4.4).
[6]
6. -Machine according to claim 5 wherein the arm (4.1) comprises a first electric motor (4.5) that provides a rotational movement on the first car (4.3).
[7]
7. -Machine according to any of claims 5 or 6 wherein the first car
(4.3) comprises a second electric motor (4.6) that provides a translation movement on the first rail (4.4).
[8]
8. -Machine according to any of claims 5 to 7 wherein the first rail
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(4.4) is arranged on a second carriage (4.7) movable on a second rail (4.8).
[9]
9. -Machine according to claim 8 wherein the second car (4.7) comprises a third electric motor (4.9) that provides a translation movement on the second rafl (4.8).
[10]
10. - Machine according to any of claims 8 or 9 wherein the rails, first (4.4) and second (4.8), are arranged orthogonally with each other.
[11]
11. -Procedure of using a microchip label machine according to any of the preceding claims, to carry out the printing, engraving and placement of microchip labels (1) in a container (6), characterized in that it comprises the following stages:
a) printing data on the label (1) with at least one printer (2);
b) recording of data in the microchip of the label (1) with at least one
recorder (3);
c) disposition of the label (1) in at least one fixing means (4) attached
in them thanks to means of mooring (4.2);
d) displacement of the positioning means (4) until the placement of the
label (1) on the container (6) after release of the mooring means (4.2).
[12]
12. - Procedure according to claim 11 with a machine according to the
claim 4, so that in step c) the label (1) is arranged on the plastic sheet (4.22) thanks to the ford generated by means of generation of ford.
[13]
13. - Procedure according to claim 12 with a machine according to the
claim 5, wherein the arm (4.1) rotates until it faces the container (6).
[14]
14. -Procedure according to claim 13, wherein the first carriage (4.3) moves to a predetermined first place.
[15]
15. Method according to claim 14 with a machine according to claim 7, so that the second carriage (4.7) moves to a second predetermined place where it places the label (1) on the container (6).
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同族专利:
公开号 | 公开日
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引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题
GB2248051A|1990-09-18|1992-03-25|Prestek Ltd|Apparatus for printing and applying labels|
WO1996040560A2|1995-06-07|1996-12-19|Accu-Sort Systems, Inc.|Label applicator|
US20060221363A1|2002-08-16|2006-10-05|Paxar Corporation|Hand held portable printer with rfid read write capability|
EP1687207B1|2003-10-29|2008-04-30|HM Labelling A/S|Method and apparatus for application of linerless labels|
EP1687206B1|2003-11-12|2008-05-28|Siemens Energy & Automation, Inc.|Labeling system and associated method|
US20050274458A1|2004-06-14|2005-12-15|Ian Carver|Label applicator system with a peel inhibiting apparatus for RFID labels|
WO2006033743A1|2004-08-27|2006-03-30|Sensormatic Electronics Corporation|System including integrated rfid programmer|
法律状态:
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优先权:
申请号 | 申请日 | 专利标题
ES201730006A|ES2612551B2|2017-01-04|2017-01-04|LABEL MACHINE WITH MICROCHIP AND PROCEDURE FOR USING THE SAME|ES201730006A| ES2612551B2|2017-01-04|2017-01-04|LABEL MACHINE WITH MICROCHIP AND PROCEDURE FOR USING THE SAME|
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