Abstract:
A display system for a handheld computing device is disclosed. The display system includes a processing unit having a first communication port, and a visual display unit separable from the processing unit. The visual display unit further includes a visual display, and a second communication port. The display unit can be expanded from an initial or storage state to present a larger visual display size. Further, the first communication port providing communication with the second communication port.
Abstract:
A portable electronic device is disclosed. The portable electronic device includes a housing. The portable electronic device also includes computing electronics that are supported by the housing. The computing electronics include a processor, a display controller coupled to the processor, and memory coupled to the processor. The portable electronic device disclosed also includes an expandable display coupled with a display controller. The expandable display is expandable from a first size to a second size. The first size is different than the second size. A sensor is coupled to the processor. The sensor is configured to provide a signal representative of the size of the display.
Abstract:
A portable electronic device is disclosed. The portable electronic device includes a wireless transceiver, a processor coupled to the wireless transceiver, a memory coupled to the processor and a program stored in the memory and running on the processor. The program provides automatic transitioning between a wireless infrastructure communication mode to an ad-hoc communication mode. The infrastructure mode is used when a request from a mobile device is received to access a communications network. The ad-hoc mode is used when a request from the mobile device is received to access resources on the portable electronic device.
Abstract:
A method of videoconferencing is disclosed. The method of videoconferencing includes initiating, with a first handheld computer, a conferencing call with a second handheld computer. The method also includes communicating, by the first handheld computer to the second handheld computer, a combination of at least two of video data, audio data, text data, and application data. Further, the method includes accessing selectively and substantially simultaneously, by the second handheld computer a combination of at least two of video data, audio data, text data, and application data.
Abstract:
A method, system, and apparatus for configuring an electronic device for communications with a communications network is disclosed. The disclosure includes descriptions of establishing a wireless communications link between a first electronic device and a second electronic device. The first electronic device has saved thereon a set of network parameters for enabling communications between the first electronic device and the communications network. The disclosure also includes descriptions of communicating the set of network parameters to the second electronic device, retaining the set of network parameters on the second electronic device, and establishing a communications link between the second electronic device and the communications network by applying settings to the second electronic device, where the settings are based on the network parameters.
Abstract:
A handheld computer is disclosed. The handheld computer includes a housing and a display supported by the housing and configured to display images representative of computer program applications. The handheld computer also includes a memory and a microprocessor coupled to the memory and the display and configured to run applications stored in the memory. The handheld computer also includes a software application that is stored in the memory. The handheld computer further includes a launching application stored in the memory. This launching application has an image on the display representative of the software application and the launching application carries out computer program steps to modify the launching environment prior to running the software application such that the software application runs properly on the handheld computer, the software application not originally designed to run on the handheld computer.
Abstract:
A synchronization docking station or synchronization cradle for a handheld computer is disclosed. The synchronization cradle includes a data connection configured to communicate data from the docking station to the handheld computer. The synchronization cradle also includes at least one expansion card connector coupled to the docking station configured to communicate data between an expansion card and the docking station.
Abstract:
A handheld computer is disclosed including a housing, a display supported by the housing, and computing electronics supported by the housing and configured to communicate with the display. The handheld computer further includes at least two light sensors configured to provide input to the computing electronics and are configured to adjust at least one of a brightness factor of the display and a contrast factor of the display based on the input of the at least two light sensors.
Abstract:
A computing device, such as a hand-held computing device, like a personal digital assistant (PDA), includes a communications bus and a display configured to display in more than one display mode and the display coupled to the communications bus. The computing device also includes a processor coupled to the display and to the communications bus and a memory coupled to the communications bus. The memory is controlled by a display logic to manage the memory and allocate the memory according to the display mode.