Abstract:
In accordance with the present disclosure, a method for operating a virtual application comprises loading an image of the virtual application into a memory of an information handling system from a deployment package is disclosed. A shared library that is required for executing the virtual application is loaded. An address for a memory location corresponding to an entry point for a function in the shared library is saved to an address table for the virtual application. The virtualization data from the deployment package is used to determine whether the address for the memory location corresponding to the entry point for a function in the shared library should be adjusted.
Abstract:
A system virtualizes applications on a managed endpoint using containers. A managed endpoint receives a virtualized container from an IT automation appliance. The virtualized container includes an application and a virtualization module. The virtualization module includes computer program instructions for virtualizing the application. An operating system API call made by the application during execution is intercepted, and a portion of the computer program instructions are executed based on the operating system API call. The computer program instructions modify the behavior of the application to effect the file and data virtualization of the application. A virtualized container can be deployed and updated from an IT automation appliance along with an agent to support the deployment and updating of the virtualized container.
Abstract:
A control system including: a device operable to enable a user to provide directional control of a virtual object by positioning a representation of the device within a virtual space and operable to provide force feedback to the user; a display apparatus for presenting to a user the virtual space including the virtual object and the representation of the device; and a controller, responsive to the relative positions of the virtual object and the representation of the device in the virtual space, for controlling motion of the virtual object through the virtual space and the force feedback provided to the user.
Abstract:
A network communication card is provided for facilitating ultra high frequency (UHF) radio communication between a terminal and a base station, the network communication card being in communication with an antenna and comprising a double-sided multilayer printed circuit board (PCB). The PCB comprises a digital interface, a receiver and a transmitter. The digital interface provides communication between the PCB and the terminal. The receiver receives incoming radio signals from the base station and processes the received signals for communication to the terminal via the digital interface. The transmitter transmits outgoing radio signals from the terminal via the digital interface to the base station and includes the following components. A digital synthesizer provides a highly accurate modulated carrier signal. An upconversion circuit increases the frequency of the carrier signal. A filter filters spurious content from the carrier signal. A phase locked loop (PLL) comprising a synthesizer and a voltage controlled oscillator (VCO) generates a transmission signal from the filtered carrier signal. A transmission circuit transmits the transmission signal via the antenna.
Abstract:
A shipping container for integrated circuit wafers has a lower section and an upper section releasably connected to the lower section, and a seal is received on a shoulder of the lower section. The seal is in contact with a lower edge portion of the upper section and extends in a flat reference plane when the sections are assembled together in order to help protect the wafers from moisture, airborne particulates and/or other contaminates. The shipping container also preferably includes at least one info pad plug that comprises a body and an adhesive for connecting the body to the lower section of the container.
Abstract:
A system to smooth and radius a microhole in a workplace to calibrate the mircohole which comprises means for preconditioning a microhole with a liquid abrasive slurry at a first station, means for flowing a calibration fluid through the preconditioned microhole and means for flowing a slurry through the microhole for a predetermined time based on the flow rate of the calibration fluid.
Abstract:
A method for providing a compatible interface between a motor control circuit and a system controller is described. The method includes determining which signals in the interface have incompatible voltage requirements, and inserting a series resistance in an interface extending between the motor control circuit and the system controller for each signal determined to have incompatible voltage requirements therebetween.
Abstract:
Embodiments of the present invention provide an apparatus and a method for chamber particle source identification. The chamber particle source identification method and apparatus can greatly shorten the time it takes to identify chamber particle source(s). In one embodiment, a chamber particle monitor assembly for a processing chamber is provided. The chamber particle monitor assembly includes at least one laser light source, which can scan laser light in a chamber process volume within the processing chamber. The chamber particle monitor assembly also includes a plurality of laser light collectors, which can collect laser light emitted from the at least one laser light source continuously to monitor particle performance within the processing chamber. The plurality of laser light collectors are placed in the processing chamber such that none of the plurality of laser light collectors share a common axis. The chamber particle monitor assembly further includes an analyzer that analyzes signals representing the laser light collected by the plurality of laser light collectors to provide chamber particle information. The plurality of laser light collectors enables construction of three-dimensional (3-D) images of particle distribution within the processing volume.
Abstract:
An electric motor includes a motor enclosure, a motor-bearing assembly, a motor control unit, a mid shield, and a bearing. The motor-bearing assembly is configured for placement within the motor enclosure and has a shaft extending therefrom. A portion of the motor control unit is configured for placement within the motor enclosure. The mid shield is configured for placement within the motor enclosure between the motor control unit and the motor-bearing assembly and further configured to engage the shaft. The bearing is configured to seat within the mid shield and provide at least a portion of the engagement between the shaft and the mid shield.