Abstract:
The present disclosure relates to screenreader techniques and volume control techniques for electronic devices. In some embodiments, a device displays a plurality of user interface objects in an ordered progression. A rotation of a rotary input mechanism is detected. In response to the rotation of the rotary input mechanism, if a rotary screenreader navigation mode is activated, a visual highlight is displayed and an auditory output is produced. In some embodiments, a device has a volume setting. A gesture is detected, and a volume adjustment mode is activated. The gesture ends with a contact being maintained, and the volume setting is adjusted in accordance with detected movement of the contact.
Abstract:
An electronic device includes a touch- sensitive display, a rotatable input mechanism, one or more processors, and memory. The electronic device displays content on the display, where the content includes a first edge and a second edge opposite the first edge. The electronic device further detects a first user input, and in response to detecting the first user input, displays an enlarged view of the content that does not include the first edge. The electronic device further detects a rotation of the rotatable input mechanism in a first rotation direction, and in response to detecting the rotation, translates the enlarged view of the content in a first translation direction on the display to display the first edge of the content.
Abstract:
Some embodiments of the invention provide a mobile device with multiple access modes. The device in some embodiments has at least two access modes, a primary access mode and a secondary access mode, that provide different restrictions for accessing the applications and/or data that are stored on the device. In some embodiments, the primary access mode of the device provides unfettered access to all of the device's applications and/or data that are available to a user, while its secondary access mode provides access to a limited set of applications and/or data that are stored on the device.
Abstract:
Disclosed herein are systems and methods that enable low-vision users to interact with touch- sensitive secondary displays. An example method includes: displaying, on a primary display, a first user interface for an application and displaying, on a touch-sensitive secondary display, a second user interface that includes a plurality of application-specific affordances that control functions of the application. Each respective affordance is displayed with a first display size. The method also includes: detecting, via the secondary display, an input that contacts at least one application-specific affordance. In response to detecting the input and while it remains in contact with the secondary display, the method includes: (i) continuing to display the first user interface on the primary display and (ii) displaying, on the primary display, a zoomed-in representation of the at least one application-specific affordance. The zoomed-in representation is displayed with a second display size that is larger than the first display size.
Abstract:
While an electronic device with a display and a touch-sensitive surface is in a screen reader accessibility mode, the device displays an application launcher screen including a plurality of application icons. A respective application icon corresponds to a respective application stored in the device. The device detects a sequence of one or more gestures on the touch-sensitive surface that correspond to one or more characters. A respective gesture that corresponds to a respective character is a single finger gesture that moves across the touch-sensitive surface along a respective path that corresponds to the respective character. The device determines whether the detected sequence of one or more gestures corresponds to a respective application icon of the plurality of application icons, and, in response to determining that the detected sequence of one or more gestures corresponds to the respective application icon, performs a predefined operation associated with the respective application icon.
Abstract:
The present disclosure relates to screenreader techniques and volume control techniques for electronic devices. In some embodiments, a device displays a plurality of user interface objects in an ordered progression. A rotation of a rotary input mechanism is detected. In response to the rotation of the rotary input mechanism, if a rotary screenreader navigation mode is activated, a visual highlight is displayed and an auditory output is produced. In some embodiments, a device has a volume setting. A gesture is detected, and a volume adjustment mode is activated. The gesture ends with a contact being maintained, and the volume setting is adjusted in accordance with detected movement of the contact.
Abstract:
An electronic device includes a touch-sensitive display, a rotatable input mechanism, one or more processors, and memory. The electronic device displays content on the display, where the content includes a first edge and a second edge opposite the first edge. The electronic device further detects a first user input, and in response to detecting the first user input, displays an enlarged view of the content that does not include the first edge. The electronic device further detects a rotation of the rotatable input mechanism in a first rotation direction, and in response to detecting the rotation, translates the enlarged view of the content in a first translation direction on the display to display the first edge of the content.