Abstract:
A duplex peripheral comprises: a passage; a feeding mechanism transporting a medium into the passage; two scanning modules disposed on two sides of the passage and acquiring front and reverse side images of the medium, respectively; a transporting mechanism transporting the medium through the passage and past the scanning modules; a control module, electrically connected to the scanning modules, the feeding mechanism and the transporting mechanism, and digitizing the front side image and the reverse side image; and an output unit electrically connected to the control module, and receiving and outputting the front and reverse side images. A width of the medium that can be accommodated within the passage and the feeding mechanism is greater than or equal to a short side of an A4 size sheet. The transporting mechanism defines a transportable gap smaller than or equal to a short side of an A7 size sheet.
Abstract:
An image reproducing method for a digital processing machine is provided. The image reproducing method includes the following steps: scanning an original to generate image data; analyzing the image data to generate an analysis result; designating M proper user setting items among N user setting items according to the analysis result, wherein N and M are positive integers, and M is less than N; providing only the M proper user setting items on a human-machine interface; and outputting a copy of the original according to a user input received through the human-machine interface. In addition, a digital processing machine providing an intelligent human-machine interface is also provided.
Abstract:
A printing device for providing multiple documents of one type includes a data receiving portion for receiving an image data, a processor, and a printing module. The processor is used to process the image data to generate a first printing information and a second printing information. The printing module is used to print a first document and a second document according to the first and second printing information, respectively. The first printing information includes the image data and a first identifying information, and the second printing information includes the image data and a second identifying information different from the first identifying information. The first identifying information is composed of a first set of halftone pattern, a first set of lines or a combining information thereof. The second identifying information is composed of a second set of halftone pattern, a second set of lines or a combining information thereof.
Abstract:
A printing device for providing multiple documents of one type includes a data receiving portion for receiving an image data, a processor, and a printing module. The processor is used to process the image data to generate a first printing information and a second printing information. The printing module is used to print a first document and a second document according to the first and second printing information, respectively. The first printing information includes the image data and a first identifying information, and the second printing information includes the image data and a second identifying information different from the first identifying information. The first identifying information is composed of a first set of halftone pattern, a first set of lines or a combining information thereof. The second identifying information is composed of a second set of halftone pattern, a second set of lines or a combining information thereof.
Abstract:
A feeding device for digital processing machine includes a paper passage, a friction device, and a sheet-feeding module. The sheet-feeding module is disposed in the paper passage and opposite to the friction device. The sheet-feeding module includes a sheet-feeding roller, a first idle wheel, and a belt. The sheet-feeding roller is for separating a sheet with the friction device. The first idle wheel is disposed in the upstream side of the sheet-feeding roller. The belt encircles the first idle wheel and the axle of the sheet-feeding roller. The sheet-feeding module rotates from a first position to a second position when the sheet-feeding roller rotates, such that the belt contacts the sheet when the sheet-feeding module is at the second position.
Abstract:
A feeding device for digital processing machine includes a paper passage, a friction device, and a sheet-feeding module. The sheet-feeding module is disposed in the paper passage and opposite to the friction device. The sheet-feeding module includes a sheet-feeding roller, a first idle wheel, and a belt. The sheet-feeding roller is for separating a sheet with the friction device. The first idle wheel is disposed in the upstream side of the sheet-feeding roller. The belt encircles the first idle wheel and the axle of the sheet-feeding roller. The sheet-feeding module rotates from a first position to a second position when the sheet-feeding roller rotates, such that the belt contacts the sheet when the sheet-feeding module is at the second position.
Abstract:
A scanning device comprises a light source, a reflecting mirror and a photosensor. The light source provides light to an original. A first portion of the light penetrates through a hole of the original and becomes penetrating light. A second portion of the light is reflected by a hole-free portion of the original and becomes second reflected light. The reflecting mirror reflects the penetrating light and generates first reflected light. The photosensor receives the first reflected light and the second reflected light and generates a hole-containing image signal representative of an image of the original.
Abstract:
A smart copy apparatus comprises a scanning module, a processing module and a printing module. The scanning module scans an original to obtain fragment scan images. The processing module electrically connected to the scanning module receives the fragment scan images, and determines a size of the original according to the fragment scan images to obtain a scan-size parameter, and generates print data according to the fragment scan images, the scan-size parameter and a print parameter. The printing module receives the print data, and prints the print data on a print medium.
Abstract:
An intelligent image reproducing apparatus, which comprises an automatic document feeder, two image capture modules, and a controller, is disclosed. The automatic document feeder comprises a document sensor for sensing a document. The image capture modules are disposed opposite each other for scanning a front side image and a backside image of each single sheet of the document. The controller is connected electrically to the automatic document feeder, two image capture modules, and the document sensor. When the document sensor senses the document, the automatic document feeder automatically feeds a first sheet of the document, and the two image capture modules capture the front side image and the backside image of the first sheet automatically. In addition, an intelligent image reproducing method operated by electronic system for a digital processing machine is also disclosed.
Abstract:
A linear light source module comprises a holder, a first light guide, a second light guide, a first light-emitting element and a second light-emitting element. The first and second light guides are mounted on the holder and arranged in series, where the first light guide has a first emitting surface and the second light guide has a second emitting surface. The holder partially surrounds the first and second light guides. The first light-emitting element is disposed close to a first end of the first light guide, and a light beam emitted by the first light-emitting element is reflected and converted by the first light guide into first linear light emitted from the first emitting surface. The second light-emitting element is disposed close to a first end of the second light guide, and a light beam emitted by the second light-emitting element is reflected and converted by the second light guide into second linear light emitted from the second emitting surface. An optical assembly for a scanner using such linear light source module is also disclosed.