Abstract:
PROBLEM TO BE SOLVED: To provide improved techniques for storage, delivery and acquisition of digital assets stored in cloud data storage.SOLUTION: A specific client device can access not only locally stored digital assets but also remotely stored digital assets from cloud data storage. Downloads of digital assets resident in cloud data storage to client devices can be managed in view of available network performance. Digital assets of differing quality levels can be downloaded in a manner dependent on network performance. Locally stored digital assets of reduced quality can be upgraded (e.g., replaced) by higher quality versions in a manner dependent on network performance.
Abstract:
PROBLEM TO BE SOLVED: To provide a portable multimedia player which is used to wirelessly access and control a media server that is streaming digital media by way of a wireless interface to a media unit.SOLUTION: A media unit 106 is a stereo/speaker in the case of streaming digital audio, for example. A portable multimedia player 102 is synchronized to a selected digital media file among plural digital media files 109 stored on a media server 104 in such a way that digital media file metadata (song title, author, etc.) associated with the selected digital media file only is transferred from the media server 104 to be stored in the portable media player 102.
Abstract:
PROBLEM TO BE SOLVED: To provide a portable media player as a low power remote control, and a method thereof.SOLUTION: A portable multimedia player 102 is used to wirelessly access and control a media server 104 that is streaming digital media by way of a wireless interface 116 to a media unit 106, such as a stereo/speakers in the case of streaming digital audio. In one embodiment, the portable multimedia player is synchronized to selected digital media files among a plurality of digital media files 109 stored on the media server in such a way that digital media file metadata (song titles, authors, etc.) associated with the selected digital media files only is transferred from the media server and stored in the portable media player.
Abstract:
A computer system having a display generation component, one or more input devices, one or more cameras, and one or more attitude sensors receives a request to display an augmented reality view of a physical environment in a first user interface region that includes a representation of a field of view of the one or more cameras. In response to receiving the request, in accordance with a determination that calibration criteria are not met, a calibration user interface object is displayed. In response to detecting a change in attitude of the one or more cameras in the physical environment, at least one display parameter of the calibration user interface object is adjusted in accordance with the detected change. In response to detecting that the calibration criteria are met, the calibration user interface object ceases to be displayed.
Abstract:
a presente descrição refere-se, de modo geral, a interfaces de usuário. em alguns exemplos, o dispositivo eletrônico faz a transição entre interfaces de usuário para capturar fotos com base nos dados recebidos de uma primeira câmera e de uma segunda câmera. em alguns exemplos, o dispositivo eletrônico fornece recursos de zoom aprimorados que produzem resultados visuais agradáveis para um visor digital e para vídeos capturados. em alguns exemplos, o dispositivo eletrônico fornece interfaces de usuário para fazer a transição de um visor digital entre uma primeira câmera com um zoom digital aplicado para uma segunda câmera sem zoom digital. em alguns exemplos, o dispositivo eletrônico se prepara capturar mídia em vários níveis de ampliação. em alguns exemplos, o dispositivo eletrônico melhora os recursos de navegação através de uma pluralidade de valores.
Abstract:
An electronic device, with a display, a touch-sensitive surface, one or more processors, and memory, displays, on a first user interface screen, an indication of a location. The device displays, on the first user interface screen, a representation of a controllable external device at the location. The device detects a first user input corresponding to selection of the controllable external device, and in response to detecting the first user input, displays a user interface object indicating a plurality of possible states of the controllable external device. While displaying the user interface object indicating the plurality of possible states of the controllable external device, the device detects a second user input corresponding to selection of a designated state of the controllable external device. In response to detecting the second user input, the device sends instructions to set the controllable external device to the designated state.
Abstract:
An electronic device, with a display, a touch-sensitive surface, one or more processors, and memory, displays, on a first user interface screen, an indication of a location. The device displays, on the first user interface screen, a representation of a controllable external device at the location. The device detects a first user input corresponding to selection of the controllable external device, and in response to detecting the first user input, displays a user interface object indicating a plurality of possible states of the controllable external device. While displaying the user interface object indicating the plurality of possible states of the controllable external device, the device detects a second user input corresponding to selection of a designated state of the controllable external device. In response to detecting the second user input, the device sends instructions to set the controllable external device to the designated state.
Abstract:
The present disclosure generally relates to context-specific user interfaces, e.g., for use with a portable multifunction device are disclosed. The context-specific user interfaces provide, inter alia, indications of time and, optionally, a variety of additional information.
Abstract:
An electronic device, with a display, a touch-sensitive surface, one or more processors, and memory, displays, on a first user interface screen, an indication of a location. The device displays a representation of a controllable external device, wherein the controllable external device is configured to operate in a plurality of states, and wherein the controllable external device is in a first state of the plurality of states; detects a first user input corresponding to a selection of the controllable external device; and determines whether the first user input meets input criteria; In accordance with a determination that the first user input does not meet the input criteria, the device sends instructions to set the state of the controllable external device to a second state of the plurality of states; and in accordance with a determination that the first user input meets the input criteria: displays an affordance indicating the plurality of states of the controllable external device; while displaying the affordance indicating the plurality of states of the controllable external device, detects a second user input on the affordance corresponding to selection of a third state of the plurality of states; and in response to detecting the second user input, sending instructions to set the state of the controllable external device to the third state.