Abstract:
A freely-transformable multipurpose carrier bag. The freely-transformable multipurpose carrier bag can be conveniently moved in the form of a carrier bag both indoors and outdoors and irrespective of the size of a place, can be transformed into and used as a table having a chair, can expose a pre-embedded electronic device component to the outside if needed, so as to enable a user to enjoy various forms of entertainment such as watching TV, using a computer, playing a game, or singing along with music, and can also enable the user to perform a business task, so that the user can universally perform both work and play.
Abstract:
A freely-transformable multipurpose carrier bag. The freely-transformable multipurpose carrier bag can be conveniently moved in the form of a carrier bag both indoors and outdoors and irrespective of the size of a place, can be transformed into and used as a table having a chair, can expose a pre-embedded electronic device component to the outside if needed, so as to enable a user to enjoy various forms of entertainment such as watching TV, using a computer, playing a game, or singing along with music, and can also enable the user to perform a business task, so that the user can universally perform both work and play.
Abstract:
A broadband wireless communication system is provided. An apparatus for a Base Station (BS) comprises a controller for determining whether to accept an entry of a mobile terminal (MT) by handover from an adjacent BS, a handler for generating a message to get an L2 switch to update a Media Access Control (MAC) table, and a communicator for transmitting the message to the L2 switch.
Abstract:
A method is provided for transmitting data during handover of a mobile node in a wireless communication system. Upon receiving a handover request from a particular mobile node, a multicast router creates a multicast tree depending on a multicast address of the mobile node, and transmits data to the mobile node in a multicast mode using the multicast tree.
Abstract:
An electronic device includes an infrared temperature sensor and can detect a user's finger arranged within a detection distance even though the user's finger does not contact the electronic device. Movement of the user's finger is also detected. A pointer positioned and moving according to the position and movement of the user's finger is displayed on a screen of the portable electronic device, and a predetermined function corresponding to the movement of the finger may be performed. A method for controlling the electronic device includes detecting that a user's finger is positioned within a detection distance of an infrared temperature sensor, and displaying a pointer corresponding to a position of the user's finger on a display screen. The method also may include moving the pointer or performing a function corresponding to the movement direction of the pointer.
Abstract:
Disclosed is a liquid crystal display device that is adaptive for simplifying its manufacturing process and reducing its cost. A liquid crystal display device according to an embodiment of the present invention includes a liquid crystal display panel on which a printed circuit board is mounted; a case top that covers an edge of the liquid crystal display panel; and a supporter adhered to the case top and being in contact with the printed circuit board.
Abstract:
A point-to-point emulation apparatus and method in a broadband wireless communication system are provided. In a communication method in an RAS in a broadband wireless communication system, an ID of a source terminal and an ID of a destination terminal are registered in a database by mapping the ID of the source terminal to the ID of the destination terminal, for communications between terminals registered to the RAS. Upon receipt of traffic data from the source terminal, a header of the traffic data is converted using the database, for transmission to the destination terminal on a downlink.
Abstract:
A fabrication method for a MEMS structure, the MEMS structure including a fixing portion fixed to the substrate and a floating portion floating above the substrate. A sacrificial layer deposited on the substrate is patterned to have a groove forming a space surrounding the area corresponding to the area in which the fixing portion is to be formed. If the MEMS structure is deposited on the sacrificial layer, a sidewall is formed inside the space and the fixing portion and the floating portion are formed on the sacrificial layer. If the sacrificial layer is removed using an etchant, the sacrificial layer at the bottom of the fixing portion is protected from the etchant by the sidewall and accordingly, the sacrificial layer except the area surrounded by the sidewall is removed. Therefore, only the sacrificial layer under the floating portion is removed. Because the connecting portion is fabricated to have the same thickness as the fixing portion and the floating portion, a strong/durable MEMS structure is provided. Additionally, the boundary between the fixing portion and the floating portion can be precisely determined, and adjustment of the length of the floating portion can be precisely controlled.