Abstract:
An electronic device displays a user interface of a first software application that includes one or more draggable objects and one or more control objects; and, detects a contact on a touch- sensitive surface at a first location while a focus selector is displayed over a first draggable object and a movement of the contact across the touch-sensitive surface to a second location that corresponds to a first control object. In accordance with a determination that the contact at the first location satisfies object selection criteria, the device moves the first draggable object to the first control object in accordance with the movement of the contact across the touch-sensitive surface to the first control object. In accordance with a determination that the contact at the second location satisfies first intensity criteria, the device performs a first predetermined operation that corresponds to activation of the first control object.
Abstract:
A computing device configured detect a user input. The computing device includes a processor, a touch interface in communication with the processor and configured to detect a touch signal corresponding to an object approaching or contacting a surface, and at least three force sensors in communication with the processor and configured to detect a force signal corresponding to an object exerting a force on the surface. In response to the force the at least processor determines a force centroid location and the touch signals are processed by the processor by analyzing the force centroid location.
Abstract:
An electronic device displays a user interface of a first software application that includes one or more draggable objects and one or more control objects; and, detects a contact on a touch-sensitive surface at a first location while a focus selector is displayed over a first draggable object and a movement of the contact across the touch-sensitive surface to a second location that corresponds to a first control object. In accordance with a determination that the contact at the first location satisfies object selection criteria, the device moves the first draggable object to the first control object in accordance with the movement of the contact across the touch-sensitive surface to the first control object. In accordance with a determination that the contact at the second location satisfies first intensity criteria, the device performs a first predetermined operation that corresponds to activation of the first control object.
Abstract:
An electronic device displays a user interface of a first software application that includes one or more draggable objects and one or more control objects; and, detects a contact on a touch-sensitive surface at a first location while a focus selector is displayed over a first draggable object and a movement of the contact across the touch-sensitive surface to a second location that corresponds to a first control object. In accordance with a determination that the contact at the first location satisfies object selection criteria, the device moves the first draggable object to the first control object in accordance with the movement of the contact across the touch-sensitive surface to the first control object. In accordance with a determination that the contact at the second location satisfies first intensity criteria, the device performs a first predetermined operation that corresponds to activation of the first control object.
Abstract:
An electronic device with a touch-sensitive surface, a display, and one or more sensors to detect intensity of contacts, detects a contact, determines a location and intensity of the contact on the touch-sensitive surface, and displays a response, the response being based at least in part on an input-output mapping of intensity to response at the contact location. The input-output mapping including a first input-output relationship between intensity and response over a first range of intensity values, a second input-output relationship between intensity and response over a second range of intensity values, and a transitional intensity value where the first range of intensity values meets or overlaps the second range of intensity values. At the transitional intensity value, the first input-output relationship has a first rate of change, the second input-output relationship has a second rate of change, and the first rate is substantially the same as the second rate.
Abstract:
An electronic device with a display, a touch-sensitive surface, and one or more sensors to detect intensity of contacts with the touch-sensitive surface: detects, on the touch-sensitive surface, a gesture that includes an increase of intensity of a contact above a respective intensity threshold. In response to detecting the gesture: in accordance with a determination that the gesture includes a first number of contacts, the device generates a tactile output on the touch-sensitive surface; and in accordance with a determination that the gesture includes a second number of contacts different from the first number, the device forgoes generating the tactile output on the touch-sensitive surface.
Abstract:
An electronic device with a touch-sensitive surface, a display, and one or more sensors to detect intensity of contacts, detects a contact, determines a location and intensity of the contact on the touch-sensitive surface, and displays a response, the response being based at least in part on an input-output mapping of intensity to response at the contact location. The input-output mapping including a first input-output relationship between intensity and response over a first range of intensity values, a second input-output relationship between intensity and response over a second range of intensity values, and a transitional intensity value where the first range of intensity values meets or overlaps the second range of intensity values. At the transitional intensity value, the first input-output relationship has a first rate of change, the second input-output relationship has a second rate of change, and the first rate is substantially the same as the second rate.