Abstract:
A method and system render rasterized data by receiving non-rasterized page description language data and a corresponding transformation matrix representing transformation operations to be performed. The non-rasterized page description language data is rasterizing to create rasterized data. The corresponding transformation matrix is decomposed into a plurality of individual transformation operation matrices and a discrete transformation operation value, from each corresponding individual transformation operation matrix, is generated for each transformation operation to be performed upon the rasterized data. The transformation operations are performed upon the rasterized data based upon the generated discrete transformation operation values.
Abstract:
A system and method are provided to implement dynamic user intent-based imaging operations in image forming and document handling systems. A common framework is provided to implement the user-intent based imaging operations by which all of the individual component devices are able to be mapped to a particular user's desires such that an output from any particular image forming device in the complex image forming system meets the user's requirements/intent. Operations of component devices of a particular complex image forming system are defined logically. Mappings to the individual devices according to a common reference framework are then overlaid and manipulated according to the common framework. In this manner, a user directs imaging operations, including image shifts, for individual pages, subsets of pages or an entire document in the manner the user intends rather than according to a default understanding of the device.
Abstract:
A system and method for implementing selectable platen sheet rulers as one of technology-based dynamically adaptable platen sheet rulers or physically-replaceable platen sheet rulers or a plurality of physically-replaceable platens having associated with each a permanently-affixed set of platen sheet rulers for device emulation, are provided. The user is provided with a mechanism by which to select a different origin for imaging operations in an image forming device. To enable emulation on the image forming devices, selectable rulers are employed. Dynamically-adaptable rulers include liquid crystal display (LCD) technology, light emitting diode (LED) arrays or similar tools to configure platen sheet ruler displays to frame a platen of the image forming device to enable real-time changing of the platen sheet rulers. Separately, physically-replaceable rulers such as, for example, one of “snap-in” rulers that are changeable with respect to a set platens in the image forming device are provided.
Abstract:
A system and method are provided to implement dynamic user intent-based imaging operations in image forming and document handling systems. A common framework is provided to implement the user-intent based imaging operations by which all of the individual component devices are able to be mapped to a particular user's desires such that an output from any particular image forming device in the complex image forming system meets the user's requirements/intent. Operations of component devices of a particular complex image forming system are defined logically. Mappings to the individual devices according to a common reference framework are then overlaid and manipulated according to the common framework. In this manner, a user directs imaging operations, including image shifts, for individual pages, subsets of pages or an entire document in the manner the user intends rather than according to a default understanding of the device.
Abstract:
What is provided are a system and method which enables users to configure their respective imaging devices to receive image data in a first coordinate space and map the received data to a second coordinate space for subsequent processing. In such a manner, users or key operators can configure their imaging device to transform image data to any desired orientation for processing across any imaging device. Preset configuration in the imaging device can be setup at the factory or installed in the field for desired behavior. Furthermore, the preset configurations can be used to correct problems with jobs in the field. A simple user interface (UI) addition to the digital front end (DFE) describe below provides operator selection. The operator can emulate current customer workflow across a variety of imaging devices for both intra-brand and inter-brand reduces any impact on legacy work flows. Various embodiments are disclosed.
Abstract:
A method and system render rasterized data by receiving non-rasterized page description language data and a corresponding transformation matrix representing transformation operations to be performed. The non-rasterized page description language data is rasterizing to create rasterized data. The corresponding transformation matrix is decomposed into a plurality of individual transformation operation matrices and a discrete transformation operation value, from each corresponding individual transformation operation matrix, is generated for each transformation operation to be performed upon the rasterized data. The transformation operations are performed upon the rasterized data based upon the generated discrete transformation operation values.
Abstract:
A method and system render rasterized data by receiving non-rasterized page description language data and a corresponding transformation matrix representing transformation operations to be performed. The non-rasterized page description language data is rasterizing to create rasterized data. The corresponding transformation matrix is decomposed into a plurality of individual transformation operation matrices and a discrete transformation operation value, from each corresponding individual transformation operation matrix, is generated for each transformation operation to be performed upon the rasterized data. The transformation operations are performed upon the rasterized data based upon the generated discrete transformation operation values.
Abstract:
A method and system render rasterized data by receiving non-rasterized page description language data and a corresponding transformation matrix representing transformation operations to be performed. The non-rasterized page description language data is rasterizing to create rasterized data. The corresponding transformation matrix is decomposed into a plurality of individual transformation operation matrices and a discrete transformation operation value, from a corresponding individual transformation operation matrix, is generated for each transformation operation to be performed upon the rasterized data. The transformation operations are performed upon the rasterized data based upon the generated discrete transformation operation values.
Abstract:
A method and system render rasterized data by receiving non-rasterized page description language data and a corresponding transformation matrix representing transformation operations to be performed. The non-rasterized page description language data is rasterizing to create rasterized data. The corresponding transformation matrix is decomposed into a plurality of individual transformation operation matrices and a discrete transformation operation value, from a corresponding individual transformation operation matrix, is generated for each transformation operation to be performed upon the rasterized data. The transformation operations are performed upon the rasterized data based upon the generated discrete transformation operation values.
Abstract:
A method and system render rasterized data by receiving non-rasterized page description language data and a corresponding transformation matrix representing transformation operations to be performed. The non-rasterized page description language data is rasterizing to create rasterized data. The corresponding transformation matrix is decomposed into a plurality of individual transformation operation matrices and a discrete transformation operation value, from a corresponding individual transformation operation matrix, is generated for each transformation operation to be performed upon the rasterized data. The transformation operations are performed upon the rasterized data based upon the generated discrete transformation operation values.