Abstract:
An image forming apparatus includes: an image forming part that forms an image on a paper sheet; a first conveyance path that conveys the paper sheet on which the image is formed and that includes a primary conveyance path; a second conveyance path that reverses the paper sheet and includes a reverse conveyance path; a connecting conveyance path that connects the second conveyance path to the first conveyance path, and, before reversal at a time of conveyance to the second conveyance path, sends the paper sheet to the first conveyance path, starting from one edge of the paper sheet; and a return conveyance path that connects the second conveyance path to the first conveyance path, and, after the reversal at a time of conveyance to the second conveyance path, sends the paper sheet to the first conveyance path, starting from the other edge of the paper sheet.
Abstract:
A printer includes a sheet stopper that rotates between a regulating position where a sheet placed in the feeding tray is regulated and a passing position where the sheet placed in a feeding tray is passed through, and an inversion path introduction unit that rotates between a forward-feeding position and a reverse-feeding position of introducing the sheet. The inversion path introduction unit is disposed at the forward-feeding position when a sheet is conveyed in a sheet feeding direction. The inversion path introduction unit is disposed at the reverse-feeding position when a sheet is conveyed in a direction opposite to the sheet feeding direction and the inversion path introduction unit introduces the sheet into an inversion path. The sheet stopper changes the regulating position and the passing position in conjunction with rotation of the inversion path introduction unit.
Abstract:
There is provided a document processing device and a document processing method capable of aligning and loading documents being transported surely and at a high speed. The document processing device includes: a document inverter for inverting a transport direction of documents being transported; a first guide that is provided in nearly the same direction as the transport direction positions document stacked layers when stacking documents inverted by the document inverter; a second guide that is provided to further tilt at a predetermined angle than orthogonal angle to the transport direction and capable of guiding the transported documents in the first guiding means direction, positions document stacked layers when stacking documents inverted by the document inverting means in conjunction with the first guiding means; and a holder for loading and holding the documents positioned and stacked by the first guide and the second guide. The second guide is constituted by a flat transported document abutting surface capable of making ends of the documents being transported slide down in a positioned state.
Abstract:
The present invention includes a first post-processor equipped with a paper turn-over unit for paper and a paper surface processing unit adapted to process a paper surface of the paper; a second post-processor configured to be different from the first post-processor and located downstream of the first post-processor in a paper transport direction; and a controller adapted to control the first post-processor and the second post-processor, wherein the controller determines whether to use the paper turn-over unit, according to a combination of a post-processing mode which uses the first post-processor and a post-processing mode which uses the second post-processor.
Abstract:
A media inverting system for inverting a media sheet, including a first media transport, a rotatable member, and a second media transport. A rotatable member force mechanism is switchable between a first state where a first side of the media sheet is held to the rotatable member and a second state where the media sheet is released. A control system controls the rotatable member force mechanism according to a control sequence including: switching the rotatable member force mechanism to its first state to receive the media sheet from the first media transport and hold the media sheet to the rotatable member while it is wrapped around the rotatable member; and switching the rotatable member force mechanism to its second state to release the media sheet in synchronization with the media sheet being received by the second media transport.
Abstract:
A paper inverting device includes a first sensor, a second sensor, a guiding structure, a power mechanism, and a controller. The power mechanism is used for driving rotation of the guiding structure. The first sensor is used for detecting the position of the paper. The second sensor is used for detecting the thickness of the paper. According to the sensing signals from the first sensor and the second sensor, the controller may determine the timing of rotating the guiding structure and the rotating direction and the rotating angle of the guiding structure. Consequently, the guiding structure may be controlled to stop the paper and further invert the paper.
Abstract:
A driving roller for conveying a sheet to a sheet punching unit, and a sheet inverting unit including a driving roll capable of being driven to rotate by the driving roller are provided between a branching point, at which a return path of a sheet conveying path is branched, and a sheet punching unit. When a subsequent sheet for which a punching process is performed next reaches the sheet inverting unit, the sheet to which the punching process has been performed by the sheet punching unit is conveyed to the return path by the driving roll while making the sheet pass by a subsequent sheet conveyed to the sheet punching unit by the driving roller.
Abstract:
A sheet alignment apparatus includes: a sheet storage section for storing sheets; a sheet push-up section for conveying the sheets in the sheet discharge direction; a sheet discharge section having a pair of forward and reverse rotatable rollers configured to align sheet between the rollers and the sheet push-up section and to then discharge the sheets by sandwiching the sheet in the nip portion between the pair of rollers; and a sheet width direction alignment section located between the sheet storage section and the sheet discharge section and configured to align the sheets in the width direction perpendicular to the sheet discharge direction, wherein the sheet discharge section causes the pair of rollers in the reverse direction so as to separate the sheet edge in the sheet discharge section from the nip portion before the lateral alignment performed by the sheet width direction alignment section.
Abstract:
A printing apparatus is provided with a storage unit that is configured by a curved carrying route including first and second arc carrying routes which are sequentially connected to a carry-out side of a main carrying path along a sheet carrying direction, and the first and second arc carrying routes are arranged on upper and lower sides of a line component extending along a sheet carrying surface in a printing device.
Abstract:
A double-sided image forming device includes: a paper feeding section (3); a printing section (4); a first conveyance route (6) for conveying a fed paper sheet (2) to a paper discharge section (8) via the printing section (4); and a second conveyance route (7) for receiving, on its conveyance surface, the paper sheet (2), a first side (21) of which has been printed, from the first conveyance route (6), and for conveying the paper sheet (2) while reversing it, thereby conveying the paper sheet (2) to the upstream side of the printing section (4) in the conveyance direction of the first conveyance route (6), wherein the second conveyance route (7) has a reverse conveyance route (9) for receiving, on its conveyance surface, a second side (22) of the paper sheet (2), and for conveying the paper sheet (2) while reversing it, and wherein the reverse conveyance route (9) is formed by a combination of a plurality of reverse mechanisms each including: a first conveyance section (91) for linearly conveying the paper sheet (2); a reverse section (92) for reversing the conveyed paper sheet (2) while bending it along a curved inner peripheral surface; and a second conveyance section (93) for linearly conveying the reversed paper sheet (2).