Abstract:
The present disclosure generally relates to interacting with an electronic device without touching a display screen or other physical input mechanisms. In some examples, the electronic device performs an operation in response to a positioning of a user's hand and/or an orientation of the electronic device.
Abstract:
An electronic device has multiple cameras and displays a digital viewfinder user interface for previewing visual information provided by the cameras. The multiple cameras may have different properties such as focal lengths. When a single digital viewfinder is provided, the user interface allows zooming over a zoom range that includes the respective zoom ranges of both cameras. The zoom setting to determine which camera provides visual information to the viewfinder and which camera is used to capture visual information. The user interface also allows the simultaneous display of content provided by different cameras at the same time. When two digital viewfinders are provided, the user interface allows zooming, freezing, and panning of one digital viewfinder independently of the other. The device allows storing of a composite images and/or videos using both digital viewfinders and corresponding cameras.
Abstract:
In some embodiments, a multifunction device with a display and a touch-sensitive surface creates a plurality of workspace views. A respective workspace view is configured to contain content assigned by a user to the respective workspace view. The content includes application windows. The device displays a first workspace view in the plurality of workspace views on the display without displaying other workspace views in the plurality of workspace views and detects a first multifinger gesture on the touch-sensitive surface. In response to detecting the first multifinger gesture on the touch-sensitive surface, the device replaces display of the first workspace view with concurrent display of the plurality of workspace views.
Abstract:
The present disclosure generally relates to interacting with an electronic device without touching a display screen or other physical input mechanisms. In some examples, the electronic device performs an operation in response to a positioning of a user's hand and/or an orientation of the electronic device.
Abstract:
The present disclosure generally relates to displaying and editing an image with depth information. In response to an input, an object in the image having a one or more elements in a first depth range is identified. The identified object is then isolated from other elements in the image and displayed separately from the other elements. The isolated object may then be utilized in different applications.
Abstract:
In some embodiments, an electronic device optionally identifies a person's face, and optionally performs an action in accordance with the identification. In some embodiments, an electronic device optionally determines a gaze location in a user interface, and optionally performs an action in accordance with the determination. In some embodiments, an electronic device optionally designates a user as being present at a sound-playback device in accordance with a determination that sound-detection criteria and verification criteria have been satisfied. In some embodiments, an electronic device optionally determines whether a person is further or closer than a threshold distance from a display device, and optionally provides a first or second user interface for display on the display device in accordance with the determination. In some embodiments, an electronic device optionally modifies the playing of media content in accordance with a determination that one or more presence criteria are not satisfied.
Abstract:
The present disclosure generally relates to using avatars and image data for enhanced user interactions. In some examples, user status dependent avatars are generated and displayed with a message associated with the user status. In some examples, a device captures image information to scan an object to create a 3D model of the object. The device determines an algorithm for the 3D model based on the capture image information and provides visual feedback on additional image data that is needed for the algorithm to build the 3D model. In some examples, an application's operation on a device is restricted based on whether an authorized user is identified as using the device based on captured image data. In some examples, depth data is used to combine two sets of image data.
Abstract:
An electronic device has multiple cameras and displays a digital viewfinder user interface for previewing visual information provided by the cameras. The multiple cameras may have different properties such as focal lengths. When a single digital viewfinder is provided, the user interface allows zooming over a zoom range that includes the respective zoom ranges of both cameras. The zoom setting to determine which camera provides visual information to the viewfinder and which camera is used to capture visual information. The user interface also allows the simultaneous display of content provided by different cameras at the same time. When two digital viewfinders are provided, the user interface allows zooming, freezing, and panning of one digital viewfinder independently of the other. The device allows storing of a composite images and/or videos using both digital viewfinders and corresponding cameras.
Abstract:
In some embodiments, an electronic device with a touch screen display: detects a single finger contact on the touch screen display; creates a touch area that corresponds to the single finger contact; determines a representative point within the touch area; determines if the touch area overlaps an object displayed on the touch screen display, which includes determining if one or more portions of the touch area other than the representative point overlap the object; connects the object with the touch area if the touch area overlaps the object, where connecting maintains the overlap of the object and the touch area; after connecting the object with the touch area, detects movement of the single finger contact; determines movement of the touch area that corresponds to movement of the single finger contact; and moves the object connected with the touch area in accordance with the determined movement of the touch area.
Abstract:
A capacitive sensing apparatus is disclosed. In some examples, the capacitive sensing apparatus includes a sensor control system configured to: during a first scan of the sensor array: transmit a first alternating current (AC) signal concurrently with a second alternating current (AC) signal to the sensor array, transmit the first AC signal to the first electrode of the sensor array, measure a self capacitance at the first input location, and transmit the second AC signal to the second electrode of the sensor array without measuring a self capacitance at the second input location, and during a second scan of the sensor array: transmit the first AC signal concurrently with the second AC signal to the sensor array, transmit the first AC signal to the first electrode of the sensor array without measuring the self capacitance at the first input location, and measure the self capacitance at the second input location.