Abstract:
An electronic device includes a touchscreen display and at least one processor. The at least one processor is configured to present a dynamic user interface on the touchscreen display. The dynamic user interface includes a first input region forming a dial. The first input region is configured to receive user input related to a first viewing direction associated with a 360° video. The at least one processor is also configured to detect the user input. In addition, the at least one processor is configured to transmit the user input to a display device to control presentation of the 360° video on the display device. The dynamic user interface may further include a second input region, where the second input region is configured to receive second user input related to a second viewing direction associated with the 360° video.
Abstract:
A refrigerator storage system is described. The refrigerator storage system comprises a display having a home screen and a processor coupled to the display. The processor is configured to display at least one widget that provides an operation on the display, wherein the at least one widget comprises an interface portion providing direct access to a feature of the widget, wherein the direct access to the feature of the widget is provided from the home screen.
Abstract:
A method and device for a television (TV) device participating in an Internet of Things (IoT) network. An IoT controlling service is communicated with to send and receive messages adjusting a state of the TV device. The state of the TV device is monitored based on an attribute table. The state of the TV device can serve as triggers for one or more routines. A predefined routine is determined based on an actions table. The predefined routine is activated based on a detected TV device state attribute.
Abstract:
A method and device for a television (TV) device participating in an Internet of Things (IoT) network. An IoT controlling service is communicated with to send and receive messages adjusting a state of the TV device. The state of the TV device is monitored based on an attribute table. The state of the TV device can serve as triggers for one or more routines. A predefined routine is determined based on an actions table. The predefined routine is activated based on a detected TV device state attribute.
Abstract:
A refrigerator storage system is described. The refrigerator storage system comprises a display having a home screen and a processor coupled to the display. The processor is configured to display at least one widget that provides an operation on the display, wherein the at least one widget comprises an interface portion providing direct access to a feature of the widget, wherein the direct access to the feature of the widget is provided from the home screen.
Abstract:
A food storage apparatus and a control method thereof are provided. The food storage apparatus includes a display; and a processor configured to control the display to display a user interface (UI) including one or more icons for controlling a execution screen of a application on a side region of the execution screen of the application while the execution screen of the application is displayed, wherein the application a view inside application providing an image obtained by photographing the inside of the food storage apparatus, and the processor controls the display to display the UI on the image obtained by photographing the inside of the food storage apparatus. Accordingly, the food storage apparatus may provide various services as compared to the conventional food storage apparatus, and may provide the UI for the service execution in the form that the user may easily and rapidly use the UI.
Abstract:
An electronic device includes a touchscreen display and at least one processor. The at least one processor is configured to present a dynamic user interface on the touchscreen display. The dynamic user interface includes a first input region forming a dial. The first input region is configured to receive user input related to a first viewing direction associated with a 360° video. The at least one processor is also configured to detect the user input. In addition, the at least one processor is configured to transmit the user input to a display device to control presentation of the 360° video on the display device. The dynamic user interface may further include a second input region, where the second input region is configured to receive second user input related to a second viewing direction associated with the 360° video.