Printing device

The printing device addresses the challenge of automatically recognizing and retrieving the correct mask for printing by using a code-reading unit and control unit to generate mask information, enabling efficient and error-free mask selection.

JP7678564B2Active Publication Date: 2025-05-16PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO LTD
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Patent Information

Application Number
JP2021112814
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-07-07
Publication Date
2025-05-16
Estimated Expiration
2041-07-07

AI Technical Summary

Technical Problem

Existing screen printing devices cannot automatically recognize and retrieve the correct mask for printing from a magazine, as they require manual intervention to identify and pull out the appropriate mask.

Method used

A printing device equipped with a reading unit capable of reading codes assigned to masks stored in a magazine, and a control unit that generates mask information by associating the position of the shelf layer with the read code, allowing for automatic recognition and retrieval of the correct mask.

Benefits of technology

Enables the printing device to automatically pull out the mask used for printing from the magazine, improving efficiency and reducing the likelihood of human error in mask selection.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To automatically draw a mask used for printing from among masks stored in trays of a magazine.SOLUTION: A printer includes a printing unit which prints solder paste onto a substrate by using a mask having a prescribed printing pattern formed thereon, a reading unit capable of reading a code attached on a mask stored in a tray of a magazine having multiple trays capable of storing masks, and a control unit which generates in-magazine mask information by associating a position of the tray from which the code has been read with information indicated by the read code.SELECTED DRAWING: Figure 6
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Description

[Technical field]

[0001] The present disclosure relates to a printing device. [Background technology]

[0002] Patent Document 1 discloses the following screen printing apparatus. The control unit provides stage information to the mask replacement unit, which takes out a mask (e.g., a screen mask or metal mask) from the stage specified in the magazine stage information and places it in the printing area. The camera obtains an image of the mask and outputs it to the mask recognition circuit. The control unit instructs the mask recognition circuit on the type of mask that should be stored in the stage. The mask recognition circuit compares the opening data corresponding to the type of mask instructed to the control unit with the image from the camera and determines whether there is a match or mismatch. If the result of this determination is a match, the mask in the printing area is interpreted as being suitable for printing, and if the result of this determination is a mismatch, the mask in the printing area is interpreted as being unsuitable for printing. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Publication No. 7-214747 Summary of the Invention [Problem to be solved by the invention]

[0004] The method disclosed in Patent Document 1 requires the mask to be pulled out from the magazine stage into the printing area in order to photograph the mask opening, and it is not possible to recognize the type of mask stored in the magazine stage. Therefore, the method disclosed in Patent Document 1 does not allow the mask to be used for printing to be automatically pulled out from the masks stored in each stage of the magazine.

[0005] An object of the present disclosure is to provide a printing device that can automatically pull out a mask to be used for printing from among masks stored in each stage of a magazine. [Means for solving the problem]

[0006] A printing device according to one aspect of the present disclosure includes a printing unit that prints solder paste on a substrate using a mask having a predetermined printing pattern formed thereon, a reading unit that can read codes attached to masks stored on a shelf of a magazine having a plurality of shelves in which the masks can be stored, and a control unit that generates mask information within the magazine by associating the position of the shelf where the code was read with information indicated by the read code.

[0007] Furthermore, these comprehensive or specific aspects may be realized by a system, an apparatus, a method, an integrated circuit, a computer program, or a recording medium, or may be realized by any combination of a system, an apparatus, a method, an integrated circuit, a computer program, and a recording medium. Effect of the Invention

[0008] According to the present disclosure, the printing device can automatically pull out a mask to be used for printing from among the masks stored in each stage of the magazine. [Brief description of the drawings]

[0009] [Figure 1] FIG. 1 is a perspective view of a printing apparatus equipped with a mask changer according to an embodiment of the present invention. [Diagram 2] FIG. 1 is a partially perspective view of a printing device according to an embodiment of the present invention; [Diagram 3] FIG. 1 is a perspective side view of a printing device according to an embodiment of the present invention. [Figure 4] FIG. 2 is a perspective view of a housing in the mask changer according to the embodiment; [Diagram 5] FIG. 1 is a perspective side view of a housing in a mask changer according to an embodiment of the present invention. [Figure 6] FIG. 1 is a partially transparent perspective view showing the positions of a code reader and an optical sensor according to an embodiment of the present invention; [Figure 7] FIG. 1 is a perspective view showing the position of a two-dimensional code on a mask according to an embodiment of the present invention; [Figure 8] FIG. 2 is a block diagram showing a control unit of the printing device according to the embodiment. [Figure 9] FIG. 13 is a diagram showing an example of mask information in a magazine according to the embodiment; [Figure 10] FIG. 1 is a diagram for explaining the relationship between the LED button and the first and second modes according to the embodiment; [Figure 11] 1 is a flowchart showing the process of the mask recognition unit in the first mode according to the present embodiment. [Figure 12] 10 is a flowchart showing the process of the mask recognition unit in the second mode according to the present embodiment. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0010] Hereinafter, the embodiments of the present disclosure will be described in detail with reference to the drawings as appropriate. However, more detailed description than necessary may be omitted. For example, detailed description of already well-known matters and duplicated description of substantially the same configuration may be omitted. This is to avoid the following description becoming unnecessarily redundant and to facilitate understanding by those skilled in the art. Note that the accompanying drawings and the following description are provided to enable those skilled in the art to fully understand the present disclosure, and are not intended to limit the subject matter described in the claims.

[0011] (Present embodiment) <Printing device configuration> An overview of a printing apparatus 11 will be described with reference to Figs. 1 to 3. The printing apparatus 11 may be read as a screen printing apparatus. Fig. 1 is a perspective view of the printing apparatus 11 equipped with a mask changer 15 according to the present embodiment. Fig. 2 is a partially transparent perspective view of the printing apparatus 11 according to the present embodiment. Fig. 3 is a transparent side view of the printing apparatus 11 according to the present embodiment.

[0012] The printing apparatus 11 includes a printing unit 13 and a mask changer 15 .

[0013] The printing unit 13 uses a mask 27 to print solder paste Pst (see FIG. 2) on the upper surface of a substrate KB (see FIG. 2) serving as a printing object. The mask 27 may be interpreted as a screen mask or a metal mask. The printing unit 13 has a printing unit cover 17 that covers the printing unit 13, and a substrate transport and holding unit 21. The substrate transport and holding unit 21 transports the substrate KB and holds the substrate KB at the printing position.

[0014] The mask changer 15 is provided adjacent to the rear of the printing unit 13, and loads masks 27 to be used in the printing unit 13 from a magazine 25 into the printing unit 13, and loads masks 27 used in the printing unit 13 from the printing unit 13 to the magazine 25. Details of the mask changer 15 will be described later.

[0015] An alarm unit that generates an alarm sound when, for example, an error occurs in the printing unit 13 may be provided at the top of the rear side of the housing 23 of the mask changer 15. The alarm unit may be, for example, a touch panel 31 equipped with an LED or the like. However, the alarm unit is not limited to this, and may be other notification means such as a lamp provided on the printing unit cover 17 or housing 23 of the printing device 11.

[0016] Next, the internal structure of the printing device 11 will be described with reference to FIGS.

[0017] In the printing unit 13 , above the substrate transport and holding unit 21 , a mask guide 33 is provided. In the printing unit 13, a mask holding unit 35 is disposed above the mask guide 33. A print head 37, a scraper unit 39, a mask upper surface cleaner 41, and a gas blowing unit 43 are provided above the mask holding unit 35. In addition, two mask holding unit lifting cylinders 45 arranged along the left and right (X-axis direction) and four mask holding unit pressing cylinders 47 on the front, back, left and right are provided above the mask holding unit 35.

[0018] Each of the two mask holder lifting cylinders 45 and each of the four mask holder pressing cylinders 47 are fixed to a vertical portion of a front-rear direction guide portion (not shown) provided on the left and right of the mask guide 33. In addition, each of the two mask holder lifting cylinders 45 is provided above a middle portion of two left and right straight portions extending in the Y-axis direction in the mask holder 35. In addition, each of the four mask holder pressing cylinders 47 is provided above the four corners of the mask holder 35 or in the vicinity thereof.

[0019] Below the mask holding part 35, a mask moving mechanism 49, a camera 51, and a mask underside cleaner 53 are provided.

[0020] The gas blowing unit 43 functions as a mask cleaner that cleans the upper surface of the mask 27 before the mask 27 becomes soiled with the paste Pst due to the execution of the printing process. Examples of the time before the mask 27 becomes soiled with the paste Pst include before the mask 27 is used or before the first paste Pst is supplied to the mask 27. The gas blowing unit 43 includes a tubular portion 55 that extends in a lateral direction (i.e., the X-axis direction) that intersects the transport direction (the Y-axis direction) of the mask 27 and is located above the mask guide 33 along which the mask 27 is transported, and a valve portion 57 that is connected to one end of the tubular portion 55. The tubular portion 55 is provided on the rear end side of each of two front-rear direction guide portions (not shown) so as to straddle the two front-rear direction guide portions.

[0021] The mask underside cleaner 53 is provided so as to be movable in the Y-axis direction in the region below the mask guide 33 by a mask underside cleaner guide (not shown). The mask underside cleaner 53 is connected to a moving base 59 of the mask moving mechanism 49 by a moving base connecting part (not shown) and moves in the Y-axis direction together with the moving base 59 to clean the underside of the mask 27. When the mask underside cleaner 53 is not moved in the Y-axis direction by the moving base 59, it waits at a cleaner waiting position in front of the mask transport position (see FIG. 2). The mask underside cleaner 53 is movable up and down relative to the mask guide 33 (i.e., relative to the mask 27 placed at the transport position) by a lower surface cleaner lifting part (not shown) provided on the above-mentioned mask underside cleaner guide (not shown).

[0022] The mask moving mechanism 49 has a function of moving the mask 27 between the magazine 25 included in the mask changer 15 and a predetermined mask transport position. Specifically, the mask moving mechanism 49 pulls out the mask 27 stored in the magazine 25 and moves the mask 27 to a predetermined mask transport position in the printing unit 13. The mask moving mechanism 49 also moves the mask 27 located at the predetermined mask transport position and returns (stores) it in the magazine 25. The mask moving mechanism 49 includes a moving base 59 extending in the X-axis direction, and a pull-out plate 63 that can be raised and lowered by a lifting actuator 61 provided on the moving base 59. The mask moving mechanism 49 may be interpreted as a mask transport unit that transports the mask 27 (incoming mask) from the magazine 25 to the printing unit 13 and transports the mask 27 (outgoing mask) from the printing unit 13 to the magazine 25.

[0023] <Mass changer configuration> The mask changer 15 will be described with reference to Figures 4 and 5. Figure 4 is a perspective view of the housing 23 in the mask changer 15 according to the present embodiment. Figure 5 is a perspective side view of the housing 23 in the mask changer 15 according to the present embodiment. Figure 5(a) is a perspective view of the housing 23 when the magazine 25 is located in the supply space SP1, which is the mask supply position. Figure 5(b) is a perspective view of the housing 23 when the magazine 25 is located in the working space SP2, which is the magazine supply position.

[0024] The mask changer 15 includes a housing 23, a magazine 25, an elevator 65, and a touch panel 31. The elevator 65 is an example of a moving unit.

[0025] The magazine 25 has a generally rectangular parallelepiped shape that is open in the front-rear direction. Inside the magazine 25, a plurality of shelves 26 are provided that are aligned in the vertical direction. A mask 27 is placed (stored) in a horizontal position on each of the plurality of shelves 26. The magazine 25 stores a plurality of different types (a plurality of sheets) of masks 27 corresponding to the type of substrate KB. In this manner, the magazine 25 is configured to store the masks 27 so that they can be freely inserted and removed in the Y-axis direction.

[0026] Mask changer 15 has an opening 29 through which an operator supplies mask 27. As shown in Figures 2 and 3, an upper space of internal space SP of housing 23 in mask changer 15 serves as supply space SP1, and a lower space serves as working space SP2.

[0027] The supply space SP1 is a space in which the magazine 25 is located when the masks 27 stored in the magazine 25 are supplied to the printing unit 13 through the mask passing opening 71. The working space SP2 is a space in which the magazine 25 is located when an operator supplies the magazine 25 or one or more masks 27 stored in the magazine 25.

[0028] An opening 29 is formed at a position in the housing 23 where the working space SP2 can be accessed. In addition, a mask passing opening 71 is provided on the front side of the housing 23. The mask passing opening 71 is provided so that the supply space SP1 communicates with the inside of the printing unit 13 (i.e., the inside of the printing unit cover 17). In addition, the mask passing opening 71 has a size that allows the mask 27 to pass through in the front-rear direction.

[0029] 3 pulls out the mask 27 (referred to as an input mask) to be loaded into the printing unit 13, which is stored in one of the shelves 26 (see FIGS. 6 and 7) of the magazine 25, forward through the mask passing opening 71 and transports it to a predetermined mask transport position. The mask moving mechanism 49 also stores (returns) the mask 27 (referred to as an output mask) that has been transported to the mask transport position from the mask passing opening 71 to the magazine 25 (specifically, one of the shelves 26 of the magazine 25).

[0030] The elevator 65 is formed in a roughly rectangular shape and is composed of a lifting body 73 that supports the bottom surface of the magazine 25 from below, a lifting body support part 75 that extends in the X-axis direction and supports the lifting body 73, a nut part 77 provided on one end side of the lifting body support part 75, a ball screw 79 that screws into the nut part 77 and extends in the vertical direction, and a lifting body lifting motor 81 that rotates and drives the ball screw 79.

[0031] In the elevator 65, the ball screw 79 rotates in a predetermined direction by the operation of the elevator body lifting motor 81, and this rotation lifts and lowers the elevator body support part 75 that is integrally configured by being connected to the nut part 77. As a result, the elevator 65 lifts and lowers the elevator body 73 connected to the elevator body support part 75 and the magazine 25 supported by the elevator body 73 between the supply space SP1 and the working space SP2. That is, the elevator 65 functions as a movement (lifting) mechanism for the magazine 25 that moves the magazine 25, which is carried in by the worker through the opening 29 of the housing 23, between the working space SP2 where the opening 29 of the housing 23 is provided and the supply space SP1 away from the opening 29. That is, the elevator 65 can move (lift) the magazine 25 between the magazine supply position Mgsp and an arbitrary mask supply position Mssp1.

[0032] The lifting body 73 rises or falls depending on the operating direction of the lifting body lifting motor 81 (i.e., the rotation direction of the ball screw 79). When the lifting body 73 is in the lowest position of the working space SP2 in the housing 23 (i.e., the magazine supply position shown in FIG. 5(b)), the worker can put the magazine 25 into the housing 23 through the opening 29 and place it on the upper surface of the lifting body 73. Also, when the lifting body 73 is in the lowest position, the worker can remove the magazine 25 placed on the lifting body 73 from the opening 29.

[0033] The elevator 65 drives the elevator body lifting motor 81 to lift the elevator body 73 carrying the magazine 25 set at the magazine supply position. At this time, the elevator 65 adjusts the movement amount of the elevator body 73 so that the incoming mask 83 is at a predetermined working height Hs at which the incoming mask 83 can be taken out from the mask passing opening 71. The predetermined working height Hs may be a height at which the mask moving mechanism 49 can take out the incoming mask 83 stored in the magazine 25 through the mask passing opening 71. FIG. 5(b) shows a state in which the incoming mask 83 is located at the predetermined working height Hs. The position of the predetermined working height Hs may be equal to the mask supply position Mssp1.

[0034] <Code readers, optical sensors and two-dimensional codes> The positions of the code reader 87, the optical sensor 85, and the two-dimensional code 86 will be described with reference to Figures 6 and 7. Figure 6 is a partially transparent perspective view showing the positions of the code reader 87 and the optical sensor 85 according to this embodiment. Figure 7 is a diagram showing the position of the two-dimensional code 86 on the mask 27 according to this embodiment.

[0035] 6, the optical sensor 85 is provided at a position in the printing unit 13 where it can irradiate light onto the side surface of the mask 27 stored in the magazine 25 facing the printing unit 13. For example, the optical sensor 85 is provided at a position where it can irradiate light onto the side surface of the mask 27 stored on the uppermost shelf 26 of the magazine 25 facing the printing unit 13 when the lifting body 73 carrying the magazine 25 is lowered to the lowest position (e.g., at the lowest position). The optical sensor 85 detects whether or not a mask 27 is stored on each shelf 26 of the magazine 25 by irradiating light and detecting the presence or absence of reflected light.

[0036] 6, the code reader 87 is provided at a position in the printing unit 13 where the code reader 87 can capture an image of the side surface of the mask 27 stored in the magazine 25 facing the printing unit 13. For example, the code reader 87 is provided at a position where the code reader 87 can capture an image of the side surface of the mask 27 stored on the uppermost shelf 26 of the magazine 25 facing the printing unit 13 when the lifting body 73 carrying the magazine 25 is lowered to the lowest position. In other words, the code reader 87 and the optical sensor 85 may be provided at approximately the same height.

[0037] As shown in FIG. 7, the two-dimensional code 86 is provided on the side of the mask 27 facing the printing unit 13, at a position facing the code reader 87 shown in FIG. 6 in the X-axis direction of the mask 27 when stored on the shelf 26. An example of the two-dimensional code 86 is a QR code (registered trademark). In this case, the code reader 87 may be a QR code reader. Note that, instead of the two-dimensional code 86, a barcode may be provided on the mask 27, or a string of numbers or letters that can be uniquely identified may be provided. The two-dimensional code or barcode may be fixed to the mask 27 by attaching an adhesive tape or the like on which the code is printed to the side of the mask 27. Alternatively, the two-dimensional code or barcode may be fixed to the mask 27 by attaching a magnetic sheet on which the code is printed to the side of the mask 27.

[0038] As a result, by raising the lifting body 73 carrying the magazine 25 from its lowest position, the optical sensor 85 can detect the presence or absence of the masks 27 on each shelf 26 of the magazine 25, and the code reader 87 can read the two-dimensional code 96 of the masks 27 stored on each shelf 26 of the magazine 25. The code reader 87 may be interpreted as a reading unit capable of reading codes such as the two-dimensional code 86.

[0039] The two-dimensional code 86 may be different for each mask 27. The control unit 93 may previously store information indicating the correspondence between the two-dimensional code 86 and the type of mask 27. This allows the control unit 93 to recognize the type of mask 27 by reading the two-dimensional code 86 of the mask 27 with the code reader 87.

[0040] <Control Unit Configuration> Next, the control unit 93 of the printing device 11 according to the present embodiment will be described with reference to Fig. 8. Fig. 8 is a block diagram showing the control unit 93 of the printing device 11 according to the present embodiment.

[0041] The control unit 93 provided in the printing apparatus 11 includes a substrate transport / holding control unit 95 , a mask transport / setting control unit 97 , a printing operation control unit 99 , an imaging control unit 101 , and an elevator control unit 105 .

[0042] The control unit 93 is configured using, for example, a CPU (Central Processing Unit) or an FPGA (Field Programmable Gate Array), and performs various processes and controls in cooperation with a memory (not shown) included in the printing unit 13. Specifically, the control unit 93 refers to the programs and data stored in the memory, and executes the programs to realize the functions of each unit.

[0043] The substrate transport and holding control unit 95 transports the substrate KB to a predetermined substrate transport position and holds the substrate KB transported by the substrate transport and holding unit 21. Furthermore, when the substrate transport and holding control unit 95 determines, based on the image of the substrate KB captured by the camera 51, that the substrate KB held at the predetermined substrate transport position is misaligned with respect to the mask transport position of the mask 27, it aligns the held substrate KB.

[0044] The mask transport / installation control unit 97 controls the mask moving mechanism 49 to take out the mask 27 (input mask) stored in the magazine 25, and transports and holds the mask 27 to a predetermined mask transport position. In detail, the mask transport / installation control unit 97 executes control of the movement of the moving base 59 in the Y-axis direction by the moving base drive motor 107, control of the elevation of the pull-out plate 63 by the elevation actuator 61, control of tension application to the mask 27 located at the mask installation position by a tension application cylinder (not shown), etc.

[0045] The printing operation control unit 99 drives the print head 37 to control the printing operation of the paste Pst onto the substrate KB in contact with the lower surface of the mask 27. In detail, the printing operation control unit 99 controls the movement of the squeegee base (not shown) in the Y-axis direction by the squeegee base drive motor 109, and controls the elevation of the squeegee by the squeegee elevation drive unit 111.

[0046] The imaging control unit 101 executes control for imaging, by the camera 51, the upper surface of the substrate KB held at a predetermined substrate transport position by the substrate transport holding unit 21 and the lower surface of the mask 27 placed at the mask transport position. In detail, the imaging control unit 101 executes movement control of the movable base 59 in the Y-axis direction by the movable base drive motor 107, movement control of the camera 51 in the X-axis direction along the movable base 59, imaging control of the upper surface of the substrate KB located in an area below a lower imaging camera (not shown) provided in the camera 51, and imaging control of the lower surface of the mask 27 located in an area above an upper imaging camera (not shown) provided in the camera 51.

[0047] The mask recognition unit 102 controls the optical sensor 85 and the code reader 87 to recognize the presence or absence of a mask 27 on each shelf 26 of the magazine 25 and the type of the mask 27, and generates in-magazine mask information 103. Details of the in-magazine mask information 103 will be described later (see FIG. 9).

[0048] The elevator control unit 105 drives the elevator body lifting motor 81 to control the lifting and lowering of the magazine 25 by the elevator 65 .

[0049] The touch panel 31, which is an example of a notification device, is electrically connected to the control unit 93. The touch panel 31 is a user interface including a display device, such as an LCD (Liquid Crystal Display) or an organic EL (Electroluminescence) display, and an input device.

[0050] The touch panel 31 can receive input operations by an operator, converts the input operations into electrical signals, and outputs the electrical signals to the control unit 93 in the printing device 11 .

[0051] Next, a description will be given of an example of a mask supply operation procedure in the printing apparatus 11. An operator performs a magazine supply operation in which the magazine 25, which previously contains one or more masks 27 required for screen printing, is placed on the lifting body 73 in the working space SP2 of the mask changer 15.

[0052] When the outer cover is closed by the worker after the magazine supply operation is completed, the control unit 93 drives the elevator 65 by the elevator control unit 105, and generates in-magazine mask information 103 corresponding to the magazine 25 by the mask recognition unit 102. The process of generating the in-magazine mask information 103 will be described in detail later (see FIG. 11).

[0053] The control unit 93 raises the magazine 25 so that the height of the shelf 26 on which the incoming mask 27 is stored becomes a predetermined working height Hs corresponding to the mask passing opening 71 .

[0054] After controlling the upward movement of the magazine 25, the control unit 93 drives the mask moving mechanism 49 to take out the input mask 83 through the mask passing opening 71 and transport it to a predetermined mask transport position. Specifically, the control unit 93 drives the moving base drive motor 107 via the mask transport installation control unit 97 to move the moving base 59 backward (towards the mask changer 15).

[0055] The control unit 93 engages two mask movement engagement protrusions (not shown) arranged side by side in the X-axis direction on the upper surface of the pull-out plate 63 attached to the movable base 59 with two engagement holes (not shown) provided on the front edge side of the input mask 27 stored in the magazine 25.

[0056] With the two mask movement engagement protrusions engaged with the two engagement holes, the control unit 93 drives the movement base drive motor 107 to pull the incoming mask 27 from inside the magazine 25 through the mask passing opening 71 into the inside of the printing unit 13, and moves the incoming mask 27 to a predetermined mask transport position located forward. This allows the control unit 93 to take out the incoming mask 27 from inside the magazine 25 and transport it to the predetermined mask transport position.

[0057] The input mask 27 being transported by the moving base 59 is guided on both its left and right sides by steps (guides) of a pair of guide parts provided along the front-rear direction, and is therefore pulled out straight in the forward direction.

[0058] <Mask information in magazine> The mask information 103 in the magazine will be described with reference to Fig. 9. Fig. 9 is a diagram showing an example of the mask information 103 in the magazine according to the present embodiment.

[0059] The in-magazine mask information 103 includes information about the masks 27 stored on each shelf 26 in the magazine 25 set in the mask changer 15 .

[0060] The mask information 103 in the magazine has, as items, the number of the shelf level 26, mask presence / absence indicating whether or not the mask 27 is stored on the shelf level 26, and mask type indicating the type of mask stored on the shelf level 26. Note that in this embodiment, the shelf levels 26 are numbered 1, 2, 3, ... from the top, but the numbers of the shelf levels 26 are not limited to this and may be 1, 2, 3, ... from the bottom, for example.

[0061] The first line of the mask information 103 in the magazine shown in Fig. 9 indicates that the mask 27 is stored (mask presence / absence "present") on the first shelf 26 (shelf level "1") and that the type of the mask 27 is "mask A" (mask type "mask A"). The second line of the mask information 103 in the magazine shown in Fig. 9 indicates that the mask 27 is not stored (mask presence / absence "absent") on the second shelf 26 (shelf level "2").

[0062] <First mode and second mode> The first and second modes according to the present embodiment will be described with reference to Fig. 10. Fig. 10 is a diagram for explaining the relationship between the LED button 19 according to the present embodiment and the first and second modes.

[0063] 10, LED buttons 19 corresponding one-to-one to the shelves 26 of the magazine 25 are provided next to an opening 29 for loading and unloading the magazine 25 of the mask changer 15. For example, if the number of shelves 26 of the magazine 25 is 10, ten LED buttons 19 are provided.

[0064] The LED buttons 19 indicate the state of the corresponding shelf 26 by turning on, off, or blinking. The control unit 93 has a first mode and a second mode, and the display manner of the LED buttons 19 may differ depending on whether the mode is the first mode or the second mode. The LED buttons 19 may be interpreted as a light-emitting unit.

[0065] The first mode, as shown in FIG. 10( a ), is a mode in which all of the shelves 26 of the magazine 25 are used for both loading of unused masks 27 and unloading of used masks 27 .

[0066] In the first mode, the LED button 19 may indicate the following states (A1) to (A3).

[0067] (A1) A lit LED button 19 indicates that a mask 27 is not stored on the shelf 26 corresponding to the LED button 19. This allows the worker to recognize that a mask 27 can be set on the shelf 26 corresponding to the lit LED button 19.

[0068] (A2) An unlit LED button 19 indicates that an unused mask is stored on the shelf 26 corresponding to the LED button 19. This allows the worker to recognize that he or she does not need to do anything in particular for the shelf 26 corresponding to the unlit LED button 19.

[0069] (A3) A flashing LED button 19 indicates that a used mask 27 or a mask 27 whose two-dimensional code 86 has failed to be read is stored on the shelf 26 corresponding to the LED button 19. This allows the worker to recognize that it is necessary to remove the mask 27 from the shelf 26 corresponding to the flashing LED button 19. After removing the mask 27, the worker presses the flashing LED button 19. The pressed LED button 19 changes from flashing to lit. This allows the control unit 93 to recognize that the mask 27 has been removed.

[0070] 10(b), the second mode is a mode in which the shelves 26 of the magazine 25 are divided into an unused area 88 used for carrying in unused masks 27 and a used area 89 used for carrying out used masks 27. For example, the first to sixth shelves from the top are the unused area 88, and the seventh to tenth shelves are the used area 89. In this case, the printing unit 13 carries out the used mask 27 to one of the shelves 26 in the used area 89, but does not carry it out to the shelf 26 in the unused area 88.

[0071] In the unused area 88 in the second mode, the LED button 19 may be turned on and off in the same manner as in the first mode described above.

[0072] In the used area 89 in the second mode, the LED button 19 may indicate the following states (B1) to (B2).

[0073] (B1) An unlit LED button 19 indicates that no used masks 27 are stored on the shelf 26 corresponding to the LED button 19. This allows the worker to recognize that he or she does not need to do anything for the shelf 26 corresponding to the unlit LED button 19.

[0074] (B2) The flashing LED button 19 indicates that a used mask 27 is stored on the shelf 26 corresponding to the LED button 19. This allows the worker to recognize that the used mask 27 on the shelf 26 corresponding to the flashing LED button 19 needs to be removed.

[0075] The control unit 93 may display an operation image for accepting switching between the first mode and the second mode from the worker on the touch panel 31 or the like. The control unit 93 may also display an operation screen for accepting the number of shelf levels 26 to be used as the unused area 88 or the used area 89 in the second mode on the touch panel 31 or the like.

[0076] Furthermore, the states of the shelf levels 26 indicated by the above-mentioned lighting, blinking, and off of the LED button 19 are just examples, and the lighting, blinking, and off of the LED button 19 may be defined to indicate states of the shelf levels 26 different from those described above.

[0077] <Processing flow of the first mode> The process of the mask recognition unit 102 in the first mode will be described with reference to Fig. 11. Fig. 11 is a flowchart showing the process of the mask recognition unit 102 in the first mode according to this embodiment. Note that the process of the mask recognition unit 102 may be interpreted as the process of the control unit 93.

[0078] The mask recognition unit 102 moves the lift body 73 to an initial position (for example, a lower limit position) (S11).

[0079] The mask recognition unit 102 assigns 1 to the variable n (S12).

[0080] The mask recognition unit 102 controls the optical sensor 85 to sense the presence or absence of the mask 27 on the n-th shelf 26 (S13).

[0081] The mask recognition unit 102 determines whether or not the mask 27 is present on the n-th shelf 26 based on the detection result of the optical sensor 85 (S14).

[0082] If there is no mask 27 on the nth shelf 26 (S14: NO), the mask recognition unit 102 turns on the LED button 19 corresponding to the nth shelf 26 and sets "absent" to the item for mask presence / absence for shelf n in the in-magazine mask information 103 (S15). Then, the mask recognition unit 102 advances the process to step S22.

[0083] If there is a mask 27 on the nth shelf 26 (S14: YES), the mask recognition unit 102 controls the code reader 87 to read the two-dimensional code 86 attached to the mask 27 on the nth shelf 26 (S16).

[0084] The mask recognition unit 102 determines whether or not the reading of the two-dimensional code 86 has been successful (S17).

[0085] If reading of the two-dimensional code 86 fails (S17: NO), the mask recognition unit 102 causes the LED button 19 corresponding to the n-th shelf 26 to blink (S18), and the process proceeds to step S22.

[0086] If the reading of the two-dimensional code 86 is successful (S17: YES), the mask recognition unit 102 determines whether the mask 27 on the nth shelf 26 is unused (S19). For example, the mask recognition unit 102 determines that a mask 27 that has never been brought into the printing unit 13 is unused, and determines that a mask 27 that has been brought out of the printing unit 13 is used.

[0087] If the mask 27 on the n-th shelf 26 has been used (S19: NO), the mask recognition unit 102 blinks the LED button 19 corresponding to the n-th shelf 26 (S18), and the process proceeds to step S22.

[0088] If the mask 27 on the nth shelf 26 is unused (S19: YES), the mask recognition unit 102 sets "present" in the item for mask presence / absence for shelf n in the in-magazine mask information 103, and sets the mask type indicated by the two-dimensional code 86 in the item for mask type for shelf n (S20). Information indicating the correspondence between the two-dimensional code 86 and the mask type may be stored in advance in a predetermined memory of the control unit 93.

[0089] The mask recognition unit 102 turns off the LED button 19 corresponding to the n-th shelf 26 (S21).

[0090] In step S22, the mask recognition unit 102 determines whether or not the processing has been completed for all shelves 26 in the magazine 25 (S22).

[0091] If there is still an unprocessed shelf 26 remaining (S22: NO), the mask recognition unit 102 adds 1 to the variable n and raises the lifting body 73 by one shelf 26 (S23). Then, the mask recognition unit 102 returns the process to step S13.

[0092] If the process has been completed for all shelves 26 (S22: YES), the mask recognition unit 102 ends this process.

[0093] Through the above-mentioned process, information indicating the presence or absence of masks 27 in each shelf 26 in the magazine 25 and the type of mask is set in the in-magazine mask information 103. The printing unit 13 can recognize which shelf 26 in the magazine 25 stores which type of mask 27 by referring to the mask type in the in-magazine mask information 103. Therefore, even if the operator stores which type of mask 27 in which shelf 26 in the magazine 25, the printing unit 13 can automatically pull out the mask 27 of the mask type to be used for printing from the magazine 25 by referring to the in-magazine mask information 103. When the operator is instructed which shelf 26 in the magazine 25 stores which type of mask 27, as in the conventional method, the operator may make a mistake in storing the mask 27. However, according to the present embodiment, such a mistake does not occur, and the work efficiency is improved.

[0094] Furthermore, the operator can recognize from outside the printing apparatus 11 whether or not a mask 27 is present on each shelf 26 of the magazine 25 by looking at the state of the LED button 19 corresponding to each shelf 26.

[0095] Furthermore, the LED button 19 corresponding to the shelf 26 storing the mask 27 whose two-dimensional code 86 has failed to be read or the used mask 27 flashes, so the worker can recognize at a glance that he or she should remove the mask 27 from the shelf 26 whose LED button 19 is flashing. When the worker removes the mask 27, he or she presses the LED button 19 corresponding to the shelf 26 from which the mask 27 was removed. This allows the control unit 93 to recognize the shelf 26 from which the worker removed the mask 27. In this case, the mask recognition unit 102 may change the mask presence / absence corresponding to the shelf 26 from which the mask 27 was removed in the in-magazine mask information 103 to "absent" and change the mask type to "N / A."

[0096] Moreover, the LED button 19 corresponding to the shelf 26 where the mask 27 is not stored is lit, so the worker can confirm at a glance that the mask 27 can be set on the shelf 26 where the LED button 19 is lit. Moreover, the LED button 19 corresponding to the shelf 26 where the unused mask 27 is stored is turned off, so the worker can confirm at a glance that the mask 27 does not need to be removed from the shelf 26 where the LED button 19 is turned off.

[0097] <Processing flow of the second mode> The process of the mask recognition unit 102 in the second mode will be described with reference to Fig. 12. Fig. 12 is a flowchart showing the process of the mask recognition unit 102 in the second mode according to this embodiment.

[0098] The mask recognition unit 102 moves the lift body 73 to an initial position (for example, a lower limit position) (S31).

[0099] The mask recognition unit 102 assigns 1 to the variable n (S32).

[0100] The mask recognition unit 102 determines whether or not the n-th shelf 26 belongs to the unused area 88 (S33).

[0101] If the n-th shelf 26 belongs to the unused area 88 (S33: YES), the mask recognition unit 102 executes the processes of steps S13 to S21 shown in FIG. 11 (S34), and the process proceeds to step S39.

[0102] If the n-th shelf 26 belongs to the used area 89 (S33: NO), the mask recognition unit 102 executes the following process.

[0103] The mask recognition unit 102 controls the optical sensor 85 to sense the presence or absence of the mask 27 on the n-th shelf 26 (S35).

[0104] The mask recognition unit 102 determines whether or not the mask 27 is present on the n-th shelf 26 based on the detection result of the optical sensor 85 (S36).

[0105] If there is a mask 27 on the n-th shelf 26 (S36: YES), the mask recognition unit 102 causes the LED button 19 corresponding to the n-th shelf 26 to blink (S37), and the process proceeds to step S39.

[0106] If there is no mask 27 on the nth shelf 26 (S36: NO), the mask recognition unit 102 turns off the LED button 19 corresponding to the nth shelf 26 (S38), and the process proceeds to step S39.

[0107] In step S39, the mask recognition unit 102 determines whether or not the processing has been completed for all shelves 26 in the magazine 25 (S39).

[0108] If there are still unprocessed shelves 26 remaining (S39: NO), the mask recognition unit 102 adds 1 to the variable n and raises the lifting body 73 by one shelf 26 (S40). Then, the mask recognition unit 102 returns the process to step S33.

[0109] If the process has been completed for all shelves 26 (S39: YES), the mask recognition unit 102 ends this process.

[0110] As a result, in the used area 89, the LED button 19 corresponding to the shelf 26 where the used mask 27 is stored flashes, and the LED button 19 corresponding to the shelf 26 where the used mask 27 is not stored goes out. Therefore, the worker can recognize at a glance that the used mask 27 should be removed from the shelf 26 corresponding to the flashing LED button 19. When the worker removes the used mask 27, he or she presses the LED button 19 corresponding to the shelf 26 from which the used mask 27 was removed. This allows the control unit 93 to recognize the shelf 26 from which the worker removed the used mask 27. In this case, the mask recognition unit 102 may change the mask presence / absence corresponding to the shelf 26 from which the used mask 27 was removed in the in-magazine mask information 103 to "absent" and change the mask type to "N / A."

[0111] Summary of the Disclosure The contents of this disclosure can be expressed as follows.

[0112] <Expression 1> A printing device 11 according to one embodiment of the present disclosure includes a printing unit 13 that prints solder paste on a substrate KB using a mask 27 having a predetermined printing pattern formed thereon, a reading unit (e.g., a code reader 87) that can read a code (e.g., a two-dimensional code 86) attached to a mask 27 stored on a shelf 26 of a magazine 25 having a plurality of shelves 26 capable of storing the masks 27, and a control unit 93 that generates mask information 103 within the magazine by associating the position of the shelf 26 where the code was read with information indicated by the read code. This allows the control unit 93 to recognize information about the masks 27 on each shelf 26 of the magazine 25 by referring to the in-magazine mask information 103 .

[0113] <Expression 2> In expression 1, the printing device 11 further includes a mask transfer unit (e.g., a mask moving mechanism 49) that transfers the mask 27 from the magazine 25 to the printing unit 13, and a lifting unit (e.g., a lifting body 73) that carries the magazine 25 and raises and lowers it to a position where the mask transfer unit can pull out the mask 27 to be transferred from the magazine 25, and the control unit 93 may raise and lower the lifting unit and read the code given to the mask 27 stored on each shelf 26 of the magazine 25 through the reading unit. As a result, the control unit 93 can utilize the lifting section of the magazine 25 to cause the reading unit to read the codes of the masks 27 stored on each shelf 26 of the magazine 25 without having to provide a new mechanism for moving the reading unit.

[0114] <Expression 3> In expression 2, the information indicated by the code is information indicating the type of mask 27, and the control unit 93 may identify the shelf 26 in the magazine 25 on which the type of mask 27 to be used for printing in the printing unit 13 is stored based on the mask information in the magazine 103, and raise and lower the lifting unit to a position where the mask transport unit can pull out the mask 27 from the identified shelf 26. As a result, the control unit 93 can refer to the in-magazine mask information 103 and control the mask transport unit to automatically pull out the mask 27 of the mask type to be used for printing from the magazine 25. Therefore, compared to the conventional case where the operator is instructed on which shelf 26 of the magazine 25 the mask 27 of which mask type should be stored, storage errors by the operator are prevented, and work efficiency is improved.

[0115] <Expression 4> In expression 1, the printing device 11 further includes an light-emitting unit (e.g., an LED button 19) corresponding to each shelf level 26 of the magazine 25, and the control unit 93 may control the light emission of the light-emitting unit corresponding to the shelf level 26 depending on the presence or absence of a mask 27 on the shelf level 26. This allows the operator to recognize, from outside the printing device 11, the presence or absence of the mask 27 on the shelf 26 corresponding to the light-emitting portion, depending on the light emitted by that light-emitting portion.

[0116] <Expression 5> In expression 4, the control unit 93 may turn on the light-emitting unit corresponding to the shelf 26 on which the mask 27 is not stored, and turn off the light-emitting unit corresponding to the shelf 26 on which the mask 27 whose code has been successfully read is stored. This allows the worker to recognize from outside the printing device 11 that no mask 27 is stored on the shelf 26 corresponding to the lit light-emitting portion, and that a mask 27 whose code has been successfully read is stored on the shelf 26 corresponding to the unlit light-emitting portion.

[0117] <Expression 6> In expression 5, the control unit 93 may blink the light-emitting unit corresponding to the shelf 26 on which the mask 27 that has been used for printing is stored. This allows the worker to recognize from outside the printing device 11 that the shelf 26 corresponding to the flashing light emitting portion is storing a mask 27 that has been used for printing.

[0118] <Expression 7> In the embodiment 5 or 6, the control unit 93 may blink the light emitting unit corresponding to the shelf 26 storing the mask 27 whose code has failed to be read. This allows the worker to recognize from outside the printing device 11 that the shelf 26 corresponding to the flashing light emitting portion contains a mask 27 whose code has failed to be read.

[0119] <Expression 8> In expression 4, the multiple shelves 26 of the magazine 25 are divided into an unused area 88 in which masks 27 are stored before they are used for printing, and a used area 89 in which masks 27 are stored after they have been used for printing, and the control unit 93 may turn on the light-emitting units corresponding to the shelves 26 in the unused area 88 in which no masks 27 are stored, and turn off the light-emitting units corresponding to the shelves 26 in which the masks 27 whose codes have been successfully read are stored. This allows the worker to recognize from outside the printing device 11 that, in the unused area 88, the shelf 26 corresponding to the lit light-emitting portion does not store an unused mask 27, and the shelf 26 corresponding to the unlit light-emitting portion stores an unused mask 27 whose code has been successfully read.

[0120] <Expression 9> In expression 8, the control unit 93 may turn off the light-emitting unit corresponding to the shelf level 26 in the used area 89 where the mask 27 is not stored, and may blink the light-emitting unit corresponding to the shelf level 26 where the mask 27 is stored. This allows the worker to recognize from outside the printing device 11 that in the used area 89, the shelf 26 corresponding to the unlit light-emitting portion does not store a used mask 27, and the shelf 26 corresponding to the flashing light-emitting portion stores a used mask 27.

[0121] Although the embodiments have been described above with reference to the accompanying drawings, the present disclosure is not limited to such examples. It is clear that a person skilled in the art can conceive of various modifications, corrections, substitutions, additions, deletions, and equivalents within the scope of the claims, and it is understood that these also belong to the technical scope of the present disclosure. In addition, the components in the above-mentioned embodiments may be arbitrarily combined within the scope of the invention. [Industrial Applicability]

[0122] The techniques disclosed herein are useful in printing devices that are capable of using multiple masks. [Explanation of symbols]

[0123] 11 Printing device 13 Printing Department 15 Mask Changer 17 Printing section cover 19 LED Button 21 Substrate transport and holding section 23. Cabinet 25 Magazine 26 shelf 27 Mask 29 Opening 31 Touch Panel 33 Mask Guide 35 Mask holder 37 Print Head 39 Scraper unit 41 Mask top cleaner 43 Gas blowing section 45 Mask holder lift cylinder 47 Cylinder 49 Mask movement mechanism 51 Camera 53 Mask underside cleaner 55 Tubular part 57 Valve section 59 Mobile Base 61 Lift actuator 63 Drawer Plate 65 Elevator 71 Mask passage opening 73 Lifting body 75 Lifting body support part 77 Nut 79 Ball screw 81 Lifting body lifting motor 85 Optical Sensor 86 2D Code 87 Code Reader 88 Unused Area 89 Used Area 93 Control Unit 95 Substrate transport and holding control section 97 Mask transport and installation control unit 99 Printing operation control section 101 Imaging control unit 102 Mask Recognition Unit 103 Mask information in magazine 105 Elevator control unit 107 Mobile base drive motor 109 Squeegee base drive motor 111 Squeegee lift drive unit KB board Mgsp Magazine supply position Mssp1 Mask supply position Pst solder paste SP interior space SP1 supply space SP2 workspace

Claims

1. a printing unit that prints solder paste on the board using a mask on which a predetermined print pattern is formed; a reading unit capable of reading a code given to the mask stored in a shelf of a magazine having a plurality of shelves capable of storing the mask; a control unit that generates mask information in the magazine by associating the position of the shelf at which the code is read with information indicated by the read code; and a light emitting unit corresponding to each shelf of the magazine, the control unit displays, using the light-emitting unit corresponding to the shelf level, the shelf level in which the mask used for printing is stored. Printing device.

2. a mask transfer unit that transfers the mask from the magazine to the printing unit; and a lifting unit that lifts and lowers the magazine to a position where the mask transport unit can pull out the mask to be transported from the magazine, The control unit raises and lowers the lifting unit, and reads the codes attached to the masks stored on each shelf of the magazine through the reading unit. The printing device of claim 1 .

3. the information indicated by the code is information indicating a type of the mask, The control unit is Identifying a shelf in the magazine in which a type of mask used for printing in the printing unit is stored based on the mask information in the magazine; raising and lowering the lifting unit to a position where the mask transfer unit can pull out the mask from the specified shelf. The printing device according to claim 2 .

4. The control unit controls the light emission of the light emitting unit corresponding to the shelf level depending on the presence or absence of the mask on the shelf level. The printing device of claim 1 .

5. The control unit is turning on the light emitting unit corresponding to the shelf where the mask is not stored; turning off the light emitting unit corresponding to the shelf on which the mask whose code has been successfully read is stored; The printing device according to claim 4.

6. The control unit is blinking the light emitting unit corresponding to the shelf on which the mask whose code has not been read is stored; 6. The printing device according to claim 1 or 5.

7. the plurality of shelves of the magazine are divided into an unused area in which the masks before being used for printing are stored, and a used area in which the masks after being used for printing are stored; The control unit, in the unused area, turning on the light emitting unit corresponding to the shelf where the mask is not stored; turning off the light emitting unit corresponding to the shelf on which the mask whose code has been successfully read is stored; The printing device according to claim 4.

8. The control unit, in the used area, turning off the light emitting unit corresponding to the shelf where the mask is not stored; blinking the light emitting unit corresponding to the shelf on which the mask is stored; The printing device according to claim 7.

Citation Information

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