Abstract:
A method, at a display control device, for transforming image data, the method comprising receiving portions of image data from a host device, wherein the portions of image data are based on tiles of an image, wherein the image comprises tiles in a tile order, each tile comprising pixels in a pixel order, and receiving display order information provided by host device, wherein the display order information provides an order for providing the portions of image data to a display device and generating different image data having a different tile order based on the display order information, and a different pixel order and providing the different image data the display device for displaying a transformed image.
Abstract:
Processes for presenting a current state of a device having device storage connected with a host system are provided. In some processes, device manufacturers or vendors define a set of operational states of a device and provide user interface (UI) elements of a custom representation of each state through information stored in the device storage. Initially, the set of states of the device and UI elements associated with each state are received from the device storage. Information regarding a current state is received from the device, and a representation of the current state, which includes the received UI elements, is presented on the host system. In other processes, UI elements of a representation of each state are obtained from a remote system using device identification information. In other processes, UI elements from the device, from the host system, and/or from a remote system are combined to form a state representation.
Abstract:
System comprising mold-moving assembly cooperative with molding station and insert-integration station. Mold-moving assembly operative over cycle, including: first phase: molding station and mold-moving assembly operative to mold molded article, and insert is integrated, in insert-integration station so as to manufacture composite article, and insert-integration station and mold-moving assembly operative to shape insert of composite article into predetermined shaped; second phase: after insert has been shaped, composite article is released and ejected from insert-integration station, and mold-moving assembly is translated away from molding station so that molded article may be removed from molding station; third phase: mold-moving assembly is actuated to move molded article from molding station over to insert-integration station; and fourth phase: insert-integration station receives another insert, and molded article is retained in insert-integration station so that when in first phase is repeated, another insert may become integrated with molded article and then formed with molded article.
Abstract:
Disclosed is (i) an overmolding system, (ii) a method of an overmolding system, (iii) an article of manufacture for directing a data processing system to control a molding system, and (iv) an article manufactured by an overmolding system.
Abstract:
Disclosed is (i) an overmolding system, (ii) a method of an overmolding system, (iii) an article of manufacture for directing a data processing system to control a molding system, and (iv) an article manufactured by an overmolding system.
Abstract:
Disclosed is a molding system. According to an aspect, the molding system includes molding-system elements configured to process a molding material. The molding system includes a mold surface configured to cooperate with the molding-system elements. The molding system also includes a fibrous-insert generating mechanism configured to generate a fibrous insert onto the mold surface. The mold surface, in use, encapsulates the fibrous insert received by the mold surface with the molding material, at least in part.
Abstract:
A method, at a display control device, for transforming image data, the method comprising receiving portions of image data from a host device, wherein the portions of image data are based on tiles of an image, wherein the image comprises tiles in a tile order, each tile comprising pixels in a pixel order, and receiving display order information provided by host device, wherein the display order information provides an order for providing the portions of image data to a display device and generating different image data having a different tile order based on the display order information, and a different pixel order and providing the different image data the display device for displaying a transformed image.
Abstract:
A system and method may automatically receive an electronic lease or other agreement document for property and parse the document to identify provisions provided therein. The lease may then be evaluated for various types of provisions to determine an overall quality score. In one example, the quality score may correspond to an environmental sustainability score and include considerations such as sub-metering, water-saving fixtures, LEED certification and the like. In one or more arrangements, provisions may be identified by generating and providing an electronic questionnaire through which a user may specify the applicable terms of the lease. Approval of the lease may be conditioned on a minimum environmental sustainability score as determined by the lease provisions. A system may further suggest ways to improve the environmental sustainability score.
Abstract:
Architecture for data communications optimization based on generating and communicating “intents” or “hints” to a storage device and faster/slower solid state memory optimization. Data destined for storage on the storage device (capable of hints processing) can be bracketed to take advantage of improved performance associated with the hints processing. Data can be communicated in block format such that individual series of block exchanges can occur. Hints processing can be optional at the storage device. When communicated to the storage device firmware facilitates optimization of internal data flow and device operation. A write optimization schema is provided for storage system such as solid state storage devices. For example, frequently-modified data can be stored in faster memory to provide more efficient overall application data processing, and less-frequently modified data can be processed into and out of lower cost (or slower) memory.