Abstract:
Systems and methods are provided for automatically splitting multi-copy print jobs across a printer pool represented by a virtual printer. The system includes a print server, and the print server includes an interface and a controller. The interface is able to present a pool of multiple printers as a virtual printer, and to receive a multi-copy print job directed to the virtual printer. The controller is able to identify printers from the pool that are available for printing the print job, to split the print job into multiple child jobs that each include a separate copy of print data for the print job, and to queue the child jobs at the available printers.
Abstract:
Methods and systems receive an input image into a computerized device, create different binary images by applying different threshold measures to the input image using the computerized device, and identify components of a first binary image of the binary images using the computerized device. Such methods and systems also compare pixels of each of the components of the first binary image with corresponding pixels of a second binary image of the binary images to identify pixel differences using the computerized device. This allows these methods and systems to identify halftone areas within the input image based on the pixel differences exceeding a limit using the computerized device.
Abstract:
In an image-forming device, an image-reading unit reads an image formed on an original document. A data-reading unit reads data stored in a storing member of the original document. A duplication-performing unit performs a plurality of duplication processes including at least an image/data-duplication process in which the duplication-performing unit forms the read image on a first recording medium having a storing member and writes the read data to the storing member of the first recording medium, and a data-duplication process in which the duplication-performing unit writes the read data to the storing member of the first recording medium without forming the read image on the first recording medium. A receiving unit receives an image/data-duplication instruction and a data-duplication instruction. The duplication-performing unit performs the image/data-duplication process if the receiving unit receives the image/data-duplication instruction, and performs the data-duplication process if the receiving unit receives the data-duplication instruction.
Abstract:
An image processing apparatus includes an operation unit. The operation unit sequentially displays a plurality of screens corresponding to a series of processes. And the operation unit sequentially receives input signals based on user inputs to the screens. The operation unit includes a first view area that displays contents of the series of processes. The operation unit includes a second view area that sequentially displays the screens. The contents displayed on the first view area change according to an input signal based on a user input to one of the plurality of screens.
Abstract:
In an image-forming device, an image-reading unit reads an image formed on an original document. A data-reading unit reads data stored in a storing member of the original document. A duplication-performing unit performs a plurality of duplication processes including at least an image/data-duplication process in which the duplication-performing unit forms the read image on a first recording medium having a storing member and writes the read data to the storing member of the first recording medium, and a data-duplication process in which the duplication-performing unit writes the read data to the storing member of the first recording medium without forming the read image on the first recording medium. A receiving unit receives an image/data-duplication instruction and a data-duplication instruction. The duplication-performing unit performs the image/data-duplication process if the receiving unit receives the image/data-duplication instruction, and performs the data-duplication process if the receiving unit receives the data-duplication instruction.
Abstract:
Methods, systems and processor-readable media for converting a mobile rendering job to a secure rendering job. A secure rendering module can be configured in association with a print path with respect to a mobile telecommunications device. A rendering job from the mobile telecommunications device configured with a mobile multifunction device user interface can be received by the secure rendering module. The document context (e.g., metadata) as well as the context of the MFD context (e.g., MFD location and activity) can be checked in order to determine a confidentiality of the rendering job. The rendering job can be securely transmitted to the MFD based on the confidentiality. An email notification with respect to the release of the secure rendering job can be sent to a user.
Abstract:
A data generating apparatus and a data generating method generate imposition data for imposing a plurality of pages on a print medium. A recording medium stores therein a program which enables a computer to function as an apparatus for generating such imposition data. After imposition data have been converted from grid data into fold data, trials are performed to fold a hypothetical print medium based on the converted fold data, so that pages, which are superimposed by folding the hypothetical print medium, have sequential page numbers and are oriented in one direction. Results of the trials are acquired as fold information for folding an actual print medium.