Abstract:
An integrated circuit including a pipeline and a method of operating the pipeline. Each stage of the pipeline is triggered by one or more triggering events and are individually, and selectively, stalled by a stall signal. For each stage a stall signal, delayed with respect to the stall signal of a downstream stage, is generated and used to select whether the pipeline stage in question is triggered. A data valid signal propagating with valid data adds further selection, such that only stages with valid data are stalled.
Abstract:
Leakage current control devices include a circuit having one or more functions in a data path where the functions are executed in a sequence. Each of the functions has power reduction logic to energize each respective function. A leakage control circuit interacts with the power reduction logic, so that the functions are energized or deenergized in a control sequence such that the functions where the data is resident are energized and at least one of the other functions is not energized.
Abstract:
An integrated circuit including a pipeline and a method of operating the pipeline. Each stage of the pipeline is triggered by one or more triggering events and are individually, and selectively, stalled by a stall signal. For each stage a stall signal, delayed with respect to the stall signal of a downstream stage, is generated and used to select whether the pipeline stage in question is triggered. A data valid signal propagating with valid data adds further selection, such that only stages with valid data are stalled.
Abstract:
An apparatus for fastening a line supporting a fender on a vessel has a body portion defining a first bore extending through the body portion for receiving the line, and a second bore spaced apart from the first bore and extending through the body portion for receiving the line after it is passed through the first bore and wrapped around a rail on the vessel. A handle portion is generally U-shaped for receiving the body portion between opposing sides of the handle portion and is slidable relative to the body portion. A drive arm is pivotally mounted on one end to the body portion, and is coupled on another end to the opposing sides of the handle portion. The drive arm defines a toothed surface and is spring biased for engaging the line extending through the second bore with the toothed surface to lock the line in place. The toothed surface of the drive arm is moved into and out of engagement with the line by moving the handle portion toward and away from the body portion.
Abstract:
The invention provides an alloy useful particularly in dentistry.The alloy of the invention in its broadest aspect contains from about 0.05 to about 8% by weight of indium and from about 8 to about 20% by weight of iridium, the balance essentially being platinum. Preferably, however, the allow consists essentially of platinum, iridium and indium, and contains from about 0.05 to about 8% by weight of indium, with the weight ratio of platinum to iridium being from about 84 to about 86:15.The alloy is useful in forming dental prostheses with aluminous porcelain or with a castable ceramic.
Abstract:
A computer implemented method of assigning responsibility for multi-sourced technology based services, the method including the steps of: defining a plurality of service delivery functions, defining collections of services that are to be provided by several service providers, providing metrics associating the service delivery functions with the collections of services, and inserting the metrics into a model to indicate which service providers are assigned responsibility for the service delivery functions.
Abstract:
The invention relates to a method and apparatus for analyzing fluid flow while considering heat transfer effects and, in particular, a phase change from a molten state to a solid state. In particular, the method and apparatus may be applied to the analysis of an injection molding process for producing a molded polymer component from a thermoplastic or a thermosetting polymer. In one embodiment, the method may be used to determine pressure required to fill a mold cavity and pressure gradients introduced during filling and packing of the cavity of an injection mold. The results of these analyses may be used to determine the number and location of gates, to determine the best material for the component, and to optimize the process conditions used in the molding process.