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    • 2. 发明专利
    • Recording medium and optical information recording and playback apparatus
    • 记录媒体和光信息记录和播放装置
    • JP2008276940A
    • 2008-11-13
    • JP2008207807
    • 2008-08-12
    • Seiko Instruments Incセイコーインスツル株式会社
    • KASAMA NOBUYUKIOMI MANABUMITSUOKA YASUYUKIMAEDA HIDETAKAKATO KENJINIWA TAKASHI
    • G11B7/24G11B7/135
    • PROBLEM TO BE SOLVED: To provide a recording medium which is characterized not in a structure of a near-field optical head but in a structure of the recording medium for improving light use efficiency in an optical memory using near-field light, to provide a manufacturing method thereof and to provide an optical information recording and playback apparatus using the recording medium. SOLUTION: The recording medium 6 recording and reproducing information by a near-field optical head utilizing near-field light is constituted of a medium substrate 31 which is transparent to the wavelength of radiation light radiated for generating the near-field light, a data recording part 33 recording information on the surface of the medium substrate and light condensing structure for condensing the radiation light in the data recording part 33. The light condensing structure is constituted of a tapered part 32 wherein a reflection film is formed and a light shielding part 34. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种不是以近场光学头的结构为特征的记录介质,而是在用于提高使用近场光的光学存储器中的光利用效率的记录介质的结构中, 提供其制造方法,并提供使用该记录介质的光学信息记录和重放装置。 解决方案:利用近场光的近场光学头记录和再现信息的记录介质6由对用于产生近场光辐射的辐射光的波长透明的介质基板31构成, 在介质基板的表面上记录信息的数据记录部分33和用于聚集数据记录部分33中的辐射光的聚光结构。聚光结构由形成反射膜的锥形部分32和光 屏蔽部分34.版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Microchip system
    • MICROCHIP系统
    • JP2006030167A
    • 2006-02-02
    • JP2005159131
    • 2005-05-31
    • Seiko Instruments Incセイコーインスツル株式会社
    • KATO HARUKIARAOGI MASATAKAMAEDA HIDETAKA
    • G01N5/02G01N33/543G01N37/00
    • PROBLEM TO BE SOLVED: To provide a microchip system for measuring the reaction speed, such as the coupling constant and dissociation constant of a reaction substance contained in a sample solution, by making the flow velocity, namely the flow rate, of the sample solution constant. SOLUTION: The microchip has a control circuit 11 (control means) for detecting the variations in the flow velocity or flow rate of the sample solution by a change in a frequency signal 13 (oscillation frequency) from an electrode 7 for reference located on a QCM sensor 23 arranged in a microchip 1, and feeding back the variations to a pump 10 (liquid-feeding means), thus driving and controlling the pump 10 (liquid-feeding means) so that the flow velocity or flow rate of the sample solution becomes constant. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供用于测量反应速度的微芯片系统,例如样品溶液中包含的反应物质的偶联常数和解离常数,通过使流速(即流速) 样品溶液常数。 解决方案:微芯片具有控制电路11(控制装置),用于通过来自用于参考位置的电极7的频率信号13(振荡频率)的变化来检测样品溶液的流速或流速的变化 在布置在微芯片1中的QCM传感器23上,并将变化反馈到泵10(送液装置),从而驱动和控制泵10(送液装置),使得流量或流速 样品溶液变得不变。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Microchip for use in inspection, inspection device and inspection method
    • MICROCHIP用于检查,检查设备和检查方法
    • JP2005140666A
    • 2005-06-02
    • JP2003378227
    • 2003-11-07
    • Seiko Instruments Incセイコーインスツル株式会社
    • ARAOGI MASATAKAKATO HARUKIMAEDA HIDETAKA
    • G01N33/483G01N5/02G01N35/08G01N37/00G01N13/10G01N13/16
    • PROBLEM TO BE SOLVED: To reduce a necessary amount of a specimen and a reagent, while dispensing with a labelling substance in inspection, using antigen/antibody reaction.
      SOLUTION: A fluid supply port 5, a waste liquid tank part 6, a flow channel part 7 and an air supply passage 8 are formed to a microchip 1 for use in inspection. The branch part 7b of the flow channel part 7 communicates with the fluid supply port 5 and has a valve part 11. A confluent part 7a communicates with the waste liquid tank part 6 and has a reaction tank part 10. A cantilever 16 is provided in the reaction tank part 10 and a detection means 21 detects the bending of the cantilever 16. When the reagent is supplied to the reaction tank part 10 from the flow channel part 7, an antibody in the reagent is bonded to the cantilever 16, turn into a solid phase state. When the specimen is supplied to the reaction tank part 10 from the flow channel part 7, the antigen in the specimen is made to react with the antibody on the cantilever 16 and is captured. The complex due to this antigen/antibody reaction increases the bending quantity of the cantilever 16, and the antigen in the specimen is identified and determinated from the change in the bending quantity detected by the detection means 21.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:在检查中分配标记物质的同时,使用抗原/抗体反应来减少试样和试剂的必需量。 解决方案:将流体供给口5,废液罐部6,流路部7以及供气通路8形成在微芯片1上,以供检查。 流路部7的分支部7b与流体供给口5连通并具有阀部11.汇合部7a与废液罐部6连通并具有反应槽部10.悬臂16设置在 反应槽部10和检测机构21检测悬臂16的弯曲。当试剂从流路部7向反应槽10供给时,试剂中的抗体与悬臂16接合,变成 固相状态。 当从流路部7将试样供给到反应槽部10时,使试样中的抗原与悬臂16上的抗体反应并捕获。 由于这种抗原/抗体反应引起的复合物增加了悬臂16的弯曲量,并且根据检测装置21检测到的弯曲量的变化来鉴定和确定试样中的抗原。(C) 2005年,JPO&NCIPI
    • 5. 发明专利
    • Method of manufacturing near field light generation element
    • 制造近场光生成元件的方法
    • JP2010204127A
    • 2010-09-16
    • JP2010143409
    • 2010-06-24
    • Seiko Instruments Incセイコーインスツル株式会社
    • KASAMA NOBUYUKIOMI MANABUMITSUOKA YASUYUKIMAEDA HIDETAKAKATO KENJINIWA TAKASHI
    • G01Q60/22G01Q80/00
    • PROBLEM TO BE SOLVED: To obtain a manufacturing method for providing a near field light generation element which has high light utilization efficiency, and which facilitates ultra-high-accuracy alignment of luminous flux supplied to the near field light generation element and a minute opening, or which requires no alignment, and which is mass-produced at a low cost, in an optical memory device, observation device, etc., using near field light. SOLUTION: The method of manufacturing the near field light generation element includes: a light guiding structure fabrication process 101; a light collecting structure fabrication process 102 in which luminous flux for fabricating a convex shape is irradiated from a surface other than the surface on which a convex shaped part is planned to be fabricated; a convex shape fabrication process 201; and a minute opening fabrication processes 105. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:为了获得提供具有高光利用效率的近场光产生元件的制造方法,并且有助于提供给近场光发生元件的光通量的超高精度对准和 分钟开口,或者不需要对准,并且以低成本批量生产,在使用近场光的光存储器件,观察装置等中。 解决方案:制造近场光产生元件的方法包括:导光结构制造工艺101; 聚光结构制造工艺102,其中用于制造凸形的光通量从除了要制造的凸形部件的表面以外的表面照射; 凸形制造工序201; 和分钟开放制作过程105.版权所有(C)2010,JPO&INPIT
    • 7. 发明专利
    • Information reproducing device
    • 信息再现设备
    • JP2009283123A
    • 2009-12-03
    • JP2009169894
    • 2009-07-21
    • Seiko Instruments Incセイコーインスツル株式会社
    • MITSUOKA YASUYUKICHIBA TOKUOKASAMA NOBUYUKIOMI MANABUNIWA TAKASHIKATO KENJIMAEDA HIDETAKA
    • G11B7/09G01Q80/00G11B7/005G11B7/007G11B7/013G11B7/12G11B7/135
    • G11B7/005B82Y10/00G01Q80/00G11B7/007G11B7/0901G11B7/0904G11B7/0938G11B7/123G11B7/1387G11B7/24076G11B7/24085
    • PROBLEM TO BE SOLVED: To provide an information reproducing device which materializes highly reliable information reproduction for an information recording medium, having recording at a high density, particularly in realizing tracking using a simple constitution. SOLUTION: The information reproducing device performs information reproduction with a reproducing probe 1 provided with minute openings for generating a near-field light 5. The information reproducing device is provided with: an information recording medium 3 in which the information is formed on a read-out track that is read out by the reproducing probe; the reproducing probe provided with minute openings formed by uniquely or gradually increasing the intervals in the direction of the read-out track in one direction perpendicular to the direction of the read-out track and to the depth direction of the medium; light-detecting means 6 and 7 for detecting reflected scattered light generated, when the near-field light generated in the minute openings is scattered by the information and outputting a detection signal; and a reproducing probe position control means for controlling the position of the reproducing probe, according to the intensity of the detection signal. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种信息再现装置,其实现了具有高密度记录的信息记录介质的高度可靠的信息再现,特别是使用简单的结构实现跟踪。 解决方案:信息再现装置用设置有用于产生近场光5的微小开口的再现探头1进行信息再现。信息再现装置设置有:信息记录介质3,其中信息形成在 由再现探头读出的读出轨迹; 再现探头具有通过在垂直于读出轨道的方向和介质的深度方向的一个方向上唯一地或逐渐地增加读出轨道的方向上的间隔而形成的微小开口; 光检测装置6和7,用于当通过该信息散射微小开口中产生的近场光时,检测产生的反射散射光,并输出检测信号; 以及再现探头位置控制装置,用于根据检测信号的强度来控制再现探头的位置。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Information recording medium, information reproducing device, and information recording/reproducing device
    • 信息记录介质,信息再现设备和信息记录/再现设备
    • JP2008077832A
    • 2008-04-03
    • JP2007273912
    • 2007-10-22
    • Seiko Instruments Incセイコーインスツル株式会社
    • MITSUOKA YASUYUKICHIBA TOKUOKASAMA NOBUYUKIOMI MANABUNIWA TAKASHIKATO KENJIMAEDA HIDETAKA
    • G11B7/007G11B7/005G11B7/09
    • PROBLEM TO BE SOLVED: To materialize highly reliable information reproduction for an information recording medium having dense record, particularly tracking by a simple structure. SOLUTION: The information recording medium and the information reproducing device for performing information reproduction and tracking control by using a near-field light. On the information recording medium 3, a servo pattern zone is provided forming servo bits for tracking control. In this servo pattern zone, alternately arranged as servo both on a read-out track are a first groove having a depth constantly or gradually increasing in one direction perpendicular to bit a direction of the read-out track of a reproducing probe 1 and a depth direction of the medium and a second groove made reverse in depth increasing direction to the first groove. By making incident a near-field light 5 produced in a microscopic aperture 2 of the reproducing probe 1 on the servo pattern zone, it is possible to obtain a tracking detection signal that has a waveform different depending on a deviation from a center axis of the read-out track. According to the tracking detection signal, the reproducing probe 1 is controlled in position. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了实现具有密集记录的信息记录介质的高度可靠的信息再现,特别是通过简单的结构跟踪。 解决方案:信息记录介质和用于通过使用近场光执行信息再现和跟踪控制的信息再现装置。 在信息记录介质3上,提供形成用于跟踪控制的伺服位的伺服模式区。 在该伺服图案区域中,在读出轨道上交替地配置为伺服,是在垂直于再现探头1的读出轨道的位的一个方向上具有恒定或逐渐增加的深度的第一凹槽和深度 所述介质的方向和与所述第一凹槽的深度增加方向相反地形成的第二凹槽。 通过在伺服图案区域上使重现探头1的微小孔2中产生的近场光5入射,可以获得跟踪检测信号,该跟踪检测信号的波形与根据 读出轨道。 根据跟踪检测信号,将再现探头1控制在适当位置。 版权所有(C)2008,JPO&INPIT
    • 9. 发明专利
    • Recording medium and optical information recording and reproducing device
    • 记录媒体和光信息记录和复制设备
    • JP2011018444A
    • 2011-01-27
    • JP2010212455
    • 2010-09-22
    • Seiko Instruments Incセイコーインスツル株式会社
    • KASAMA NOBUYUKIOMI MANABUMITSUOKA YASUYUKIMAEDA HIDETAKAKATO KENJINIWA TAKASHI
    • G11B7/24G11B7/135
    • PROBLEM TO BE SOLVED: To provide a recording medium which is characterized not in a structure of a near-field optical head but in a structure of the recording medium for improving light use efficiency in an optical memory using near-field light, a manufacturing method thereof, and an optical information recording and reproducing apparatus using the recording medium.SOLUTION: The recording medium 6 for recording and reproducing information via a near-field optical head by utilizing near-field light includes a medium substrate 31 which is transparent to the wavelength of radiation light radiated for generating the near-field light, a data recording part 33 for recording information on the surface of the medium substrate, and a light condensing structure for condensing the radiation light in the data recording part 33. The light condensing structure is composed of a tapered part 32 where a reflection film is formed and a light shielding part 34.
    • 要解决的问题:为了提供一种记录介质,其特征在于不是以近场光学头的结构,而是在用于提高使用近场光的光学存储器中的光利用效率的记录介质的结构中,制造方法 以及使用该记录介质的光学信息记录和再现装置。解决方案:通过利用近场光通过近场光学头记录和再现信息的记录介质6包括对波长透明的介质基板31 辐射用于产生近场光的辐射光,用于在介质基板的表面上记录信息的数据记录部分33,以及用于在数据记录部分33中聚集辐射光的聚光结构。聚光结构是 由形成有反射膜的锥形部32和遮光部34构成。
    • 10. 发明专利
    • Near-field optical head and its manufacturing method
    • 近场光学头及其制造方法
    • JP2010049803A
    • 2010-03-04
    • JP2009276753
    • 2009-12-04
    • Seiko Instruments Incセイコーインスツル株式会社
    • KATO KENJIOMI MANABUNIWA TAKASHIKASAMA NOBUYUKIMITSUOKA YASUYUKIMAEDA HIDETAKAICHIHARA SUSUMUSHINOHARA YOKO
    • G11B7/22G11B7/12
    • PROBLEM TO BE SOLVED: To manufacture a near-field optical head by which high speed and high density recording and reproducing of information can be performed, with good productivity. SOLUTION: A stopper having the almost same height as a chip of a cone shape is provided to the periphery of the chip, a part of a contact body covering the chip and the stopper is displaced by external force, and an aperture is formed by bringing the displaced part of the contact body into contact with the shielding film in the vicinity of a tip of the chip. Since this manufacturing method by which many apertures can be formed en bloc is excellent in productivity and the aperture formed using this manufacturing method has high light efficiency and high resolution structure, the near-field optical head by which high density and high speed recording and reproducing can be performed can be manufactured with good productivity. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:制造可以以良好的生产率进行信息的高速和高密度记录和再现的近场光学头。 解决方案:在芯片的外周设有与圆锥形芯片几乎相同的高度的止动器,覆盖芯片和止动器的接触体的一部分被外力移位,孔径为 通过使接触体的位移部分与芯片的尖端附近的屏蔽膜接触而形成。 由于可以整体形成许多孔的这种制造方法,生产率优异,并且使用该制造方法形成的孔径具有高的光效率和高分辨率结构,即通过高密度和高速记录和再现的近场光学头 可以实现可以以良好的生产率制造。 版权所有(C)2010,JPO&INPIT