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    • 4. 发明申请
    • OPTICAL FIBER CONNECTING DEVICE AND OPTICAL FIBER QUALITY MEASURING SYSTEM USING SAME
    • 光纤连接装置和使用该装置的光纤质量测量系统
    • WO2009099281A2
    • 2009-08-13
    • PCT/KR2009000422
    • 2009-01-29
    • LS CABLE LTDYOOK TAE-KYOUNGPARK LAE-HYUKPARK JI-SANGSOHN SOON-ILSHIN HYUNG-SOO
    • YOOK TAE-KYOUNGPARK LAE-HYUKPARK JI-SANGSOHN SOON-ILSHIN HYUNG-SOO
    • G02B6/00
    • G02B6/3809G01M11/336G02B6/362G02B6/3636G02B6/3652
    • The present invention relates to an optical fiber connecting device and an optical fiber quality measuring system using same. The optical fiber quality measuring system of the present invention includes a measuring unit for measuring optical fiber quality including PMD (Polarization Mode Dispersion) or optical loss of optical fiber; a connecting optical fiber including a first optical fiber connected to a transmitter end of the measuring unit and a second optical fiber connected to a receiver end of the measuring unit; an objective optical fiber connected to the first optical fiber and the second optical fiber such that optical quality of the objective optical fiber can be measured by the measuring unit; and a connector for physically and optically connecting the connecting optical fiber and the objective optical fiber. The connector includes a vacuum pump for generating vacuum pressure; and a contact retention unit for supporting the connecting optical fiber and the objective optical fiber which are uncoated and connected to each other, and retaining the contact state by sucking the connecting optical fiber and the objective optical fiber through the use of the vacuum pressure generated from the vacuum pump. The vacuum connection system of the present invention has a connection setting time shorter than that of a mechanical connection system and is suitable for use in the mass-produced optical fiber industry.
    • 光纤连接装置和使用其的光纤质量测量系统技术领域本发明涉 本发明的光纤质量测量系统包括:测量单元,用于测量包括PMD(偏振模色散)或光纤的光损耗的光纤质量; 连接光纤,其包括连接到测量单元的发送器端的第一光纤和连接到测量单元的接收器端的第二光纤; 连接到第一光纤和第二光纤的物镜光纤,使得物镜光纤的光学质量可以由测量单元测量; 以及连接器,用于物理地和光学地连接连接光纤和物镜光纤。 该连接器包括用于产生真空压力的真空泵; 以及接触保持单元,其用于支撑未被涂覆并且彼此连接的连接光纤和物镜光纤,并且通过利用由所产生的真空压力吸引连接光纤和物镜光纤来保持接触状态 真空泵。 本发明的真空连接系统的连接设定时间比机械连接系统的连接设定时间短,适用于批量生产的光纤工业。
    • 5. 发明申请
    • OPTICAL FIBER CONNECTING DEVICE AND OPTICAL FIBER QUALITY MEASURING SYSTEM USING SAME
    • 光纤连接器件和光纤质量测量系统
    • WO2009099281A4
    • 2010-01-28
    • PCT/KR2009000422
    • 2009-01-29
    • LS CABLE LTDYOOK TAE-KYOUNGPARK LAE-HYUKPARK JI-SANGSOHN SOON-ILSHIN HYUNG-SOO
    • YOOK TAE-KYOUNGPARK LAE-HYUKPARK JI-SANGSOHN SOON-ILSHIN HYUNG-SOO
    • G02B6/00
    • G02B6/3809G01M11/336G02B6/362G02B6/3636G02B6/3652
    • The present invention relates to an optical fiber connecting device and an optical fiber quality measuring system using same. The optical fiber quality measuring system of the present invention includes a measuring unit for measuring optical fiber quality including PMD (Polarization Mode Dispersion) or optical loss of optical fiber; a connecting optical fiber including a first optical fiber connected to a transmitter end of the measuring unit and a second optical fiber connected to a receiver end of the measuring unit; an objective optical fiber connected to the first optical fiber and the second optical fiber such that optical quality of the objective optical fiber can be measured by the measuring unit; and a connector for physically and optically connecting the connecting optical fiber and the objective optical fiber. The connector includes a vacuum pump for generating vacuum pressure; and a contact retention unit for supporting the connecting optical fiber and the objective optical fiber which are uncoated and connected to each other, and retaining the contact state by sucking the connecting optical fiber and the objective optical fiber through the use of the vacuum pressure generated from the vacuum pump. The vacuum connection system of the present invention has a connection setting time shorter than that of a mechanical connection system and is suitable for use in the mass-produced optical fiber industry.
    • 本发明涉及一种光纤连接装置和使用该光纤连接装置的光纤质量测量系统。 本发明的光纤质量测量系统包括:用于测量包括PMD(偏振模色散)或光纤损耗的光纤质量的测量单元; 连接光纤,包括连接到测量单元的发射器端的第一光纤和连接到测量单元的接收器端的第二光纤; 连接到第一光纤和第二光纤的物镜光纤,使得可以通过测量单元测量物镜光纤的光学质量; 以及用于物理和光学连接连接光纤和物镜光纤的连接器。 连接器包括用于产生真空压力的真空泵; 以及接触保持单元,其用于支撑未涂覆并连接的连接光纤和物镜光纤,并且通过使用从...产生的真空压力吸取连接光纤和物镜光纤来保持接触状态 真空泵。 本发明的真空连接系统具有比机械连接系统短的连接设定时间,适用于批量生产的光纤行业。
    • 6. 发明申请
    • WIRELESS POWER TRANSMISSION AND RECEIVING SYSTEM CAPABLE OF MULTI CHARGE
    • 无线电力传输和可接收多个充电的接收系统
    • WO2013069951A4
    • 2013-07-04
    • PCT/KR2012009305
    • 2012-11-07
    • LS CABLE LTD
    • HAN MIN-SEOKPARK LAE-HYUKKIM YOUNG-SUNHWANG JUNG-MANPARK UN-KYOOLEE JI-HYUNG
    • H02J17/00H02J7/00H04B5/02
    • H02J50/50H02J7/025H02J50/12H04B5/0037
    • A wireless power transmission and receiving system capable of multi charge includes a wireless power transmission device for generating a first power signal having a resonance frequency of a first band when a normal power is supplied, and transmitting the generated first power signal to the outside by means of a magnetic resonance method; a first wireless power receiving device for converting the first power signal received by means of the magnetic resonance method into useable electricity, converting a surplus wireless power signal, whish has not been converted into the useable electricity, into a second power signal having a resonance frequency of a second band, and retransmitting the generated second power signal to the outside by means of the magnetic resonance method; and at least one second wireless power receiving device for converting the second power signal, which has been received by means of the magnetic resonance method, into useable electricity.
    • 能够进行多次充电的无线电力传输和接收系统包括无线电力传输装置,用于在提供正常电力时产生具有第一频带的共振频率的第一电力信号,并且通过装置将生成的第一电力信号发送到外部 的磁共振方法; 第一无线电力接收装置,用于将通过磁共振方法接收的第一功率信号转换为可用电力,将尚未转换为可用电力的剩余无线电力信号转换为具有共振频率的第二功率信号 并且通过磁共振方法将生成的第二功率信号重发到外部; 以及至少一个第二无线电力接收装置,用于将已经通过磁共振方法接收的第二功率信号转换成可用的电。
    • 10. 发明专利
    • Wireless power transmission device using multiple antenna and control method thereof
    • 使用多个天线的无线电力传输装置及其控制方法
    • JP2013055879A
    • 2013-03-21
    • JP2012193124
    • 2012-09-03
    • Ls Cable Ltdエルエス ケーブル リミテッド
    • LEE JI-HYUNGPARK LAE-HYUKPARK UN-KYOO
    • H02J17/00H01M10/46H01M10/48H02J7/00
    • H02J50/12H02J5/005H02J7/025H02J50/40
    • PROBLEM TO BE SOLVED: To provide a wireless power transmission device using a multiple antenna capable of optimizing power transmission efficiency for a variety of charging target devices, and a control method thereof.SOLUTION: A wireless power transmission device comprises: at least one or more electric power transmission antennas which transmits a wireless power signal in a magnetic resonance method using a resonance frequency and each of which has a different bandwidth of a resonance frequency; a wireless power signal generation module which generates a wireless power signal; at least one or more wireless power conversion modules which converts a power level of the wireless power signal generated from a wireless power signal generation module and each of which has a different power level conversion width corresponding to the bandwidth of the resonance frequency of the electric power transmission antennas; a multiplexer matching module which selectively connects electric power transmission antennas corresponding to the wireless power conversion module; and a control part which adjusts a power level of the wireless power signal by selectively connecting the electric power transmission antennas and the wireless power conversion module according to a required power amount of the charging target device.
    • 要解决的问题:提供一种使用能够优化各种充电目标装置的功率传输效率的多重天线的无线电力传输装置及其控制方法。 解决方案:无线电力传输装置包括:至少一个或多个电力发送天线,其使用谐振频率以磁共振方式发送无线电力信号,并且每个谐振频率具有不同的谐振频率带宽; 产生无线电力信号的无线电力信号生成模块; 至少一个或多个无线电力转换模块,其转换从无线电力信号发生模块产生的无线电力信号的功率电平,并且每个功率电平具有与电力的谐振频率的带宽相对应的不同功率电平转换宽度 发射天线; 多路复用器匹配模块,其选择性地连接与无线电力转换模块相对应的电力发送天线; 以及控制部,其通过根据所述充电目标装置的所需电力量选择性地连接所述电力发送天线和所述无线电力转换模块来调整所述无线电力信号的功率电平。 版权所有(C)2013,JPO&INPIT