Abstract:
A method for providing a graphical user interface (GUI) and an electronic device using the method are provided. The method includes forming one or more groups of GUI items other than a GUI item selected by a user, moving the GUI items in the one or more groups, and enlarging and displaying the selected item on an area formed by movement of the GUI items. Therefore, it is possible to provide a GUI which enables easy manipulation and which is displayed with superior visual effect on a screen that is relatively small in size.
Abstract:
A broadcast receiving apparatus and a broadcast receiving method in which specific broadcast channels are distinguished, displayed and automatically tuned are provided. The broadcast receiving apparatus includes a broadcast receiver which tunes to a broadcast channel, a display information generator which generates display information to be displayed on one field of a display, and a controller which controls the display information generator to generate a list, in which specific broadcast channels are displayed differently from other broadcast channels among tunable broadcast channels and shown as display information, and controls the broadcast receiver to automatically tune to the specific broadcast channels from among the tunable broadcast channels.
Abstract:
An apparatus and method for providing a three-dimensional graphic user interface includes a control module which creates a three-dimensional interface space having a predetermined plane and an axis perpendicular to the plane, and a plurality of objects presented in the space, and a user interface module which presents a plurality of object groups including the plurality of objects in the space, and moves an object group including a selected object among the plurality of presented object groups along the axis.
Abstract:
A wafer-level-chip-scale package and related method of fabrication are disclosed. The wafer-level-chip-scale package comprises a semiconductor substrate comprising an integrated circuit, a conductive ball disposed on the semiconductor substrate and electrically connected to the integrated circuit, and a protective portion formed from an insulating material and disposed on bottom and side surfaces of the semiconductor substrate.
Abstract:
Silver-tin alloy solder bumps are fabricated by forming a masked underbump metallurgy layer on a microelectronic substrate, to define exposed portions of the underbump metallurgy layer, plating silver on the exposed portions of the underbump metallurgy, plating tin on the silver and reflowing to form silver-tin alloy solder bumps. Accordingly, silver-tin alloy is not plated. Rather, individual layers of silver and tin are plated, and then reflowed to form silver-tin alloy solder bumps.
Abstract:
Silver-tin alloy solder bumps are fabricated by forming a masked underbump metallurgy layer on a microelectronic substrate, to define exposed portions of the underbump metallurgy layer, plating silver on the exposed portions of the underbump metallurgy, plating tin on the silver and reflowing to form silver-tin alloy solder bumps. Accordingly, silver-tin alloy is not plated. Rather, individual layers of silver and tin are plated, and then reflowed to form silver-tin alloy solder bumps.
Abstract:
A control device is provided. The control device includes a communication interface unit which requests and receives menu information from a broadcast receiver, a determination unit which determines a control mode of the control device, a user interface unit which displays the received menu information in a user interface window according to the determined control mode, and a control unit which, if a command to control the broadcast receiver is input through the user interface unit, controls the communication interface unit to transmit the input control command to the broadcast receiver.
Abstract:
A display system, a display device, and a remote controller for controlling the display device are provided. The remote controller includes: a touch screen which receives an input from a user and display a first manipulation UI group including a shortcut key corresponding to a plurality of buttons to control the display device; a signal output unit which outputs a control signal to the display device based on an input to the touch screen; and a controller which, in response to a user's selection of the shortcut key, displays on the touch screen a second manipulation UI group and parts of the first manipulation UI group, the second manipulation UI group displaying the plurality of buttons.
Abstract:
A display apparatus includes: an image processor; a display unit; a remote controller which includes a touch input unit to detect motion of a user; a remote control signal receiver which receives a remote control signal from the remote controller corresponding to the motion of a user; and a controller which displays the content information window as if the content information window enters from an outside of a display area to an inside of the display area in accordance with the motion that a user moves from an outside of an area of the touch input unit to an inside of the area, or stops displaying the content information window as if the content information window exits from the inside of the display area to the outside of the display area in accordance with the motion that a user moves from the inside of the area of the touch input unit to the outside of the touch input unit.
Abstract:
A display apparatus and a user interface display method of the display apparatus are provided. The display apparatus classifies menu items of a service menu or an OSD menu according to the frequency of use of the menu items, generates icons corresponding to the classified menu items, and displays the icons on a screen using a user interface. Accordingly, the user can display a user interface on the screen in a preferable manner, and easily find and utilize a desired menu item.