Abstract:
A cable support mechanism has a cable support portion, and supports two flexible cables which are ribbon-shaped and in each of which a plurality of conductors are arranged in parallel to each other in a coating material. The cable support portion includes a first support surface, a second support surface, and a plurality of guide ribs. The first support surface supports one of the two flexible cables. The second support surface is formed on a side reverse to a side where the first support surface is formed, and supports the other one of the two flexible cables. The guide ribs projects from two edges of each of the first support surface and the second support surface, the two edges opposing each other in a flexible-cable width direction, so as to overlap, and be spaced by a predetermined distance from, the first support surface and the second support surface.
Abstract:
An image reading device generates, as image data of a reading region, image data for output and image data for size detection, the latter having a lower resolution than the former, discriminates high density lines from the size-detection image data, sets as a target line one of the high density lines. And the image reading device calculates as a width for size detection a width from a reference line to the target line, sets as the size of a document a reference size that has a width closest to the width for size detection, performs image processing on the output image data based on the reference size set as the size of the document, and outputs the processed image data.
Abstract:
A reading device (100) includes a reading section (143), a casing (160), a cover section (110), a conveyance section (130), an interposed member (170), a controller (153), a cable (180), and a linking member (190). The casing (160) houses the reading section (143) therein. It is possible to place the cover section (110) on the casing (160). The conveyance section (130) is housed in the cover section (110) and conveys a sheet. The interposed member (170) is interposed between the cover section (110) and the casing (160). The controller (153) is housed in the casing (160) and controls the conveyance section (130). The cable (180) is connected to the controller (153), is also connected to the conveyance section (130), and transfers a control signal output by the controller (153) to the conveyance section (130). The linking member (190) is linked to the cover section (110) and is also linked to the casing (160).
Abstract:
An image forming apparatus includes a main body, a post-printing processing device, and a paper exit part. The main body forms an image on paper. The post-printing processing device is located above the main body and performs post-printing processing on paper. The paper exit part is located on a side surface of the post-printing processing device. Paper is ejected to the paper exit part. The post-printing processing device includes a paper inlet port and a conveyance device. The paper inlet port is located in a rear part of a lower surface of the post-printing processing device. The conveyance device conveys paper conveyed via the paper inlet port into the post-printing processing device in a forward direction thereof to a paper loading tray and conveys the paper therefrom leftward to eject the paper to the paper exit part located on the left side of the post-printing processing device.
Abstract:
An image reading apparatus includes a document setting table, an image data generation unit, a downsized image data generation unit, a document information generation unit, and an image cropping unit. The image data generation unit reads a plurality of source documents placed on the document setting table and generates image data representing the plurality of source documents. The downsized image data generation unit generates downsized image data by reducing a size of the image data. The document information generation unit analyzes the downsized image data to detect respective positions of the plurality of source documents and generate document information indicating the detected positions. The image cropping unit cuts out a plurality of regions from the image data according to the document information and acquires a plurality of items of cropped image data respectively representing the plurality of source documents.
Abstract:
On the basis of first read image data obtained by reading a first face, a controller calculates a first sub scanning size, which is a size of the first face in a sub scanning direction. On the basis of second read image data obtained by reading a second face, the controller calculates a second sub scanning size, which is a size of the second face in the sub scanning direction. The controller determines the larger of the first sub-scanning size and the second sub-scanning direction size to a definitive sub scanning size, which is the size of the document in the sub scanning direction set on the document stage.
Abstract:
An image forming apparatus includes a scanner device and an image forming apparatus body to which the scanner device is attached. The scanner device has a document inlet and a document outlet respectively formed in mutually opposed surfaces thereof, and is configured to read an image of a document fed thereinto through the document inlet and discharge the document through the document outlet. The scanner device is detachably attached to a top surface of the image forming apparatus body. The top surface of the image forming apparatus body functions as a guide surface guiding the document when the scanner device is used.
Abstract:
A binarization processing unit 11 performs a binarization process the basis of existence of at least one of lightness and chroma for a candidate image of template matching. A labeling processing unit 12 performs a labeling process for the binarized candidate image and thereby extracts a pixel block in the binarized candidate image. An outline determining unit 14 performs sampling of a position on an outermost periphery of the pixel block, and identifies a range from a centroid position of the pixel block and an angle from a predetermined direction as the position. A correlation determining unit 15 determines a correlation between the ranges and the angles of both the candidate image and the reference image on the basis of the reference outline data, and excludes the candidate image from a candidate of the template matching in accordance with degree of the correlation.
Abstract:
A document reading device includes a reading section, an orientation detecting section, an orientation determining section, and a notification section. The reading section reads images of respective pages of a spread document one at a time. The orientation detecting section sequentially detects orientations of respective images read by the reading section. The orientation determining section determines whether or not the orientation detecting section detects orientation alternation between a first orientation and a second orientation opposite to the first orientation for a read image read by the reading section. The notification section notifies an error upon the orientation determining section determining that the orientation detecting section does not detect orientation alternation between the first orientation and the second orientation.
Abstract:
An image forming apparatus includes an image forming part, a main board, a casing and a user interface part. The image forming part forms an image on the sheet. On the main board, which a control circuit for controlling the image forming part is formed. The image forming part and the main board are stored in the casing. The user interface part includes at least one of operation member which receives an operation and a display member which displays a state of the image forming part, and is mounted on a circuit formed surface of the main board.