Abstract:
PURPOSE: A method and a system for transmitting a physical downlink control channel for aggregating bandwidths in a mobile communication system are provided to obtain resource allocation information for the entire bandwidth even though a terminal decodes a only PDCCH(Physical Downlink Control CHannel) of a specific sub bandwidth. CONSTITUTION: A BS(Base Station) generates DCI(Downlink Control Information)(S430). The DCI includes resource allocation configuration information for a sub bandwidth except the sub bandwidth. The BS transmits the generated DCI to an MS(Mobile Station) through a PDCCH of a sub bandwidth. The resource allocation configuration information includes a carrier index, the first band switching flag, and a time flag.
Abstract:
PURPOSE: An impact of an aircraft for a flight education and a flight data analysis system are provided to numerically analyze the lending of a student and to measure the impact added to a landing gear by installing a 3-axial acceleration measurement apparatus. CONSTITUTION: An impact of an aircraft for a flight education and a flight data analysis system comprises an impact measuring unit which measures an impact about an aircraft for an educational flight into 3D with being installed on the aircraft for the educational flight, a data acquiring unit(2) which gets the data measured with the impact measuring unit, a data storage unit(3) which stores the data obtained with the acquiring data unit, a data processing unit(4) which processes the data saved in the data storage unit as the data which can display, a display device(5) which displays the information corresponding to the three axial impact which can display by being processed with the data processing unit, and an impact measuring device which is the three axis acceleration measuring unit(1) to measure the three axis acceleration of a landing gear.
Abstract:
PURPOSE: A transceiving method and apparatus of time stamps for providing multicast services in a communications system are provided to allocate a multicast CID and a time stamp, thereby obtaining accurately resource information which each terminal has to buffer. CONSTITUTION: A BS(Base Station) inspects the presence of the other terminal which has received previously the data of contents A(403). The BS confirms whether the other terminal has received the data of the contents A in a unicast mode(420). The BS allocates the time stamp of an initial rank, and the same multicast CID(Connection Identifier) to the other terminal(421). The BS allocates the same multicast CID, and a time stamp having an order next to the initial order to a new terminal which requests the reception of the data of the contents A(422).
Abstract:
A capsule type endoscope driving apparatus for gullet is provided to reduce fault generation probability and to reduce installation space, by controlling the position of an external magnet for driving the capsule by using a manipulator. A medical capsule(100) senses photographed images of the gullet while moving the inside of the gullet of a human body and magnetic field information by external rotation magnetic field, and then transmits the photographed images and the magnetic field information to the outside of the human body wirelessly. A magnet transportation apparatus(200) includes an external magnet applying magnetic force to a capsule magnet in the medical capsule, and moves the external magnet to a random position out of the human body according to the operation of a user. A rotation chair(300) includes a magnetic field sensor on a back plate. A diagnosis apparatus(400) calculates the intensity of magnetic force applied to an endoscope by receiving the magnetic field information transmitted from the medical capsule and a signal of the magnetic sensor of the rotation chair, and provides an image signal from the medical capsule.
Abstract:
본 발명은 인체 내부의 장기를 촬영하여 촬영된 영상을 무선 통신을 통해 제공하는 캡슐형 내시경 장치 기술에 관한 것으로, 더욱 상세하게는 장기 내에서 원활하게 진행하기 위해 캡슐 외부에 형성되는 와이어의 방향을 별도의 구동 장치 없이 자유롭게 전환하여 장기와의 점착시 장기의 꼬임을 예방하기 위해 캡슐의 회전 방향을 역전 시키더라도 캡슐의 진행 방향을 유지할 수 있는 캡슐형 내시경 장치 기술에 관한 것이다. 본 발명에 따른 캡슐형 내시경 장치는 내부에 장기의 영상을 촬영하여 무선 통신 수단을 통해 전송하는 촬영 수단과 자석을 포함하고, 외부로부터 가해지는 자계에 의해 회전하면서 장기 내에서 진행하는 본체와; 그 일단이 상기 본체 외부에 고정 결합되고, 그 타단이 보조 링에 고정되되, 본체의 외부에 소정 간격으로 이격되게 구비되는 다수의 슬립 와이어와; 상기 본체의 일단에 형성되는 슬라이딩 홈에 슬라이딩 되도록 결합되며, 상기 본체의 회전 운동에 따라 장기와의 마찰력에 의해 상기 슬립 와이어가 나선형상으로 변형되도록 가이드 하는 보조 링;을 포함하여 구성된다. 내시경, 캡슐, 캡슐형 내시경, 회전 자계
Abstract:
옥외간판 LED-태양전지모듈이개시되며, 상기옥외간판 LED-태양전지모듈은, 전면과후면을갖는투명커버및 상기투명커버의후면상에구비되는 LED 구조체를포함하는패널부; 및상기패널부의후방에위치하는태양전지셀부를포함하되, 상기태양전지셀부는전방으로부터상기투명커버를통해입사되는태양광의적어도일부를이용해발전가능하도록배치되고, 상기 LED 구조체는상기태양전지셀부가생산한전기를공급받아발광하도록상기태양전지셀부와전기적으로연결될수 있다.
Abstract:
화소회로는발광다이오드, 제1 NMOS 트랜지스터, 제2 NMOS 트랜지스터, 및저장커패시터를포함한다. 발광다이오드는전원전압에연결되는애노드전극을포함한다. 제1 NMOS 트랜지스터는데이터라인에연결되는드레인전극, 스캔라인에연결되는게이트전극, 제1 노드에연결되는소스전극, 및제1 노드에연결되는바디전극을포함한다. 제2 NMOS 트랜지스터는발광다이오드의캐소드전극에연결되는드레인전극, 제1 노드에연결되는게이트전극, 부스팅라인에연결되는소스전극, 및부스팅라인에연결되는바디전극을포함한다. 저장커패시터는제1 노드와부스팅라인사이에연결된다.