Medium conveyance device and processor

The media transport device addresses size issues by incorporating a movable support system for multiple transport paths, enabling compact design and flexible media placement, thus improving usability and efficiency.

JP2025129411APending Publication Date: 2025-09-04SEIKO EPSON CORP
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Patent Information

Application Number
JP2025115057
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-07-08
Publication Date
2025-09-04

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  • Figure 2025129411000001_ABST
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Abstract

To solve the problem in which: there is a possibility of increasing a size of a medium conveyance device when a mounting section mounted with a medium thereon is provided integrally with a device body in accordance with each conveyance path in the medium conveyance device having a plurality of conveyance paths.SOLUTION: A medium conveyance section 30 includes: a body section 12; a tray unit 50; and a support guide member 72. The body section 12 has a first hand feed path K3 and a second hand feed path K4. The tray unit 50 can be stored in the body section 12 in a non-use state and is mounted with a medium thereon in a use state. The support guide member 72 is made movable in a Z direction and supports the tray unit 50 so as to switch a first position where the tray unit 50 is positioned in the first hand feed path K3, a second position where the tray unit is positioned in the second hand feed path K4, and a third position where the tray unit is stored in the body section 12.SELECTED DRAWING: Figure 13
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Description

[Technical Field]

[0001] The present invention relates to a medium transport device that transports a medium, and a processing device that processes the transported medium. [Background technology]

[0002] In the recording device described in Patent Document 1, the paper reversing unit or the lens sheet feeding unit is detachable from the mounting section, and when the lens sheet is to be conveyed in a straight line, the lens sheet feeding unit is mounted on the mounting section. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2015-120319 Summary of the Invention [Problem to be solved by the invention]

[0004] In a media transport device having multiple transport paths, such as the recording device of Patent Document 1, if the loading section on which the media is placed is provided integrally with the device body to match each transport path, there is a risk that the media transport device will become larger. [Means for solving the problem]

[0005] In order to solve the above problem, the media transport device of the present invention is characterized by having a device main body having a first transport path and a second transport path in which the transported media has different postures, a loading section that can be stored in the device main body when not in use and on which the media is placed when in use, and a support section that is arranged in the device main body so as to be movable in the vertical direction of the device main body and supports the loading section so that the loading section can be switched between a first position in which it is located on the first transport path, a second position in which it is located on the second transport path, and a third position in which it is stored in the device main body. [Brief explanation of the drawings]

[0006] [Figure 1] FIG. 1 is a side cross-sectional view illustrating the overall configuration of a printer according to a first embodiment. [Figure 2] FIG. 1 is a perspective view of a printer according to a first embodiment, viewed from the rear side. [Figure 3] FIG. 2 is a perspective view of a reversing unit of the printer according to the first embodiment. [Figure 4] FIG. 2 is a perspective view illustrating a state in which a reversing unit is being removed from the printer main body according to the first embodiment. [Figure 5] FIG. 3 is a cross-sectional view showing the arrangement of a reversing unit and a tray unit of the printer according to the first embodiment. [Figure 6] FIG. 2 is a perspective view showing a frame member and a tray unit of the printer according to the first embodiment. [Figure 7] FIG. 4 is a partial enlarged perspective view showing an engagement portion between a frame member and a tray unit of the printer according to the first embodiment. [Figure 8] FIG. 4 is a partial enlarged perspective view showing an engagement portion between a frame member and a tray unit of the printer according to the first embodiment. [Figure 9] FIG. 2 is a perspective view of a tray unit of the printer according to the first embodiment. [Figure 10] FIG. 2 is a partially enlarged perspective view of a tray unit of the printer according to the first embodiment. [Figure 11] FIG. 2 is a perspective view of the exposed state of the reversing unit of the printer according to the first embodiment, as viewed from the rear side. [Figure 12] FIG. 10 is a perspective view of the exposed state of the second manual feed path of the printer according to the first embodiment, as viewed from the rear side. [Figure 13] FIG. 4 is a side cross-sectional view illustrating a state in which the tray unit is pivoted when the rear cover of the printer according to the first embodiment is closed. [Figure 14] FIG. 10 is a perspective view of the printer according to the first embodiment, seen from the rear side, showing a state in which the tray unit is attached to the second manual feed path. [Figure 15A] FIG. 10 is a partial cross-sectional side view illustrating a state in which the tray unit is pivoted when the rear cover of the printer according to the first embodiment is closed. [Figure 15B]FIG. 10 is a partial cross-sectional side view illustrating a state in which the tray unit interferes with the rear cover of the printer according to the first embodiment when the rear cover is in an open state. [Figure 16] FIG. 10 is a side cross-sectional view illustrating a state in which paper can be passed through the second manual feed path of the printer according to the first embodiment. [Figure 17] FIG. 10 is a side cross-sectional view of a printer according to a second embodiment. [Figure 18] FIG. 10 is a schematic diagram illustrating a state in which a transport force is applied to paper by a rear end guide member of a printer according to a second embodiment. DETAILED DESCRIPTION OF THE INVENTION

[0007] The present invention will be briefly described below. The media transport device of the first aspect of the present invention for solving the above problem is characterized by having a device main body having a first transport path and a second transport path in which the transported media have different postures, a loading section that can be stored in the device main body when not in use and on which the media is placed when in use, and a support section that is arranged in the device main body so as to be movable in the vertical direction of the device main body and supports the loading section so that the loading section can be switched between a first position where it is located on the first transport path, a second position where it is located on the second transport path, and a third position where it is stored in the device main body.

[0008] According to this aspect, by moving the support unit in the height direction, the placement unit is changed from a stored state, which is an unused state, to an expanded state, which is an used state, and the position of the placement unit in the height direction is changed. Furthermore, the posture of the placement unit can be changed by, for example, rotating the placement unit relative to the support unit. This allows the support unit and the placement unit to be switched between the first position, the second position, and the third position. This allows the medium transport device to be more compact than a configuration in which the placement unit is fixed to the device body in the second position.

[0009] The medium conveying device of the second aspect is characterized in that, in the first aspect, it is detachable from the device main body, and when attached to the device main body, it forms an inversion path for inverting the medium, covers the second conveying path, and is provided with an inversion unit that is positioned on the path of rotation of the placement unit.

[0010] According to this aspect, when the reversing unit is detached from the device body, there is no obstacle on the path of rotation of the placement unit, so the placement unit can be provided on the second transport path. On the other hand, when the reversing unit is attached to the device body, the placement unit cannot be provided on the second transport path because the rotation of the placement unit is restricted by contact with the reversing unit. In other words, when one of the second conveying path and the reversing path is available, the other is unavailable, so the user can recognize which of the second conveying path and the reversing path is available.

[0011] The medium conveying device of the third aspect is characterized in that, in the first or second aspect, the first conveying path is located higher in the height direction than the second conveying path, the device body is provided with a cover member that is capable of opening and closing the first conveying path, covers the first conveying path when closed, and is located lower in the height direction than the storage section when open, and the storage section is capable of rotating when the cover member is closed, and rotation is restricted by contact with the cover member when the cover member is open.

[0012] According to this aspect, when the cover member is in the open state, the first conveying path is opened and becomes usable, and the rotation of the placement section is restricted by contact with the cover member, which is positioned below the placement section, making the second conveying path unusable. On the other hand, when the cover member is in the closed state, the first transport path is covered and becomes unusable, and the rotation of the placement unit is permitted, thereby making the second transport path usable. In other words, when one of the first transport path and the second transport path is usable, the other is unusable, so that the user can recognize which of the first transport path and the second transport path is usable.

[0013] The medium transport device of the fourth aspect is any one of the first to third aspects, characterized in that the placement section is provided with a guide section that guides both left and right ends of the medium in the transport direction in accordance with the medium width.

[0014] According to this aspect, the guide portion guides both the left and right ends of the medium in the transport direction, so the direction in which the medium is transported can be stabilized compared to a configuration without the guide portion.

[0015] The media transport device according to the fifth aspect is any one of the first to fourth aspects, characterized in that the placement section is provided with a biasing section that biases the media toward the downstream side in the transport direction.

[0016] According to this aspect, the medium is sent downstream in the transport direction by the urging force received from the urging portion, thereby preventing transport failures in which the medium stops midway along the transport path.

[0017] The medium conveying device of the sixth aspect is any one of the first to fifth aspects, characterized in that the device body is formed with an allowance portion that guides the support portion in the height direction and allows the support portion to be removed.

[0018] According to this aspect, by detaching the support portion from the permitting portion, the placement portion can be removed from the device body, and media can be placed on the placement portion. The placement portion with the media placed on it is provided on the transport path to be used by inserting the support portion into the permitting portion. In this way, the placement portion is detachable from the device body, making it easier for the user to place media on the placement portion.

[0019] The media transport device of the seventh aspect is characterized in that, in any one of the first to sixth aspects, the placement section has a base supported by the support section and one or more extension sections that extend and contract relative to the base in the media transport direction.

[0020] According to this aspect, by extending the expandable section relative to the base section, the area in the mount section where media can be placed is expanded, allowing larger sized media to be used.

[0021] The processing device of the eighth aspect is characterized by having a medium conveying device described in any one of the first to seventh aspects, and a processing unit that performs processing on the medium being conveyed on either the first conveying path or the second conveying path.

[0022] According to this aspect, it is possible to obtain the same effects as those of the medium transport device according to any one of the first to seventh aspects.

[0023] [Embodiment 1] A first embodiment of a medium transport device and a processing device according to the present invention will be described in detail below with reference to the accompanying drawings. In the XYZ coordinate system shown in each drawing, the X axis direction is the width direction of the printer 10 (described later), the Y axis direction is the depth direction of the printer, and the Z axis direction is the height direction of the printer. In the device width direction, when distinguishing between the left and right sides when viewed from the front, the right side is referred to as the +X side and the left side is referred to as the -X side. In the device depth direction, when distinguishing between the front and rear sides, the front side is referred to as the +Y side and the rear side is referred to as the -Y side. In the device height direction, when distinguishing between the top and bottom sides, the top side is referred to as the +Z side and the bottom side is referred to as the -Z side.

[0024] 1 shows a printer 10 as an example of a processing device and a recording device. The printer 10 records various types of information on paper P or sheet S (FIG. 16) as an example of a medium. The various types of information recorded on paper P include text information and image information. As an example, the paper P is plain paper. As an example, the sheet S is thicker than the paper P, is made of a resin plate material, and has a recessed portion (not shown) formed therein. As an example, this recessed portion is designed to hold a DVD (Digital Versatile Disc) on which information is recorded. The printer 10 also has a main body 12 as an example of a device main body, a scanner 18, an information recording unit 20 as an example of a processing unit, and a medium transport unit 30 as an example of a medium transport device. A portion of the medium transport unit 30 constitutes a portion on the -Y side of the center of the main body 12. The printer 10 provides the same effects as the medium transport unit 30, which will be described later.

[0025] The main body 12 includes a housing 13 that houses the components of the printer 10, a storage section 14 that stores paper P, an operation panel (not shown), and a main body frame 32 (described later). The housing 13 is formed in a hollow box shape and includes side walls 15 (FIG. 2) that form the outer periphery of the printer 10. Inside the housing 13, multiple paths (described below) are formed for transporting paper P or sheets S. Also, at the -Y side end of the housing 13, a storage section 19 is formed to store a tray unit 50 (described below). The storage section 19 is a box-shaped section that opens toward the +Z side.

[0026] 2, rear wall 17, which constitutes the -Y side portion of side wall 15, has a rectangular central portion removed in the X-axis direction, making it discontinuous. That is, rear wall 17 is divided into right rear wall 17A, which constitutes the +X side, and left rear wall 17B, which constitutes the -X side. Mounting portions 17C are formed at the +Z side ends of right rear wall 17A and left rear wall 17B, to which hinge portions 84 (FIG. 15A) of cover member 82, which will be described later, are attached.

[0027] <Route along which paper, etc. is transported> 1, the printer 10 is formed with various paths along which paper P or sheets S are transported when a reversing unit 86 (described later) is installed. Specifically, the main body 12 has a first path K1, a second path K2, a first manual feed path K3, a second manual feed path K4, and a reversing path K5. Each path includes multiple rollers and guide members (not shown). The paper P can be transported through all of the above-mentioned paths. The sheet S can be transported only through the second path K2 and the second manual feed path K4.

[0028] The first path K1 extends from the -Y side end of the storage unit 14 toward the +Z side, via the +Z side outer peripheral surface of a reversing roller 88 (described later), to a transport roller 26 (described later). The portion of the first path K1 from the reversing roller 88 to the transport roller 26 is formed in a straight line along the Y axis direction. In this straight portion, the paper P or sheet S is supported by a bottom wall 35 that forms the lower part of the path. The second path K2 extends linearly from the transport roller 26 to the +Y side along the Y axis, passing through the -Z side of the head 22 described below.

[0029] The first manual feed path K3 is an example of a first transport path, and extends diagonally downward from a location on the -Y side and +Z side of the center of the main body 12 to the transport roller 26. The first manual feed path K3 can be used by opening a cover member 82, which will be described later. The second manual feed path K4 is an example of a second transport path, and extends linearly along the Y-axis direction from a location on the -Y side of the center of the main body 12 toward the +Y side to the transport roller 26. The second manual feed path K4 becomes usable when a reversing unit 86 (described later) is detached from the main body 12 and a tray unit 50 (described later) is attached in an orientation along the Y-axis direction. The first manual insertion path K3 is located above (on the +Z side of) the second manual insertion path in the Z-axis direction.

[0030] The reversing path K5 is formed by attaching the reversing unit 86 to the main body 12. The reversing path K5 has a straight portion from the transport roller 26 to the reversing roller 88, and a curved portion that joins the first path K1 from the -Y side end of the straight portion along the -Z side outer peripheral surface of the reversing roller 88. In this embodiment, the straight portion of the reversing path K5 also serves as part of the second manual feed path K4.

[0031] [Information Recording Section] The information recording unit 20 records information on the paper P or the sheet S based on received information such as information on the original read by the scanner unit 18 or information input from outside. The information recording unit 20 also performs a process of recording information on the paper P or the sheet S being transported on either the first manual feed path K3 or the second manual feed path K4. Specifically, the information recording unit 20 includes a head 22 and a control unit 24. The control unit 24 controls the operation of each part of the printer 10.

[0032] The head 22 is an example of a processing unit and a recording unit, and is configured as a so-called inkjet type recording head that records various information as an example of processing on the paper P or sheet S by ejecting ink as an example of a liquid onto the paper P or sheet S. On the −Y side and −Z side of the head 22, transport rollers 26 that transport the paper P or sheet S toward the head 22 are provided.

[0033] The control unit 24 includes a CPU (Central Processing Unit), ROM (Read Only Memory), RAM (Random Access Memory), and storage (not shown). The control unit 24 is configured to control not only the operation of the head 22, but also the transport of paper P or sheet S in the printer 10. The control unit 24 also controls various operations in the printer 10 based on information input from the operation panel described above.

[0034] [Medium transport section] The medium transport section 30 has a main body frame 32, a tray unit 50 as an example of a loading section, and a support guide member 72 as an example of a support section. The medium transport section 30 also has a cover member 82 and an inversion unit 86 as an example of an inversion section. The main body frame 32 is included in an example of a device main body.

[0035] <Main frame> The main body frame 32 is provided within the housing 13. Specifically, the main body frame 32 is configured to include a bottom wall 33, a vertical wall 34, a lower wall 35, a pair of side walls 36, and a guide frame 37. The bottom wall 33 constitutes the bottom wall of the housing 13, is formed in a plate shape with its thickness direction in the Z-axis direction, and extends along the XY plane. As described above, the main body frame 32 also has a first manual feed path K3 and a second manual feed path K4 along which the postures of the transported paper P or sheet S differ.

[0036] The vertical wall 34 stands upright in the Z-axis direction at the -Y-side end of the bottom wall 33. The vertical wall 34 is formed in a plate shape with its thickness direction in the Y-axis direction, and is formed in a rectangular shape that is long in the X-axis direction and short in the Z-axis direction. The height of the vertical wall 34 in the Z-axis direction is, for example, about 1 / 3 of the height of the housing 13 in the Z-axis direction. Furthermore, the vertical wall 34 is located adjacent to the +Y side of the -Z-side end of a tray unit 50 (described later), and comes into contact with the tray unit 50 in the stored state, thereby restricting the movement and rotation of the tray unit 50.

[0037] The lower wall 35 is disposed at a position on the +Z side of the storage section 14, on the -Y side of the lower surface of the head 22, and on the +Y side of the vertical wall 34. The lower wall 35 is formed in a plate shape with its thickness direction in the Z-axis direction, and extends along the XY plane. The side walls 36 are formed in the shape of plates with their thickness in the X-axis direction, and are arranged at intervals on the +X and −X sides of the center in the X-axis direction in a portion on the −Y side of the center in the housing 13, and stand upright in the Z-axis direction. A reversing unit 86, which will be described later, is arranged between the pair of side walls 36.

[0038] As shown in Figure 6, the guide frame 37 is formed with, as an example, one inclined wall 38, a pair of left and right side walls 39, a pair of left and right engaged portions 42, and a pair of left and right rail guide portions 44. The inclined wall 38 is formed in a plate shape and is inclined downward and forward so that the +Y side end is located on the -Z side of the -Y side end. The inclined wall 38 also divides the space in the Y axis direction into a space where the reversing unit 86 (FIG. 1) is disposed and a space that becomes the first manual feed path K3 (FIG. 1). The width of the inclined wall 38 in the X axis direction is wider than the width of the paper P in the X axis direction. The pair of side walls 39 are located at both ends of the inclined wall 38 in the X-axis direction and are formed in the shape of plates along the YZ plane. The pair of side walls 39 are disposed inside the pair of side walls 36 (FIG. 1) in the X-axis direction.

[0039] 7, the engaged portions 42 are formed on both ends in the X-axis direction at the +Z side end of the inclined wall 38. The engaged portions 42 protrude further toward the +Z side than the +Z side end of the inclined wall 38. When viewed from the X-axis direction, the engaged portions 42 have a U-shaped cross section that opens toward the -Y side.

[0040] The rail guide portion 44 shown in Fig. 8 is an example of a tolerance portion. The rail guide portion 44 is a portion formed contiguous with the engaged portion 42 on the outer side in the X-axis direction relative to the engaged portion 42, and guides a rail portion 75 (described later) in the Z-axis direction and allows the rail portion 75 to be removed. Specifically, the rail guide portion 44 is configured to open toward the +Z side and inward in the X-axis direction, and has a front wall 44A, a side wall 44B (Fig. 6), and a rear wall 44C. The side wall 44B restricts the rail portion 75 from moving outward in the X-axis direction.

[0041] The front wall 44A and the rear wall 44C are disposed along the XZ plane, face each other with a gap in the Y axis direction, and extend in the Z axis direction. The gap in the Y axis direction between the front wall 44A and the rear wall 44C is narrower at the +Z side than at the center and bottom (-Z side) in the Z axis direction. As a result, the center and bottom of the rail guide portion 44 in the Z axis direction guide the rail portion 75 in the Z direction with the front wall 44A and the rear wall 44C. In addition, the top of the rail guide portion 44 in the Z axis direction (the +Z side end) sandwiches the rail portion 75 between the front wall 44A and the rear wall 44C, preventing the rail portion 75 from easily coming off.

[0042] At the upper part of the rail guide part 44 in the Z-axis direction, an external force is applied to the rail part 75, and the rail part 75 is pulled up to the +Z side, causing the rail part 75 to detach from the rail guide part 44. In other words, the detachment of the rail part 75 is permitted. Note that, because the gap in the Y-axis direction is narrow at the +Z side end of the rail guide part 44, a pressing force is applied in the Y-axis direction to the lower part of the rail part 75 pulled up to the +Z side. Therefore, the rail portion 75 is held by the upper portion of the rail guide portion 44 in the pulled-up state.

[0043] <Tray unit> 9 has a first support member 52 as an example of a base, and a second support member 64 as an example of an extendable portion. Note that when describing the arrangement of each part of the tray unit 50, the tray unit 50 will be described as being in an upright state along the XZ plane.

[0044] The first support member 52 is formed in the shape of a rectangular plate that is long in the X-axis direction. The width of the first support member 52 in the X-axis direction is wider than the width of the paper P in the X-axis direction. The first support member 52 is formed with, for example, a notch 53, a shaft 54, an engagement portion 55, a slit 56, and a support member support portion 58. The first support member 52 is also provided with an edge guide 62 as an example of a guide portion. As for example, these are arranged symmetrically with respect to an imaginary line that passes through the center in the X-axis direction and runs along the Z-axis direction, so only one side will be described, and a description of the other side will be omitted. The notch portions 53 are formed in an L shape on the -Z side of the center in the Z axis direction at both ends in the X axis direction of the first support member 52. Specifically, the notch portions 53 have side surfaces 53A as end faces in the X axis direction and side surfaces 53B as end faces in the Z axis direction.

[0045] 10 protrudes outward in the X-axis direction from the +Z-side end of side surface 53A. Shaft 54 ​​is formed in a cylindrical shape with its axial direction in the X-axis direction, and is rotatably supported by an annular portion 76 of support guide member 72, which will be described later. This allows first support member 52 to rotate with respect to support guide member 72.

[0046] Engaging portion 55 protrudes outward in the X-axis direction from the -Z side end of side surface 53A. Engaging portion 55 has flat portion 55A that follows the XY plane and curved portion 55B that protrudes in the Y-axis direction when tray unit 50 is in the tilted state. Engaging portion 55 is inserted into engaged portion 42 (FIG. 7) from the -Y side when tray unit 50 is in the tilted state, and engages with engaged portion 42.

[0047] The two slits 56 shown in FIG. 9 extend long in the X-axis direction, and are arranged with a gap between them in the X-axis direction and with their positions shifted in the Z-axis direction. As an example, the edge guide 62 has a slide plate 62A that is disposed along the surface of the first support member 52 and is guided in the X-axis direction by the slits 56, and a movable plate 62B that is connected to the end of the slide plate 62A in the X-axis direction by a hinge portion (not shown). The axial direction of the hinge portion is the Z-axis direction.

[0048] The two slide plates 62A can be moved toward or away from each other in the X-axis direction by a movement mechanism made up of a pinion and a rack (not shown). When not in use, the movable plate 62B is stored in a state where it overlaps with the slide plate 62A in the Y-axis direction. When in use, the movable plate 62B stands upright so as to be perpendicular to the slide plate 62A, and guides the edge of the paper P in the X-axis direction in the transport direction of the paper P. In this way, the edge guide 62 guides both left and right ends of the paper P in the X-axis direction in the transport direction in accordance with the width of the paper P (medium width).

[0049] As shown in Fig. 5, when viewed from the Z-axis direction, the support member support portion 58 is formed as a groove with a U-shaped cross section that opens in the X-axis direction. The support member support portion 58 also extends in the Z-axis direction. As a result, the support member support portion 58 guides both ends of the second support member 64 in the X-axis direction in the Z-axis direction. In other words, the second support member 64 is configured to expand and contract in the transport direction of the paper P relative to the first support member 52. The support member support portion 58 is formed with an engaged portion (not shown) that holds the second support member 64 in the pulled-out state.

[0050] As shown in Figure 9, the second support member 64, as an example, has a plate portion 65 that is narrower in the X-axis direction than the first support member 52, and a curved portion 66 formed at the +Z side end of the plate portion 65. Plate portion 65 is formed in a rectangular shape that is long in the X-axis direction. Both end portions of plate portion 65 in the X-axis direction are inserted into support member support portions 58, and are guided in the Z-axis direction by support member support portions 58. An engaging portion (not shown) that engages with first support member 52 when plate portion 65 is pulled out to the +Z side relative to first support member 52 is formed on the -Z side end portion of plate portion 65. The curved portion 66 is disposed at an upper corner of the housing 13 when the tray unit 50 is stored in the storage portion 19. The curved portion 66 also functions as a grip portion when the second support member 64 is pulled out.

[0051] 1 can be stored in the storage section 19 in an upright state along the Z-axis direction. When stored in the storage section 19, the tray unit 50 functions as a rear wall covering the -Y side portion of the main body 12. The stored state of the tray unit 50 means that the tray unit 50 is in an unused state, in which it is not in use. The tray unit 50 is pulled out from the storage section 19 to the +Z side and in an unfolded state tilted with respect to the Z-axis direction, in which paper P is placed on it. The unfolded state of the tray unit 50 means that the tray unit 50 is in a used state, in which it is used. Paper P placed on the tilted tray unit 50 is sent to the first manual feed path K3.

[0052] Furthermore, the tray unit 50 is capable of rotating around the central axis of the shaft 54 ​​(FIG. 7) when the cover member 82, which will be described later, is in a closed state. Furthermore, when the cover member 82 is in an open state, the tray unit 50 comes into contact with the cover member 82 in the Z-axis direction, thereby restricting rotation of the tray unit 50 around the central axis of the shaft 54.

[0053] <Support guide member> 9 has a rectangular vertical plate portion 73 that is long in the X-axis direction when viewed from the Y-axis direction, and a restricting portion 74, a rail portion 75, and an annular portion 76 that are formed on both ends of the vertical plate portion 73 in the X-axis direction. The support guide member 72 can be stored in the storage section 19 (FIG. 1) together with the tray unit 50. The support guide member 72 is provided in the main body portion 12 (FIG. 1) so as to be movable in the Z-axis direction, which is the height direction. Although a portion of each component constituting the support guide member 72 is formed asymmetrically with respect to the center in the X-axis direction, the components will be described here as being symmetrical to make the configuration easier to understand. Each component of the support guide member 72 may be formed as an asymmetrical component with respect to the center in the X-axis direction.

[0054] The vertical plate portion 73 is disposed upright in the Z-axis direction. The length of the vertical plate portion 73 in the X-axis direction is longer than the length of the first support member 52 excluding the cutout portion 53 in the X-axis direction. In addition, the length of the vertical plate portion 73 in the Z-axis direction is approximately the same as the length of the cutout portion 53 in the Z-axis direction. The restricting portions 74 are portions that protrude from both ends of the vertical plate portion 73 in the X-axis direction toward the +Y side. Specifically, the restricting portions 74 are formed in the shape of a rectangular prism that is long in the Z-axis direction. Of the side surfaces of the restricting portion 74, a side surface 74A on the inner side in the X-axis direction faces the above-mentioned side surface 53A in the X-axis direction when the tray unit 50 is upright in the Z-axis direction. The width of the side surface 74A in the Y-axis direction is approximately the same as the width of the side surface 53A in the Y-axis direction. As a result, when the first support member 52 is in a state where it is shifted in the X-axis direction, the restricting portions 74 come into contact with the side surface 53A, thereby restricting the shifting of the first support member 52 in the X-axis direction.

[0055] 10, rail portion 75 is a portion that protrudes outward in the X-axis direction and toward the +Y side from the outer end of restriction portion 74 in the X-axis direction. Rail portion 75 is formed in the shape of a rectangular pillar that is long in the Z-axis direction. Rail portion 75, as an example, has pillar portion 75A and protrusion portion 75B that protrudes outward in the X-axis direction from the -Z side end of pillar portion 75A.

[0056] As shown in FIG. 8, the rail portion 75 is inserted into the rail guide portion 44 and is movable along the rail guide portion 44 in the Z-axis direction. The annular portion 76 is a portion that protrudes toward the +Z side from the +Z side end of the restricting portion 74 and the rail portion 75. The annular portion 76 also has a through-hole 76A that is circular in cross section and whose axial direction is the Z-axis direction. The shaft portion 54 described above is inserted into the through-hole 76A. As a result, the support guide member 72 supports the first support member 52 (tray unit 50) so that the first support member 52 (tray unit 50) can rotate around the central axis of the shaft portion 54. Note that the rotation of the tray unit 50 means, in other words, that the tray unit 50 tilts in an oblique direction intersecting with the Z axis direction when viewed from the X axis direction.

[0057] 1 rotatably supports the tray unit 50 so as to switch between a first position where the tray unit 50 is located on the first manual-feed path K3, a second position where the tray unit 50 is located on the second manual-feed path K4, and a third position where the tray unit 50 is stored in the storage section 19. The support guide member 72 itself is guided and held by a rail guide section 44 (FIG. 8) of the main body frame 32 so as to switch between the first position, the second position, and the third position. The rail guide section 44 is an example of a support section. The switching between the first position, the second position, and the third position of the tray unit 50 will be described later. In the present embodiment, as an example, the second position and the third position are set to be substantially the same position.

[0058] <Cover material> 2, cover member 82 is a member arranged to cover the +Z side portion of the -Y side end of housing 13. Specifically, cover member 82 has a cover main body portion 83 and a hinge portion 84 that protrudes from the -Y side end of cover main body portion 83 toward the -Z side. The length of cover main body 83 in the X-axis direction is approximately equal to the length of housing 13 in the X-axis direction. A notch 83A cut out toward the +Y side is formed in the center of the X-axis direction at the -Y side end of cover main body 83. The size of notch 83A is such that tray unit 50 can be pulled out and stored in the Z-axis direction.

[0059] The hinge portions 84 are portions that protrude toward the -Z side from both outer portions of the cutout portion 83A of the cover main body portion 83, and are formed in an annular shape with the X-axis direction as the central axis direction (FIG. 15A). The hinge portions 84 are rotatably attached to the above-described attachment portion 17C using a shaft (not shown). In this way, the cover member 82 is provided so as to be able to open and close relative to the housing 13, with the hinge portions 84 side serving as the fulcrum side.

[0060] 15A and 15B, the cover member 82 can open and close the first manual feed path K3 by rotating about a hinge portion 84. A state in which the cover member 82 covers the +Z side end of the housing 13 is referred to as a closed state of the cover member 82. In the closed state, the cover member 82 covers the insertion opening side of the first manual feed path K3 for paper P from the +Z side. In other words, when the cover member 82 is in the closed state, it is not possible to transport paper P using the first manual feed path K3.

[0061] 15B, the cover member 82 is rotated about the hinge portion 84, and the cover member 82 stands upright in the Z-axis direction. This is referred to as the open state of the cover member 82. In the open state, the cover member 82 opens the insertion opening side of the first manual feed path K3 for paper P. This makes it possible to transport paper P using the first manual feed path K3 when the cover member 82 is in the open state. Note that in the open state, the cover member 82 is located on the -Z side of the tray unit 50, which is pulled out to the +Z side.

[0062] <Reversing unit> 3 is an example of a reversing section, and is detachably provided on the main body frame 32 (FIG. 1). The reversing unit 86 has a function of reversing the front and back sides of the paper P. Specifically, the reversing unit 86 is configured to include a main body member 87, a reversing roller 88, an auxiliary disk 89, an upper guide member 91, a base member 92, a rear cover 93, and a movable claw portion 94. When viewed from the X-axis direction, the entire reversing unit 86 is formed in a trapezoid shape with the -Y side portion standing upright in the Z-axis direction and the +Y side forming an acute angle. When the reversing unit 86 is attached to the main body frame 32 (FIG. 1), the bottom of the reversing unit 86 forms the +Z side portion of the second manual feed path K4 (FIG. 1).

[0063] The reversing roller 88 is provided in the main body member 87 so as to be rotatable around a shaft whose central axis is in the X-axis direction, and is driven to rotate by a motor (not shown) to reverse the paper P upside down. The rear cover 93 is formed in a plate shape with its thickness oriented in the Y-axis direction, and is attached to the -Y side portion of the main body member 87. Two window portions 93A (FIG. 4) are formed in the rear cover 93. Furthermore, when the reversing unit 86 is attached, the rear cover 93 faces the tray unit 50 (FIG. 1) in the Y-axis direction. The movable claw 94 is biased so as to be capable of relative movement in the X-axis direction in the main body member 87. In addition, the movable claw 94 can be engaged with and disengaged from the main body frame 32 by operating in the X-axis direction through the window 93A.

[0064] 4, in use, the reversing unit 86 is housed inside the main body 12. Specifically, the reversing unit 86 is attached to the main body frame 32 (FIG. 1), and is thereby disposed between the guide frame 37 (FIG. 1) and the tray unit 50 in the Y-axis direction. Furthermore, the -Y side portion of the reversing unit 86 is exposed when the tray unit 50 is pulled up to the +Z side.

[0065] 4, the reversing unit 86 is detached from the main body frame 32 to the -Y side by operation from the -Y side. By detaching the reversing unit 86, the second manual feed path K4 is exposed. In this way, the reversing unit 86 can be attached to and detached from the main body frame 32 by pulling up the tray unit 50 to the +Z side.

[0066] As shown in Figure 1, when the inversion unit 86 is attached to the main frame 32, it forms an inversion path K5 for inverting the paper P, covers the second manual feed path K4 from the +Z side, and is positioned on the rotation path R of the tray unit 50 (middle diagram in Figure 13). "Positioned on the rotation path R of the tray unit 50" means that, when the tray unit 50 is in a state where it can rotate, the reversing unit 86 is located downstream in the rotation direction relative to the tray unit 50. In other words, when the reversing unit 86 is positioned on the rotation path R of the tray unit 50, a part of the rotated tray unit 50 comes into contact with the reversing unit 86, thereby restricting the rotation of the tray unit 50.

[0067] <Explanation of the operation and effects of the first embodiment> 2, when paper P is not being manually fed into the printer 10, the support guide member 72 is in the third position, and the tray unit 50 is in a retracted state that forms the wall on the -Y side of the printer 10. In this state, the cover member 82 is positioned along the top surface of the housing 13, covering the first manual feed path K3 (FIG. 1). Therefore, the first manual feed path K3 cannot be used.

[0068] (Use of the first manual feed path) 1 is lifted, the base end side of the cover member 82 is rotated, and the cover member 82 stands upright in the Z-axis direction. This opens the first manual insertion path K3. In this state, the support guide member 72 is pulled up toward the +Z side, and the tray unit 50 is also pulled up toward the +Z side. Then, with the support guide member 72 positioned approximately at the top end of the housing 13, the tray unit 50 is rotated.

[0069] 7, the engaging portion 55 of the turned tray unit 50 engages with the engaged portion 42 from the -Y side. This makes it possible to use the first manual insertion path K3 with the tray unit 50 tilted, as shown in FIG.

[0070] (Use of the second manual feed path) 2 is pulled up from the third position to the +Z side end of the housing 13. This exposes the reversing unit 86, as shown in Fig. 11, making it possible to access the reversing unit 86. In this state, the reversing unit 86 is pulled out to the -Y side. 12, with the lower wall 35 exposed, the support guide member 72 is pulled down toward the -Z side. At this time, as shown in FIG. 13, in the space above the lower wall 35 from which the reversing unit 86 (FIG. 11) has been removed, the tray unit 50 can be rotated.

[0071] 15A is rotated to be positioned along the XY plane, as shown in FIG. 14. This position is maintained by a portion of the second support member 64 contacting the vertical plate portion 73 of the support guide member 72. In this state, by pulling the support guide member 72 down to the -Z side end of the housing 13, the bottom wall 35 and the tray unit 50 are aligned in the Y-axis direction. In other words, the support guide member 72 is positioned at the second position, and the tray unit 50 is positioned along the XY plane.

[0072] Next, with the second support member 64 extended (stretched) toward the -Y side relative to the first support member 52, the movable plate 62B is raised above the first support member 52. This enables the second manual insertion path K4 to be used. Note that the support guide member 72 is returned to the third position by performing the steps described above in reverse.

[0073] As shown in FIG. 16, the sheet S placed on the tray unit 50 is fed into the printer 10 through the second manual feed path K4, and information is recorded by the information recording unit 20 (FIG. 1).

[0074] (1) As described above, according to the first embodiment, by moving the support guide member 72 in the Z-axis direction, the tray unit 50 is changed from a stored state, which is an unused state, to an expanded state, which is an used state, and the position of the tray unit 50 in the Z-axis direction is changed. Furthermore, by changing the rotation angle of the tray unit 50 relative to the support guide member 72, the posture of the tray unit 50 is changed. In this way, by combining the movement of the support guide member 72 and the rotation (posture change) of the tray unit 50, the support guide member 72 and the tray unit 50 can be switched between the first position, the second position, and the third position. This allows the medium transport unit 30 to be made smaller than in a configuration in which the tray unit 50 is fixed to the main body 12 at the second position.

[0075] (2) Furthermore, according to the first embodiment, when the reversing unit 86 is detached from the main body 12, there is no obstacle on the path of rotation of the tray unit 50, so the tray unit 50 can be provided on the second manual feed path K4. Furthermore, when the reversing unit 86 is attached to the main body 12, the rotation of the tray unit 50 is restricted by contact with the reversing unit 86, so the tray unit 50 cannot be provided on the second manual feed path K4. In other words, when one of the second manual feed path K4 and the reverse path K5 is usable, the other is unusable, so the user can recognize which of the second manual feed path K4 and the reverse path K5 is usable.

[0076] (3) Furthermore, according to embodiment 1, when the cover member 82 is in the open state, the first manual insertion path K3 is opened and becomes usable, and the rotation of the tray unit 50 is restricted by contact with the cover member 82, which is positioned below the tray unit 50, making the second manual insertion path K4 unusable. On the other hand, when the cover member 82 is in the closed state, the first manual insertion path K3 is covered by the cover member 82 and becomes unusable, and the tray unit 50 is allowed to rotate, so that the second manual insertion path K4 becomes usable. In other words, when one of the first manual feed path K3 and the second manual feed path K4 is usable, the other becomes unusable, so the user can recognize which of the first manual feed path K3 and the second manual feed path K4 is usable.

[0077] (4) Furthermore, according to embodiment 1, the contact between the edge guide 62 and the paper P guides both the left and right ends of the paper P or sheet S in the conveying direction, so the direction in which the paper P or sheet S is conveyed can be stabilized compared to a configuration without the edge guide 62.

[0078] (5) Furthermore, according to the first embodiment, by detaching the support guide member 72 from the rail guide portion 44, the tray unit 50 can be removed from the main body portion 12, and paper P or sheets S can be placed on the tray unit 50. The tray unit 50 with paper P or sheets S placed on it is provided on one of the transport paths to be used by inserting the rail portion 75 of the support guide member 72 into the rail guide portion 44. In this way, the tray unit 50 is detachable from the main body portion 12, making it easier for the user to place paper P or sheets S on the tray unit 50.

[0079] (6) Furthermore, according to embodiment 1, by extending the second support member 64 relative to the first support member 52, the area in the tray unit 50 in which paper P or sheets S can be placed is expanded, allowing larger sized paper P or sheets S to be used.

[0080] [Embodiment 2] Next, a second embodiment will be described as an example of a medium conveying device and a processing device according to the present invention. The same reference numerals are used to designate parts common to the first embodiment, and their description will be omitted. Furthermore, the same functions and effects as those of the first embodiment will also be omitted.

[0081] 17, in the printer 10, a rear end guide unit 102 may be provided on the second support member 64. The rear end guide unit 102 is an example of a biasing section, and biases the tray unit paper P or sheet S toward the +Y side, which is the downstream side in the transport direction.

[0082] 18, the rear end guide unit 102 has, as an example, a holder 103, a front wall 104, a rear wall 105, a guide frame 106, and a compression spring 107. Note that the arrangement of each member will be described assuming that the second support member 64 is arranged along the Y-axis direction.

[0083] The holder 103 is formed in a plate shape with its thickness direction in the Z-axis direction, and is movable in the Y-axis direction (transport direction) along a slit (not shown) formed in the second support member 64. The position of the holder 103 on the second support member 64 is determined by engagement with an engaged portion (not shown) formed in the second support member 64.

[0084] The front wall 104 stands upright on the +Z side in the +Y side portion of the holder 103 relative to the center in the Y axis direction. Rear wall 105 stands upright on the +Z side at a portion on the -Y side with respect to the center in the Y axis direction of holder 103. In addition, a protruding portion 105A extending in a plate shape toward front wall 104 is formed at a portion on the -Z side with respect to the center in the Z axis direction of rear wall 105.

[0085] The guide frame 106 is a member formed in the shape of a rectangular pillar that is long in the X-axis direction. The guide frame 106 is movable in the Y-axis direction between the front wall 104 and the protruding portion 105A. The compression spring 107 has one end attached to the rear wall 105 and the other end attached to the guide frame 106. As a result, the compression spring 107 biases the guide frame 106 toward the front wall 104. In this way, the rear end guide unit 102 is movable on the second support member 64 along the transport direction of the paper P or sheet S. When the -Y side end of the paper P or sheet S placed on the tray unit 50 comes into contact with the guide frame 106, a biasing force toward the +Y side is applied to the paper P or sheet S. In other words, the biasing force is the transport force of the paper P or sheet S.

[0086] <Explanation of the operation and effects of the second embodiment> (1) According to the second embodiment, the paper P or sheet S is sent downstream in the conveying direction by the biasing force received from the rear end guide unit 102. This prevents conveyance failure in which the paper P or sheet S stops midway along the second manual feed path K4.

[0087] Other Embodiments The media transport unit 30 and printer 10 according to the embodiment of the present invention are based on the configuration described above, but it is of course possible to modify or omit parts of the configuration within the scope of the gist of the present invention.

[0088] The printer 10 is not limited to an inkjet printer, but may be an electrophotographic printer. The medium is not limited to paper P or sheet S, but may be a sheet-like film. The processing device is not limited to a recording device such as the printer 10, but may be, for example, a scanner (information reading device) in which the head 22 is replaced with an image reading unit. A part of the reverse path K5 does not have to serve as a part of the second manual feed path K4.

[0089] The printer 10 may not have a reversing unit 86. The printer 10 may also have no cover member 82, leaving the first manual feed path K3 exposed. The rail guide unit 44 of the printer 10 may also prevent the rail unit 75 from coming off.

[0090] The tray unit 50 does not have to be provided with an edge guide 62. For example, a rib may be formed on the first support member 52, and the paper P or sheet S may be guided by the rib. The tray unit 50 does not have to have the rear end guide unit 102. The tray unit 50 may also be configured such that two or more second support members 64 are extendable and contractible in the transport direction of the paper P or sheet S relative to one first support member 52.

[0091] The rear end guide unit 102 may be detachable from the tray unit 50. In other words, the rear end guide unit 102 may be replaceable at a regulating position set in accordance with the size of the paper P or sheet S. The printer 10 may be provided with a sensor that detects the attachment / detachment of the support guide member 72 to / from the main body 12, and when the sensor detects the detachment (removal) of the support guide member 72, the printer may automatically switch to manual feed mode. In the printer 10, the tray unit 50 may be biased toward the main body 12 so that the tray unit 50 is maintained in a stored state in the storage section 19. [Explanation of symbols]

[0092] 10...printer, 12...main body, 13...casing, 14...accommodation section, 15...side wall, 17...rear wall, 17A...Right rear wall, 17B...Left rear wall, 17C...Attachment part, 18...Scanner part, 19...storage section, 20...information recording section, 22...head, 24...control unit, 26...Transport roller, 27...Lower guide member, 30...Media transport section, 32...Main body frame, 33...Bottom wall, 34...Vertical wall, 35...Lower wall, 36...Side wall, 37...Guide frame, 38...Inclined wall, 39...Side wall, 42...Engaged portion, 44...Rail guide portion, 44A...Front wall, 44B...side wall, 44C...rear wall, 50...tray unit, 52...first support member, 53...notch portion, 53A...side surface, 53B...side surface, 54...shaft portion, 55...engagement portion, 55A...flat surface portion, 55B...curved surface portion, 56...slit, 58...support member support portion, 62...edge guide, 62A...slide plate, 62B...movable plate, 64...second support member, 65...plate portion, 66...curved portion, 72...support guide member, 73...vertical plate portion, 74...regulating portion, 74A...side surface, 75...rail portion, 75A...pillar portion, 75B...protruding portion, 76...annular portion, 76A...through hole, 82...cover member, 83...cover main body portion, 83A...notch portion, 84... hinge portion, 86... reversing unit, 87... main body member, 88... reversing roller, 89... Auxiliary disc, 91... Upper guide member, 92... Base member, 93... Rear cover, 93A... window portion, 94... movable claw portion, 102... rear end guide unit, 103... holder, 104...front wall, 105...rear wall, 105A...extension portion, 106...guide frame, 107...Compression spring, K1...First path, K2...Second path, K3...First manual insertion path, K4...Second manual feed path, K5...Reverse path, P...Paper, R...Rotation path, S...Sheet

Claims

1. an apparatus body having a first transport path and a second transport path in which the orientation of the transported medium is different; a support portion provided in the device body so as to be movable in a height direction of the device body, and configured to support the placement portion so that the placement portion can be switched between a first position where the placement portion is located on the first transport path, a second position where the placement portion is located on the second transport path, and a third position where the placement portion is stored in the device body; A medium transport device having:

2. 2. The medium transport device according to claim 1, a reversing unit that is detachably attached to the device body, forms a reversing path for reversing the medium when attached to the device body, covers the second transport path, and is disposed on a path of rotation of the placement unit; A medium transport device characterized by:

3. 3. The medium transport device according to claim 1, the first transport path is located above the second transport path in the height direction, The device body is provided with a cover member that can open and close the first transport path, covers the first transport path in a closed state, and is located lower in the height direction than the placement unit in an open state, and the placement unit is rotatable when the cover member is in the closed state, and rotation of the placement unit is restricted by contact with the cover member when the cover member is in the open state. A medium transport device characterized by:

4. 4. The medium transport device according to claim 1, The loading section is provided with guide sections that guide both left and right ends of the medium in the transport direction in accordance with the medium width. A medium transport device characterized by:

5. 5. The medium transport device according to claim 1, The medium transport device, wherein the placement section is provided with a biasing section that biases the medium toward the downstream side in the transport direction.

6. 6. The medium transport device according to claim 1, The device body is formed with an allowance portion that guides the support portion in the height direction and allows the support portion to be removed. A medium transport device characterized by:

7. 7. The medium transport device according to claim 1, the mounting section has a base supported by the support section and one or more extendable sections that extend or contract in the medium transport direction relative to the base; A medium transport device characterized by:

8. The medium transport device according to any one of claims 1 to 7; a processing section that performs processing on the medium being transported on either the first transport path or the second transport path; A processing device comprising:

Citation Information

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