The present application claims priority from Japanese Patent Application Publication No. JP-2010-223029, which was filed on Sep. 30, 2010, the disclosure of which is incorporated herein by reference in its entirety.
1. Field of the Invention
The present invention relates to a tray unit for storing recording media, e.g., sheets, and relates to an image recording device configured to convey a recording medium stored in a tray unit and to record an image on the recording medium.
2. Description of Related Art
A known image recording device comprises a tray unit comprising a main tray and a second tray each configured to hold thereon recording media. For example, A4 and B5 size recording sheets are placed on the main tray, and postcards are placed on the second tray. The second tray is disposed above the main tray and is configured to slide above the main tray between a position allowing a feed roller to contact the second tray and a position separated from the feed roller. The feed roller selectively feeds the sheets from the main tray and the second tray depending on the position of the second tray.
It may be beneficial to enhance the usability of a plurality of trays for use in an image recording device.
According to an embodiment of the invention, a tray unit comprises a first tray comprising a first holding surface for holding thereon a first sheet, a second tray comprising a second holding surface for holding thereon a second sheet, and a cover. The second tray is configured to slide above and along the first holding surface between a first second-tray position and a second second-tray position, and is configured to pivot between the second second-tray position and a third second-tray position in which the second tray stands upward with respect to the first holding surface. The cover is configured to cover from above at least a part of the second tray when the second tray is in the second second-tray position, and is configured to pivot between a first cover position in which the cover extends along the first holding surface and a second cover position in which the cover stands upward with respect to the first holding surface.
According to another embodiment of the invention, an image recording device comprises a first tray comprising a first holding surface for holding thereon a first sheet, a second tray comprising a second holding surface for holding thereon a second sheet, a cover, a feeder, a recording unit, and a discharging unit. The second tray is configured to slide above and along the first holding surface between a first second-tray position and a second second-tray position, and is configured to pivot between the second second-tray position and a third second-tray position in which the second tray stands upward with respect to the first holding surface. The cover is configured to cover from above at least a part of the second tray when the second tray is in the second position, and is configured to pivot between a first cover position in which the cover extends along the first holding surface and a second cover position in which the cover stands upward with respect to the first holding surface. The feeder is configured to feed the first sheet when the second tray is in the second second-tray position and to feed the second sheet when the second tray is in the first second-tray position. The recording unit is configured to record an image on the sheet fed by the feeder. The discharging unit is disposed above the cover and is configured to discharge the sheet after the recording unit records the image on the sheet.
Other objects, features, and advantages will be apparent to persons of ordinary skill in the art from the following detailed description of the invention and the accompanying drawings.
For a more complete understanding of the invention, the needs satisfied thereby, and the features and technical advantages thereof, reference now is made to the following descriptions taken in connection with the accompanying drawings.
Embodiments of the invention and their features and technical advantages may be understood by referring to
An embodiment of the present invention will be described with reference to the drawings. In the present embodiment, an image recording device 10 comprises a main unit 11 shown in
A general structure of the main unit 11 of the image recording device 10 will be described. The main unit 11 comprises a printer housing 12, a scanner housing 13 mounted on the top surface of the printer housing 12, and a document cover 14 mounted on the top surface of the scanner housing 13. The image recording device 10 is a multifunction device having a printing function, a scanning function, and a coping function.
An opening 12A through which the tray unit 50 (see
The scanner housing 13 supports the document cover 14 such that the document cover 14 is openable and closable. A document sheet (not shown) can be placed on the scanner housing 13, and be retained by being sandwiched between the scanner housing 13 and the document cover 14. An image on the retained document sheet is scanned by a flatbed scanner that is housed in the scanner housing 13, and is captured as image data. The scanner and the printer 15 are controlled by a control circuit (not shown). The control circuit receives information from a plurality of input buttons 16 shown in
As shown in
The feeder 20 comprises a shaft 21 that is rotatably supported by, for example, a frame fixed to the printer housing 12; an arm 22 supported by the shaft 21; and left and right feed rollers 23 supported by the arm 22.
The arm 22 is pivotably supported, at one end thereof, by the shaft 21. The other end of the arm 22 moves vertically as the arm 22 pivots about the shaft 21. Thus, the feed rollers 23 are vertically movable. When the tray unit 50 is mounted into the printer housing 12 (see
The rotation of the shaft 21 is transmitted to feed rollers 23 through a plurality of transmission gears (not shown) attached to the arm 22, and the feed rollers 23 are rotated accordingly. A control circuit controls a motor to rotate the feed rollers 23 such that the sheets 54 (see
As shown in
The main convey path 31A is defined by a plurality of guide members 36 and a platen 37. The main convey path 31 curves upward from the back end of the tray unit 50 and then extends linearly forward. The platen 37 is positioned above the tray unit 50, and defines a part of a linearly extending portion of the main convey path 31.
The return path 31B is defined by a guide member 38 and a guide member 39 (see
The guide member 39 is supported by the above-described frame or the like and is pivotable about a shaft 39A shown in
The guide member 39 is held in the convey path forming position by projections 85 (described below) of the tray unit 50. When a paper jam occurs in the return path 31B, the tray unit 50 is withdrawn by a user from the printer housing 12. The guide member 39, which is not held by the tray unit 50 any more, pivots by its own weight from the guide position (see
As shown in
The switchback rollers 34 comprise a driving roller 34A rotated by the above-described drive unit and a driven roller 34B rotated by the rotation of the driving roller 34A. The switchback rollers 34 are disposed in front of the discharge rollers 32 and above a central part of the tray unit 50 in the front-back direction 8. The switchback roller 34A is controlled by the above-described control circuit to rotate in one direction to discharge the sheet 54 and in the other direction to convey the sheet 54 to the return path 31B. The switchback rollers 34 are an example of a discharging unit.
The return rollers 35 comprise a driving roller 35A rotated by the above-described drive unit and a driven roller 35B rotated by the rotation of the driving roller 35A. The return rollers 35 convey the sheet 54 to the upstream side of the platen 37 in the main convey path 31A. The sheet 54 conveyed by the return rollers 35 is flipped over and passes again the platen 37.
The recording unit 40 comprises a carriage 41 disposed above the platen 37 and a head 42 retained by the carriage 41. The carriage 41 is supported by guiderails (not shown) such that the carriage 41 is movable in the left-right direction 9. The recording unit 40 ejects ink from the head 42 toward the sheet 54 that is conveyed along the platen 37. Owing to the movement of the recording unit 40 in the left-right direction 9 and the forward movement of the sheet 54, the recording unit 40 is capable of recording an image over substantially the entire area of the sheet 54. Instead of using the recording unit 40 that records an image with ink, a recording unit that records an image with toner may be used.
The control circuit controls the above-described motors to move the recording unit 40. The sheet 54 is intermittently conveyed on the platen, and the recording unit 40 ejects ink onto the sheet 54 being stopped. The control circuit controls the drive unit such that the switchback rollers 34 discharge the sheet 54 when single-sided printing is instructed and that the switchback rollers 34 convey the sheet 54 to the return path 31B when double-sided printing is instructed. Under the control by the control circuit, the return rollers 35 conveys the sheet 54 to the platen while the sheet 54 is flipped over, the recording unit 40 records an image on a back side of the sheet 54, and the switchback rollers discharge the sheet 54 having images on both sides. The tray unit 50 receives the discharged sheet 54.
As shown in
As shown in
The back wall 63 is inclined with respect to the bottom 61 such that the back wall 63 extends obliquely upward and backward from a back end portion of the bottom 61. Each of the first sheets 54A and the second sheets 54B fed by the above-described feeder 20 (see
As shown in
The back wall 63 comprises engaging portions 63B in the notches 63A. The engaging portions 63B engage with engaged portion (not shown) of the fitting pieces 71B of the second tray 70, thereby to hold the second tray 50 in the feeding position.
The left and right side walls 62 comprise guiderails 66 for supporting the second tray 70 and shaft holes 62A for supporting the discharge tray 80. A front portion of each guiderail 66 in the front-back direction 52 is provided on the inner surface of the side wall 62 so as to support the second tray 70 at the top surface of the guiderail 66. A back portion of each guiderail 66 is formed in the side wall 62 as a groove extending in the front-back direction 52 so as to support the second tray 70 in the groove. The guiderails 66 support the second tray 70 such that the second tray 70 is slidable in the front-back direction 52. The shaft holes 62A are formed through the side walls 62, and projecting shafts 84 of the discharge tray 80, which will be described below, are inserted through the shaft holes 62A, respectively. Each shaft hole 62A is provided between a central part and the back end of the corresponding side wall 62 in the front-back direction 52.
Front and back lock holes 62B are formed in the right side wall 62. As described below, the lock holes 62B have a function of fixing a sliding portion 71 of the second tray 70.
The right side wall 62 has, as a part of the top surface thereof, the first contact surface 62C whose height decreases toward the front. When the tray unit 50 is withdrawn from the printer housing 12 while the second tray 70 is in a retracted position which will be described below, the arm 22 (see
A side guide mechanism 18 and a rear guide mechanism 19 are provided on the bottom 61 of the main tray 60 to properly position the first sheets 54A (see
As shown in
As shown in
The left and right fitting pieces 71B are provided at the back end of the sliding portion 71. The fitting pieces 71B project upward and backward from the back end of the sliding portion 71. When the second tray 70 is in the feeding position, the fitting pieces 71B are fitted to the notches 63A (see
A locking mechanism 100 is provided on the right part of the sliding portion 71. The locking mechanism 100 comprises a lock member 101, a retaining portion 102, a first spring 71E, a connecting bar 103, a second support portion 104, a release lever 105, and a transmission mechanism (not shown). The lock member 101 is supported by the retaining portion 102 such that the lock member 101 is movable in the left-right direction 53. The first spring 71E urges the lock member 101 rightward. The second support portion 104 supports an end of the connecting bar 103 such that the connecting bar 103 is pivotable and is movable in the front-back direction 52. The connecting bar 103 pivots between a position to project forward from the sliding portion 71 and a position to project upward from the sliding portion 71. The connecting bar 103 moves in the front-back direction 52 when the connecting bar 103 is in the position to project forward from the sliding portion 71. The release lever 105 projects upward from a front end of the connecting bar 103 when the connecting bar 103 is in the position to project forward from the sliding portion 71.
When the release lever 105 is moved forward in
As shown in
Left and right second flanges 72E project from the left and right sides of the pivoting portion 72, which is rectangular plate-shaped. The second flanges 72E and the above-described first flanges 71A are supported on the top surfaces of the guiderails 66 (see
The pivoting portion 72 is supported on the first support portions 71C of the sliding portion 71 in a pivotable manner. The pivot axis of the pivoting portion 72 coincides, in position, with the pivot axis of the connecting bar 103 and moves as the sliding portion 72 slides. When the sliding portion 71 is in the front position, the pivot axis of the pivoting portion 72 substantially coincides, in position, with the pivot axis of the discharge tray 80. As will be described below, the discharge tray 80 is supported by the main tray 60 at the shaft holes 62A in a pivotable manner. It is not necessary that the pivot axis of the pivoting portion 72 and the pivot axis of the discharge tray 80 precisely coincide, in position, with each other as long as the pivoting portion 72 and the discharge tray 80 are pivotable. However, it is preferable that the pivot axis of the pivoting portion 72 substantially coincides, in position, with the pivot axis of the discharge tray 80 in order for the pivoting portion 72 and the discharge tray 80 to pivot integrally. In this case, the pivoting portion 72 and the discharge try 80 pivot smoothly while positional displacement with relative to each other is prevented. The pivoting portion 72 pivots between a lying position in which the second holding surface 72A faces upward and extends along the inner bottom surface 61A (first holding surface) of the main tray 60, and a standing position in which the second holding surface 72A stands upward with respect to the inner bottom surface 61A.
In the following description, the second tray 70 is described as being in a feeding position when the sliding portion 71 is in the above-described back position and the pivoting portion 72 is in the above-described lying position, as shown in
As shown in
The pivoting portion 72 comprises a support cover 72D (see
The pivoting portion 72 has the second contact surface 72C as a part of the top surface thereof. The second contact surface 72C is provided on the right part of the pivoting portion 72, and is inclined such that the height thereof decreases toward the front. When the tray unit 50 is mounted into the printer housing 12 (see
As will be described below, an indicating mechanism 130 provided on the discharge tray 80 indicates whether the second tray 70 is in the feeding position or the retracted position, that is, whether the first sheets 54A or the second sheets 54B are subjected to image recording. A contact portion 74 for changing the indication by the indicator is provided in the right part of the front end of the pivoting portion 72. The contact portion 74 has an inclined surface 74A that descends frontward. The contact portion 74 is an example of a second-tray contact portion.
As shown in
As shown in
As shown in
The side guide mechanism 120 comprises a pinion gear 121 that is rotatably retained in a central part of the pivoting portion 72 in the left-right direction 53; left and right side guides 122 arranged at the left and right sides of the pinion gear 121; left and right rack gears 123, each of which is coupled to the corresponding side guide 122 at one end thereof and is meshed with the pinion gear 121 at the other end thereof; and a lug 124 that is connected to the left side guide 122 and disposed in the above-described operation recess 76.
Each of the side guides 122 comprises a holding plate (not shown) that forms a part of the second holding surface 72A; a side plate (not shown) that stands upward with respect to the holding plate; and a top plate 122A that is supported by the side plate so as to face the holding plate in a direction perpendicular to the second holding surface 72A (up-down direction 51 in
The length of the lug 124 in the left-right direction 53 is smaller than the length of the operation recess 76 in the left-right direction 53, and the lug 124 is movable along the left-right direction 53. When the user moves the lug 124 rightward or leftward, the left side guide 122 and the left rack gear 123 are moved leftward or rightward. When the left rack gear 123 is moved, the pinion gear 121 is rotated. Accordingly, the right rack gear 123 that meshes with the pinion gear 121 and the right side guide 122 are moved leftward or rightward in response to the rotation of the pinion gear 121. Thus, the pair of side guides 122 are moved toward or away from each other in association with each other. The user moves the lug 124 such that the side plates of the left and right side guides 122 sandwich the second sheets 54B placed on the second holding surface 72A. Thus, the second sheets 54B are properly positioned in the left-right direction 53. The second sheets 54B are properly positioned on the second holding surface 72A by the above-described rear guide mechanism 110, the fitting pieces 71B, and the side guide mechanism 120.
As shown in
The projecting shafts 84 are inserted into the above-described shaft holes 62A in the left and right side walls 62 of the main tray 60 from the inside of the side walls 62. Owing to the projecting shafts 84 and the shaft holes 62A, the discharge tray 80 is supported by the main tray 60 such that the discharge tray 80 is pivotable between a receiving position shown in
As described above, the pair of switchback rollers 54 that discharge the sheet 54 after an image is recorded thereon are disposed above a central part of the tray unit 50 in the front-back direction 8. In addition, each of the shaft holes 62A into which the projecting shafts 84 are inserted is provided between a central part and the back end of the corresponding side wall 62 of the main tray 60 in the front-back direction 52. Therefore, in the state in which the tray unit 50 is mounted in the printer housing 12, the back end of the base 81 of the discharge tray 80 in the receiving position is positioned below the switchback rollers 33, so that the discharge tray 80 can receive the sheet 54 having an image recorded thereon and discharged by the switchback rollers 33. The sheet 54 having the image recorded thereon is discharged by the discharge rollers 33 and slides, from a leading edge thereof in the discharging direction, that is, from a front edge thereof, along the discharge tray 80 in the receiving position or along the previously discharged sheet 54. Thus, the sheets 54 are stacked on the discharge tray 80.
The discharge tray 80 is provided with a holdable portion 80A at its pivoting end (front end in
When the discharge tray 80 is in the receiving position, a lower end of the front wall 82 is in contact with a top end of the front wall 64 of the main tray 60. The discharge tray 80 is retained in the receiving position while the front wall 82 is supported by the front wall 64 of the main tray 60 and the projecting shafts 84 are supported by the side walls 62 of the main tray 60.
The projections 85 project from a back end portion of the discharged sheet holding surface 81A of the base 81 in
The projections 85 are positioned such that the projections 85 push the above-described guide member 39, which defines the return path 31B, when the tray unit 50 is mounted into the printer housing 12. Thus, the projections 85 have a function of limiting the opening angle α of the discharge tray 80 to protect the second sheets 54B and a function of changing the position of the guide member 39 to close the return path 31B. Although the projections 85 have the above-described two functions, separate components may be provided to achieve the above-described two functions.
The base 81 includes an opening, e.g., a first operation window 86 and a second operation window 87. The first operation window 86 extends through a right part of the base 81 in
Marks 88 are provided at an edge of the first operation window 86. Each mark 88 shows the information about the position of the second tray 70 or the information about the type of the sheets 54 subjected to image recording. The user recognizes the position of the second tray 70 or the type of the sheets 54 subjected to image recording from the information shown by the marks 88 and the position of the operation lever 73 and the release lever 105.
The second operation window 87 extends through the back end portion of the base 81 and in the central part in the left-right direction 53 in
As shown in
The connecting pieces 91 and the hook pieces 92 are disposed closer to the pivoting end of the base 81 than to the pivot axis of the base 81. The distance between the left and right connecting pieces 91 is slightly larger than the distance between the engagement ribs 77 of the pivoting portion 72. The distance from the base 81 to the hook pieces 92 is slightly larger than the thickness of the pivoting portion 72 of the second tray 70. As described below, when the second tray 70 is slid, the above-described engagement ribs 77 are inserted between the base 81 and the hook pieces 92. More specifically, in the state in which the discharge tray 80 is in the receiving position and the second tray 70 is in the refracted position, the hook pieces 92 are positioned below the second tray 70.
When the discharge tray 80 is in the receiving position and the second tray 70 is in the retracted position, the top surface of the second tray 70 is covered by the base 81, the left and right side faces of the second tray 70 are covered by the left and right side walls 83, and the front face of the second tray 70 is covered by the front wall 82. The discharge tray 80 prevents dust from entering the second tray 70 when the second tray 70 is in the retracted position. The left and right side walls 83 and the front wall 82 of the discharge tray 80 are each an example of a cover portion.
Each hook piece 92 has an inclined surface 93. The inclined surface 93 is inclined such that the hook piece 92 becomes thinner toward its projecting end. The hook pieces 92, the connecting pieces 91, and the base 81 are formed integrally with each other by using synthetic resin material, and the connecting pieces 91 are elastically deformable. As described below, when the discharge tray 80 is moved from the loading position to the receiving position, each engagement rib 77 of the pivoting portion 72 slides along the corresponding inclined surface 93, thereby to smoothly bend the corresponding connecting piece 91. In the present embodiment, the inclined surface 77A is formed on the engagement rib 77 and the inclined surface 93 is formed on the hook piece 92. Alternatively, an inclined surface may be formed on only one of the engagement rib 77 and the hook piece 92. The inclined surface 93 is inclined with respect to a pivoting direction of the discharge tray 80 (a circumferential direction around the pivot axis of the discharge tray 80) and is not orthogonal to the pivoting direction.
An indication window 82A is formed in the front wall 82 of the discharge tray 80 such that an indicating portion 134 of an indicator 131 of the indicating mechanism 130, which will be described below, is exposed to the outside of the tray unit 50 thorough the indication window 80. In addition, as shown in
As shown in
When the second tray 70 is moved from the feeding position to the retracted position, the contact portion 74 on the pivoting portion 72 of the second tray 70 comes into contact with the receiving portion 135, so that the receiving portion 135 is pushed toward the front wall 82 of the discharge tray 80. When the receiving portion 135 is pushed by the second tray 70, the indicator 131 rotates around the shaft 81B so as to move from a first indicator position to a second indicator position. The second spring 136 urges the indicator 131 to move from the second indicator position to the first indicator position. Therefore, when the second tray 70 is moved from the retracted position to the feeding position, the indicator 131 moves from the second indicator position to the first indicator position by the urging force of the second spring 136.
The sliding portion 71 of the second tray 70 is locked at the front position by the above-described lock member 101. Therefore, the sliding portion 71 can be prevented from being pushed toward the back position by the indicator 131 that is urged by the second spring 136. The pivoting portion 72 has an inclined surface 74A which continues from the contact portion 74 and tapers toward the contact portion 74. When the discharge tray 80 is moved from the receiving position to the loading position while the second tray 70 is in a position other then the retracted position, the indictor 131 is in the first indicating position owing to the urging force applied by the second spring 136. Then, when the second tray 70 is moved to the retracted position and the discharge tray 80 is returned to the receiving position, the inclined surface 74A comes into contact with the receiving portion 135, so that the discharge tray 80 can be smoothly pivoted. Accordingly, the indicator 131 is moved to the second display position.
When the indicator 131 is rotated around the shaft 81B, the positions of a first indicating surface (not shown) and a second indicating surface (not shown) of the indicating portion 134 are changed. The first indicating surface shows information indicating that the second tray 70 is in the feeding position and the second sheets 54B are subjected to image recording. The second indicating surface shows information indicating that the second tray 70 is in the retracted position and the first sheets 54A are subjected to image recording.
The first indicating surface, whose position changes in response to the movement of the second tray 70, is exposed through the indication window 82A when the second tray 70 is in the feeding position (that is, when the indicator 131 is in the first indicating position), and is covered by the front wall 82 of the discharge tray 80 when the second tray 70 is in the retracted position (that is, when the indicator 131 is in the second indicating position). The second indicating surface is exposed through the display window 82A when the second tray 70 is in the retracted position, and is covered by the front wall 82 of the discharge tray 80 when the second tray 70 is in the feeding position. In the state in which the tray unit 50 is mounted in the printer housing 12, the user can recognize whether the first sheets 54A or the second sheets 54B are subjected to image recording from the information shown in the indicating surface that is visible through the indication window 82A.
In the present embodiment, the indication is switched by changing the positions of the first indicating surface and the second indicating surface, thereby to change the indicating surface that is visible through the display window 82A. Alternatively, the indication may be switched by changing the orientations of the first indicating surface and the second indicating surface. More specifically, both the first indicating surface and the second indicating surface may be exposed through the indication window 82A, and the orientations of the first indicating surface and the second indicating surface at the time when the second tray 70 is in the feeding position may be changed from those when the second tray 70 is in the retracted position. The user can recognize whether the first sheets 54A or the second sheets 54B are subjected to image recording from the information shown on the indicating surface that is oriented along the opening surface of the indication window 82A.
In addition, in the present embodiment, the indicating mechanism 130 switches the indication by changing the position of the indicator 131 in response to the sliding movement of the second tray 70. Alternatively, an indicating mechanism may be used which comprises a power source, a display unit, such as a light-emitting diode (LED), that is turned on when electric power is supplied from the power source, and a sensor, such as a tactile switch, that can be turned on or off in response to the sliding movement of the second tray 70. In such a case, the tactile switch is turned on or off in response to the sliding movement of the second tray 70, so that the LED is turned on or off accordingly. Thus, the indication is switched between the on state and the off state of the LED.
As shown in
The auxiliary tray 140 slides between a position stored in the discharge tray 80 shown in
The stopper 141 is supported by the auxiliary tray 140 such that the stopper 141 is pivotable in a pivoting direction 142 shown in
Now, the operation for moving the second tray 70 of the tray unit 50 in the front-back direction 52 will be described. When the user grabs the release lever 105 and the operation lever 73, the lock member 101 is moved out of the lock hole 62B. When the user moves the release lever 105 and the operation lever 73 forward or backward while grabbing the release lever 105 and the operation lever 73, the second tray 70 is moved from the retracted position to the feeding position or from the feeding position to the retracted position. Then, when the user releases the release lever 105 after sliding the second tray 70, the lock member 101 is pushed rightward by the urging force of the first spring 71E and is moved from a retracted position to a projecting position. If the second tray 70 is in the feeding position or the refracted position, the lock member 101 is fitted into the corresponding lock hole 62B. The user determines whether or not the lock member 101 has been fitted to one of the lock holes 62B from a tactile sensation or a sound, and pulls or pushes the operation lever 73 if the lock member 101 has not been fitted to one of the lock holes 62B. The lock member 101 slides along the inner surface of the right side wall 62 of the main tray 60, and is fitted to one of the lock holes 62B when the second tray 70 reaches the feeding position or the retracted position.
When the second tray 70 is moved from the feeding position to the retracted position, the connecting pieces 91 enter the cut portions 72F in the second tray 70 and the engagement ribs 77 are placed between the base 81 and the hook pieces 92. When the second tray 70 is moved from the retracted position to the feeding position, the connecting pieces 91 leave the cut portions 72F in the second tray 70 and the engagement ribs 77 move out from between the base 81 and the hook pieces 92.
Next, the operation for opening the discharge tray 80 of the tray unit 50 from the receiving position while the second tray 70 is in the retracted position will be described.
In this state, as described above, the engagement ribs 77 on the pivoting portion 72 of the second tray 70 are placed between the base 81 and the hook pieces 92 of the discharge tray 80 in the up-down direction 51. However, the engagement ribs 77 are not in contact with or engaged with the hook pieces 92 of the base 81. Therefore, the second tray 70 moves smoothly, without being blocked by the hook pieces 92, from the feeding position to the retracted position. Then, when the discharge tray 80 is opened by the user, the engagement ribs 77 are caught by the hook pieces 92 from below. Since the sliding portion 71 is locked in the front position by the lock member 101, the pivoting portion 72 is pivoted, around the first support portion 71C provided on the sliding portion 71, together with the discharge tray 80. Thus, the loading port 65B of the main tray 60 is exposed when the user opens the discharge tray 80 and the pivoting portion 72 together. The user supplies the first sheets 54A to the main tray 60 through the loading port 65B in the exposed state. If the discharge tray 80 is opened while the second tray 70 is in the feeding position, only the discharge tray 80 is opened. In such a case, since the second tray 70 is in the feeding position, the loading port 65B of the main tray 60 is not covered by the second tray 70. Therefore, the loading port 65B is exposed by opening the discharge tray 80.
Next, the operation for opening the discharge tray 80 of the tray unit 50 from the receiving position while the second tray 70 is in the feeding position, and moving the second tray 70 from the feeding position to the refracted position, and then closing the discharge tray 80 will be described.
When the discharge tray 80 is closed, the inclined surfaces 93 of the hook pieces 92 come into contact with the projecting ends of the engagement ribs 77 provided on the pivoting portion 72 of the second tray 70. When the projecting ends come into contact with the inclined surfaces 93, the connecting pieces 91 are bent so as to allow the hook pieces 92 to move to below the engagement ribs 77, and then the connecting pieces 91 return to their original shapes. Thus, the discharge tray 80 is closed without causing any damage to the hook pieces 92 or the connecting pieces 91 even when the second tray 70 is in the retracted position.
In the present embodiment, the sheets 54 fed by the feed rollers 23 are switched between the first sheets 54A placed on the bottom 61 of the main tray 60 and the second sheets 54B placed on the pivoting portion 72 of the second tray 70 by moving the second tray 70 between the feeding position and the retracted position.
In the present embodiment where the discharge tray 80 is provided as a cover for covering a portion of the second tray 70 from above, the second tray 70 and the discharge tray 80 are configured to pivot together. Although, in the present embodiment, the discharge tray 80 is provided in the tray unit 50, a discharged sheet receiver that serves as the discharge tray 80 may be provided in the printer housing 12, and a cover may be provided in the tray unit 50 separately from the discharged sheet receiver.
Since the second tray 70 and the discharge tray 80 are separate components, the discharge tray 80 does not move as the second tray 70 slides. Accordingly, the discharge tray 80 can be placed above the second tray 70 at a position closer to the switchback rollers 34, and the discharged sheets 54 can be reliably received by the tray unit 50. In addition, since only the second tray is slidable, the discharge tray 80 can be disposed at a high position as desired without causing an interference with the recording unit 40. In particular, in a case where the return path 31B for achieving double-sided printing is provided in the image recording device 10 and a case where a mechanism or a substrate for achieving an additional function is disposed around the recording unit 40, it is necessary to position the recording unit 40 higher by an amount corresponding to the space occupied by the return path 31B, the mechanism, and the like. In such a case, if a discharged sheet receiving portion is formed integrally with a second tray, unlike the present embodiment, the vertical distance between the discharged sheet receiving portion and the discharge unit (switchback rollers 34) may increase and cause a sheet discharging failure due to curling or reversing of the discharged sheet.
In the present embodiment, from the state in which the second tray 70 is in the retracted position and the loading port 65B of the main tray 60 is covered by the pivoting portion 72 of the second tray 70 and the discharge tray 80, the pivoting portion 72 and the discharge tray 80 are pivoted together by the engagement between the hook pieces 92 of the discharge tray 80 and the engagement ribs 77 of the pivoting portion 72. Thus, the loading port 65B is opened and the first sheets 54a can be loaded into the main tray 60.
In the present embodiment, since the second tray 70 comprises the sliding portion 71 and the pivoting portion 72, the second tray 70 is slidable and pivotable. In addition, since the pivot axis of the pivoting portion 72 substantially coincides, in position, with the pivot axis of the discharge tray 80, the pivoting portion 72 and the discharge tray 80 can be pivoted together without causing a displacement between the pivoting portion 72 and the discharge tray 80. Thus, the user can open the discharge tray 80 integrally with the pivoting portion 72 of the second tray 70. Instead of the above-described structure, a pair of ribs may be formed on the inner surfaces of the side walls 62 of the main tray 60, and the second tray 70 may be supported on the ribs such that the second tray 70 is slidable and pivotable.
In addition, in the present embodiment, the sliding portion 71 of the second tray 70 is locked in the front position or the back position by fitting the lock member 101 to one of the lock holes 62B. In addition, the user can recognize that the sliding portion 71 of the second tray 70 has reached the front position or the back position from a tactile sensation or a sound generated when the lock member 101 is fitted to one of the lock holes 62B. However, the structure of the lock member 101 and the lock holes 62B is not limited to the above-described structure as long as the second tray 70 can be retained in the feeding position and the retracted position. Recesses or the like may be formed instead of the lock holes 62B.
In the present embodiment, the engagement ribs 77 are provided at a position relatively close to the pivoting end of the pivoting portion 72 of the second tray 70. Therefore, the operating force which must be applied by the user to open the pivoting portion 72 and the discharge tray 80 together can be reduced.
In addition, in the present embodiment, when only the discharge tray 80 is opened while the second tray 70 is in the feeding position and then the discharge tray 80 is closed after the second tray 70 is moved to the retracted position, the connecting pieces 91 are bent so as to allow the hook pieces 92 to move to below the engagement ribs 77. Thus, the discharge tray 80 can be closed without causing any damage to the hook pieces 92 or the connecting pieces 91.
In the present embodiment, the hook pieces 92, the connecting pieces 91, and the base 81 are formed integrally with each other by using synthetic resin material. Alternatively, a leaf spring which is fixed, at its one end, to the base 81 and, at its other end, to the hook piece 92 may be used as the connecting piece 91. Although, in the present embodiment, the hook piece 92 is positioned below the second tray 70 and is configured to catch the second tray 70 from below the second tray 70, the hook piece 92 may be configured differently as long as the second tray 70 can change its position in response to the positional change of the discharge tray 80. For example, the hook piece 92 may be disposed below the top surface of the second tray 70 and the engagement rib 77 may be formed at an intermediate position of the second tray 70 in the up-down direction 51 such that the engagement rib 77 is caught by the hook piece 92. In addition, the hook piece 92 may, of course, engage with the engagement rib 77 not only when the discharge tray 80 is moved from the receiving position to the loading position but also when the second tray 70 is moved to the refracted position.
Further, the connecting piece 91 may be formed by a leaf spring which is elastically deformable.
In another embodiment, the hook piece 92 may be supported by the base 81 such that the hook piece 92 is slidable in the left-right direction 53. In this case, the hook piece 92 is slidable between an engaging position to catch the engagement rib 77 of the pivoting portion 72 of the second tray 70 and a non-engaging position not to contact the engagement rib 77. The hook piece 92 is urged by a spring, such as a leaf spring or a coil spring, in a direction from the non-engaging position to the engaging position. When the discharge tray 80 is opened while the second tray 70 is in the feeding position and then the discharge tray 80 is closed after the second tray 70 is moved to the retracted position, the engagement rib 77 slides along an inclined surface, which is similar to the above-described inclined surface 93, on the hook piece 92 so that the hook piece 92 is moved from the engaging position to the non-engaging position. Thus, the hook piece 92 are moved to below the engagement rib 77.
In another embodiment, instead of the engagement rib 72 of the pivoting portion 72, an engagement member may be provided on the pivoting portion 72 such that the engagement member is slidable in the left-right direction 53. In this case, the engagement member is configured to slide between an engaging position to be caught by the hook piece 92 and a non-engaging position not to contact the hook piece 92. The engagement member is urged by a spring, such as a leaf spring or a coil spring, in a direction from the non-engaging position to the engaging position. When the discharge tray 80 is opened while the second tray 70 is in the feeding position and then the discharge tray 60 is closed after the second tray 70 is moved to the retracted position, the engagement member slides along an inclined surface, which is similar to the above-described inclined surface 93, on the hook piece 92 so that the engagement member is moved from the engaging position to the non-engaging position. Thus, the hook piece 92 is moved to below the engagement member.
While the invention has been described in connection with embodiments of the invention, it will be understood by those skilled in the art that variations and modifications of the embodiments described above may be made without departing from the scope of the invention. Other embodiments will be apparent to those skilled in the art from a consideration of the specification or practice of the invention disclosed herein. It is intended that the specification and the described examples are considered merely as exemplary of the invention, with the true scope of the invention being defined by the following claims.
Number | Date | Country | Kind |
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2010-223029 | Sep 2010 | JP | national |