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    • 1. 发明专利
    • Electromagnetic wave shielding sheet
    • 电磁波屏蔽片
    • JP2008270714A
    • 2008-11-06
    • JP2007325317
    • 2007-12-17
    • Bridgestone CorpTaiyo Yuden Co Ltd太陽誘電株式会社株式会社ブリヂストン
    • TSUTAGATANI HIROSHIISHIGURO TAKASHI
    • H05K9/00B32B7/02
    • PROBLEM TO BE SOLVED: To provide an electromagnetic wave shielding sheet having a high shielding effect against electromagnetic waves and capable of suppressing secondary radiation causing a noise without being connected to GND.
      SOLUTION: The electromagnetic wave shielding sheet 30 is provided with a laminate film 14 on a base paper 12. The laminate film 14 has a laminate structure in which a first adhesive layer 16 having adhesive performance, a resistor film layer 18 and an insulating layer 20 are laminated. A specific resistance value of the insulating layer 20 is set at ≥10
      6 Ω/cm and a specific resistance value of the resistor film layer 18 is set at 10-300 Ω. Thus, the secondary radiation can be reduced while maintaining a high shielding effect. Further, a magnetic layer 32 and a second adhesive layer 34 are provided between the base paper 12 and the laminate film 14, and thus, an absorbing effect can be further improved.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种对电磁波具有高屏蔽效应并能够抑制二次辐射而不连接到GND的电磁波屏蔽片。 解决方案:电磁波屏蔽片30在原纸12上设置有层压膜14.层压膜14具有层叠结构,其中具有粘合性能的第一粘合剂层16,电阻膜层18和 层压绝缘层20。 将绝缘层20的电阻值设定为≥10Ω/ΩΩ/ cm,将电阻膜层18的电阻值设定为10〜300Ω。 因此,可以在保持高屏蔽效果的同时减小二次辐射。 此外,在原纸12和层叠膜14之间设置有磁性层32和第二粘合剂层34,因此可以进一步提高吸收效果。 版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Analytical medium
    • 分析中
    • JP2009002933A
    • 2009-01-08
    • JP2008111483
    • 2008-04-22
    • Taiyo Yuden Co Ltd太陽誘電株式会社
    • HAGIWARA NAOTOISHIGURO TAKASHI
    • G01N35/00G01N35/08G01N37/00
    • PROBLEM TO BE SOLVED: To provide an analytical medium for smoothly sending liquid, while preventing evaporation of a sample solution passing through a flow passage, in the analytical medium having a rotatable structure and arranging the flow passage for passing the sample solution on the inside.
      SOLUTION: This analytical medium 10 is provided with a sample filling port 20, a supplying liquid storage part 22 communicating with this sample filling port 20, a receiving liquid storage part 23 positioned on the outer peripheral side of the medium more than this supplying liquid storage part 22, and the flow passage 17 communicating with the supplying liquid storage part 22 and the receiving liquid storage part 23, on a base board, and is constituted so that a sample flows to the receiving liquid storage part 23 via the flow passage 17 from the supplying liquid storage part 22 by its centrifugal force by rotating the analytical medium 10 in a state of sealing connection ports 15 and 16 for communicating the flow passage 17 with an external part by sealing films 18 and 19.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种用于平滑地送出液体的分析介质,同时防止通过流路的样品溶液的蒸发,在具有可旋转结构的分析介质中,并且布置用于使样品溶液通过的流路 里面。 解决方案:该分析介质10设置有样品填充口20,与该样品填充口20连通的供给液体存储部22,位于介质的外周侧的接收液储存部23, 在基板上供给液体储存部分22和与供液储存部分22和接收液体存储部分23连通的流动通道17,并且被构造成使得样品经由流体流向接收液体存储部分23 通过旋转分析介质10在密封连接口15和16的状态下通过其离心力从供液储存部分22通过17通道,用于通过密封膜18和19将流路17与外部部分连通。 (C)2009,JPO&INPIT
    • 5. 发明专利
    • Gas sensor and gas detecting method
    • 气体传感器和气体检测方法
    • JP2009098124A
    • 2009-05-07
    • JP2008192882
    • 2008-07-25
    • Taiyo Yuden Co Ltd太陽誘電株式会社
    • HARA TORUISHIGURO TAKASHI
    • G01N27/12
    • PROBLEM TO BE SOLVED: To provide a gas sensor capable of detecting an extremely small concentration of gas.
      SOLUTION: In dielectric, a polarization, an electric field, a stress, and a domain boundary are balanced each other, which minimizes total free energy. There are a difference of 180° in polarization direction between domain regions D1 and D2 and a difference of 90° in polarization direction between domain regions D3 and D4 and between D5 and D6. A domain boundary DB is located between domain regions D1 and D2, between domain regions D3 and D4, and between domain regions D5 and D6. Then, adsorption of oxygen unbalances the energy balance to change the nanodomain structure. At this time, application of a measurement voltage moves the domain boundary DB as shown Fig. 1(B). Electrons detrapped from the domain boundary DB electrically charged generates a large transient current. By using this phenomenon, a gas concentration is measured.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供能够检测极小气体浓度的气体传感器。 解决方案:在电介质中,极化,电场,应力和域边界彼此平衡,这使总自由能最小化。 在区域区域D1和D2之间的极化方向上存在180°的偏振方向和区域区域D3和D4之间以及D5和D6之间的极化方向上的差异90°。 域边界DB位于域区域D1和D2之间,区域区域D3和D4之间以及区域区域D5和D6之间。 然后,氧的吸附不平衡能量平衡以改变纳米结构域。 此时,施加测量电压移动域边界DB,如图1所示。 1(B)。 电荷从域边界DB去除的电子产生大的瞬态电流。 通过使用该现象,测定气体浓度。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Manufacturing method of dye-sensitized solar cell, and dye-sensitized solar cell
    • 透明太阳能电池的制造方法和透明的太阳能电池
    • JP2009032614A
    • 2009-02-12
    • JP2007197663
    • 2007-07-30
    • Taiyo Yuden Co Ltd太陽誘電株式会社
    • TOMARU HISANORIISHIGURO TAKASHI
    • H01M14/00H01L31/04H01M2/08
    • Y02E10/542Y02P70/521
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of a dye-sensitized solar cell securing an electrode distance of a target value by a simple method which does not cause a cost increase.
      SOLUTION: A sealing material paste is applied in a vertical cross-sectionally rectangular shape on a transparent electrode film 12 with a prescribed height HOC so as to surround each photoelectric transfer film 13, and an unhardened sealing part 14 is formed in a lattice form, and a counter plate 15 on the whole lower face of which a counter electrode film 16 (transparent electrode film 16a and metal thin film 16b) is installed, is superposed on the sealing part 14 of lattice shape and pressed relatively on a transparent light receiving plate 11 side, thereby, solid spheres 14a scattered in the unhardened sealing part 12 are made to contact both the transparent electrode film 12 and the counter electrode film 16.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供一种通过简单的方法提供染料敏化太阳能电池的制造方法,该方法不会导致成本增加,从而确保目标值的电极距离。 解决方案:以垂直横截面矩形形式在具有规定高度HOC的透明电极膜12上施加密封材料浆料,以围绕每个光电转移膜13,并且将未硬化的密封部分14形成在 晶格形状,并且在整个下表面上设置有相对电极膜16(透明电极膜16a和金属薄膜16b)的对置板15叠置在格子形状的密封部分14上,并相对地在透明 光接收板11侧,散射在未硬化的密封部分12中的固体球体14a与透明电极膜12和对电极膜16接触。版权所有(C)2009,JPO&INPIT
    • 7. 发明专利
    • Sensor
    • 传感器
    • JP2007128870A
    • 2007-05-24
    • JP2006272827
    • 2006-10-04
    • Taiyo Yuden Co Ltd太陽誘電株式会社
    • ISHIGURO TAKASHIMASUDA HOMARE
    • H01H35/02G01C9/06G01C9/10G01H1/00G01P15/135H01H35/14
    • PROBLEM TO BE SOLVED: To provide a sensor having high horizontal property to a mounting substrate and capable of detection with high accuracy.
      SOLUTION: This inclination sensor 10 comprises metal square pillars 16A-16D, a conductive ball 18 housed in a space 14 formed by them and a lid 20 provided in an upper end side of the square pillars 16A-16D. The square pillars 16A-16D are mounted on the substrate 12 with other electronic components mounted on the substrate 12. The ball 18 rolls the inside of the space 14 according to the direction of vibration and contact any two adjacent square pillars among the square pillars 16A-16D simultaneously to conduct the square pillars. Thus, an inclining direction is detected from the position of the conducted square pillars.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种具有高水平特性的安装基板并且能够高精度地检测的传感器。 解决方案:该倾斜传感器10包括金属方柱16A-16D,容纳在由它们形成的空间14中的导电球18和设置在方柱16A-16D的上端侧的盖20。 方柱16A-16D与安装在基板12上的其他电子元件一起安装在基板12上。球18根据振动方向滚动空间14的内部,并与方柱16A中的任何两个相邻方柱 -16D同时进行方柱。 因此,从导电方柱的位置检测倾斜方向。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Method for analyzing nucleic acid, analyzer and disk for analysis
    • 分析核酸的方法,分析仪和分析用盘
    • JP2005295877A
    • 2005-10-27
    • JP2004116173
    • 2004-04-09
    • Taiyo Yuden Co Ltd太陽誘電株式会社
    • HAGIWARA NAOTOISHIGURO TAKASHI
    • G01N21/78B01L3/00B01L7/00C12M1/00C12N15/09C12Q1/68G01N21/25
    • G01N21/253B01L3/5027B01L3/50273B01L3/502738B01L7/525B01L2300/024B01L2300/0806B01L2300/0861B01L2300/1822B01L2300/1827B01L2300/1861B01L2400/0409
    • PROBLEM TO BE SOLVED: To provide a method or a structure by which optical measurement of a change in the state of a reaction sample can simultaneously, continuously and continually be carried out at a plurality of measuring sites of a flow channel in a flow system reaction in which the reaction proceeds with the elapsed time for movement. SOLUTION: A sample for analysis containing a nucleic acid is made to flow through the flow channel in which temperature is changed with a repetitive pattern with a temperature controlling means for controlling the temperature of a passage region to detect a change in the state of the sample for analysis containing the nucleic acid and flowing in the flow channel with an optical detecting means at a plurality of sites of the flow channel. Furthermore, the flow channel can be arranged in a sample analytical region on a rotated and driven disk. Information on a reaction sample liquid in the flow channel can simultaneously, continuously and continually be detected with an optical information detecting means provided oppositely to the disk for analyzing the nucleic acid. The above structure is composed so as to provide a compact analyzer for the nucleic acid equipped with a flow system reaction tube for the sample for analysis containing the nucleic acid and the optical detecting means. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种方法或结构,通过该方法或结构,可以在反应样品状态的变化的光学测量中同时连续并连续地在多个测量位置进行流动通道的测量 流动系统反应,其中反应随着经过的运动时间而前进。 解决方案:使含有核酸的用于分析的样品通过具有温度控制装置的温度变化的流动通道流过,用于控制通过区域的温度以检测状态的变化 的用于分析的用于分析的样品的样品,并且在流动通道的多个位置处用光学检测装置在流动通道中流动。 此外,流动通道可以布置在旋转和驱动盘上的样品分析区域中。 关于流路中的反应样品液体的信息可以与用于分析核酸的盘相对设置的光学信息检测装置同时连续地和连续地检测。 上述结构是为了提供配备有用于包含核酸和光学检测装置的分析用样品的流动系统反应管的核酸的紧凑型分析装置。 版权所有(C)2006,JPO&NCIPI
    • 9. 发明专利
    • Semiconductor device
    • 半导体器件
    • JP2013110730A
    • 2013-06-06
    • JP2012189334
    • 2012-08-30
    • Taiyo Yuden Co Ltd太陽誘電株式会社
    • ISHIGURO TAKASHISATO MASAYUKIHIRONAKA TETSUOINAGI MASATOSHIMAZAKI HITOSHI
    • H03K19/177
    • G11C8/10G11C7/00H03K19/1776H03K19/17796
    • PROBLEM TO BE SOLVED: To achieve reduction of a total amount of storage element blocks configuring an intended logic circuit.SOLUTION: A semiconductor device comprises: N (N is an integer more than 1) address lines; N data lines; and a plurality of storage parts each including an address decoder decoding an address input from the N address lines to output a word selection signal to word lines, and a plurality of storage elements connected to the word lines and the data lines and respectively storing data composing a truth table and input/output the data to and from the data lines on the basis of the word selection signal input from the word lines. The N address lines of the one storage part are connected to data lines of the other N storage parts, respectively, and N data lines of the one storage part are connected to address lines of the other N storage parts.
    • 要解决的问题:实现构成预期逻辑电路的存储元件块的总量的减少。 解决方案:半导体器件包括:N(N是大于1的整数)地址线; N条数据线 以及多个存储部件,每个存储部件包括地址译码器,解码从N个地址线输入的地址以将字选择信号输出到字线;以及多个存储元件,连接到字线和数据线,并分别存储组成的数据 真值表,并根据从字线输入的字选择信号,输入/输出数据到数据线。 一个存储部分的N个地址线分别连接到其他N个存储部分的数据线,并且一个存储部分的N条数据线连接到另外N个存储部分的地址线。 版权所有(C)2013,JPO&INPIT