Image reader
A detachable pressing member in document scanners and printers switches between contact and retract states, addressing management and damage issues, enhancing user convenience and media alignment.
Patent Information
- Application Number
- JP2024079569
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-05-15
- Publication Date
- 2025-05-20
- Estimated Expiration
- 2040-07-06
AI Technical Summary
The detachable pressing member in existing document scanners and printers is cumbersome to manage during normal usage, and there is a risk of damage during storage or transportation.
A detachable pressing member that can switch between a first state for contacting discharged media and a second state for retracting upward, with features like adjustable load, friction, and shape to prevent damage and improve user convenience.
The solution allows for convenient management of the pressing member without removal, preventing damage and ensuring proper media alignment and user accessibility, while reducing the risk of jamming and skewing.
Smart Images

Figure 0007679906000001 
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Abstract
Description
[Technical field]
[0001] The present invention relates to a medium ejection device that ejects a medium, and an image reading device including the same. [Background technology]
[0002] Document scanners that read documents while transporting them, printers that record on paper, and the like include a tray that receives the discharged medium and a pressing member that presses the medium discharged onto the tray, as shown in Patent Document 1. Because the pressing member presses the discharged medium from above, even media that tend to curl strongly will be stacked in an appropriate state on the tray. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] JP 2014-231398 A Summary of the Invention [Problem to be solved by the invention]
[0004] In the configuration described in Patent Document 1, the pressing member is configured to be detachable. If the pressing member is detachable in this manner, damage to the pressing member can be avoided during storage or transportation of the device, but on the other hand, management of the detached pressing member becomes cumbersome in normal usage environments. [Means for solving the problem]
[0005] In order to solve the above problem, the media transport device of the present invention comprises a device main body having a media discharge section that discharges media, a media receiving tray that receives the media discharged by the media discharge section, and a pressing member that is a member that is detachable from the device main body and that, when attached to the device main body, presses the media discharged by the media discharge section toward the media receiving tray, wherein the pressing member, when attached to the device main body, is switchable between a first state in which it can contact the media discharged by the media discharge section, and a second state in which it is retracted upward to a position where it does not contact the media discharged by the media discharge section. [Brief description of the drawings]
[0006] [Figure 1] FIG. [Diagram 2] FIG. 2 is a side cross-sectional view showing a document transport path in the scanner. [Diagram 3] FIG. [Figure 4] FIG. [Diagram 5] FIG. [Figure 6] Side view of the scanner. [Figure 7] FIG. [Figure 8] FIG. [Figure 9] FIG. [Figure 10] FIG. [Figure 11] FIG. 4 is a cross-sectional view of the pressing member, the base portion, and the fixing portion. [Figure 12] FIG. 4 is a cross-sectional view of the pressing member, the base portion, and the fixing portion. [Figure 13] FIG. [Figure 14] FIG. 11 is a side view of a pressing member according to a second embodiment. [Figure 15] FIG. 11 is a side view of a pressing member according to a second embodiment. [Figure 16] FIG. 13 is a side view of a pressing member according to a third embodiment. [Figure 17] FIG. 13 is a side view of a pressing member according to a fourth embodiment. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0007] The present invention will now be briefly described. The first aspect comprises a device main body having a media discharge section that discharges media, a media receiving tray that receives the media discharged by the media discharge section, and a pressing member that is a member that is detachable from the device main body and that, when attached to the device main body, presses the media discharged by the media discharge section toward the media receiving tray, wherein the pressing member, when attached to the device main body, is switchable between a first state in which it can contact the media discharged by the media discharge section, and a second state in which it is retracted upward to a position where it does not contact the media discharged by the media discharge section.
[0008] According to this aspect, the pressing member is detachable from the device main body and, when attached to the device main body, is switchable between a first state in which it can contact the medium discharged by the media discharge section, and a second state in which it is retracted upward to a position where it does not contact the medium discharged by the media discharge section. Therefore, when the pressing member is not required in normal usage environments, the pressing member can be switched to the second state without being removed from the device main body to meet user needs and thereby improve user convenience.
[0009] A second aspect is the first aspect, further comprising a load applying means for applying a load to the pressing member when the pressing member switches from the second state to the first state. According to this aspect, a load applying means is provided that applies a load to the switching action of the pressing member from the second state to the first state, thereby making it possible to prevent the pressing member from switching from the second state to the first state against the user's intention, further improving user convenience.
[0010] A third aspect is characterized in that, in the first or second aspect, the pressing member is configured to switch between the first state and the second state by rotating, and the pressing member rotates toward the second state by applying an external force including a vertical upward component to a tip of the pressing member that is at the limit of its downward rotation. When the device body is lifted and moved, the pressing member at the downward rotation limit may collide with the installation surface of the device when the device body is placed down, which may result in damage to the pressing member. However, according to this aspect, when an external force including a vertical upward component is applied to the tip of the pressing member at the downward rotation limit, the pressing member rotates toward the second state, so that the above-mentioned damage to the pressing member can be suppressed.
[0011] A fourth aspect is characterized in that, in the third aspect, the downward rotation limit of the pressing member is determined by abutment between an abutment portion formed on the pressing member and a regulating portion with which the abutment portion abuts, and when the abutment portion abuts against the regulating portion, the pressing member takes an inclined posture facing diagonally downward. According to the present aspect, the downward rotation limit of the pressing member is determined by the abutment between the abutment portion formed on the pressing member and the regulating portion with which the abutment portion abuts, and when the abutment portion abuts against the regulating portion, the pressing member takes an inclined posture facing diagonally downward. Therefore, when an external force including a vertical upward component acts on the lower end of the pressing member which is at the downward rotation limit, the pressing member can reliably rotate toward the second state, and damage to the pressing member as described above can be reliably prevented.
[0012] A fifth aspect is characterized in that, in the first or second aspect, the pressing member is configured to switch between the first state and the second state by rotating, and includes a locking portion that fixes the pressing member to the device body, and an operating portion for releasing the fixing of the pressing member by the locking portion, and when an external force is applied to the pressing member, which is at its downward rotation limit, to rotate it in the direction opposite to the direction toward the second state, a part of the pressing member abuts against the operating portion, and the fixing of the pressing member by the locking portion is released.
[0013] When an external force is applied to the pressing member at the limit of downward rotation in a direction opposite to the direction toward the second state, the pressing member may be damaged. However, according to this aspect, when an external force is applied to the pressing member at the limit of downward rotation in a direction opposite to the direction toward the second state, a part of the pressing member abuts against the operating unit, and the fixing of the pressing member by the locking unit is released, so that the pressing member can fall off, and as a result, damage to the pressing member can be suppressed.
[0014] The sixth aspect is characterized in that, in any of the first to fifth aspects, the contact position at which the medium discharged by the medium discharge section contacts the pressing member in the first state is downstream in the discharge direction from the position at which the medium discharged by the medium discharge section contacts the medium receiving tray or a medium placed on the medium receiving tray.
[0015] If the medium discharged by the medium discharge unit comes into contact with the pressing member before coming into contact with the medium receiving tray or a medium placed on the medium receiving tray, the medium may buckle and become jammed. However, according to this aspect, the contact position where the medium discharged by the medium discharge unit comes into contact with the pressing member is downstream in the discharge direction from the position where the medium discharged by the medium discharge unit comes into contact with the medium receiving tray or a medium placed on the medium receiving tray, so the occurrence of the above-mentioned jam can be suppressed.
[0016] The seventh aspect is characterized in that, in any of the first to sixth aspects, the pressing member in the first state contacts the medium at multiple contact positions in the width direction, which is a direction intersecting the medium discharge direction. According to this aspect, the presser member in the first state contacts the medium at multiple contact positions in the width direction, which is a direction intersecting the medium ejection direction, so that rotation, or skewing, of the ejected medium can be suppressed.
[0017] The eighth aspect is characterized in that, in the seventh aspect, the pressing member contacts the medium at two contact positions in the width direction, and the center position in the width direction of the medium discharged by the medium discharge section is between the two contact positions. According to this aspect, the medium is pressed by the pressing members on both sides in the width direction with respect to the center position in the width direction, so that rotation, or skewing, of the ejected medium can be more effectively prevented.
[0018] The ninth aspect is characterized in that, in the eighth aspect, the pressing member expands in a width direction, which is a direction intersecting the medium discharge direction, toward downstream in the medium discharge direction, and has a shape in which the center portion in the width direction is cut out. According to this aspect, the pressing member expands in the width direction, which is a direction intersecting the medium discharge direction, toward downstream in the medium discharge direction and has a shape with a cutout at the center in the width direction, so that rotation, i.e., skewing, of the discharged medium can be effectively suppressed by pressing the medium over a wide area in the width direction. And, because the pressing member has a cutout at the center in the width direction, when the pressing member is switched to the second state, the area that the pressing member covers on the device body can be reduced, and a decrease in operability of the device body can be suppressed.
[0019] The tenth aspect is characterized in that, in any of the first to ninth aspects, the pressing member is formed in a shape such that, when viewed from the width direction, which is a direction intersecting the medium discharge direction, the portion that contacts the medium receiving tray is convex with respect to the medium receiving tray. If the media receiving tray is configured to expand and contract, there is a risk that the media receiving tray will get caught on the pressing member, especially when it contracts. However, according to the present embodiment, when viewed from the width direction, which is the direction that intersects the media discharge direction, the pressing member is formed so that the portion that comes into contact with the media receiving tray is convex with respect to the media receiving tray, thereby preventing the above-mentioned getting caught.
[0020] An eleventh aspect is any one of the first to tenth aspects, characterized in that the pressing load applied by the pressing member when pressing the medium is adjustable. According to this aspect, the pressing member is configured to be able to adjust the pressure load when pressing the medium, so that the pressing load can be adjusted according to the size, type, etc. of the medium, thereby enabling the medium to be pressed appropriately.
[0021] A twelfth aspect of the present invention is characterized in that in any one of the first to eleventh aspects, the pressing member is configured so that the length in the ejection direction of the medium is adjustable. According to this aspect, the pressing member is configured to be able to adjust the length in the direction in which the medium is discharged, so that the position at which the pressing member presses the medium can be adjusted according to the size of the medium, allowing the medium to be pressed appropriately.
[0022] The 13th aspect is characterized in that, in any of the 1st to 12th aspects, the pressing member has a portion that comes into contact with the medium that is switchable between a first portion having a first coefficient of friction with the medium, and a second portion having a second coefficient of friction with the medium that is greater than the first coefficient of friction. According to this aspect, the pressing member has a portion that comes into contact with the medium that is switchable between a first portion having a first coefficient of friction between the pressing member and the medium, and a second portion having a second coefficient of friction between the pressing member and the medium that is greater than the first coefficient of friction. This makes it possible to switch the coefficient of friction depending on the size, type, etc. of the medium, and to press the medium appropriately.
[0023] A 14th aspect is characterized in that, in any of the 1st to 13th aspects, the device main body is provided with a display unit that displays various information, and the pressing member in the second state when viewed in a plane of the display unit is in a position that covers a portion of the display unit and is in a position that is outside the display content on the display unit. According to this aspect, when the pressing member is in the second state in a planar view of the display unit, it is in a position covering a portion of the display unit and is away from the display content on the display unit, thereby preventing the pressing member in the second state from obstructing the user's viewing of the display unit.
[0024] A 15th aspect is characterized in that, in any of the 1st to 14th aspects, the device body includes an operation panel that accepts various operation settings, the operation panel includes at least one push button that can be pressed, and the pressing member in the second state is in a position that covers a portion of the push button in a planar view of the push button and exposes a portion of the push button. According to this aspect, the pressing member in the second state is in a position that covers part of the push button when viewed in a plane and exposes part of the push button, thereby making it possible to avoid the pressing member in the second state interfering with the user's pressing of the push button.
[0025] The image reading device of the 16th aspect is characterized in that it comprises a reading means for reading a medium being transported, and the medium ejection device described in any of the 1st to 15th aspects for ejecting the medium read by the reading means. According to this aspect, in the image reading device, the operational effects of any one of the first to fifteenth aspects described above can be obtained. The present invention will be specifically described below.
[0026] In the following, a document scanner 1 capable of reading at least one of the front and back sides of a document, which is an example of a medium, will be described as an example of an image reading device. The document scanner 1 will be abbreviated to scanner 1 below. In addition, the document will be referred to as document P below.
[0027] In the XYZ coordinate system shown in each figure, the X-axis direction is the width direction of the device and the width direction of the original, and the Y-axis direction is the original transport direction when the original is read and the ejection direction when the original is ejected. The Z-axis direction intersects with the Y-axis direction and indicates the direction perpendicular to the surface of the original P to be read. Below, the direction in which the original P is fed (+Y-axis direction) is sometimes referred to as "downstream," and the opposite direction (-Y-axis direction) is sometimes referred to as "upstream."
[0028] 1, the scanner 1 includes a device main body 2. The device main body 2 includes a lower unit 3 and an upper unit 4. The upper unit 4 is provided so as to be openable and closable with a rotation shaft (not shown) downstream in the document transport direction as a pivot point relative to the lower unit 3, and is configured so that the upper unit 4 can be opened toward the front of the device to expose the document transport path, enabling document P jamming to be cleared.
[0029] An original placement section 11 for placing an original P to be fed is provided on the rear side of the device body 2. The original placement section 11 is provided detachably with respect to the device body 2. Further, the document placement section 11 is provided with a pair of edge guides 12A, 12B for guiding the side edges of the document P in the width direction. The document placement section 11 is equipped with a paper support 8. The paper support 8 is configured so as to be able to be stored inside the document placement section 11 and to be able to be pulled out from the document placement section 11, and the length of the document placement surface can be adjusted.
[0030] The device main body 2 is provided with an operation panel 7 for performing various operation settings on the device front side of the upper unit 4. The operation panel 7 is provided with a display section 7a for displaying various information, as well as a plurality of operation buttons for performing various operation settings, one of which is the operation button indicated by the reference symbol 7b.
[0031] A feed opening 6 that leads to the inside of the device main body 2 is provided at the top of the device main body 2, and the document P placed on the document loading section 11 is sent from the feed opening 6 towards the reading section 20 (see Figure 2) provided inside the device main body 2.
[0032] Next, mainly with reference to FIG. 2, the document transport path in the scanner 1 will be described. 2, the two-dot chain line indicated by the symbol T indicates the document transport path. The document transport path T is formed by an area sandwiched between the lower unit 3 and the upper unit 4.
[0033] An original placement section 11 is provided at the most upstream of the original transport path T, and downstream of the original placement section 11, there are a feed roller 14 that sends the original P placed on the original placement section 11 toward the reading section 20, and a separation roller 15 that nips the original P between the feed roller 14 and separates it. The feed roller 14, which is driven by a motor (not shown), comes into contact with the lowermost document P among the documents P placed on the document placement unit 11. Therefore, when multiple documents P are set on the document placement unit 11 in the scanner 1, the documents P are fed downstream in order starting from the bottommost document P. A rotational torque in a direction returning the documents P upstream is transmitted to the separation roller 15 from the motor (not shown) via a torque limiter (not shown).
[0034] Provided downstream of the feed roller 14 are a transport roller pair 16, a reading unit 20 that reads the document P, and a discharge roller pair 17 that is an example of a medium discharge unit. The transport roller pair 16 includes a transport drive roller 16a that is driven to rotate by a motor (not shown), and a transport driven roller 16b that is driven to rotate. The document P nipped by the feed roller 14 and the separation roller 15 and fed downstream is nipped by a transport roller pair 16 and transported to a reading unit 20 located downstream of the transport roller pair 16 .
[0035] The reading unit 20 includes an upper reading sensor 20A provided in the upper unit 4 and a lower reading sensor 20B provided in the lower unit 3. In this embodiment, the upper reading sensor 20A and the lower reading sensor 20B include a contact image sensor module (CISM). The lower surface of the document P is read by the lower reading sensor 20B, and the upper surface of the document P is read by the upper reading sensor 20A.
[0036] After at least one of the top and bottom surfaces of the original P is read by the reading unit 20, the original P is nipped by a pair of discharge rollers 17 located downstream of the reading unit 20 and discharged from an discharge outlet 18 provided on the front of the device toward an original receiving tray 40, which is an example of a media receiving tray. The pair of discharge rollers 17 includes a discharge drive roller 17a that is driven to rotate by a motor (not shown), and a discharge driven roller 17b that is driven to rotate. The device body 2 including the discharge roller pair 17, the document receiving tray 40, and the pressing member 30 described below constitute a document discharge device 10, which is an example of a medium discharge device. From the viewpoint of discharging a document P, which is an example of a medium, the entire scanner 1 can also be regarded as an example of a medium discharge device.
[0037] As shown in FIG. 3, the document receiving tray 40 includes a base tray 41, a first spread tray 42, a second spread tray 43, and a third spread tray 44. The first development tray 42 is held by the base tray 41, and can be in a state housed in the base tray 41 as shown in FIG. 1, or in a state pulled out from the base tray 41 as shown in FIG. The second spread tray 43 is held by the first spread tray 42 and can be in a state where it is housed in the first spread tray 42 as shown in FIG. 1, or in a state where it is pulled out from the first spread tray 42 as shown in FIG. The third spread tray 44 is rotatably provided with respect to the second spread tray 43 via a rotation shaft (not shown) located downstream of the second spread tray 43, and can be in a laid-down state as shown in Fig. 3 and in an upright state (not shown). That is, the third spread tray 44 functions as a stopper that prevents the ejected document P from jumping out when it is upright.
[0038] Next, the pressing member 30 that presses the document P discharged by the discharge roller pair 17 toward the document receiving tray 40 will be described. A pressing member 30 is provided in an upper unit 4 constituting the device body 2 so as to be detachable from the upper unit 4. Among Figs. 1 to 8, Figs. 1 to 7 show a state in which the pressing member 30 is attached to the upper unit 4, and Fig. 8 shows a state in which the pressing member 30 is detached from the upper unit 4.
[0039] As shown in Fig. 9, the pressing member 30 is rotatably provided on the base portion 31 via a rotation shaft 30d (see Figs. 11 and 12). When the pressing member 30 is attached to the device body 2, the axis of this rotation shaft 30d is parallel to the X-axis direction, so that the pressing member 30 can rotate in the YZ plane while attached to the device body 2. The base 31 has a recess 31a and a locking portion 31b. The pressing member 30 is detachable from the device body 2 via the base 31. The base 31 is preferably made of a resin material so as to have a certain degree of elasticity. The pressing member 30 can be made of a resin material or a metal material.
[0040] 11, a fixing part 32 is provided above the discharge port 18 in the housing 19 that constitutes the top surface of the upper unit 4. The above-mentioned base part 31 is attached to the fixing part 32. When the base part 31 is attached to the fixing part 32, an edge part 19a that constitutes the upper edge of the discharge port 18 in the housing 19 fits into a recess 31a of the base part 31, and a hook-shaped lock part 31b that constitutes the base part 31 gets caught on the upper edge of the fixing part 32, whereby the base part 31 is fixed to the fixing part 32.
[0041] An operating portion 31c is provided on the underside of the base portion 31 as shown in Fig. 10. When the operating portion 31c is pushed up from below as shown by the arrow Fa in the right diagram of Fig. 11, the base portion 31 rotates in the clockwise direction in Fig. 11, that is, in the direction in which the locking portion 31b comes off the upper edge of the fixing portion 32, with the contact portion between the edge portion 19a and the recessed portion 31a as a fulcrum. This causes the locking portion 31b to come off the upper edge of the fixing portion 32 as shown by the change from the left diagram to the right diagram of Fig. 11, and the fixed state of the base portion 31 is released. In this manner, the base portion 31, i.e., the pressing member 30, can be removed from the device body 2.
[0042] Next, the pressing member 30 can be switched by rotating between a first state in which it can come into contact with the discharged document P, and a second state in which it is retracted upward to a position where it does not come into contact with the discharged document P. Among Figs. 1 to 7, Figs. 1 to 4 show an example of the pressing member 30 in the first state, and Figs. 5 to 7 show the pressing member 30 in the second state.
[0043] Here, the base portion 31 is formed with a load applying portion 31d as a load applying means as shown in FIG. 12. A convex portion 30h is formed around the rotating shaft 30d of the pressing member 30, and this convex portion 30h is engageable with the load applying portion 31d. With this configuration, when the pressing member 30 takes the second state, the pressing member 30 is held in the second state as shown in the leftmost drawing of FIG. 12. When the pressing member 30 is switched from the second state to the first state, the convex portion 30h of the pressing member 30 pushes aside the load applying portion 31d. This allows the pressing member 30 to be switched to the first state as shown in the leftmost to central drawings of FIG. 12. In this manner, the load applying portion 31d applies a load to the switching operation of the pressing member 30 from the second state to the first state.
[0044] 3 and 9, the pressing member 30 expands in the X-axis direction, i.e., in the width direction, toward the downstream of the discharge direction of the document P, and has a shape in which the central portion 30c in the width direction is cut out. As a result, a first arm portion 30a is formed in the -X direction with respect to the central portion 30c, and a second arm portion 30b is formed in the +X direction with respect to the central portion 30c. With this configuration, the pressing member 30 comes into contact with the document P at a plurality of contact positions in the width direction, and more specifically, in this embodiment, the pressing member 30 comes into contact with the document P at two contact positions. In addition, the widthwise center position of the discharged document P is indicated by a dotted line C in FIG. 3, and this center position C is located between the two contact positions, i.e., the first arm portion 30a and the second arm portion 30b, and more specifically, is located at the center of the two contact positions.
[0045] Next, the rotational operation of the pressing member 30 will be described. When there is no document P on the document receiving tray 40, the pressing member 30 in the first state is in contact with the upper surface of the document receiving tray 40 due to its own weight. When the document P is discharged from this state to the document receiving tray 40, the pressing member 30 is pushed upward by the document P. When the document P completely falls onto the document receiving tray 40, the pressing member 30 moves downward accordingly, and stops rotating in a state where it is in contact with the upper surface of the document P. After that, every time a document P is discharged, the pressing member 30 repeats rotating upward and downward. As the amount of the document P piled up on the document receiving tray 40 increases, the rotation stop position of the pressing member 30 moves upward. The above-mentioned rotational operation of the pressing member 30 is performed in the first state of the pressing member 30.
[0046] As described above, the document discharge device 10 is detachable from the device body 2, and includes the pressing member 30 that presses the document P discharged by the discharge roller pair 17 toward the document receiving tray 40 when the document discharge device 10 is attached to the device body 2. Without the pressing member 30, the document P discharged by the discharge roller pair 17 is likely to rotate, i.e., skew, due to the momentum of the discharge. However, when the pressing member 30 is provided as described above, the pressing member 30 presses the document P discharged toward the document receiving tray 40, thereby suppressing the skew of the document P and improving the alignment of the document P in the document receiving tray 40. The rotation, i.e., skew of the document P can also be suppressed by providing a side fence that regulates the side edge of the document P discharged. However, this is effective when documents P of different sizes are mixed, for example, because small-sized documents cannot be guided by the side fence.
[0047] Moreover, since the pressing member 30 is removable from the device body 2, by removing the pressing member 30 during storage or transportation of the device, damage to the pressing member 30 can be avoided. Furthermore, when the pressing member 30 is attached to the device body 2, it is switchable between a first state in which it can come into contact with the document P discharged by the discharge roller pair 17, and a second state in which it is retracted upward to a position where it does not come into contact with the document P discharged by the discharge roller pair 17. Therefore, when the pressing member 30 is not required in a normal usage environment, the pressing member 30 can be put into the second state without being removed from the device body 2, thereby meeting the user's needs and improving the user's convenience. For example, by switching the pressing member 30 to the second state when clearing a jam, the pressing member 30 can be put into a state where it does not get in the way. In this embodiment, when no document P is present in the document receiving tray 40, the pressing member 30 contacts the upper surface of the document receiving tray 40, but the pressing member 30 may be configured to be spaced apart to a certain extent from the document receiving tray 40 when no document P is present in the document receiving tray 40.
[0048] 11, the document discharge device 10 includes a load applying unit 31d that applies a load to the pressing member 30 when the pressing member 30 switches from the second state to the first state. This makes it possible to prevent the pressing member 30 from switching from the second state to the first state against the user's intention, thereby further improving user convenience.
[0049] Furthermore, the pressing member 30 in the first state contacts the document P at a plurality of contact positions in the width direction that is a direction intersecting the discharge direction of the document P. This makes it possible to suppress rotation, or skewing, of the discharged document P in the XY plane.
[0050] The pressing member 30 contacts the document P at two contact positions in the width direction, specifically, at the first arm portion 30a and the second arm portion 30b, and the center position C in the width direction of the document P discharged by the discharge roller pair 17 is between the two contact positions, i.e., the first arm portion 30a and the second arm portion 30b. With this configuration, rotation, i.e., skewing, of the discharged document P can be more effectively suppressed.
[0051] The features of this embodiment will be further described below. The pressing member 30 has a shape that expands in the width direction toward the downstream in the discharge direction of the document P and has a cut-out central portion 30c in the width direction. With this shape, the document P is pressed over a wide area in the width direction, and rotation, i.e., skewing, of the discharged document P can be effectively suppressed. Furthermore, because the pressing member 30 has a cut-out central portion 30c in the width direction, an increase in the weight of the pressing member 30 can be suppressed, and buckling can be suppressed when a document P with low rigidity is discharged. In addition, when the pressing member 30 is switched to the second state, the area that the pressing member 30 covers over the device body 2 can be reduced, and a decrease in the operability of the device body 2 can be suppressed. This will be described in further detail below.
[0052] 5, 6 and 7, the upper end of the pressing member 30 in the second state is at a height where it overlaps with part of the operation panel 7 in the height direction. In addition, in a plan view of the display unit 7a as shown in Fig. 7, the pressing member 30 covers part of the operation panel 7, in particular covering both lower corners of the display unit 7a and part of the operation button 7b. In this embodiment, the operation button 7b is a "back" button that returns the operation setting state to the previous state. When the pressing member 30 is in the second state in this manner, the pressing member 30 covers part of the operation panel 7. However, since the pressing member 30 has a shape in which the central portion 30c in the width direction is cut out, the pressing member 30 does not cover a wide area of the display unit 7a, and therefore deterioration of operability can be suppressed.
[0053] In this embodiment, the pressing member 30 in the second state is located in a position covering a part of the display unit 7a in a plan view of the display unit 7a, and is located away from the display content on the display unit 7a. The display content here refers to information such as characters and figures that is displayed on the display unit 7a and provided to the user. Since the pressing member 30 in the second state is located away from the information such as characters and figures displayed on the display unit 7a, it is possible to suppress obstruction of the user's viewing of the display unit 7a.
[0054] Although the pressing member 30 covers a part of the operation button 7b, it is located in a position that exposes a part of the operation button 7b, and the area in which the operation button 7b can be pressed is secured, so that the operation button 7b can be pressed. This makes it possible to prevent the pressing member 30 from interfering with the user's pressing of the operation button 7b. In particular, in this embodiment, the presser member 30 covers a part of the operation button 7b, which is a "back" button that returns the operation setting state to the previous state, so even if the presser member 30 covers the entire operation button 7b and the operation button 7b cannot be pressed, it is possible to perform basic reading operations of the document P. Suitable operation buttons that are not covered by the presser member 30 include a power button and a scan execution button.
[0055] Similarly, when the display unit 7a is a so-called touch panel and a user interface for performing various setting operations is realized on the display unit 7a, it is preferable that the touch area for performing basic reading operations of the document P is not covered by the pressing member 30, or even if it is covered, only a part of it is covered, so that touch operations are possible. Conversely, it is also preferable to realize a user interface for performing various setting operations in an area other than the area covered by the pressing member 30.
[0056] Furthermore, it is preferable that the upper end of the pressing member 30 in the second state is at a height that does not overlap with any part of the operation panel 7 in the height direction, because the pressing member 30 does not obstruct the visibility of the display unit 7a or the operation of the multiple operation buttons. Furthermore, even if the upper end of the pressing member 30 in the second state is in a position that overlaps with a part of the operation panel 7 in the height direction, the pressing member 30 can be made of a transparent material, for example, to ensure visibility to the user.
[0057] 13, a straight line L1 is a common tangent to the discharge drive roller 17a and the discharge driven roller 17b, i.e., indicates the document discharge direction by the discharge roller pair 17. Reference numeral 30-1 indicates the pressing member 30 in contact with the document receiving tray 40 when there are no documents P on the document receiving tray 40. Reference numeral 30-2 indicates the pressing member 30 in contact with the top document Pt when the documents P are stacked to the maximum stacking height on the document receiving tray 40. Position T1 is the position where the document P discharged by the discharge roller pair 17 contacts the document receiving tray 40, and position T2 is the position where the document P discharged by the discharge roller pair 17 contacts the top document Pt. Position T2 changes on the common tangent L1 according to the amount of documents stacked.
[0058] 13, the common tangent L1 does not intersect with the pressure member 30 regardless of the load of the documents P. In other words, regardless of the load of the documents P, the contact position where the documents P discharged by the discharge roller pair 17 contact the pressure member 30 is downstream in the discharge direction from the position T1 where the documents P discharged by the discharge roller pair 17 contact the document receiving tray 40 or the position T2 where the documents P contact the uppermost document Pt among the documents P stacked on the document receiving tray 40.
[0059] This provides the following advantageous effects: If the document P discharged by the discharge roller pair 17 comes into contact with the pressing member 30 before coming into contact with the document receiving tray 40 or the uppermost document Pt of the documents P stacked on the document receiving tray 40, the document P may buckle and cause a jam. However, according to this embodiment, the contact position where the document P discharged by the discharge roller pair 17 comes into contact with the pressing member 30 is downstream in the discharge direction from the position T1 where the document P discharged by the discharge roller pair 17 comes into contact with the document receiving tray 40 or the position T2 where the document P discharged by the discharge roller pair 17 comes into contact with the uppermost document Pt of the documents P stacked on the document receiving tray 40, so that the occurrence of the above-mentioned jam can be suppressed.
[0060] 13, when viewed from the width direction that is a direction intersecting the discharge direction of the document P, the pressing member 30 has a portion 30f that contacts the document receiving tray 40 formed in a shape that is convex with respect to the document receiving tray 40. Hereinafter, the portion 30f of the pressing member 30 that contacts the document receiving tray 40 is referred to as the "tray contact portion 30f." In this embodiment, the tray contact area 30f is bent in a V-shape and is convex toward the document receiving tray 40. This provides the following advantageous effects. That is, when the document receiving tray 40 is changed from the expanded state shown in Fig. 3 and Fig. 4 to the contracted state, there is a risk that the second spread-out tray 43 or the third spread-out tray 44 may get caught on the pressing member 30. However, since the pressing member 30 has the tray contact area 30f formed in a shape that is convex toward the document receiving tray 40, the above-mentioned getting caught can be suppressed. In this embodiment, the tray contact portion 30f is bent into a V-shape, but is not limited thereto and may have another shape, for example, a U-shape.
[0061] Next, the rightmost diagram in FIG. 12 shows a state in which the pressing member 30 is at the downward rotation limit. The downward rotation limit of the pressing member 30 is determined by the abutment portion 30g formed on the pressing member 30 abutting against the operation portion 31c formed on the base portion 31 as a regulating portion. This state occurs, for example, when the device body 2 is lifted and moved. In this case, when the device body 2 is placed on the installation surface, the pressing member 30 collides with the installation surface of the device, and receives an upward external force Fc, which may cause damage. However, when an external force Fc including a vertical upward component is applied to the lower end of the pressing member 30 at the downward rotation limit, the pressing member 30 rotates toward the second state as is clear from FIG. 12. This makes it possible to suppress damage to the pressing member 30 as described above.
[0062] In addition, the downward rotation limit of the pressing member 30 is determined by the abutment between the abutment portion 30g and the operation portion 31c serving as a regulating portion against which the abutment portion 30g abuts, and in a state in which the abutment portion 30g abuts against the operation portion 31c, the pressing member 30 takes an inclined posture facing diagonally downward as shown in the rightmost drawing of Fig. 12. As a result, when an external force Fc including a vertical upward component acts on the lower end portion of the pressing member 30 at the downward rotation limit, the pressing member 30 can be reliably rotated toward the second state, and damage to the pressing member 30 as described above can be reliably prevented.
[0063] In addition, when an external force Fd is applied to the pressing member 30 at the limit of downward rotation in the direction opposite to the direction toward the second state, the pressing member 30 may be damaged. However, when such an external force Fd is applied, the contact portion 30g, which is a part of the pressing member 30, contacts the operating portion 31c, and applies an external force as indicated by the arrow Fb to the operating portion 31c. Then, as described with reference to FIG. 11, the fixing of the pressing member 30 by the lock portion 31b is released, so that the pressing member 30 can fall off, and as a result, damage to the pressing member 30 can be suppressed.
[0064] Next, another embodiment of the pressing member will be described. Figures 14 and 15 show a pressing member 50 according to a second embodiment. In the following embodiments, the same components as those already described will be given the same reference numerals, and duplicated descriptions will be omitted. The pressing member 50 is configured to include a first arm 51 and a second arm 52. The first arm 51 is rotatable about a rotation axis 30d, and the second arm 52 is rotatably connected to the first arm 51 via a rotation axis 53 having an axis parallel to the width direction. In addition, a friction member (not shown) is provided on the rotation axis 53, and configured to generate a frictional force against the rotation of the second arm 52 relative to the first arm 51. Therefore, the second arm 52 rotates when an external force is applied by the user, but the rotation is restricted by the frictional force.
[0065] The first arm 51 is formed with a tray contact portion 51a that is convex with respect to the document receiving tray 40, and the second arm 52 is also formed with a tray contact portion 51a that is convex with respect to the document receiving tray 40. When the first arm 51 and the second arm 52 are in a straight line as shown in Fig. 14, the pressing member 50 as a whole is in a state where it is at its longest in the document discharge direction. In this state, the tray contact portion 52a of the second arm 52 contacts the document receiving tray 40 or the document P being discharged.
[0066] 14 to the state shown in Fig. 15, the pressing member 50 as a whole is at its shortest in the document discharge direction. In this state, the tray contact portion 51a of the first arm 51 contacts the document receiving tray 40 or the document P to be discharged.
[0067] In this manner, the pressing member 50 is configured so that the length in the discharge direction of the original P can be adjusted, so that the position at which the pressing member 50 presses the original P can be adjusted according to the size of the original P, and the original P can be pressed appropriately. In this embodiment, the length of the document P in the discharge direction is adjusted using two components, the first arm 51 and the second arm 52, but it may also be configured to be made up of three or more components and to adjust the length in the discharge direction in multiple stages. Alternatively, for example, second arm 52 may be provided slidably in the ejection direction relative to first arm 51, so that the length in the ejection direction can be adjusted steplessly.
[0068] Next, FIG. 16 shows a pressing member 60 according to a third embodiment. The pressing member 60 has a contact portion 61 that contacts the document P, which includes a first portion 61a having a first friction coefficient between the document P and the first portion 61a, and a second portion 61b having a second friction coefficient between the document P and the first portion 61a, which is larger than the first friction coefficient of the first portion 61a. The contact portion 61 is rotatable with respect to the pressing member 60 via a rotating shaft 62, and can be switched between the portion that contacts the document P and the first portion 61a and the second portion 61b by rotating. A friction member (not shown) is provided between the contact portion 61 and the rotating shaft 62, and the contact portion 61 rotates when an external force is applied by the user, but the rotation of the contact portion 61 is restricted by the frictional force of the friction member.
[0069] In this way, the contact portion 61 can be switched between a first portion 61a having a first friction coefficient between itself and the original P, and a second portion 61b having a second friction coefficient greater than the first friction coefficient. Therefore, the friction coefficient can be switched according to the size, type, etc., of the original P, and the original P can be appropriately held down. For example, in the case of an original P that has low rigidity and is easily buckled, it is preferable to hold the original P by the first portion 61a, and in the case of an original P that has a certain degree of rigidity and is not easily buckled, it is preferable to hold the original P by the second portion 61b.
[0070] Next, Fig. 17 shows a pressing member 70 according to a fourth embodiment. A weight 71 is provided on the upper surface of the pressing member 70 so as to be displaceable in the direction of the arrow a. The weight 71 is provided so as to generate a frictional force between the pressing member 70 and the weight 71 by a friction member (not shown), and is in a state in which the weight 71 is displaced when an external force is applied by the user, but the displacement is restricted by the frictional force of the friction member. By displacing the weight 71, the pressing load when the pressing member 70 presses the document P can be adjusted. With this configuration, the pressing load can be adjusted according to the size and type of the document P, and the document P can be appropriately pressed. For example, in the case of an original P that has low rigidity and is prone to buckling, it is preferable to reduce the pressing load, and in the case of an original P that has a certain degree of rigidity and is not prone to buckling, it is preferable to apply a relatively larger pressing load than when pressing an original P that has low rigidity and is prone to buckling.
[0071] 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, it is preferable to provide a detection means for detecting the first and second states of the pressing member 30, and when the pressing member 30 is in the first state, to set the document discharge speed relatively slower than when the pressing member 30 is in the second state. Also, for example, in this embodiment, the medium ejection device is configured as the document ejection device 10 in the scanner 1, but the present invention is not limited to this and can also be applied to a recording device that records on a medium, such as a printer. [Explanation of symbols]
[0072] 1... document scanner, 2... device body, 3... lower unit, 4... upper unit, 6... feed port, 7... operation panel, 7a... display unit, 7b... operation button, 8... paper support, 10... document discharge device, 11... document placement unit, 12A, 12B... edge guide, 14... feed roller, 15... separation roller, 16... transport roller pair, 16a... transport drive roller, 16b... transport driven roller, 17... discharge roller pair, 17a... discharge drive roller, 17b... discharge driven roller, 18... discharge port, 19... housing, 19a... edge, 20... reading unit, 20A... Upper reading sensor, 20B...lower reading sensor, 30...pressure member, 30a...first arm portion, 30b...second arm portion, 30c...center portion, 30d...rotation shaft, 30e...contact portion, 30f...tray contact portion, 30g...contact portion, 30h...convex portion, 31...base portion, 31a...concave portion, 31b...lock portion, 31c...operation portion, 31d...load application portion, 32...fixed portion, 40...document receiving tray, 41...base tray, 42...first spread tray, 43...second spread tray, 44...third spread tray, 50...pressure member, 51...first arm, 52...second arm, 53...rotation shaft, 60: pressing member, 61: contact portion, 61a: first portion, 61b: second portion, 62: rotation shaft, 70: pressing member, 71: weight, P, Pt: original
Claims
1. a device body including a lower unit and an upper unit that rotates relative to the lower unit; a medium transport path formed between the upper unit and the lower unit and inclined obliquely downward for transporting a medium; A reading unit that reads the transported medium; a medium ejection unit that ejects the medium read by the reading unit; a medium receiving tray that receives the medium discharged by the medium discharge unit; a pressing member that presses the medium discharged by the medium discharge unit toward the medium receiving tray; Equipped with The pressing member rotates to a first state in which the medium ejected from the medium ejection section can be touched; a second state in which the medium ejection unit is retracted upward to a position where it does not contact the medium ejected from the medium ejection unit; It is possible to switch between the pressing member has a length that allows it to come into contact with an installation surface when the device body is placed on the installation surface, When an external force including a vertically upward component is applied with the tip of the pressing member positioned at the lower rotation limit, the pressing member rotates toward the second state.
1. An image reading apparatus comprising:
2. 2. The image reading apparatus according to claim 1, A restricting portion is provided to restrict rotation of the pressing member, the pressing member is attached to the device body and to a base portion including the restricting portion, the pressing member is configured to rotate relative to the base portion and includes an abutment portion that abuts against the regulating portion, and when the abutment portion abuts against the regulating portion, the pressing member is regulated to incline obliquely downward at a lower limit of rotation.
1. An image reading apparatus comprising:
3. 2. The image reading apparatus according to claim 1, a contact position where the medium discharged by the medium discharge unit contacts the pressing member is downstream in a discharge direction from a position where the medium discharged by the medium discharge unit contacts the medium receiving tray; 1. An image reading apparatus comprising:
4. 2. The image reading apparatus according to claim 1, the pressing member has two contact portions that come into contact with the medium in a width direction that is a direction intersecting a medium discharge direction, and a center position in the width direction of the medium discharged by the medium discharge portion is between the two contact portions.
1. An image reading apparatus comprising:
5. a device body including a lower unit and an upper unit that rotates relative to the lower unit; a medium transport path formed between the upper unit and the lower unit and inclined obliquely downward for transporting a medium; A reading unit that reads the transported medium; a medium ejection unit that ejects the medium read by the reading unit; a medium receiving tray that receives the medium discharged by the medium discharge unit; a pressing member that presses the medium discharged by the medium discharge unit toward the medium receiving tray; Equipped with The pressing member rotates to a first state in which the medium ejected from the medium ejection section can be touched; a second state in which the medium ejection unit is retracted upward to a position where it does not contact the medium ejected from the medium ejection unit; It is possible to switch between A restricting portion is provided to restrict rotation of the pressing member, the pressing member is attached to the device body and to a base portion including the restricting portion, the pressing member is configured to rotate relative to the base portion and includes an abutment portion that abuts against the regulating portion, and when the abutment portion abuts against the regulating portion, the pressing member is regulated to incline obliquely downward at a lower limit of rotation.
1. An image reading apparatus comprising:
6. 6. The image reading apparatus according to claim 5, a contact position where the medium discharged by the medium discharge unit contacts the pressing member is downstream in a discharge direction from a position where the medium discharged by the medium discharge unit contacts the medium receiving tray; 1. An image reading apparatus comprising:
7. 6. The image reading apparatus according to claim 5, the pressing member has two contact portions that come into contact with the medium in a width direction that is a direction intersecting a medium discharge direction, and a center position in the width direction of the medium discharged by the medium discharge portion is between the two contact portions.
1. An image reading apparatus comprising:
8. a device body including a lower unit and an upper unit that rotates relative to the lower unit; a medium transport path formed between the upper unit and the lower unit and inclined obliquely downward for transporting a medium; A reading unit that reads the transported medium; a medium ejection unit that ejects the medium read by the reading unit; a medium receiving tray that receives the medium discharged by the medium discharge unit; a pressing member that presses the medium discharged by the medium discharge unit toward the medium receiving tray; Equipped with The pressing member rotates to a first state in which the medium ejected from the medium ejection section can be touched; a second state in which the medium ejection unit is retracted upward to a position where it does not contact the medium ejected from the medium ejection unit; It is possible to switch between the pressing member has two contact portions that come into contact with the medium in a width direction that is a direction intersecting a medium discharge direction, and a center position in the width direction of the medium discharged by the medium discharge portion is between the two contact portions.
1. An image reading apparatus comprising:
9. 9. The image reading apparatus according to claim 8, a contact position where the medium discharged by the medium discharge unit contacts the pressing member is downstream in a discharge direction from a position where the medium discharged by the medium discharge unit contacts the medium receiving tray; 1. An image reading apparatus comprising:
10. a device body including a lower unit and an upper unit that rotates relative to the lower unit; a medium transport path formed between the upper unit and the lower unit and inclined obliquely downward for transporting a medium; A reading unit that reads the transported medium; a medium ejection unit that ejects the medium read by the reading unit; a medium receiving tray that receives the medium discharged by the medium discharge unit; a pressing member that presses the medium discharged by the medium discharge unit toward the medium receiving tray; Equipped with The pressing member rotates to a first state in which the medium ejected from the medium ejection section can be touched; a second state in which the medium ejection unit is retracted upward to a position where it does not contact the medium ejected from the medium ejection unit; It is possible to switch between When viewed from a width direction that is a direction intersecting a medium discharge direction, the pressing member is formed in a shape such that a portion that contacts the medium receiving tray is convex with respect to the medium receiving tray.
1. An image reading apparatus comprising:
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