Abstract:
A multi-display device is adapted to be dockable or otherwise associatable with an additional device. In accordance with one exemplary embodiment, the multi-display device is dockable with a smartpad. The exemplary smartpad can include a screen, a touch sensitive display, a configurable area, a gesture capture region(s) and a camera. The smartpad can also include a port adapted to receive the device. The exemplary smartpad is able to cooperate with the device such that information displayable on the device is also displayable on the smartpad. Furthermore, any one or more of the functions on the device are extendable to the smartpad, with the smartpad capable of acting as an input/output interface or extension of the smartpad. Therefore, for example, information from one or more of the displays on the multi-screen device is displayable on the smartpad.
Abstract:
Embodiments are described for handling the launching of applications in a multi-screen device. In embodiments, a first touch sensitive display of a first screen receives input to launch an application. In response, the application is launched. A determination is made as to whether the first touch sensitive display already has windows in its stack. If there are no windows in the stack of the first touch sensitive display, a new window of the first application is displayed on the first touch sensitive display. If there are windows in the stack, a determination is made whether a second display has windows in its stack. If not, the new window is displayed on the second display. If the second display also has windows in its stack, the new window will be displayed on the first touch sensitive display.
Abstract:
A handheld computing device can include a substantially rectangular first screen having a front surface, a rear surface, and a beveled edge extending between the front and rear surfaces of the first screen and a substantially rectangular second screen rotatably connected to the first screen so that the device is foldable between an open position and a closed position, the second screen having a front surface, a rear surface, and a beveled edge extending between the front and rear surfaces of the second screen. When the device is in the closed position, the first and second screens are positioned back-to-back and the beveled edges of the first and second screens angle inwardly toward the other respective screen to provide an angled surface configured to facilitate opening the device.
Abstract:
A computer system including a computer display; a computer processor, where the computer processor is running at least one computer operating system, where the at least one computer operating system communicably interfaces with a device operating system, where the device operating system resides on a device and the device includes a device processor and two or more device displays; and where the computer display mimics the two or more device displays.
Abstract:
Methods and devices for selectively presenting a user interface for a phone application are provided. More particularly, a change in the display mode of a multiple screen device can be determined. More particularly, a presentation of a user interface for a dialer of a phone application can be retained after receiving a flick in an off-screen gesture area of the device. However, a second, child window is provided in a second screen in response to receiving the flick.
Abstract:
A communication device comprising a microprocessor readable computer readable medium is provided that includes microprocessor executable instructions to alter displayed information based on screen orientation.
Abstract:
Systems and methods are provides for opening a full screen window in a window stack for a multi-screen device. The window stack can change based on the opening of a window. The system can receive a gesture indicating an application with a new window is to be executed or a new window is to be opened in the device. Upon receiving the gesture, the system determines that the new window is to occupy substantially all of a composite display that spans substantially all of the two screens of the device. Then, the system can determine that the full screen window is to be associated with the composite display and create a logic data structure associated with the opened window to describe the position of the opened window in the window stack.
Abstract:
Methods and devices for selectively presenting a user interface for a phone application are provided. More particularly, a change in the display mode of a multiple screen device can be determined. More particularly, a presentation of a user interface for an in-process call of a phone application can be retained after receiving a flick in an off-screen gesture area of the device. However, the user interface moves from a first screen to a second screen (or vice versa) in response to receiving the flick. The user interface provides detail information about a phone call that is currently in-process.
Abstract:
A docking station for docking portable electronic devices is disclosed. The docking station is configured to mechanically accept and operatively interface with the portable electronic device for non-contact charging and data transfer. The docking station can provide security features for providing and/or restricting access to computational facilities such as printers, databases, installed programs, etc. Such security features can include installing applications on such portable devices that limit access.