Abstract:
A wearable device can establish a verified session with a host device. For example, if a user wearing the wearable device unlocks the host device (e.g., by entering a credential), the devices can create a verified session, which can persist across lock and unlock events at the host device. For the duration of the verified session, a host device can request session confirmation from the wearable device at any time to confirm that the verified session is still in progress. While the session is in progress, the host can make features available such as bypassing re-entry of a credential during unlock operations.
Abstract:
A wearable device can establish a verified session with a host device. For example, if a user wearing the wearable device unlocks the host device (e.g., by entering a credential), the devices can create a verified session, which can persist across lock and unlock events at the host device. For the duration of the verified session, a host device can request session confirmation from the wearable device at any time to confirm that the verified session is still in progress. While the session is in progress, the host can make features available such as bypassing re-entry of a credential during unlock operations.
Abstract:
Systems, methods, and devices are provided to sense unauthorized use of a vehicle. For example, an electronic device may include sensors to detect an operational parameter of a bicycle and communications circuitry to couple the electronic device to a second electronic device associated with user of the bicycle according to authorization information. Control circuitry may determine when the bicycle is in operation based at least in part on the detected operational parameter, identify whether the second electronic device is substantially within a communicative proximity of the electronic device when the bicycle is in operation, and generate an alert indicating unauthorized operation when the second electronic device is not identified as substantially within the communicative proximity of the electronic device.
Abstract:
A host device can establish a verified session with a wearable device. The host device can determine whether the verified session is in progress. In accordance with a determination that the verified session is in progress, the host device can provide a user interface to request confirmation that the identifier is to be provided to the wearable device. The host device can receive an input at the user interface and, in accordance with a determination that the input indicates a confirmation that the identifier is to be provided to the wearable device, the host can identify a user identifier to provide to the wearable device, and transmit the user identifier to the wearable device.
Abstract:
A host device can establish a verified session with a wearable device. The host device can determine whether the verified session is in progress. In accordance with a determination that the verified session is in progress, the host device can provide a user interface to request confirmation that the identifier is to be provided to the wearable device. The host device can receive an input at the user interface and, in accordance with a determination that the input indicates a confirmation that the identifier is to be provided to the wearable device, the host can identify a user identifier to provide to the wearable device, and transmit the user identifier to the wearable device.
Abstract:
A wearable device can establish a verified session with a host device. For example, if a user wearing the wearable device unlocks the host device (e.g., by entering a credential), the devices can create a verified session, which can persist across lock and unlock events at the host device. For the duration of the verified session, a host device can request session confirmation from the wearable device at any time to confirm that the verified session is still in progress. While the session is in progress, the host can make features available such as bypassing re-entry of a credential during unlock operations.
Abstract:
This invention is directed to providing voice feedback to a user of an electronic device. Because each electronic device display may include several speakable elements (i.e., elements for which voice feedback is provided), the elements may be ordered. To do so, the electronic device may associate a tier with the display of each speakable element. The electronic device may then provide voice feedback for displayed speakable elements based on the associated tier. To reduce the complexity in designing the voice feedback system, the voice feedback features may be integrated in a Model View Controller (MVC) design used for displaying content to a user. For example, the model and view of the MVC design may include additional variables associated with speakable properties. The electronic device may receive audio files for each speakable element using any suitable approach, including for example by providing a host device with a list of speakable elements and directing a text to speech engine of the host device to generate and provide the audio files.
Abstract:
A host device can establish a verified session with a wearable device. The host device can determine whether the verified session is in progress. In accordance with a determination that the verified session is in progress, the host device can provide a user interface to request confirmation that the identifier is to be provided to the wearable device. The host device can receive an input at the user interface and, in accordance with a determination that the input indicates a confirmation that the identifier is to be provided to the wearable device, the host can identify a user identifier to provide to the wearable device, and transmit the user identifier to the wearable device.
Abstract:
A host device can establish a verified session with a wearable device. The host device can determine whether the verified session is in progress. In accordance with a determination that the verified session is in progress, the host device can provide a user interface to request confirmation that the identifier is to be provided to the wearable device. The host device can receive an input at the user interface and, in accordance with a determination that the input indicates a confirmation that the identifier is to be provided to the wearable device, the host can identify a user identifier to provide to the wearable device, and transmit the user identifier to the wearable device.
Abstract:
A wearable device can establish a verified session with a host device. For example, if a user wearing the wearable device unlocks the host device (e.g., by entering a credential), the devices can create a verified session, which can persist across lock and unlock events at the host device. For the duration of the verified session, a host device can request session confirmation from the wearable device at any time to confirm that the verified session is still in progress. While the session is in progress, the host can make features available such as bypassing re-entry of a credential during unlock operations.