Abstract:
Methods and apparatus organize a plurality of haptic output variations into a cohesive semantic framework that uses various information about the alert condition and trigger, application context, and other conditions to provide a system of haptic outputs that share characteristics between related events. In some embodiments, an event class or application class provides the basis for a corresponding haptic output. In some embodiments, whether an alert-salience setting is on provides the basis for adding an increased salience haptic output to the standard haptic output for the alert. In some embodiments, consistent haptics provide for branding of the associated application class, application, and/or context.
Abstract:
Embodiments of the present disclosure provide a system and method for providing an output for an electronic device. In certain embodiments, an alert is output in accordance with a current alert mode, which are selected based on one or more environmental conditions. The environmental conditions may be detected using one or more environmental sensors. The alert can optionally include one or more of: an audio component, a haptic component and a visual component. One or more of alert components correspond to an aspect of the environmental condition detected by the one or more environmental sensors.
Abstract:
An electronic device displays a user interface for a first software application. The user interface includes multiple elements to which user interaction models from multiple user interaction models provided by an application-independent module have been assigned (including a first element to which a first user interaction model has been assigned). The multiple elements have content provided by an application-specific module for the first software application. The first user interaction model defines how the user interface responds to inputs directed to the first element. The device detects an input directed to the first element; and updates the user interface based on characteristics of the input. If the input meets tactile output criteria specified by the first user interaction model, the device generates a first tactile output corresponding to the input, and if not, the device forgoes generation of the first tactile output.
Abstract:
Embodiments are directed to a watch having a touch-sensitive display and a switch assembly positioned along or within an enclosure. The switch assembly includes a shaft extending into an opening of the enclosure and is configured to receive rotational and translational input. A switch, positioned within the enclosure, is configured to detect the translational input. An optical sensor, positioned within the enclosure, is configured to detect the rotational input. The watch also includes a processor positioned within the enclosure and configured to modify a graphical output of the display. The graphical output may be responsive to various inputs, including a touch input provided at the display, the translational input provided at the switch assembly, and the rotational input provided at the switch assembly.
Abstract:
An electronic device receives a plurality of requests to generate a plurality of tactile outputs, including two or more overlapping tactile outputs, using the one or more tactile output generators. In response, the device generates and outputs combined tactile outputs. If the plurality of tactile outputs exceeds a threshold number of tactile outputs that is permitted to be mixed together for concurrent output, the device mixes a subset of the plurality of tactile outputs together into a combined tactile output that excludes at least one of the plurality of tactile outputs to produce a combined tactile output that is output via the device's one or more tactile output generators.
Abstract:
Embodiments are directed to a watch having a rotatable and translatable input member. In one aspect, the watch includes a housing defining a watch body. The watch may include a crown positioned within an aperture of the housing and a shaft coupled with the crown at a first end of the shaft. To measure input at the crown, the watch may include a tactile dome positioned at a second end of the shaft that is configured to detect translation of the crown and a sensing element positioned within the housing that is configured to detect rotation of the crown.
Abstract:
An electronic device is disclosed. The electronic device includes a mechanical input configured to move in a first direction in response to an input at the mechanical input. A mechanical input sensor is coupled to the mechanical input and configured to sense the input at the mechanical input based on the movement of the mechanical input in the first direction. A mechanical input actuator is coupled to the mechanical input and configured to displace the mechanical input in a second direction, different from the first direction. In some examples, the second direction is orthogonal to the first direction. In some examples, the mechanical input comprises a rotary input configured to rotate in the first direction in response to the input. In some examples, the mechanical input actuator is configured to displace the mechanical input in the second direction while the mechanical input is moving in the first direction.
Abstract:
An electronic device with a display, a touch-sensitive surface, and one or more sensors to detect intensity of contacts: displays an application launching user interface; detects a first touch input that includes detecting a first contact at a location on the touch-sensitive surface that corresponds to a first application icon for launching a first application that is associated with one or more corresponding quick actions; in response to detecting the first touch input, in accordance with a determination that the first touch input meets one or more application-launch criteria, launches the first application; and, in accordance with a determination that the first touch input meets one or more quick-action-display criteria, which include a criterion that is met when the characteristic intensity of the first contact increases above a respective intensity threshold, concurrently displays one or more quick action objects associated with the first application along with the first application icon.
Abstract:
Methods and apparatus organize a plurality of haptic output variations into a cohesive semantic framework that uses various information about the alert condition and trigger, application context, and other conditions to provide a system of haptic outputs that share characteristics between related events. In some embodiments, an event class or application class provides the basis for a corresponding haptic output. In some embodiments, whether an alert-salience setting is on provides the basis for adding an increased salience haptic output to the standard haptic output for the alert. In some embodiments, consistent haptics provide for branding of the associated application class, application, and/or context.
Abstract:
Methods and apparatus organize a plurality of haptic output variations into a cohesive semantic framework that uses various information about the alert condition and trigger, application context, and other conditions to provide a system of haptic outputs that share characteristics between related events. In some embodiments, an event class or application class provides the basis for a corresponding haptic output. In some embodiments, whether an alert-salience setting is on provides the basis for adding an increased salience haptic output to the standard haptic output for the alert. In some embodiments, consistent haptics provide for branding of the associated application class, application, and/or context.