무선 에너지 전송 구조체
    13.
    发明公开
    무선 에너지 전송 구조체 有权
    无线能源传输结构

    公开(公告)号:KR1020110092112A

    公开(公告)日:2011-08-17

    申请号:KR1020100011582

    申请日:2010-02-08

    CPC classification number: H02J50/12 H02J5/005 H04B5/0037 H04B5/0093

    Abstract: PURPOSE: A wireless energy transmitting structure is provided to adjust the width of a transmission line without changing the size and the location of a meta cell, thereby performing serial/parallel resonance conversion at a resonant frequency. CONSTITUTION: A disc unit(140) includes first and second conductive plates(110,120) and a dielectric material(130). The dielectric material is inserted between the first and second conductive plates. A wire unit(180) includes a multilayered board(150), a meta structure(160), and a transmission line(170). The multilayered board is connected to both ends of the disc unit. The meta structure is formed on the board by a metal pattern.

    Abstract translation: 目的:提供一种无线能量传输结构来调节传输线的宽度,而不改变元小区的大小和位置,从而以谐振频率进行串/并联谐振转换。 构成:盘单元(140)包括第一和第二导电板(110,120)和电介质材料(130)。 介电材料插入在第一和第二导电板之间。 线单元(180)包括多层板(150),元结构(160)和传输线(170)。 多层板连接到盘单元的两端。 元结构通过金属图案形成在板上。

    무선 에너지 전송 구조체
    14.
    发明公开
    무선 에너지 전송 구조체 有权
    无线能源传输结构

    公开(公告)号:KR1020120088620A

    公开(公告)日:2012-08-08

    申请号:KR1020120066173

    申请日:2012-06-20

    CPC classification number: H02J50/12 H01F38/14 H05K2201/10265

    Abstract: PURPOSE: A wireless energy transmission structure is provided to easily manufacture the wireless energy transmission structure by miniaturizing the wireless energy transport structure. CONSTITUTION: A wireless energy transmission structure(1) includes a ring shaped printed circuit board. The wireless energy transmission structure includes a disk section(10) comprising a first conductor plate(12), a second conductor plate(14) and a dielectric material(16) inserted between the first conductor plate and the second conductor plate. The wireless energy transmission structure includes a wire section(20). The wire section includes a transmission line(24) to surround a plurality of meta cells(22a,22b).

    Abstract translation: 目的:提供无线能量传输结构,通过小型化无线能量传输结构,轻松制造无线能量传输结构。 构成:无线能量传输结构(1)包括环形印刷电路板。 无线能量传输结构包括:盘部分(10),包括插入在第一导体板和第二导体板之间的第一导体板(12),第二导体板(14)和电介质材料(16)。 无线能量传输结构包括线段(20)。 导线部分包括围绕多个元胞(22a,22b)的传输线(24)。

    무선 에너지 전송장치 및 무선 에너지 송수신 시스템
    15.
    发明公开
    무선 에너지 전송장치 및 무선 에너지 송수신 시스템 有权
    无线能量传输/接收设备和无线能量传输/接收系统

    公开(公告)号:KR1020100084053A

    公开(公告)日:2010-07-23

    申请号:KR1020090003458

    申请日:2009-01-15

    Inventor: 서철헌 최재원

    CPC classification number: H02J50/05 H02J7/025

    Abstract: PURPOSE: The wireless energy transport apparatus and wireless energy transceiving system connect the wire including the meta material in the capacitor both ends. The intensity and energy transport efficiency of the magnetic field are multiplied. CONSTITUTION: A first wire(211) is connected to one side of the capacitor(213). The second wire(212) is connected to the other side of capacitor. The first wire and the second wire comprise the meta material. Capacitor comprises two conductive plates and dielectric. Dielectric is formed between above mentioned conductor flat boards.

    Abstract translation: 目的:无线能量传输设备和无线能量收发系统将电容器两端的电容连接在电容器中。 磁场的强度和能量传输效率相乘。 构成:第一导线(211)连接到电容器(213)的一侧。 第二导线(212)连接到电容器的另一侧。 第一线和第二线包括间接材料。 电容器包括两个导电板和电介质。 电介质形成在上述导体平板之间。

    메타 물질 구조물 및 이를 이용한 무선 에너지 전송 시스템
    16.
    发明授权
    메타 물질 구조물 및 이를 이용한 무선 에너지 전송 시스템 有权
    使用相同方式无线传输的META材料结构和系统

    公开(公告)号:KR101096686B1

    公开(公告)日:2011-12-22

    申请号:KR1020100105475

    申请日:2010-10-27

    Abstract: PURPOSE: A meta material structure and system for transmitting energy by wireless means using the same are provided to improve energy transport efficiency and transmission distance by using a magnetic field as an energy medium in a transmission system. CONSTITUTION: In a meta material structure and system for transmitting energy by wireless means using the same, a first coupling loop(110) generates a magnetic field. A first metal material structure(120) has a plate form and a negative refractive index. A first meta material structure is spaced from the first coupling loop. A wireless energy receiving device(104) is spaced from a transmitting device by a certain distance. A second meta material structure(150) has a plate form and a negative refractive index. A second coupling loop(160) receives generated magnetic field through the first and second meta material structures which are comprised of at least one meta material unit cell.

    Abstract translation: 目的:提供通过使用其的无线装置传输能量的元材料结构和系统,以通过使用磁场作为传输系统中的能量介质来提高能量传输效率和传输距离。 构成:在通过使用其的无线装置传输能量的元材料结构和系统中,第一耦合回路(110)产生磁场。 第一金属材料结构(120)具有板形式和负折射率。 第一元件结构与第一耦合回路间隔开。 无线能量接收装置(104)与发射装置间隔一定距离。 第二间隔材料结构(150)具有板形式和负折射率。 第二耦合回路(160)通过由至少一个元材料单元组成的第一和第二超材料结构接收产生的磁场。

    음의 굴절률을 갖는 메타 구조체를 이용한 무선 에너지 송수신 장치
    17.
    发明公开
    음의 굴절률을 갖는 메타 구조체를 이용한 무선 에너지 송수신 장치 有权
    使用具有负反射指数的元素材料结构传输和接收无线能量的装置

    公开(公告)号:KR1020110121450A

    公开(公告)日:2011-11-07

    申请号:KR1020100041050

    申请日:2010-04-30

    CPC classification number: H01Q7/00 H01Q15/0086 H01Q19/062

    Abstract: PURPOSE: A wireless energy transmission and reception apparatus is provided to improve a transmission distance and transmission efficiency by using a meta structure with a negative refractive index. CONSTITUTION: A wireless energy transmission unit(100) is composed of a wireless transmission loop(110) and a wireless transmission meta structure(120). The wireless energy transmission unit transmits magnetic energy generated from a wireless transmission loop to one point of a direction of a reception unit(200). The wireless transmission loop is composed of a disk unit(111) and a wire unit(112) connected to both sides of the disk unit. The wireless transmission meta structure is installed in a transmission path which transmits wireless energy from the wireless transmission loop. The wireless transmission meta structure is composed of a substrate(121) and a single division ring resonance pattern(122) formed on each surface of the substrate.

    Abstract translation: 目的:提供一种使用具有负折射率的元结构来提高传输距离和传输效率的无线能量传输和接收装置。 构成:无线能量传输单元(100)由无线传输环路(110)和无线传输元结构(120)组成。 无线能量传输单元将从无线传输环路产生的磁能发送到接收单元(200)的一个方向的一个点。 无线传输环路由连接到盘单元两侧的盘单元(111)和线单元(112)组成。 无线传输元结构安装在从无线传输环路传输无线能量的传输路径中。 无线传输元结构由在基板的每个表面上形成的基板(121)和单分割环谐振图案(122)组成。

    메타 물질 구조물 및 이를 이용한 무선 에너지 전송 시스템
    18.
    发明授权
    메타 물질 구조물 및 이를 이용한 무선 에너지 전송 시스템 有权
    使用相同方式无线传输的META材料结构和系统

    公开(公告)号:KR101040650B1

    公开(公告)日:2011-06-10

    申请号:KR1020100021605

    申请日:2010-03-11

    Abstract: PURPOSE: A meta-material structure and a wireless energy transmission system using the same are provided to focus electric field radiated from a wireless energy transmission device on a wireless energy reception device by using a meta-material structure having a negative refractive index. CONSTITUTION: A wireless energy transmission system comprises: a first coupling loop(120); a wireless energy transmission device including a first meta-material construction(130) which is separated from the first coupling loop; and a wireless energy reception device which is separated in a predetermined distance from the wireless energy transmission device. The wireless energy reception device a second meta material construction and a second coupling loop(170) which is separated from the first meta material construction and receives the electric field generated from the first coupling loop through the first meta material construction and the second meta material construction.

    Abstract translation: 目的:提供一种超材料结构和使用该材料结构的无线能量传输系统,以通过使用具有负折射率的超常材料结构将从无线能量传输装置辐射的电场聚焦在无线能量接收装置上。 构成:无线能量传输系统包括:第一耦合回路(120); 无线能量传输装置,包括与所述第一耦合回路分离的第一超临界材料结构(130); 以及与无线能量传输装置隔开预定距离的无线能量接收装置。 所述无线能量接收装置具有第二超材料结构和第二耦合回路(170),所述第二耦合回路与所述第一元素结构分离并且通过所述第一元素材料结构和所述第二元素结构接收从所述第一耦合回路产生的电场 。

    마이크로스트립 사각 개방 루프 다중 분할 링 공진기를 이용한 저위상 잡음 전압 제어 방법
    19.
    发明公开
    마이크로스트립 사각 개방 루프 다중 분할 링 공진기를 이용한 저위상 잡음 전압 제어 방법 有权
    低相位噪声VCO使用微波方形开环多路分路器谐振器

    公开(公告)号:KR1020090108994A

    公开(公告)日:2009-10-19

    申请号:KR1020080034372

    申请日:2008-04-14

    Inventor: 서철헌 최재원

    CPC classification number: H01P1/20381 H01P7/082

    Abstract: PURPOSE: A low phase noise VCO using microstrip square open loop multiple split ring resonator is provided to improve phase noise characteristic without the reduction of frequency adjusting range. CONSTITUTION: A low phase noise VCO using microstrip square open loop multiple split ring resonator is designed to combine the SRR with a high Q value microstrip rectangular open loop resonator. The electric field and magnetic field characteristics of the two resonators are combined complementarily. The SRR is comprised of the rectangular shape. The rectangular shape is in favor of the easy combining between the micro rectangular open loop resonator and the SRR. Multiple SRR is formed to increase the coupling coefficient of the SRR.

    Abstract translation: 目的:提供使用微带方形开环多分频环谐振器的低相位噪声VCO,以改善相位噪声特性,而不会降低频率调节范围。 构成:使用微带方形开环多分裂环谐振器的低相位噪声VCO被设计为将SRR与高Q值微带矩形开环谐振器组合。 两个谐振器的电场和磁场特性互补组合。 SRR由矩形构成。 矩形形状有利于微矩形开环谐振器和SRR之间的容易组合。 形成多个SRR以增加SRR的耦合系数。

    마이크로스트립 사각 개방 루프 분할 링 공진기를 이용한 저위상 잡음 전압 제어 방법
    20.
    发明公开
    마이크로스트립 사각 개방 루프 분할 링 공진기를 이용한 저위상 잡음 전압 제어 방법 有权
    低相位噪声VCO使用微波方形开环分路器谐振器

    公开(公告)号:KR1020090108980A

    公开(公告)日:2009-10-19

    申请号:KR1020080034354

    申请日:2008-04-14

    Inventor: 서철헌 최재원

    CPC classification number: H01P1/20381 H01P7/082 H03B2201/0208 H03B2201/036

    Abstract: PURPOSE: A low phase noise VCO using microstrip open loop split ring resonator is provided to improve the phase noise characteristic without reduction of the range of the frequency control of voltage control oscillator. CONSTITUTION: A low phase noise VCO using microstrip open loop split ring resonator is designed to combine the microstrip open loop resonator having high Q value with an SRR. The electric field characteristic and the magnetic field characteristics of the two resonators are combined. The SRR is comprised of a rectangular shape for easy combination.

    Abstract translation: 目的:提供使用微带开环开环谐振器的低相位噪声VCO,以改善相位噪声特性,而不会降低压控振荡器的频率控制范围。 构成:使用微带开环开环谐振器的低相位噪声VCO被设计为将具有高Q值的微带开环谐振器与SRR组合。 两个谐振器的电场特性和磁场特性相结合。 SRR由矩形构成,便于组合。

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