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    • 15. 发明专利
    • Mems switch
    • MEMS开关
    • JP2007188866A
    • 2007-07-26
    • JP2006311685
    • 2006-11-17
    • Samsung Electronics Co Ltd三星電子株式会社Samsung Electronics Co.,Ltd.
    • HONG YOUNG-TACKKIM DONG KYUNSONG INSANGLEE SANG HOONKWON SANG-WOOKKIM JONG-SEOKKIM CHE-HEUNG
    • H01H57/00B81B3/00H01L41/09H01L41/187
    • B41J2/04581B41J2/04541
    • PROBLEM TO BE SOLVED: To provide a MEMS switch in which contact resistance is reduced by improving a contact structure for a signal line, and insertion loss can be reduced thereby, and which can be driven with a low voltage. SOLUTION: This MEMS switch includes a substrate, a fixed signal line provided on the top of the substrate, a movable signal line formed with a prescribed space kept from the top of the fixed signal line, at least one piezoelectric actuator connected to one end of the movable signal line so as to bring or separate the movable signal line in contact with or from the fixed signal line. The piezoelectric actuator includes a first electrode, a piezoelectric layer formed on the top of the first electrode, a second electrode formed on the top of the piezoelectric layer, and a connecting layer formed on the top of the second electrode and connected to the top of the movable signal line. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供通过改善信号线的接触结构来降低接触电阻的MEMS开关,并且可以降低插入损耗,并且可以以低电压驱动。 解决方案:该MEMS开关包括衬底,设置在衬底顶部的固定信号线,形成有从固定信号线的顶部保留的规定空间的可移动信号线,至少一个压电致动器,其连接到 可移动信号线的一端,以使可移动信号线与固定信号线接触或分离。 压电致动器包括第一电极,形成在第一电极的顶部上的压电层,形成在压电层顶部的第二电极和形成在第二电极顶部并连接到第二电极顶部的连接层 可移动信号线。 版权所有(C)2007,JPO&INPIT
    • 17. 发明专利
    • Bloodless blood sugar measuring apparatus using magnetic resonance absorption method and its measuring method
    • 使用磁共振吸收法测定血糖无糖测量仪器及其测量方法
    • JP2006023312A
    • 2006-01-26
    • JP2005202295
    • 2005-07-11
    • Samsung Electronics Co Ltd三星電子株式会社Samsung Electronics Co.,Ltd.
    • KIM DONG KYUNWON JONG-HWAPROTASOV EVGENY ALEXANDROV
    • G01N24/08G01R33/32G01R33/383G01R33/421
    • A61B5/055A61B5/14532G01N24/08
    • PROBLEM TO BE SOLVED: To provide a bloodless blood sugar measuring apparatus using a magnetic resonance absorption method and a measuring method with which users can periodically, accurately, and bloodlessly measure self blood sugar at home.
      SOLUTION: The bloodless blood sugar measuring apparatus of this invention has a measuring part and a circuit part. The measuring part forms a plurality of magnetic fields in a finger tissue to be measured, impresses electromagnetic waves on the finger tissue, and receives absorption signals associated with thereby generated nuclear magnetic resonances. A pair of magnetic pole pieces are especially mounted to opposite surfaces of a pair of permanent magnets in the measuring part. The circuit part generates the electromagnetic waves in the measuring part, detects the absorption signals received by the measuring part, and measures the spin-lattice relaxation time of positrons contained in the finger tissue on the basis of the detected absorption signals. On the basis of the correlation between the spin-lattice relaxation time and blood sugar values in bodies, the circuit part determines a blood sugar value in a body on the basis of the measured spin-lattice relaxation time.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种使用磁共振吸收法和测量方法的无血型血糖测量装置,用户可以在家中周期性,准确地和无血样地测量自身血糖。 解决方案:本发明的无血糖测量装置具有测量部分和电路部分。 测量部件在要测量的手指组织中形成多个磁场,在手指组织上施加电磁波,并且接收与之产生的核磁共振相关联的吸收信号。 一对磁极片特别安装在测量部分中的一对永磁体的相对表面上。 电路部分在测量部分产生电磁波,检测由测量部分接收的吸收信号,并且基于检测到的吸收信号测量包含在手指组织中的正电子的自旋晶格弛豫时间。 基于自旋晶格弛豫时间与体内血糖值之间的相关性,电路部分基于所测量的自旋晶格弛豫时间来确定体内的血糖值。 版权所有(C)2006,JPO&NCIPI