Abstract:
PURPOSE: A smart device, and a peripheral thereof, and a peripheral recognizing method thereof are provided for the peripheral to recognize the smart device by transmitting an authentication signal which includes a frequency pattern which is the intrinsic identification symbol of the peripheral when being connected to the smart device. CONSTITUTION: An earphone plug (21) is connected to an earphone port (11) of a smart device. If the earphone plug is connected to the earphone port, an authentication signal providing unit (22) transmits an authentication signal which is an intrinsic identification signal which is given to the peripheral to the smart device. The authentication signal is comprised in a form which arranges two or more serial unit signals having different frequencies on a time axis and includes a frequency pattern in which two or more frequencies are combined. A power supply unit (24) is supplied with a power from the smart device. [Reference numerals] (11) Input/output port; (12) Authentication signal analyzing unit; (13) Authentication signal managing unit; (14) Signal process control unit; (15) Application managing unit; (16) Power providing unit; (17) Data analysis; (18) Display unit; (21) Input/output plug; (22) Authentication signal providing unit; (23) Data generating unit; (24) Power supply unit
Abstract:
본 발명은 기화식 흡열타일에 대한 것으로서, 특히 제습제로 수집된 수분의 기화열을 이용한 기화식 흡열타일에 관한 것이다. 본 발명은 케이스 내에 제습제를 충진하여 공기중의 수분으로 지붕의 열을 효과적으로 냉각할 수 있는 기화식 흡열타일을 제공할 수 있다. 또한, 본 발명은 제습제의 기화열을 이용하여 별도의 에너지를 공급하지 않고 지붕을 효과적으로 냉각할 수 있는 기화식 흡열타일을 제공할 수 있다. 기화, 흡열, 타일, 제습제, 케이스, 금속, 냉각, 지붕, 열손실, 복사열, 수분
Abstract:
PURPOSE: A method for managing a flowerpot incubator and a flowerpot planted in the flowerpot incubator is provided to display data for flowerpot management and state information of a flowerpot through an application of a user terminal according to application installation information to a screen of the user terminal, thereby effective flowerpot management. CONSTITUTION: An identification code including installation information of a flowerpot management application is marked in an identification code marking unit. A sensor unit(110) measures state information of a flowerpot. A management data generating unit(120) generates data for flowerpot management. A communication unit(150) performs data communication with a user terminal(200). A display unit(140) displays at least one of the state information measured, the flowerpot management data, and a message inputted by a flowerpot orderer. [Reference numerals] (110) Sensor unit; (120) Management data generating unit; (130) Light emitting unit; (140) Display unit; (150) Communication unit; (160) Operation control unit; (165) Data storage unit; (200) User terminal
Abstract:
PURPOSE: A surface plasmon resonance sensor using a metal graffin, a manufacturing method thereof and a plasmon resonance system are provided to driven in a fixed wave length without a buffer layer by having a different cladding mode within a sensor. CONSTITUTION: A surface plasmon resonance sensor using a metal griffin comprises a metal graffin layer(140). The metal graffin layer is formed in the core(120) of the fixed region of an optical fiber(100) from in which a jacket and a cladding(130) are removed. The core of the optical fiber comprises one or more selected from the group consisting of the inorganic material, organic compound and their combination. The core of the fixed region of the optical fiber is exposed. The metal graffin layer is formed on the exposed core of the optical fiber.
Abstract:
PURPOSE: A rail type cleaning system for a building window using sunlight is provided to automatically clean a window without using fossil fuel and to rapidly cool heat occurred in an LED. CONSTITUTION: A rail type cleaning system for a building window using sunlight comprises a window cleaning device(100), semi-permeable solar batteries(200), a water collection device(300), and rails(400). The semi-permeable solar batteries supply power to the window cleaning device. The water collection device supplies water to the window cleaning device. The rails are installed in order to move the window cleaning device.
Abstract:
Provided is a method for manufacturing a transparent carbon nanotube film using a conductive material which occupies the gaps between carbon nanotubes and reduces contact resistance of the carbon nanotubes. A method for manufacturing a transparent carbon nanotube film(10) comprises: a first step of preparing a carbon nanotube film(20) containing carbon nanotubes(12); and a second step of forming a conductive material(30) on the carbon nanotube film. In the conductive material forming step, one selected from the group consisting of spin coating, sputtering, electroless plating and electroplating is used. The carbon nanotube has a network shape. The conductive material connects the carbon nanotube to the other ones. The conductive material comprises a plurality of particles.
Abstract:
본 발명은 원자현미경을 통해 액상에 분산된 탄소나노튜브의 분산 정도를 정량적으로 평가할 수 있도록 하는 탄소나노튜브의 단일막 코팅 구조물 및 그 제조 방법에 관한 것으로, 기판을 가열하는 가열 단계, 가열된 상기 기판을 회전시키고, 상기 기판의 중심에 탄소나노튜브 분산용액을 분사하여, 상기 기판 상에 탄소나노튜브를 단일막으로 코팅하는 스핀 코팅 단계 및 상기 기판을 건조하는 건조 단계를 포함하는 제조 방법 및 이 제조 방법에 의해 제조되는 탄소나노튜브의 단일막 코팅 구조물에 관한 것이다. 탄소나노튜브, 단일막, 스핀 코팅
Abstract:
An apparatus and a method for detecting partial discharge at SF6 GIS(Gas Insulated Switchgear) using a single walled carbon nano-tube are provided to previously detect an abnormal effect by using a single walled carbon nano-tube as a partial discharge sensor of SF6 GIS. A method for detecting partial discharge at SF6 GIS is characterized in that a plurality of single walled carbon nano-tubes(2) are installed in an inside of a GIS case(1) in order to detect partial discharge, namely SF6 plasma or ions and radicals generated in a dissociating state of SF6 gas. The single walled carbon nano-tube is a carbon nano-tube which is manufactured by using a HipCo(High Pressure Carbon Monoxide) method.