Abstract:
PURPOSE: A thin film transistor array panel and a method for manufacturing the same are provided to prevent indication defects of a display device by protecting a connection bridge of wiring through an organic film. CONSTITUTION: A first signal wire is formed on a substrate. A first insulating layer is formed on the first signal line. A second signal line is formed on the first insulating layer. The second insulating layer is formed on the second signal line. The second insulating layer includes the organic film. A connection bridge(193) is formed on the second insulating layer. The connection bridge interlinks the first signal line and the second signal line. A cover layer(203) is formed on the connection bridge.
Abstract:
PURPOSE: An apparatus and a method for distinguishing a hybrid automatic repeat request response channel are provided to reduce overhead due to information related to HARQ by distinguishing an ACK(ACKnowledge) channel after distinguishing a plurality of HARQ connections reverted to the same terminal through mini-ID. CONSTITUTION: A resource allocator(702) of a base station allocates mini-ID(Identifier) to HARQ connection corresponding to an HARQ(Hybrid Automatic Repeat reQuest) data transmitted through a mini frame. A map generator(704) of the base station generates resource allocation information including the mini-ID and position information of a resource for transmitting the HARQ data. An encoder(708) of the base station encodes the resource allocation information into a specific sequence according to a terminal. The resource allocation information is transmitted through an antenna.
Abstract:
본 발명은 광대역 무선통신시스템에서 프레임 통신 장치 및 방법에 관한 것이다. 본 발명에 따른 송신기 장치에 있어서, 송신 패킷에 대하여 수신기 식별자를 포함하는 버스트할당정보를 생성하는 제어채널 구성부와, 상기 송신 패킷에 트래픽 식별자를 포함하는 헤더를 부가하여 데이터 버스트를 구성하는 버스트 구성부와, 상기 제어채널 구성부로부터의 버스트할당정보와 상기 버스트 구성부로부터의 데이터 버스트를 송신하기 위한 송신부를 포함한다. 이와 같이, 본 발명은 기존의 CID(Connection ID)를 사용자 식별자(UID : user ID)와 트래픽 식별자(TID : traffic ID)로 세분화하고, 맵(MAP)채널의 메시지에는 UID를 기록하고 MAC 헤더에는 TID를 기록함으로써, DL-MAP 및 UL-MAP에 포함되는 정보량과 데이터 패킷의 헤더(MAC 헤더)의 정보량을 감소시키는 효과가 있다. 맵채널, OFDMA, S-OFDMA, CID, UID, TID, MAC
Abstract:
An imprinting method, a method of manufacturing a thin film transistor substrate by using the imprinting method and a method of manufacturing a color filter substrate by using the imprint method are provided to increase the efficiency of manufacturing process by preventing the misalignment between a substrate and a mold. An imprinting method comprises a coating stage of resin(20), an arrangement step of mold(30), a performing step of queue, a performing step of the first hardening, a performing step of the pressurization, and a performing step of the second hardening, and a performing step of the separation. The resin is coated on a substrate(10). The mold is arranged on the resin. The substrate and the mold are arranged through the performing step of queue. The resin is hardened through the performing step of the first hardening in edge.
Abstract:
A handover system in a wireless mobile communication system and a method thereof are provided to realize the enhanced and simplified authentication procedure in the handover by using a CMAC(Cipher based Message Authentication Code) value. A mobile station(300) determines whether the handover condition is satisfied or not. If so, the mobile station transmits a handover request message(MOB_MSHO-REQ: Mobile MShandover Request) to a serving base station(310)(301). Here, a target base station 1(320) and target base station 2(330) are base stations to which the mobile station is handed over. Therefore, in the MOB MSHO-REQ message, the information indicating the target base station 1 and the information indicating the target base station 2 are included. The information can become identifiers of each target base station.
Abstract:
A handover system in a wireless mobile communication system and a method thereof are provided to minimize the service disconnection time due to the handover of a mobile station by improving a handover procedure. The handover method of a mobile station in a wireless mobile communication system comprises the following steps of: transmitting a handover instruction message(302); receiving a ranging response message which includes authentication information required when the mobile station authenticates a target base station(304); receiving resources for the high-speed ranging from the target base station(306); and sending a ranging response ack message which includes authentication information required when the target base station authenticates the mobile station, to the target base station(308).
Abstract:
고정 중계국을 사용하는 무선 릴레이 네트워크(Wireless Relay Networks)의 각 링크의 채널 상태를 추정하기 위한 장치 및 방법에 관한 것으로서, 중계국과 목적지로부터 수신되는 파일럿(Pilot) 신호를 이용하여 상기 소스와 중계국 링크의 채널과 상기 소스와 목적지 링크의 채널을 추정하는 과정과, 상기 중계국으로부터 중계국과 목적지 링크의 채널 정보를 포함하는 파일럿 신호가 수신되는지 확인하는 과정과, 상기 파일럿 신호가 수신되는 경우, 상기 파일럿 신호와 상기 소스와 중계국 링크의 채널 정보를 이용하여 채널을 추정하는 과정을 포함하여, 피드백 신호를 줄여 자원을 낭비를 줄일 수 있고, 소스와 중계국 및 목적지 사이의 채널 정보를 이용하여 채널 상황에 적응적으로 신호를 전송할 수 있는 이점이 있다. 중계국, 채널 정보, 파일럿, 채널 추정
Abstract:
A system and a method for transmitting/receiving resource allocation information in a wireless mobile communication system are provided to minimize a signaling overhead by reducing the size of a MAP message and to use a map message information about two points of a two-dimensional data burst allocation region. A frame is discriminated by a time axis and a frequency axis, and a point having the first offset value in the time axis and a point having the second offset value in the frequency axis are determined as start points of two-dimensional data burst allocation region. A point having the third offset value in the time axis and a point having the fourth offset value in the frequency axis are determined as end points of the two-dimensional data burst allocation region. Data burst to be transmitted to an MS(Mobile Station) is allocated to the two-dimensional data burst allocation region in a square form with a segment of a line connecting the start points and the end points as a diagonal segment.
Abstract:
A method for processing data in a portable terminal is provided to enable the portable terminal to store data with a format compatible with a heterogeneous terminal, to transmit the data to an external apparatus, to receive the data edited in the heterogeneous terminal and to store the edited data. A method for processing data comprises the following several steps. A portable terminal accesses a computer via a USB data communication cable(S201) and transmits its environment data to the computer(S202). The computer analyzes the environment information and recognizes the portable terminal(S203). If a user requests the computer to browse UMS(USB Mass Storage) data, the computer requests the portable terminal to transmit the UMS data(S204). If the portable terminal recognizes the request for transmitting the UMS data, the portable terminal transmits the UMS data to the computer(S205). The computer displays the UMS data stored at an UMS section of the portable terminal and basic information of content stored at an EFS(Embedded File System) section of the portable terminal by using each folder for enabling a user to browse them(S206). If the user edits the UMS data displayed by the computer, the computer transmits the edited UMS data to the portable terminal(S207,S208). The portable terminal updates the UMS data by using the edited UMS data and performs a setup operation in correspondence with the edited data(S209).
Abstract:
A voice message service device in a communication system and a method therefor are provided to confirm a caller's information to offer a voice guide message suited for the caller's information, thus a user can receive an automatic response message as conveniently receiving a service in native language even when a foreigner sends a call. When a voice message supply request message is received, a caller's information is detected according to a voice message supply request(501,505). A voice message reproduction language is selected according to the detected results(507). A voice message corresponding to the selected language is transmitted to a sending terminal(511). The caller's information is included in a call setup message transmitted for call setup by the sending terminal.