Abstract:
The present invention provides a method and system for disabling a camera feature of a mobile device. The system provides a software module that engages the camera feature of the mobile device to deny other applications from utilizing the same, thereby disabling the camera feature. The camera feature disablement occurred when a first control signal is received. The camera feature is enabled/restored when a second control signal is received to trigger the software module to disengage the camera feature.
Abstract:
This invention relates to a system for performing a data transfer function by a mobile device. The system performs in the following manner. The system receives a short message service message from an administrator computer via a wireless telephonic network. The contents of the short message service message are read and determined whether the contents include a command code for a data transfer function. If the contents include a command code, the system will attempt to establish a wireless connection to a second data network. Once the wireless connection is established, the system will perform the data transfer function.
Abstract:
One embodiment of the invention is a multi layer GI POF where each layer comprises essentially one polymer and one or more dopants. Each layer may comprise the same or different polymers although it is preferred that each layer comprise the same homopolymer. Useful dopants include cyclic or acyclic organic compounds of less than about 20 carbons, alkyl metal oxides or rare earth alkyl oxides. Another embodiment of the invention is a method of making the GI POF according to the invention.
Abstract:
A crosshead die (16) for a plastic optical fiber fabrication system (10) is provided. The crosshead die (16) includes a body (28), an insert (32), mounting flanges (58) on the upstream (25) and downstream end (26) for securing the crosshead die (16) to adjacent equipment or another crosshead dies (16), an axial bore (14) for receiving a mixed molten material that makes up the core, and a radial bore (36) for receiving a mixed molten material that makes up the outer layering material to be co-extruded over the core. The die insert (32) includes a material distribution channel system (70) that provides substantially the same linear distance for the mixed molten material to travel prior to the co-extrusion. If multiple die inserts are utilized, the crosshead die is able to co-extrude multiple layers over the core. If the crosshead dies are serially assembled, additional concentric layers of material can be co-extruded atop the layered plastic optical fiber extruded from the upstream crosshead die.
Abstract:
The present invention provides a method and system for disabling applications and features of a mobile device. The system provides a software agent enables a restriction state that forcing the applications and features in a restricted working state. The software agent operable to replace working status values of the applications and features with a restriction status values and maintain the restrictions status values. The restriction state is enabled when a first command signal is received. The restriction state is disabled when a second command signal is received by the software agent.
Abstract:
A crosshead die (16) for a plastic optical fiber fabrication system (10) is provided. The crosshead die (16) includes a body (28), an insert (32), mounting flanges (58) on the upstream (25) and downstream end (26) for securing the crosshead die (16) to adjacent equipment or another crosshead dies (16), an axial bore (14) for receiving a mixed molten material that makes up the core, and a radial bore (36) for receiving a mixed molten material that makes up the outer layering material to be co-extruded over the core. The die insert (32) includes a material distribution channel system (70) that provides substantially the same linear distance for the mixed molten material to travel prior to the co-extrusion. If multiple die inserts are utilized, the crosshead die is able to co-extrude multiple layers over the core. If the crosshead dies are serially assembled, additional concentric layers of material can be co-extruded atop the layered plastic optical fiber extruded from the upstream crosshead die.