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公开(公告)号:KR1020130011585A
公开(公告)日:2013-01-30
申请号:KR1020110072830
申请日:2011-07-22
Applicant: 한국전자통신연구원
IPC: H02J17/00
Abstract: PURPOSE: A power transmission apparatus and a power reception apparatus are provided to maximize transfer efficiency according to the power transfer. CONSTITUTION: A signal processor(140) obtains a received power status signal according to distance variation between coil parts from the outside. A modulation controller(150) generates modulation frequency for selecting a frequency band with a maximum power transmission performance. A power signal generator(110) generates a power signal. A modulator(120) modulates the power signal in response to the modulation frequency. A transmission coil part(130) transmits the modulated power signal. [Reference numerals] (100) Power transmission device; (110) Power signal generator; (120) Modulator; (130) Transmission coil part; (140) Signal processor; (150) Modulation controller; (200) Power receiving device; (210) Receiving coil part; (220) Power generator; (230) Signal generator; (240) Load; (AA) Power signal; (BB) Power receiving condition signal
Abstract translation: 目的:提供电力传输装置和电力接收装置,以根据电力传输最大化传输效率。 构成:信号处理器(140)根据来自外部的线圈部分之间的距离变化获得接收到的电力状态信号。 调制控制器(150)产生用于选择具有最大功率传输性能的频带的调制频率。 电力信号发生器(110)产生电力信号。 调制器(120)响应于调制频率来调制功率信号。 发送线圈部(130)发送调制后的功率信号。 (附图标记)(100)动力传递装置; (110)功率信号发生器; (120)调制器; (130)传动线圈部分; (140)信号处理器; (150)调制控制器; (200)受电装置; (210)接收线圈部分; (220)发电机; (230)信号发生器; (240)负载; (AA)电源信号; (BB)电源接收状态信号
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公开(公告)号:KR1020120012372A
公开(公告)日:2012-02-09
申请号:KR1020110010552
申请日:2011-02-07
Applicant: 한국전자통신연구원
Abstract: PURPOSE: An energy transmission system in a communication system and a method thereof are provided to transmit multi-energy through multi-channel communication in the communication system, thereby maximizing frequency utilization efficiency. CONSTITUTION: A reflected wave separation and path determination part(100) with respect to a radio frequency(RF) signal passes a broadband RF signal to a channel selector(200) with respect to RF reception for a demodulation process. The channel selector passes a channel selected by a user. An energy regeneration part(300) regenerates energy with respect to the RF signal reflected from the channel selector. A narrow-band RF signal which passes the channel selector is processed in a data processing part(400) in order to be utilized as a communication signal. The reflected broadband RF signal is converted into DC energy required in a receiving device.
Abstract translation: 目的:提供通信系统中的能量传输系统及其方法,以在通信系统中通过多信道通信来发送多个能量,从而最大化频率利用效率。 构成:相对于射频(RF)信号的反射波分离和路径确定部分(100)相对于解调处理的RF接收将宽带RF信号传递到信道选择器(200)。 频道选择器通过用户选择的频道。 能量再生部件(300)相对于从通道选择器反射的RF信号再生能量。 在数据处理部分(400)中处理通过信道选择器的窄带RF信号,以便用作通信信号。 反射的宽带RF信号被转换成接收设备中所需的直流能量。
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公开(公告)号:KR101108193B1
公开(公告)日:2012-01-31
申请号:KR1020080128176
申请日:2008-12-16
Applicant: 한국전자통신연구원
IPC: H01L27/115
CPC classification number: H01L45/148 , G11C13/0004 , H01L27/2436 , H01L45/06 , H01L45/1206 , H01L45/122 , H01L45/144
Abstract: 비휘발성 프로그래머블 소자는 제1 단자와, 제1 단자에 연결되는 제1 문턱 스위칭층과, 제1 문턱 스위칭층에 연결되는 상변화층과, 상변화층에 연결되는 제2 문턱 스위칭층과, 제2 문턱 스위칭층에 연결되는 제2 단자와, 상변화층의 일측부 및 타측부에 각각 연결되는 제3 단자 및 제4 단자를 포함하여 이루어진다.
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公开(公告)号:KR1020110095109A
公开(公告)日:2011-08-24
申请号:KR1020100088107
申请日:2010-09-08
Applicant: 한국전자통신연구원
IPC: B82B3/00 , H01L35/02 , H01L27/146
CPC classification number: H01L35/32 , H01L27/146 , H01L35/14 , H01L35/34
Abstract: PURPOSE: A thermoelectric element, a method for forming the same, a temperature detecting sensor using the same, and a heating source image sensor using the same are provided to mass-produce nanowires and reduce time required for forming the nanowires using a photo-etching process and an ashing process. CONSTITUTION: A first nanowrie(132) and a second nanowire(134) are separately arranged on a substrate. A first silicon thin film(122) is in connection with one end of the first nanowire. A second silicon thin film(124) is in connection with one end of the second nanowire. A third silicon thin film(126) is in connection with another end of the first nanowire and another end of the second nanowire. The first nanowire and the second nanowire are expanded to the horizontal direction with respect to the upper side of the substrate. A method for forming a thermoelectric element includes the following: An insulating film and a silicon layer are successively formed on the substrate. A photo-resist pattern with a first line-width is formed on the silicon layer. A photo-resist micropattern with a second line-width is formed by implementing an ashing process with respect to the photo-resist pattern. An etching process is implemented with respect to the silicon layer using the photo-resist micropattern as a mask to form the nanowires.
Abstract translation: 目的:提供一种热电元件,其形成方法,使用该温度检测传感器的温度检测传感器和使用该温度检测传感器的加热源图像传感器,以大量生产纳米线并减少使用光蚀刻形成纳米线所需的时间 过程和灰化过程。 构成:第一纳米纤维(132)和第二纳米线(134)分别布置在基底上。 第一硅薄膜(122)与第一纳米线的一端相连。 第二硅薄膜(124)与第二纳米线的一端连接。 第三硅薄膜(126)与第一纳米线的另一端和第二纳米线的另一端连接。 第一纳米线和第二纳米线相对于基板的上侧向水平方向扩展。 形成热电元件的方法包括:在基板上依次形成绝缘膜和硅层。 在硅层上形成具有第一线宽的光刻胶图形。 通过对光刻胶图案实施灰化处理,形成具有第二线宽的光刻胶微图案。 使用光致抗蚀剂微图案作为掩模,相对于硅层实现蚀刻工艺以形成纳米线。
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公开(公告)号:KR1020110066827A
公开(公告)日:2011-06-17
申请号:KR1020100029239
申请日:2010-03-31
Abstract: PURPOSE: A portable device and a method for charging a battery are provided to improve the charging performance of the portable device by forming an antenna with coils of which winding direction is parallel in the surface of the portable device. CONSTITUTION: A first antenna(210) receives a first power signal(RPO1) from a charging device through an electromagnetic induction method. A second antenna(220) receives a second power signal(RPO2) from the charging device through a magnetic resonance method. A first power generating circuit(230) receives a first battery state signal(STA1) from the first power signal. A second power generating circuit(240) generates a clock signal(CLK) and a frequency signal(FR) for transmitting control signals. A signal generating circuit(250) generates a first charging enable signal(EN1) in response to a first battery state signal.
Abstract translation: 目的:提供一种用于对电池充电的便携式设备和方法,以通过在便携式设备的表面中形成具有卷绕方向平行的线圈的天线来改善便携式设备的充电性能。 构成:第一天线(210)通过电磁感应方法从充电装置接收第一功率信号(RPO1)。 第二天线(220)通过磁共振方法从充电装置接收第二功率信号(RPO2)。 第一发电电路(230)从第一功率信号接收第一电池状态信号(STA1)。 第二发电电路(240)产生用于发送控制信号的时钟信号(CLK)和频率信号(FR)。 信号发生电路(250)响应于第一电池状态信号产生第一充电使能信号(EN1)。
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公开(公告)号:KR1020100068769A
公开(公告)日:2010-06-24
申请号:KR1020080127240
申请日:2008-12-15
Applicant: 한국전자통신연구원
IPC: H01L31/09 , H01L31/101
CPC classification number: H01L31/09 , H01L31/02366 , H01L31/03044 , H01L31/0392 , H01L31/18
Abstract: PURPOSE: A method for fabricating an infrared sensor is provided to improve the uniformity of a resistance value by reducing a partially oxidized electrode or absorbent layer due to oxygen-plasma. CONSTITUTION: A nitride metal thin film(20) is deposited on the lower membrane(10) of an infrared sensor or a substrate. The nitride metal thin film is etched using a photo-resistor as a mask. The photo-resistor is removed using oxygen-plasma. The nitride metal thin film is plasma-processed(50) under a reduction atmosphere. The nitride metal thin film is formed into the electrode or the absorbent layer of the infrared sensor.
Abstract translation: 目的:提供一种用于制造红外传感器的方法,通过减少由于氧等离子体引起的部分氧化的电极或吸收层来提高电阻值的均匀性。 构成:在红外线传感器或基板的下膜(10)上沉积氮化物金属薄膜(20)。 使用光电阻器作为掩模蚀刻氮化物金属薄膜。 使用氧等离子体去除光电阻。 氮化物金属薄膜在还原气氛下进行等离子体处理(50)。 氮化物金属薄膜形成为红外线传感器的电极或吸收层。
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公开(公告)号:KR1020170109739A
公开(公告)日:2017-10-10
申请号:KR1020160033511
申请日:2016-03-21
Applicant: 한국전자통신연구원
Abstract: 상호이격되어배치되는제 1 기판및 제 2 기판, 상기제 1 기판상의제 1 전극, 상기제 2 기판상의제 2 전극, 상기제 1 기판과상기제 2 기판사이에배치되어상기제 1 전극과상기제 2 전극사이의공간을밀폐시키는격벽, 상기제 1 전극상의제 1 전기변색층, 상기제 2 전극상의제 2 전기변색층, 및상기제 1 및제 2 전기변색층들사이의전해질을포함하는전기변색소자를제공하되, 상기격벽은제 1 방향으로서로이격되는제 1 격벽들, 및상기제 1 방향과교차하는제 2 방향으로서로이격되고, 상기제 1 격벽들과연결되는제 2 격벽들을포함하고, 상기제 1 격벽들은상기제 1 및제 2 전극들사이에배치되되, 상기제 1 격벽들각각의하단및 상단은각각상기제 1 및제 2 전극들과접하고, 상기제 2 격벽들은상기제 2 방향으로대향하는상기제 1 및제 2 전극들의양측에배치되되, 상기제 2 격벽들각각의하단및 상단은각각상기제 1 및제 2 기판들과접할수 있다.
Abstract translation: 第一基板上的第一电极,第二基板上的第二电极以及设置在第一基板和第二基板上的第二电极,第一电极和第二基板彼此间隔开, 密封第一和第二电极之间的空间的分隔壁,第一电极上的第一电致变色层,第二电极上的第二电致变色层以及第一和第二电致变色层之间的电解质 障肋可以包括在第一方向上彼此间隔开的第一障肋和在与第一方向交叉的第二方向上彼此间隔开并且与第一障肋连接的第二障肋, 其中,第一电极和第二电极设置在第一电极和第二电极之间,其中,每个第一分隔壁的下端和上端分别与第一电极和第二电极接触, 被布置在第一和第二电极的彼此相对的两侧上, 第一和第二基板的下端和上端可以分别与第一和第二基板接触。
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