Abstract:
An electronic device that provides situationally-aware alerts determines to provide an alert output (such as haptic, audio, visual, and so on) via an output device, determines a movement pattern based on one or more signals from one or more sensors indicating information relating at least to movement of the electronic device, and adjusts the alert output to account for the movement pattern. In some implementations, the electronic device may adjust the alert output by delaying the alert output. In other implementations, the electronic device may adjust the alert output by altering the alert output to be discernible despite the movement pattern based on a cadence of the movement pattern. In still other implementations, the electronic device may determine to provide the alert output in response to receiving an incoming communication and may adjust the alert output differently based on a priority associated with the incoming communication.
Abstract:
An electronic device receives a first set of one or more inputs corresponding to user interface elements displayed on the display and a first set of one or more tactile outputs, and also receives a second set of one or more inputs corresponding to one or more hardware elements and a second set of one or more tactile outputs. In response, in accordance with a determination that the first set of one or more tactile outputs and the second set of one or more tactile outputs overlap, the device outputs, with one or more tactile output generators, a modified tactile output sequence that is modified so as to emphasize the second set of one or more tactile outputs relative to the first set of one or more tactile outputs.
Abstract:
Embodiments of the present disclosure are directed to a haptic actuator or a device having a haptic actuator that is capable of producing short, sharp and crisp pulses in a short amount of time.
Abstract:
A haptic mouse is configured to provide various kinds of haptic input. In some embodiments, the mouse has first and second housing portions and an actuator operable to provide haptic output by moving the first housing portion with respect to the second housing portion so as to tangentially displace skin or alter hand posture of a user's hand. In various embodiments, the mouse has a force sensor, an actuator, and a controller operable to determine an amount of force exerted on the haptic mouse, simulate a mouse click if the amount of the force exceeds a threshold, and adjust the threshold upon receiving an instruction. In numerous embodiments, the mouse has a housing, a friction adjustment mechanism operable to alter friction between the housing and a surface by adjusting an amount of a material in contact with the surface, and a controller operable to provide a haptic output by signaling the friction adjustment mechanism.
Abstract:
One embodiment of the disclosure includes an input module. The input module includes a switch, a rotatable and translatable input member operably connected to the switch and configured to actuate the switch, and an electrical contact operably connected to the switch and in electrical communication with the input member. During operation, the electrical connection between the input member and the electrical contact is maintained during translation and rotation of the input member. The input module may be used with a variety of electronic devices and can be used by a user to provide input to those devices.
Abstract:
A method is performed at a computing system that includes a first housing with a primary display and a second housing at least partially containing a physical keyboard and a touch-sensitive secondary display. The method includes: displaying, on the primary display, a first user interface for an application executed by the computing system. The method also includes: displaying, on the touch-sensitive secondary display, a second user interface, the second user interface comprising a set of one or more affordances corresponding to the application. The method further includes: detecting a notification and, in response to detecting the notification, concurrently displaying, in the second user interface, the set of one or more affordances corresponding to the application and at least a portion of the detected notification on the touch-sensitive secondary display. In some embodiments, the detected notification is not displayed on the primary display.
Abstract:
An electronic device may use information about the location of nearby devices to make sharing with those devices more intuitive for a user. When two devices are pointed towards one another, each device may automatically present the option to share information with the other device. When a user wishes to share information with one or more devices in a group of users, an array of icons representing the nearby users may be positioned on the display according to the locations of the nearby users so that the sharing user can easily select which user he or she wishes to share with. A sharing user may broadcast a signal and nearby users may elect to receive the signal by pointing their devices towards the sharing user. A user of two devices may share information between the two devices and may use one device to manipulate the information on the other device.
Abstract:
A computer input system includes a mouse including a housing having an interior surface defining an internal volume and a sensor assembly disposed in the internal volume. A processor is electrically coupled to the sensor assembly and a memory component having electronic instructions stored thereon that, when executed by the processor, causes the processor to determine an orientation of the mouse relative to a hand based on a touch input from the hand detected by the sensor assembly. The mouse can also have a circular array of touch sensors or lights that detect hand position and provide orientation information to the user.
Abstract:
An input device can include a housing defining an internal volume and a lower portion, the lower portion defining an aperture, an input sensor disposed in the internal volume, and a haptic assembly disposed in the internal volume. The haptic assembly can include an actuator and a foot coupled to the actuator and aligned with the aperture. The actuator can be configured to selectively extend the foot through the aperture to vary a sliding resistance of the input device on a support surface.
Abstract:
An input device can include a housing defining an internal volume and a lower portion, the lower portion defining an aperture, an input sensor disposed in the internal volume, and a haptic assembly disposed in the internal volume. The haptic assembly can include an actuator and a foot coupled to the actuator and aligned with the aperture. The actuator can be configured to selectively extend the foot through the aperture to vary a sliding resistance of the input device on a support surface.