Abstract:
The present disclosure relates to user interfaces for manipulating user interface objects. A device, including a display and a rotatable input mechanism, is described in relation to manipulating user interface objects. In some examples, the manipulation of the object is a scroll, zoom, or rotate of the object. In other examples, objects are selected in accordance with simulated magnetic properties.
Abstract:
The present disclosure relates to varying threshold and feedback based on activity. The present disclosure includes receiving an input having an input intensity. Further, in response to receiving the input and in accordance with a determination that an electronic device is in a second activity state different from a first activity state, determining whether the input intensity of the input meets or exceeds a second characteristic intensity threshold different from a first characteristic intensity threshold. Additionally, in accordance with a determination that the input intensity of the input meets or exceeds the second characteristic intensity threshold, performing the application process and/or providing a haptic feedback of a second feedback level different from a first feedback level.
Abstract:
In some embodiments, a device displays functionality information in response to receiving an indication of a first input for which a contact meets functionality display criteria. In some embodiments, a device generates a user interface that includes a navigation bar including images from different positions in a respective content item, and a representation of an adjacent content item. In some embodiments, a device moves a selection-indicator in a user interface by a predefined amount in response to receiving an indication of a first input that meets unitary movement criteria. In some embodiments, a device interprets movement of a contact of an input based at least in part on a grip of a user. In some embodiments, a device displays a plurality of character selection options when a text entry field is not tolerant of character ambiguity and a first input corresponds to a plurality of candidate characters.
Abstract:
The present disclosure relates to manipulating a user interface on a wearable electronic device using a mechanical crown. In some examples, the user interface can be scrolled or scaled in response to a rotation of the crown. The direction of the scrolling or scaling and the amount of scrolling or scaling can depend on the direction and amount of rotation of the crown, respectively. In some examples, the amount of scrolling or scaling can be proportional to the change in rotation angle of the crown. In other examples, a speed of scrolling or a speed of scaling can depend on a speed of angular rotation of the crown. In these examples, a greater speed of rotation can cause a greater speed of scrolling or scaling to be performed on the displayed view.
Abstract:
A device with a display and a touch-sensitive keyboard with one or more character keys: displays a text entry area; detects a first input on the touch-sensitive keyboard; in accordance with a determination that the first input corresponds to activation of a character key, enters a first character corresponding to the character key into the text entry area; in accordance with a determination that the first input corresponds to a character drawn on the touch-sensitive keyboard: determines one or more candidate characters for the drawn character, and displays a candidate character selection interface that includes at least one of the candidate characters; while displaying the candidate character selection interface, detects a second input that selects a respective candidate character within the candidate character selection interface; and in response to detecting the second input, enters the selected respective candidate character into the text entry area.
Abstract:
Systems and methods for multitasking using touch-sensitive devices are disclosed herein. In one aspect, a method includes: displaying, on a touch-sensitive display ("TSD") of a device, first and second applications such that the first and second applications occupy substantially all of the TSD and are separated at a border between the first and second applications. The method further includes: detecting a swipe gesture at the second application, the swipe gesture moving in a direction that is substantially parallel to the border. In response to detecting the swipe gesture, the method includes: determining whether the swipe gesture satisfies a threshold. Upon determining that the swipe gesture satisfies the threshold, the method includes: replacing the second application with an application selector that includes a plurality of selectable affordances corresponding to applications available on the device, the application selector being displayed in an area of the TSD previously occupied by the second application.
Abstract:
The present disclosure relates to user interfaces for manipulating user interface objects. A device, including a display and a rotatable input mechanism, is described in relation to manipulating user interface objects. In some examples, the manipulation of the object is a scroll, zoom, or rotate of the object. In other examples, objects are selected in accordance with simulated magnetic properties.
Abstract:
User interface navigation on a personal electronics device based on movements of a crown is disclosed. The device can select an appropriate level of information arranged along a z-axis for display based on crown movement. The navigation can be based on an angular velocity of the crown.
Abstract:
An electronic device with a display and a touch-sensitive surface displays a user interface with a plurality of content units, where the content units are arranged along a first axis in the user interface, and a respective content unit is associated with corresponding metadata. The device detects a contact on the touch-sensitive surface and a first movement of the contact. In response to detecting the first movement of the contact, the device moves a first set of one or more of the content units perpendicular to the first axis in the user interface in accordance with the first movement, and for one or more respective content units in the first set of content units, the device displays metadata for the respective content unit adjacent to the respective content unit that was not displayed immediately prior to detecting the first movement of the contact.
Abstract:
A tablet device includes a display configured to present visual content, a sensor array configured to detect a status of a foldable flap in relation to the display, and a processor configured to operate the tablet device in accordance with the determined status of the foldable flap in relation to the display. In one embodiment, the processor receives a setting value and uses the setting value to execute an application in accordance with the determined relationship of the flap and the display.