Abstract:
Disclosed is an automotive control system and a method for operating the same, the method including receiving a user input through an input device provided on a steering wheel, and controlling a display that is located in front of a driver's seat based on the user input, wherein the input device is located on one side and an opposing side of the steering wheel and is composed of a display including a touch screen.
Abstract:
FIG. 1 is a front view of a dashboard with graphical user interface showing our new design; and, FIG. 2 is an enlarged view of the portion 2 in FIG. 1. The evenly-dashed circular broken-line frames enclosing the outer perimeters of the graphical user interface illustrate display screens or portions thereof. The remaining evenly-dashed broken lines in the drawings depict portions of the dashboard with graphical user interface that form no part of the claimed design. The dot-dot-dash broken lines encircling portions of the claimed design that are illustrated in enlargements form no part of the claimed design.
Abstract:
A method of photographing an image is provided. The method includes displaying a preview image in a photographing mode; receiving a plurality of setting values for an option; receiving a request for photographing; and performing a continuous photographing by sequentially changing the plurality of the setting values in response to the request for photographing.
Abstract:
A semiconductor light emitting device is provided. The semiconductor light emitting device includes a plurality of light emitting structures, each of which includes a first surface and a second surface, a plurality of embossed portions provided on the first surface; a partition wall structure provided on the first surface of the plurality of light emitting structures and including a plurality of partition walls which define a plurality of pixel spaces; and a fluorescent layer provided in the plurality of pixel spaces. A bottom surface of the partition wall structure contacts the plurality of embossed portions.
Abstract:
An electronic device attachable to a vehicle may include an interface, an input device is provided. The electronic device includes a display, and a processor configured to detect that a context related to the vehicle corresponds to a first context based on first information received via the interface, in response to the detection that the context related to the vehicle corresponds to the first context, display a first indication indicating a first function corresponding to the first context from among a plurality of functions of the vehicle, which are controllable by the input device, while displaying the first indication, detect that the context related to the vehicle changed from the first context to a second context based on second information received via the interface, and based on the detection, display a second indication which is changed from the first indication and indicates a second function corresponding to the second context.
Abstract:
According to an embodiment disclosed in this specification, an electronic device may be configured to control a size of an exposed region of a first display based on driving information of a vehicle and to set a user interface for receiving a user input associated with content displayed on the first display to at least one of the first display or an auxiliary input interface based on a size of an exposed region. Other various embodiments as understood from the specification are also possible.
Abstract:
A method of photographing an image is provided. The method includes displaying a preview image in a photographing mode; receiving a plurality of setting values for an option; receiving a request for photographing; and performing a continuous photographing by sequentially changing the plurality of the setting values in response to the request for photographing.
Abstract:
A semiconductor light emitting device including a substrate; a light emitting structure including a first conductivity-type semiconductor layer, an active layer, and a second conductivity-type semiconductor layer sequentially stacked on the substrate; a transparent electrode layer on the second conductivity-type semiconductor layer; a first insulating layer on the transparent electrode layer and having a plurality of first through-holes; a multilayer insulating structure on the first insulating layer and having a plurality of second through-holes overlapping the plurality of first through-holes, respectively, the multilayer insulating structure being spaced apart from an edge of the light emitting structure; a reflective electrode layer on the multilayer insulating structure and connected to the transparent electrode layer through the plurality of first through-holes and the plurality of second through-holes; and a second insulating layer between the multilayer insulating structure and the reflective electrode layer.