Abstract:
A document feeding device for feeding documents comprises a document input tray on which documents to be fed are placed, a document output tray to which the documents are ejected, and a feeding mechanism which is provided for a feeding path connecting the document input tray and the document output tray via a scanning position and feeds each document from the document input tray to the scanning position and from the scanning position to the document output tray. The document output tray includes a tray part which holds the ejected documents, a projecting part which pushes up a part of the ejected documents on the upstream side in a feeding direction and thereby lifts an upstream end of the ejected documents, and a pressing member which makes contact with the ejected documents from above at a position on the downstream side of the projecting part's apex in the feeding direction.
Abstract:
A sheet conveying device of an aspect of the invention includes: a conveying path that allows a sheet to be conveyed and includes a first guide face and a second guide face opposing and apart from each other at a predetermined interval; a sheet conveying unit disposed on the conveying path; and a first detecting unit and a second detecting unit arranged opposing each other across the conveying path. Each of the first and second detecting unit includes: an arm member rotatably supported to take a posture where the arm member projected from the guide face to the conveying path and a posture where the arm member is retracted from the conveying path by rotating toward the guide face; and a first sensor that outputs a signal depending on the posture of the arm member.
Abstract:
In one aspect of a sheet conveying device, a sheet member is guided from a sheet feeding port through a reading position to a terminal end positioned above the sheet feeding port on a first path, guided from the terminal end through the reading position to the terminal end again on a second path, and guided from the terminal end through the reading position to a sheet discharging port on a third path. A transfer member rotates a conveying member and halts the rotation of the conveying member respectively according to first and second rotations of a driving source. A first detecting unit is provided downstream of the sheet feeding port on the first path. A control unit switches the driving source from the first rotation to the second rotation on the basis that the first detecting unit detects a trailing end of the sheet member.
Abstract:
A sheet conveying device to convey a sheet in a sheet path is provided. The sheet conveying device includes a separator roller, which is arranged to be rotatably in contact with the sheet to apply conveying force to the sheet, a pad assembly including a separator pad, which is arranged to be in contact with the sheet stack to apply convey resistance to the sheet stack, and a holder, which is swingably attached to a base member and holds the separator pad, the base member being in a fixed position with respect to the separator roller, a spring, which urges the pad assembly toward the separator roller, and a slidable member, which is attached to the pad assembly to be integrally movable with the pad assembly and to be slidably in contact with a first slidable section in the base member.
Abstract:
A sheet feeding device, which is configured to feed stacked sheets one by one in a sheet feed direction, is provided with a sheet tray configured to accommodate the stacked sheets, a feed-out roller protruded from the sheet tray and configured to feed the stacked sheets from the sheet tray, a feed-out nip member arranged above and opposite to the feed-out roller, the feed-out nip member being configured to contact an uppermost sheet of the stacked sheets and bias the sheets toward the feed-out roller, a separation unit located on a downstream side, in the sheet feed direction, of the feed-out roller, the separation unit separating a lowermost sheet from the stacked sheets fed by the feed-out roller, and a friction member configured to contact the uppermost sheet of the stacked sheets at a position different from a position where the feed-out nip member contacts the uppermost sheet.
Abstract:
document feeding device comprises a document input tray, a document output tray, a feeding mechanism provided for a feeding path connecting the document input tray and the document output tray via a scanning position to feed each document from the document input tray to the scanning position and to the document output tray, a turnover mechanism provided for a turnover path connected to the feeding path to return the document after passing through the scanning position to the upstream side of the scanning position while interchanging the front end and rear end of the document, and an ejection mechanism configured so that its document ejection mode can be switched between a first ejection mode for successively ejecting each document while stacking it on documents already ejected to the document output tray and a second ejection mode for successively ejecting each document while sliding it under the already ejected documents.
Abstract:
An image reading device is provided, which includes a controller configured to, when a carriage reaches a turn-around position in a moving direction, control a motor to once stop, then rotate in a second direction opposite to a first direction such that a planetary gear swings to a position separated from an output gear and that an intermediate gear moves to an engagement position to engage with the output gear, and thereafter again rotate in the first direction so as to transmit a driving force from the motor to the output gear via an input gear, a planetary gear, and the intermediate gear.
Abstract:
An image reader is provided, which includes an intermediate feed roller that is disposed downstream relative to a separation roller on a feeding path and configured to rotate in contact with a document sheet separated and fed by the separation roller and feed the document sheet to a downstream side on the feeding path so as to restrain a variation of a tensile force applied to the document sheet, which variation may be caused when the document sheet is fed and away from the separation roller, and only a single U-turn roller that is disposed downstream relative to the intermediate feed roller on the feeding path, and configured to rotate in contact with the document sheet fed by the intermediate feed roller and feed the document sheet to a reading unit in a U-turn manner on a U-turn path curved along an outer circumferential surface of the U-turn roller.
Abstract:
A sheet ejector, configured to eject sheets so as to insert a later-ejected sheet under an earlier-ejected sheet on a catch tray, includes a feed roller provided to the catch tray, wherein the feed roller is configured to feed, in a predetermined ejecting direction, the later-ejected sheet that is inserted under the earlier-ejected sheet, and a switching mechanism configured to switch a state of the feed roller relative to a sheet on the catch tray between a contact state where the feed roller contacts the sheet on the catch tray and a non-contact state where the feed roller is kept from contacting the sheet on the catch tray.