Abstract:
An apparatus, system, and method are disclosed for on-demand control of a grid system resource on a grid computing system. An on-demand management apparatus includes a user input module, a parameter module, and a reservation module. The user input module is configured to allow a user to input a parameter control request. The parameter control request corresponds to a performance parameter of the grid computing system. The global parameter module is configured to dynamically change the performance parameter, which corresponds to a performance resource, according to the parameter control request. The global reservation module is configured to reserve the performance resource for a grid computing operation. The on-demand management apparatus is also configured to terminate a performance resource reservation when a client reclaims the performance resources from the grid computing system.
Abstract:
Se describe un aparato, sistema y metodo para el control a demanda de un recurso de sistema de rejilla en un sistema de computo de rejilla. Un aparato de administracion a demanda incluye un modulo de entrada de usuario, un modulo de parametros, y un modulo de reservacion. El modulo de entrada de usuario esta configurado para permitir a un usuario a alimentar una peticion de control de parametro. La peticion de control de parametro corresponde a un parametro de funcionamiento del sistema de computo de rejilla. El modulo de parametros global esta configurado para cambiar dinamicamente el parametro de funcionamiento, el cual corresponde a un recurso de funcionamiento, de acuerdo a la peticion de control de parametro. El modulo de reservacion global esta configurado para reservar el recurso de funcionamiento para una operacion de computo de rejilla. El aparato de administracion a demanda tambien esta configurado para determinar una reservacion de recurso de funcionamiento cuando un cliente reclame los recursos de funcionamiento del sistema de computo de rejilla.
Abstract:
An apparatus, system, and method are disclosed for on-demand control of a grid system resource on a grid computing system. An on-demand management apparatus includes a user input module, a parameter module, and a reservation module. The user input module is configured to allow a user to input a parameter control request. The parameter control request corresponds to a performance parameter of the grid computing system. The global parameter module is configured to dynamically change the performance parameter, which corresponds to a performance resource, according to the parameter control request. The global reservation module is configured to reserve the performance resource for a grid computing operation. The on-demand management apparatus is also configured to terminate a performance resource reservation when a client reclaims the performance resources from the grid computing system.
Abstract:
An apparatus, system, and method are disclosed for backing up data across a plurality of clients on a grid computing system. A sequence management apparatus includes a client request module, a sequence module, and packet storage module. The sequence module is configured to receive data to be backed up from a source client. The sequence module is configured to generate a non-transparent sequence key that identifies one or more target clients on the grid computing system. The packet storage module is configured to store a backup copy of the data from the source client on the plurality of target clients according to the non-transparent sequence key. The non-transparent sequence key may be generated by and known only to the sequence management apparatus in order to maintain a minimum security level for the data backed up on the plurality of target clients.
Abstract:
An apparatus, system, and method are disclosed for backing up data across a plurality of clients on a grid computing system. A sequence management apparatus includes a client request module, a sequence module, and packet storage module. The sequence module is configured to receive data to be backed up from a source client. The sequence module is configured to generate a non-transparent sequence key that identifies one or more target clients on the grid computing system. The packet storage module is configured to store a backup copy of the data from the source client on the plurality of target clients according to the non-transparent sequence key. The non-transparent sequence key may be generated by and known only to the sequence management apparatus in order to maintain a minimum security level for the data backed up on the plurality of target clients.
Abstract:
An apparatus, system, and method are disclosed for on-demand control of a grid system resource on a grid computing system. An on-demand management apparatus includes a user input module, a parameter module, and a reservation module. The user input module is configured to allow a user to input a parameter control request. The parameter control request corresponds to a performance parameter of the grid computing system. The global parameter module is configured to dynamically change the performance parameter, which corresponds to a performance resource, according to the parameter control request. The global reservation module is configured to reserve the performance resource for a grid computing operation. The on-demand management apparatus is also configured to terminate a performance resource reservation when a client reclaims the performance resources from the grid computing system.
Abstract:
An apparatus, system, and method are disclosed for on-demand control of a grid system resource on a grid computing system. An on-demand management apparatus includes a user input module, a parameter module, and a reservation module. The user input module is configured to allow a user to input a parameter control request. The parameter control request corresponds to a performance parameter of the grid computing system. The global parameter module is configured to dynamically change the performance parameter, which corresponds to a performance resource, according to the parameter control request. The global reservation module is configured to reserve the performance resource for a grid computing operation. The on-demand management apparatus is also configured to terminate a performance resource reservation when a client reclaims the performance resources from the grid computing system.
Abstract:
A dielectrically isolated region (16) of a mono-crystalline substrate (10), which has a orientation, has a drain region of a field effect transistor (FET) in a surface having a (100) crystal orientation with the drain region being of opposite conductivity to the conductivity of the substrate (10). A gate channel extends into the substrate (10) from the drain region and is surrounded at its upper end by the drain region. An enlarged recess (37) extends into the substrate (10) beneath the gate channel and has its walls (38) of opposite conductivity to the conductivity of the substrate (10) to form a source region and a plate of a capacitor when the FET is part of a storage cell. The source region has its upper end surrounded by the gate channel.
Abstract:
A method of forming a refractory metal silicide pattern on a substrate by forming a blanket layer (12) of Si0 2 on the substrate (10), depositing a blanket layer (14) of polycrystalline Si over the Si0 2 layer, defining a pattern in the blanket Si layer (14) thereby exposing selected areas of the SiO 2 layer (12), depositing a blanket layer (16) of refractory metal silicide on the substrate over the SiO 2 and Si layers, heating the substrate in an oxidizing environment to a temperature sufficient to oxidize the metal silicide layer (16) over the Si to form an upper layer (18) of SiO 2 and to convert the metal silicide layer overlying the SiO 2 layer to a metal rich Si0 2 layer (20), and exposing the oxidized surface to an etchant that selectively etches away the metal rich SiO 2 layer (20).