Abstract:
Methods and devices for selectively presenting a user interface on a second screen. More particularly, the method includes a change in the display mode of a multiple screen device from a first screen to a second screen while the device is closed. The change in the display mode may be made in response to a request from an application. The application may be executed and have the user interface window associated with the application moved to a second screen. The change to the second screen can be requested based on input into the application or automatically generated based on the type of application. In response to the request from the application, the device can render the user interface in the second screen.
Abstract:
A multi-display device can interface with two or more different types of docking stations. The device can determine the type of dock and change the pin outs for a connector to interface with that dock. Once docked, the device can determine a charge status for the device and the dock to present the status to the user. Further, the dock can enter one of several modes, including a call receipt mode and an entertainment mode. The modes allow for expanded functionality for the device while docked. Two particular docks, the laptop dock and the smart dock, provide special functionality with the device.
Abstract:
A multi-display device is adapted to turn on and off certain device functionality based on one or more of device state and triggers. These triggers include a transition trigger, an open trigger and a closed trigger. Furthermore, and based on one or more of these triggers and device state, the device can provide feedback to a user, such as visual feedback, audio feedback and vibration feedback to assist a user with determining when the device is changing state. The operation of the primary screen, secondary screen, system and feedback options are also described relative to the beginning and endpoint of the device transition. Furthermore, the trigger corresponding to a transitional trigger where primary and secondary screens have a certain angle orientation and the trigger corresponding to a trigger point where the primary and secondary screens have a second angle orientation relative to one another are described.
Abstract:
Methods and devices for selectively presenting a user interface on a second screen. More particularly, the method includes a change in the display mode of a multiple screen device from a first screen to a second screen while the device is closed. The change in the display mode may be made in response to a request from an application. The application may be executed and have the user interface window associated with the application moved to a second screen. The change to the second screen can be requested based on input into the application or automatically generated based on the type of application. In response to the request from the application, the device can render the user interface in the second screen.
Abstract:
Methods and devices for selectively presenting a user interface in a dual screen device. More particularly, the method includes providing a gallery for the dual screen device. The gallery can present one or more images in a user interface. The gallery user interface can adapt to changes in the device configuration. Further, the gallery can display images or videos in the various configurations.
Abstract:
A multi-display device can interface with two or more different types of docking stations. The device can determine the type of dock and change the pin outs for a connector to interface with that dock. Once docked, the device can determine a charge status for the device and the dock to present the status to the user. Further, the dock can enter one of several modes, including a call receipt mode and an entertainment mode. The modes allow for expanded functionality for the device while docked. Two particular docks, the laptop dock and the smart dock, provide special functionality with the device.
Abstract:
Methods and devices for selectively presenting a user interface during an image capture. More particularly, the method includes a change in the display mode of a multiple screen device for a first screen and a second screen when capturing the image. The change in the display mode may be made in response to one or more actions conducted by a user. The image capture function includes different modes that display different information on the first and/or second screens.
Abstract:
A communication device comprising a microprocessor readable computer readable medium is provided that includes microprocessor executable instructions to provide graphical output, in a first mode, simultaneously on multiple screens and, in a second mode, simultaneously as multiple displays on a common screen.
Abstract:
Methods and devices for selectively presenting a user interface in a dual screen device. More particularly, the method includes a change in the display mode of a multiple screen device while the device is in an image capture mode. The device may present different information on the two screens based on several factors including the mode of the image capture feature, the orientation of the device, and/or the state of the device.
Abstract:
Methods and devices for controlling the displayed output associated with applications in connection with a multiple screen device are provided. More particularly, an application presented by the device in a dual portrait orientation can utilize the first screen to display control information, and can utilize the second screen to display content information. An application presented by the device in a dual landscape orientation can utilize both the first screen and the second screen to display content information.