Recording device

The recording device addresses the issue of foreign matter entry by using a cover member with an opening for the feed roller, ensuring effective cleaning and preventing contamination, thus maintaining component performance and user convenience.

JP2025123525APending Publication Date: 2025-08-22SEIKO EPSON CORP
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Patent Information

Application Number
JP2025106243
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-06-24
Publication Date
2025-08-22

AI Technical Summary

Technical Problem

The risk of foreign matter entering the printer unit when the scanner unit is open poses a threat to the performance of components like the feed roller, which deteriorates due to adherence of dust and ink mist, necessitating a cover that prevents access while allowing cleaning.

Method used

A recording device with a cover member that covers the feed path and has an opening to expose the feed roller, allowing cleaning while preventing foreign matter entry, and features a funnel-shaped edge and secure working space for improved cleaning accessibility.

Benefits of technology

The solution enables effective cleaning of the feed roller while preventing foreign matter ingress, enhancing the device's operational reliability and user convenience by securing a wide working space and guiding cleaning tools efficiently.

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Abstract

To solve a problem that although it is preferable to provide a cover member for covering an upper part in a printer part, the provided cover member hinders access to a feeding roller and thereby hinders cleaning of the feeding roller.SOLUTION: A recording device includes: a device body including an inclined support part which supports a medium in an inclined attitude, and a feeding roller which sends the medium supported by the inclined support part; and an opening / closing body which opens or closes an upper part of the device body. The device body is provided with a cover member for covering an upper part of a periphery of the feeding roller. The cover member is formed with an opening for exposing the feeding roller.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present invention relates to a recording device for recording on a medium. [Background technology]

[0002] Among printers, which are an example of recording devices, there are so-called multifunction machines that have a scanner unit on top of the printer unit, as shown in Patent Document 1. In such multifunction machines, the scanner unit can be opened and closed relative to the printer unit, and by opening the scanner unit to expose the printer unit, it is possible to perform tasks such as replacing ink tanks and removing jammed paper. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Publication No. 2018-016050 Summary of the Invention [Problem to be solved by the invention]

[0004] When the scanner unit is open, there is a risk that the user may inadvertently access the printer unit, and foreign matter may easily enter the printer unit. Therefore, it is preferable to provide a cover member that covers the top of the printer unit. However, the printer unit is equipped with components whose performance deteriorates when foreign matter such as paper dust and ink mist adheres to it, specifically, a feed roller that feeds paper. Therefore, providing such a cover member would prevent access to the feed roller, making it impossible to clean the feed roller. [Means for solving the problem]

[0005] In order to solve the above problem, the recording device of the present invention comprises an apparatus main body having an inclined support section that supports a medium in an inclined position and a feed roller that feeds the medium supported by the inclined support section, and an opening / closing body that opens and closes the top of the apparatus main body, and is characterized in that a cover member is provided on the top of the apparatus main body that covers part of the feed path for the medium fed from the inclined support section, and an opening is formed in the cover member to expose the feed roller. [Brief explanation of the drawings]

[0006] [Figure 1] FIG. 1 is a perspective view of the printer from the front with the scanner unit closed. [Figure 2] FIG. 1 is a perspective view of the printer from the front with the scanner unit open. [Figure 3] Cross-sectional view of the printer with the scanner unit closed, cut along the YZ plane. [Figure 4] A cross-sectional view of the printer with the scanner unit open, cut along the YZ plane. [Figure 5] Enlarged view of a portion of Figure 2. [Figure 6] FIG. 2 is a perspective view of a paper feed frame, a feed roller, and a rotation shaft provided at the rear of the apparatus. [Figure 7] A partial enlarged view of Figure 4. [Figure 8] FIG. 3 is a cross-sectional view of the opening of the cover member cut along the XZ plane. [Figure 9] FIG. 4 is a perspective view showing a charge eliminating member provided on the bottom surface of the scanner unit. [Figure 10] FIG. 2 is a block diagram showing the control system of the printer. [Figure 11] 4 is a flowchart showing an example of control performed by a control unit. DETAILED DESCRIPTION OF THE INVENTION

[0007] The present invention will be briefly described below. The recording device according to the first aspect comprises a device main body having an inclined support section that supports a medium in an inclined position and a feed roller that feeds the medium supported by the inclined support section, and an opening / closing body that opens and closes the top of the device main body, wherein the device main body is provided with a cover member that covers the upper part around the feed roller, and the cover member has an opening that exposes the feed roller.

[0008] According to this aspect, the cover member has an opening that exposes the feed roller, so that the feed roller can be cleaned through the opening while preventing foreign matter from entering the device main body.

[0009] A second aspect is the first aspect, characterized in that the edge of the opening is formed in a funnel shape. According to this aspect, the edge of the opening is formed in a funnel shape, so that the cleaning member for cleaning the feed roller can be guided to the feed roller inside the opening, improving workability when cleaning the feed roller.

[0010] A third aspect is characterized in that in the first or second aspect, the opening and closing body can be opened at an angle of 35° or more with respect to the upper surface of the cover member. According to this aspect, the opening / closing body can be opened at an angle of 35° or more relative to the upper surface of the cover member, and therefore, compared to a case in which such a configuration is not provided, a working space can be secured when cleaning the feed roller through the opening, improving workability when cleaning the feed roller.

[0011] A fourth aspect is the third aspect, characterized in that the distance between the cover member and the opening / closing body at the center of the opening is 50 mm or more. According to this aspect, the distance between the cover member and the opening / closing body at the center of the opening is 50 mm or more, so that a working space can be secured when cleaning the feed roller through the opening, compared to when such a configuration is not provided, thereby improving workability when cleaning the feed roller.

[0012] The fifth aspect is characterized in that, in any of the first to fourth aspects, a recess is formed in the opening / closing body at a position facing the device main body when the opening / closing body is closed, and the recess is located above the opening when the opening / closing body is open.

[0013] According to this aspect, a recess is formed in the opening / closing body at a position facing the device main body when the opening / closing body is closed, and the recess is located above the opening when the opening / closing body is open.Therefore, compared to a case where such a configuration is not provided, a working space can be secured when cleaning the feed roller through the opening, and workability when cleaning the feed roller is improved.

[0014] The sixth aspect is characterized in that, in any of the first to fifth aspects, in a first direction that is a direction along the upper surface of the cover member and a radial direction of the feed roller, the center position of the opening is within the area of ​​the rotation axis of the feed roller, and the opening width of the opening in the first direction is at least 1 / 2 of the outer diameter of the feed roller.

[0015] According to this aspect, in the first direction, the center position of the opening is within the area of ​​the rotation axis of the feed roller, and the opening width of the opening in the first direction is at least half the outer diameter of the feed roller, so that a wider area of ​​the outer surface of the feed roller is exposed compared to when such a configuration is not provided, and the feed roller can be cleaned more appropriately.

[0016] The seventh aspect is characterized in that, in any of the first to sixth aspects, the opening width of the opening in the width direction of the feed roller is equal to or greater than the width of the feed roller, and the entire area of ​​the feed roller in the width direction is exposed through the opening.

[0017] According to this aspect, the opening width of the opening in the width direction of the feed roller is equal to or greater than the width of the feed roller, and the entire width direction of the feed roller is exposed through the opening, so that a wider area of ​​the outer peripheral surface of the feed roller is exposed than in the case where such a configuration is not provided, and the feed roller can be cleaned more appropriately.

[0018] The eighth aspect is characterized in that, in any of the first to seventh aspects, it comprises a carriage that has a recording head that records on a medium and is movable in the medium width direction, and a main frame that supports the carriage and guides the carriage in the medium width direction, and the cover member is provided adjacent to the main frame.

[0019] A ninth aspect is characterized in that, in any of the first to eighth aspects, the device further comprises a motor that is a power source for the feed roller, and a control means that controls the motor, and the control means is capable of executing a cleaning mode in which the feed roller rotates without causing the medium supported on the inclined support portion to come into contact with the feed roller.

[0020] According to this aspect, the control means is capable of executing a cleaning mode in which the feed roller rotates without the medium supported on the inclined support portion coming into contact with the feed roller, and therefore, the outer surface of the feed roller can be easily cleaned over a wide area in the circumferential direction compared to when such a configuration is not provided.

[0021] A tenth aspect of the present invention is characterized in that in the ninth aspect, the cleaning mode includes a forward rotation operation and a reverse rotation operation of the feed roller. According to this aspect, the cleaning mode includes forward and reverse rotation of the feed roller, so that the efficiency of cleaning the feed roller can be improved compared to when such a configuration is not provided.

[0022] The 11th aspect is characterized in that, in the 9th or 10th aspect, it is provided with a display unit that displays various information and an opening / closing detection means that detects that the opening / closing body is opened, and when the opening / closing body is opened while meeting predetermined conditions, the control means causes the display unit to display a user interface that guides the user to execute the cleaning mode.

[0023] According to this aspect, when the opening / closing body is opened while certain conditions are met, the control means displays a user interface on the display unit that guides the user to execute the cleaning mode, thereby improving user operability compared to when such a configuration is not provided.

[0024] The twelfth aspect is characterized in that, in the ninth or tenth aspect, a display unit is provided that displays various information, and the control means causes the display unit to display a user interface that guides the user to clean the feed roller when the number of times that the medium fails to be fed from the inclined support portion exceeds a predetermined number.

[0025] According to this aspect, when the number of times that poor media feeding occurs from the inclined support portion exceeds a predetermined number, the control means displays a user interface on the display unit that guides the user to clean the feed roller, so that it is expected that the user will be able to restore the performance of the feed roller more quickly than in a case where such a configuration is not provided.

[0026] The present invention will be specifically described below. In the following, an inkjet printer 1 will be described as an example of a recording device. Hereinafter, the inkjet printer 1 will be simply referred to as the printer 1. In the XYZ coordinate system shown in each figure, the X axis direction is the rotation axis direction of the feed roller 13 (see FIGS. 3 and 4) and is also the width direction of the medium being transported and recorded on. The X axis direction is the width direction of the device, and when a user faces the front of the printer 1, the +X direction is the left direction and the -X direction is the right direction as seen by the user. The Y-axis direction is the depth direction of the device, and is the direction along the medium feed direction during recording. The +Y direction is the direction from the back of the device to the front, and the -Y direction is the direction from the front of the device to the back. In this embodiment, of the sides that make up the periphery of the printer 1, the side on which the operation panel 6 is provided is the front of the device. The Z-axis direction is the vertical direction, which is the height direction of the device. The +Z direction is the vertically upward direction, and the -Z direction is the vertically downward direction. In the following description, the direction in which the medium is transported may be referred to as "downstream," and the opposite direction may be referred to as "upstream."

[0027] First, we will outline the overall configuration of the printer 1. In Figures 1 and 2, the printer 1 is equipped with a scanner unit 3, which is an example of an opening / closing body, on top of a device main body 2 that performs inkjet recording on a medium such as recording paper, and is therefore configured as a multifunction device that has a document reading function in addition to an inkjet recording function.

[0028] The scanner unit 3 is rotatable about a rotation axis 3a (see Figures 3 and 4) relative to the device main body 2, and opens and closes the upper part of the device main body 2 by rotating. In this embodiment, the rotation axis of the scanner unit 3 is parallel to the X-axis direction. Figures 1 and 3 show the scanner unit 3 in a closed state, while Figures 2 and 4 show the scanner unit 3 in an open state. The open state of the scanner unit 3 shown in Figures 2 and 4 is the state in which the scanner unit 3 is fully open, i.e., the fully open state. The fully open state of the scanner unit 3 is maintained by a position maintaining means (not shown). This position maintaining means can be, for example, a known torque hinge.

[0029] The scanner unit 3 is equipped with a document cover 5 that opens and closes a document table 3c (see FIG. 3). A reading unit 3d (see FIG. 3) that reads documents is provided below the document table 3c in the scanner unit 3. The reading unit 3d extends in the Y-axis direction and receives power from a motor (not shown) to read the document placed on the document table 3c while moving in the X-axis direction.

[0030] The device main body 2 is provided with an operation panel 6 on the front of the device, which includes an operation unit for performing various operation settings and a display unit for displaying print setting contents, previews of print images, etc. In this embodiment, this operation panel 6 is provided integrally with the scanner unit 3, and rotates together with the scanner unit 3 as shown in FIG.

[0031] A front cover 4 is provided on the front of the device, and opening this front cover 4 exposes the medium cassette 10, medium discharge port 34, medium receiving tray 21, and the like shown in FIGS. An upper cover 8 is provided on the upper rear surface of the device, and opening this upper cover 8 exposes an inclined support section 12 shown in Figures 2 and 3. The inclined support section 12 supports the medium to be fed in an inclined position.

[0032] Next, the medium feed paths of the printer 1 will be described with reference to Figure 3. As shown in Figure 3, the printer 1 has two medium feed paths: medium feed path T1, which is used when feeding medium from the media cassette 10 at the bottom of the device, and medium feed path T2, which is used when feeding medium from the upper rear of the device. Each medium feed path is formed by a path forming member, but detailed description will be omitted.

[0033] In the medium feed path T1, the medium is fed from the medium cassette 10 by the pick roller 11, reversed by the reversing roller 20, and fed toward the feed roller pair 32. In the medium feed path T2, the medium supported in an inclined position by the inclined support portion 12 is fed by the feed roller 13 toward the feed roller 30 and the nip roller 31. The feed roller 13 is powered by a feed motor 52 (see FIG. 10), and the feed roller 30 is powered by a transport motor 53 (see FIG. 10). The feed roller 30 may be driven by the feed motor 52. The nip roller 31 is a roller that can be rotated by the feed motor 52. The medium supported by the inclined support portion 12 is fed toward a pair of feed rollers 32 by a feed roller 30 and a nip roller 31 .

[0034] The pair of feed rollers 32 receives power from a transport motor 53 (see FIG. 10) and feeds the medium to a position facing the recording head 17 . A medium support section 18 is disposed at a position facing the recording head 17, and the medium support section 18 supports the medium, thereby defining a gap between the recording head 17 and the medium. The carriage 16 on which the recording head 17 is mounted is provided so as to be capable of reciprocating in the width direction of the medium, and receives power from a carriage motor 51 (see FIG. 10) to move in the width direction of the medium.

[0035] Reference numeral 25 denotes a main frame that supports the carriage 16 and guides the carriage 16 in the X-axis direction. In this embodiment, the main frame 25 is made of a metal material, and as shown in FIG. 2, it separates the inside of the device main body 2 into a region in the +Y direction and a region in the -Y direction.

[0036] A discharge roller pair 33 is provided downstream of the recording head 17 and the medium support unit 18, and the medium on which recording has been performed is discharged outside the device by the discharge roller pair 33 and supported by the medium receiving tray 21. The discharge roller pair 33 is powered by a transport motor 53 (see FIG. 10).

[0037] Next, the control system of the printer 1 will be described with reference to FIG. The control unit 50 as a control means performs various controls of the printer 1, including feeding, conveying, discharging, and recording of the medium. Note that Fig. 10 is a block diagram described from the perspective of realizing the recording function of recording on the medium, and the control unit 50 also performs various controls of the scanner unit 3, although a description thereof will be omitted below. Signals are input to the control unit 50 from the operation panel 6, and signals for displaying the display of the operation panel 6, particularly the user interface (hereinafter referred to as "UI"), are sent from the control unit 50 to the operation panel 6.

[0038] The control unit 50 controls motors related to the medium feeding operation and recording operation, such as a carriage motor 51, a feed motor 52, and a transport motor 53. In this embodiment, each motor is a DC motor. The control unit 50 also receives detection signals from the position detection unit 57, rotation detection unit 58, medium detection unit 59, and open / close detection unit 61. The position detection unit 57 is a linear encoder and is a detection unit for detecting the position in the X-axis direction of the carriage 16. The rotation detection unit 58 is a rotary encoder and is a detection unit for detecting the amount of rotation and rotation speed of the roller driven by the transport motor 53.

[0039] The open / close detection unit 61 is a detection unit that detects the open / close state of the scanner unit 3. The open / close detection unit 61 can be configured with a contact or non-contact sensor. The open / close detection unit 61 may be configured to detect whether the scanner unit 3 is completely closed or in any other state, i.e., even slightly open. Alternatively, the open / close detection unit 61 may be configured to detect at least three states of the scanner unit 3: completely closed, completely open, or a state between the completely closed and completely open states, using a combination of multiple sensors. Alternatively, the open / close detection unit 61 may be configured to detect the rotation angle of the scanner unit 3 using a rotary encoder or the like and detect the open / close state based on that.

[0040] The medium detection unit 59 is located near the upstream side of the feed roller pair 32 and is a detection unit for detecting the passage of the leading and trailing ends of the medium. The medium detection unit 59 can be configured with a contact or non-contact sensor. Based on the detection information from the medium detection unit 59, the control unit 50 can determine whether the medium has been fed correctly from the medium cassette 10 or the inclined support unit 12, specifically, whether a non-feed has occurred.

[0041] The control unit 50 includes a CPU 54, a flash ROM 55, and a RAM 56. The CPU 54 performs various arithmetic processes according to programs stored in the flash ROM 55, and controls the overall operation of the printer 1. The flash ROM 55, which is an example of a storage means, is a non-volatile memory that can be read and written. Various setting information input by the user via the operation panel 6 is also stored in the flash ROM 55. Various information is temporarily stored in the RAM 56, which is an example of a storage means. The control unit 50 also has an interface 62 through which communication with an external computer 90 is possible.

[0042] Next, the feed roller 13 that feeds the medium supported by the inclined support portion 12 and its surrounding configuration will be further described. 3 and 4, the feed roller 13 has a part of its outer circumferential surface formed flat, i.e., it has an arcuate portion and a flat portion, and the arcuate portion comes into contact with the medium and applies a feeding force to the medium. After the feeding operation of feeding the medium from the inclined support portion 12 is completed, the flat portion of the feed roller 13 remains facing the inclined support portion 12, as shown in FIGS.

[0043] 6, the feed roller 13 is configured by providing a high-friction material 13b such as rubber or elastomer on the outer periphery of a main body 13a. The main body 13a is formed integrally with a rotating shaft 14. In this embodiment, the rotating shaft 14 and the main body 13a are made of a resin material.

[0044] The rotation shaft 14 is rotatably supported by the paper feed frame 29 and is provided with cam portions 14a at both ends. The inclined support portion 12 is rotatably supported by the paper feed frame 29 via the rotation shaft 12a. Note that while the rotation shaft 12a provided at the end of the inclined support portion 12 in the -X direction is shown in Figure 6, a similar rotation shaft 12a is also provided at the end of the inclined support portion 12 in the +X direction and is supported by the paper feed frame 29. The rotation axis of the inclined support portion 12 is parallel to the X-axis direction.

[0045] Cam follower portion 12b is provided on inclined support portion 12 at a position facing cam portion 14a of rotation shaft 14, and cam follower portion 12b is configured to be able to engage with cam portion 14a. Note that while cam follower portion 12b provided at the end of inclined support portion 12 in the +X direction is shown in Fig. 6, a similar cam follower portion 12b is also provided at the end of inclined support portion 12 in the -X direction, and is able to engage with cam portion 14a.

[0046] The inclined support portion 12 is pressed by a pressing member (not shown), such as a compression spring, in a direction in which the cam follower portion 12b presses against the cam portion 14a. In other words, the inclined support portion 12 is pressed by the pressing member in a direction in which the supported medium is pressed against the feed roller 13. When the rotating shaft 14 rotates, the cam portion 14a presses down on the cam follower portion 12b, causing the medium supported by the inclined support portion 12 to move away from the feed roller 13, or the pressing down of the cam follower portion 12b by the cam portion 14a is released, causing the medium supported by the inclined support portion 12 to press against the feed roller 13. In this configuration, the cam portion 14a and the cam follower portion 12b are provided at both ends in the X-axis direction, so that tilting and twisting of the inclined support portion 12 is suppressed.

[0047] In this embodiment, a solenoid 49 (see FIG. 10) is provided that moves a plunger (not shown) forward and backward relative to the rotation region of the inclined support portion 12. The solenoid 49 switches between a restricting state in which the plunger advances into the rotation region of the inclined support portion 12 to restrict the rotation of the inclined support portion 12 toward the feed roller 13, and an allowing state in which the plunger retreats from the rotation region of the inclined support portion 12 to allow the rotation of the inclined support portion 12. This allows the feed roller 13 to rotate freely without the medium supported by the inclined support portion 12 coming into contact with the feed roller 13.

[0048] A sheet-like charge removal member 40 is provided on the side of the main body 13a of the feed roller 13. The charge removal member 40 is made of a known material capable of removing static electricity. One example of the charge removal member 40 is nonwoven fabric. While FIG. 6 shows the charge removal member 40 provided on the side of the main body 13a facing the -X direction, a similar charge removal member 40 is also provided on the side of the main body 13a facing the +X direction. By providing the charge removal member 40 on the feed roller 13 in this manner, adhesion of ink mist, paper dust, and the like to the feed roller 13 is suppressed. Note that the charge removal member 40 is preferably provided so as to be in electrical contact with a conductive member, such as a metal frame, constituting the device main body 2, i.e., grounded.

[0049] Such a charge-removing member can also be provided so as to contact the outer peripheral surface of the roller, as shown in FIG. 7. In FIG. 7, reference numeral 41 denotes a charge-removing member that contacts the outer peripheral surface of the feed roller 13, and reference numeral 42 denotes a charge-removing member that contacts the outer peripheral surface of the feed roller 30. In this embodiment, the charge-removing members 41 and 42 are attached to the cover member 26, which will be described later. The charge-removing members 41 and 42 can be made of the same material as the charge-removing member 40 described above. It is also preferable that the charge-removing members 41 and 42 are provided so as to be in electrical contact with a conductive member, such as a metal frame, that constitutes the device main body 2, i.e., are grounded. Such charge-removing members suppress the adhesion of ink mist, paper dust, and the like to each roller.

[0050] Furthermore, a cover member 45 is provided above the feed roller 30 so as to cover part of the outer circumferential surface of the feed roller 30, and this cover member 45 separates the area where the feed roller 30 is located from the area where the feed roller 13 is located. The feed roller 30 is located in a position where ink mist generated by ink ejected from the recording head 17 is more likely to adhere to it than the feed roller 13, and when such a feed roller 30 rotates, the ink mist is more likely to flow onto the feed roller 13. However, by providing the cover member 45, the flow of ink mist from the feed roller 30 to the feed roller 13 can be suppressed.

[0051] Next, the cover member 26 that covers the upper area in the -Y direction relative to the main frame 25, specifically the upper area around the feed roller 13, will be described. As shown in FIG. 2, the cover member 26 is provided in the -Y direction relative to the main frame 25. The cover member 26 is provided adjacent to the main frame 25. In this embodiment, the cover member 26 is made of a resin material and is fixed to the paper feed frame 29 (see FIG. 6). In this embodiment, the paper feed frame 29 is also made of a resin material.

[0052] As shown in Figures 3 to 5, 7 and 8, the cover member 26 covers the upper part of the periphery of the feed roller 13, and in particular covers a portion of the medium feed path T2, which is the feed path for the medium sent out from the inclined support portion 12, thereby preventing dust and other particles from entering the device main body 2. 5 and 7, the cover member 26 has an opening 26a that exposes the feed roller 13. Since the cover member 26 has the opening 26a that exposes the feed roller 13, the feed roller 13 can be cleaned through the opening 26a while preventing foreign matter from entering the device main body 2.

[0053] In this embodiment, the edge of opening 26a is formed in a funnel shape. In FIG. 5, reference numerals 26b, 26c, 26d, and 26e denote slopes that form the edge of opening 26a, and all of these slopes are formed to slope downward toward the center of opening 26a. Because the edge of opening 26a is formed in a funnel shape, the cleaning member CL (see FIG. 7) used to clean feed roller 13 can be guided to feed roller 13 inside opening 26a, improving the ease with which the user can clean feed roller 13. Note that the cleaning member CL may be any material, such as a fiber sheet, that can clean the outer peripheral surface of feed roller 13.

[0054] In this embodiment, scanner unit 3 can be opened at an angle of 35° or more relative to the upper surface of cover member 26. In Fig. 4, symbol α indicates the opening angle of scanner unit 3, which is 0° when scanner unit 3 is fully closed and 35° or more, specifically 45°, when scanner unit 3 is fully open. Note that opening angle α can be based on the angle between the document placement surface of document table 3c and the upper surface of cover member 26, as an example. In this way, the scanner unit 3 can be opened widely, so that a working space can be secured when cleaning the feed roller 13 via the opening 26a, and the workability when cleaning the feed roller 13 is improved.

[0055] Furthermore, a distance H1 between the cover member 26 and the scanner unit 3 at the center of the opening 26a is ensured to be 50 mm or more. More specifically, in this embodiment, the distance H1 is set to 75 mm. Note that the center of the opening 26a here refers to the center of the opening 26a in the Y-axis direction. Furthermore, the distance H1 is the distance in the Z-axis direction from the top surface of the cover member 26 to the bottom surface of the scanner unit 3 in the fully open state. In this embodiment, the top surface of the cover member 26 is a horizontal plane. As a result, a working space can be secured when cleaning the feed roller 13 via the opening 26a, and the workability when cleaning the feed roller 13 is improved.

[0056] In addition, a recess 3b is formed in a position facing the device main body 2 when the scanner unit 3 is closed as shown in Fig. 3, and the recess 3b is located above the opening 26a when the scanner unit 3 is open as shown in Fig. 4. This ensures a working space when cleaning the feed roller 13 through the opening 26a, improving the workability when cleaning the feed roller 13.

[0057] 7 , in the first direction, which is a direction along the top surface of the cover member 26 and a radial direction of the feed roller 13, specifically the Y-axis direction, the center position Y1 of the opening 26a is within the area of ​​the rotation shaft 14 of the feed roller 13. In other words, the opening 26a is centered with respect to the feed roller 13. The opening width b2 of the opening 26a in the Y-axis direction is equal to or greater than half the outer diameter b1 of the feed roller 13. With this configuration, a wide area of ​​the outer circumferential surface of the feed roller 13 is exposed inside the opening 26a, allowing the feed roller 13 to be more appropriately cleaned. Furthermore, it is more preferable that the center position Y1 of the opening 26a in the Y-axis direction coincides with the axial center of the rotation shaft 14 of the feed roller 13, but the center position Y1 may be offset from the axial center of the rotation shaft 14 as long as it is within the area of ​​the rotation shaft 14.

[0058] 8, in this embodiment, the opening width a1 of the opening 26a in the width direction of the feed roller 13, i.e., in the X-axis direction, is equal to or greater than the width a2 of the feed roller 13, and the entire width direction of the feed roller 13 is exposed through the opening 26a. This allows the feed roller 13 to be cleaned more appropriately. In this embodiment, the outer peripheral surface of the feed roller 13 is located below the lower end position Z1 of the edge of the opening 26a, but it is also preferable that the outer peripheral surface of the feed roller 13 is located above the lower end position Z1. This makes the outer peripheral surface of the feed roller 13 more clearly exposed, making it easier to clean.

[0059] 9, it is also preferable to provide a charge-removing member 43 at a position facing the opening 26a on the bottom surface of the scanner unit 3, and to completely or partially block the opening 26a with the charge-removing member 43 when the scanner unit 3 is closed. This makes it possible to prevent ink mist from leaking from the inside to the outside of the device body 2 through the opening 26a.

[0060] Next, the control performed by the control unit 50 will be described with reference to FIG. When the control unit 50 determines that it is time to clean the feed roller 13 (Yes in step S101), it notifies the user of this (step S102). The user can be notified by, for example, displaying a message on the operation panel 6 (see FIGS. 1 and 2) such as "The feed roller may be dirty. Please open the scanner unit and clean it."

[0061] The timing for cleaning the feed roller 13 can be set to at least one of the following (1) and (2), or both (1) and (2). (1) When the number of times that non-feeding of the medium from the inclined support portion 12 occurs exceeds a predetermined number. Note that a non-feed occurs when the medium is not fed from the inclined support portion 12 and stagnates despite the rotation of the feed roller 13, and is an example of poor feeding of the medium from the inclined support portion 12. (2) When the count value of the number of media fed from the inclined support portion 12, which is counted based on the previous execution of the cleaning mode (step S106) being set to zero, exceeds a predetermined number. The cleaning mode (step S106) will be explained later.

[0062] Next, when the control unit 50 detects that the scanner unit 3 has been opened (Yes in step S103), it causes the operation panel 6 to display a UI that guides the user to execute the cleaning mode (step S104). This UI can display a message such as, for example, "Do you want to rotate the feed roller for cleaning? (Yes / No)." When the user selects "Yes" on this UI (Yes in step S105), the control unit 50 executes the cleaning mode (step S106).

[0063] The cleaning mode (step S106) is a mode in which the feed roller 13 is rotated without the medium supported by the inclined support portion 12 coming into contact with the feed roller 13. The control portion 50 controls the solenoid 49 (see FIG. 10) to maintain the inclined support portion 12 at the farthest position from the feed roller 13, and rotates the feed roller 13 in that state. At this time, it is more preferable that the rotation speed of the feed roller 13 is slower than the rotation speed when feeding the medium. The rotational movement of the feed roller 13 can also include forward and reverse movements. The forward and reverse movements of the feed roller 13 can be, for example, such that the feed roller 13 is rotated forward one or more times in succession and then reversed the same amount as the forward rotation, or the feed roller 13 can be rotated one or more times in the forward or reverse direction while repeatedly rotating forward and reverse in short increments.

[0064] In this way, the control unit 50 can execute a cleaning mode in which the feed roller 13 rotates without the medium supported by the inclined support portion 12 coming into contact with the feed roller 13, so that the user can easily clean the outer surface of the feed roller 13 over a wide area along the circumferential direction of the feed roller 13.

[0065] Furthermore, by including forward and reverse rotation of the feed roller 13 in the cleaning mode, the cleaning efficiency of the feed roller 13 can be improved.

[0066] Furthermore, if the number of times that non-feeding of the medium from the inclined support portion 12 occurs exceeds a predetermined number, the control portion 50 causes the operation panel 6 to display a UI that guides the user to clean the feed roller 13 (steps S101 and S102), which is expected to enable the user to quickly restore the performance of the feed roller 13.

[0067] Furthermore, when the scanner unit 3 is opened with predetermined conditions satisfied (step S101), the control unit 50 causes the operation panel 6 to display a UI that guides the user to execute the cleaning mode (step S104). Therefore, the user does not need to navigate through the UI displayed on the operation panel 6, for example, from the main menu, improving the operability for the user when executing the cleaning mode.

[0068] The present invention is not limited to the embodiments described above, and various modifications are possible within the scope of the invention described in the claims, and it goes without saying that these modifications are also included in the scope of the present invention. For example, in the above embodiment, the opening / closing member provided on the top of the device main body 2 is the scanner unit 3, but it is not limited to the scanner unit 3 and may be an opening / closing member such as a cover. [Explanation of symbols]

[0069] 1...inkjet printer, 2...device main body, 3...scanner unit, 3a...rotating shaft, 3b...recess, 3c...document table, 3d...reading unit, 4...front cover, 5...document cover, 6...operation panel, 8...upper cover, 9...media discharge port, 10...media cassette, 11...pick roller, 12...inclined support unit, 12a...rotating shaft, 12b...cam follower unit, 13...feed roller, 13a...main body, 13b...high friction material, 14...rotating shaft, 14a...cam unit, 15...separation roller, 16...carriage, 17...recording head, 18...media support unit, 20...reversing roller, 21...media receiving tray, 25...media In-frame, 26...upper cover, 26a...opening, 26b, 26c, 26d, 26e...guide surfaces, 29...paper feed frame, 30...feed roller, 31...nip roller, 32...feed roller pair, 33...discharge roller pair, 34...media discharge port, 40, 41, 42, 43...static elimination member, 45...cover member, 49...solenoid, 50...control unit, 51...carriage motor, 52...feed motor, 53...transport motor, 54...CPU, 55...flash ROM, 56...RAM, 57...position detection unit, 58...rotation detection unit, 59...media detection unit, 61...open / close detection unit, 62...interface

Claims

1. a device body including an inclined support portion that supports the medium in an inclined position and a feed roller that feeds the medium supported by the inclined support portion; an opening / closing body that opens and closes the upper part of the device body, a cover member that covers an upper portion of the periphery of the feed roller is provided on the device body; The cover member has an opening formed therein to expose the feed roller. A recording device characterized by:

2. 2. The recording device according to claim 1, wherein the edge of the opening is formed in a funnel shape. A recording device characterized by:

3. 3. The recording apparatus according to claim 1, wherein the opening / closing body can be opened at an angle of 35 degrees or more with respect to the upper surface of the cover member. A recording device characterized by:

4. 4. The recording apparatus according to claim 3, wherein the distance between the cover member and the opening / closing body at the center of the opening is 50 mm or more. A recording device characterized by:

5. 5. The recording device according to claim 1, wherein a recess is formed in the opening / closing body at a position facing the device body when the opening / closing body is closed, The recess is located above the opening when the opening / closing body is open. A recording device characterized by:

6. 6. The recording device according to claim 1, wherein a center position of the opening is within an area of ​​a rotation axis of the feed roller in a first direction that is a direction along an upper surface of the cover member and a radial direction of the feed roller, an opening width of the opening in the first direction is equal to or greater than half of an outer diameter of the feed roller; A recording device characterized by:

7. 7. The recording device according to claim 1, wherein an opening width of the opening in a width direction of the feed roller is equal to or greater than a width of the feed roller; the entire width of the feed roller is exposed through the opening; A recording device characterized by:

8. 8. The recording apparatus according to claim 1, further comprising: a carriage that includes a recording head for recording on a medium and is movable in a width direction of the medium; a main frame that supports the carriage and guides the carriage in the medium width direction, The cover member is provided adjacent to the main frame. A recording device characterized by:

9. 9. The recording apparatus according to claim 1, further comprising: a motor that is a power source for the feed roller; a control means for controlling the motor; the control unit is capable of executing a cleaning mode in which the feed roller is rotated without causing the medium supported on the inclined support portion to come into contact with the feed roller. A recording device characterized by:

10. 10. The recording apparatus according to claim 9, wherein the cleaning mode includes forward and reverse rotation of the feed roller. A recording device characterized by:

11. 11. The recording device according to claim 9, further comprising: a display unit that displays various information; and an opening / closing detection unit that detects when the opening / closing body is opened, When the opening / closing body is opened in a state where a predetermined condition is satisfied, the control means causes the display unit to display a user interface that guides the user to execute the cleaning mode. A recording device characterized by:

12. 11. The recording device according to claim 9, further comprising a display unit that displays various information, the control unit causes the display unit to display a user interface that guides a user to clean the feed roller when the number of times that a medium feeding failure occurs from the inclined support unit exceeds a predetermined number. A recording device characterized by:

Citation Information

Patent Citations

  • Image formation apparatus

    JP2018016050A