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公开(公告)号:WO2010038579A8
公开(公告)日:2011-12-29
申请号:PCT/JP2009065508
申请日:2009-09-04
Applicant: SONY CORP , ICHIMURA MARI , MACHIDA KENZO , KISHII NORIYUKI , TANAKA MASANOBU
Inventor: ICHIMURA MARI , MACHIDA KENZO , KISHII NORIYUKI , TANAKA MASANOBU
IPC: G01N33/543 , C12M1/00 , C12N15/09
CPC classification number: G01N33/54313 , B01J2219/00432 , B01J2219/005 , B01J2219/00502 , B01J2219/0061 , B01J2219/00612 , B01J2219/00637 , B01J2219/00677 , B01J2219/00722
Abstract: A process for producing microbeads is provided which is capable of supplying a bead set including many kinds of microbeads, the population of each kind of microbeads being clear. The process for producing microbeads includes: a step (S1) in which a hydrophilic layer comprising a hydrophilic organic material is formed on a substrate; a step (S2) in which a thin film capable of being released as microbeads is superposed on the hydrophilic layer; a shaping step (S3) in which the thin film formed is shaped into a given form by photolithography; an immobilization step (S6) in which a given substance is immobilized to the shaped thin film; and a release step (S7) in which the shaped thin film having the substance immobilized thereto is released from the substrate together with at least part of the hydrophilic layer to obtain the microbeads.
Abstract translation: 提供了一种生产微珠的方法,其能够提供包括多种微珠的珠粒组,每种微珠的群体是清晰的。 制造微珠的方法包括:在基材上形成包含亲水性有机材料的亲水层的工序(S1) 其中能够作为微珠释放的薄膜重叠在亲水层上的步骤(S2); 通过光刻将所形成的薄膜成形为规定形状的成形步骤(S3); 给定物质固定在成形薄膜上的固定步骤(S6) 以及释放步骤(S7),其中固定有固体物质的成形薄膜与至少部分亲水层一起从基底释放以获得微珠。
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公开(公告)号:BRPI0919402A2
公开(公告)日:2015-12-15
申请号:BRPI0919402
申请日:2009-09-04
Applicant: SONY CORP
Inventor: MACHIDA KENZO , ICHIMURA MARI , TANAKA MASANOBU , KISHII NORIYUKI
IPC: C12M1/00 , C12N15/09 , G01N33/543
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公开(公告)号:EP1507164A4
公开(公告)日:2008-10-01
申请号:EP03725813
申请日:2003-05-16
Applicant: SONY CORP
Inventor: TANAKA MASANOBU , ODAKE RYOTA , TAKAHASHI KENICHI
CPC classification number: G02F1/163 , G02F1/1506 , G09G3/38 , G09G2310/061 , G09G2320/0233 , G09G2320/043
Abstract: A method for driving a display device capable of eliminating image irregularities and reducing the time required for display. The display device applies voltage to each of pixels by row electrodes and column electrodes arranged in a matrix for displaying an image. The display device is, for example, a metal precipitation type electro-chemical display device. By superimposing the address pulse voltage of the row electrode Vadress-row and the address pulse voltage of the column electrode Vadress-col, voltage above a threshold value Vth is applied selectively to a predetermined pixel for performing address drive and a data sustaining pulse voltage Vsus is applied immediately after the address pulse voltage of the row electrode Vadress-row. The data sustaining pulse voltage Vsus satisfies the following Equation (1). Vsus + Vadress-col
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公开(公告)号:EP2333547A4
公开(公告)日:2013-05-01
申请号:EP09817616
申请日:2009-09-04
Applicant: SONY CORP
Inventor: ICHIMURA MARI , MACHIDA KENZO , KISHII NORIYUKI , TANAKA MASANOBU
IPC: G01N33/543 , C12M1/00 , C12N15/09
CPC classification number: G01N33/54313 , B01J2219/00432 , B01J2219/005 , B01J2219/00502 , B01J2219/0061 , B01J2219/00612 , B01J2219/00637 , B01J2219/00677 , B01J2219/00722
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公开(公告)号:RU2492487C2
公开(公告)日:2013-09-10
申请号:RU2011111081
申请日:2009-09-04
Applicant: SONY CORP
Inventor: ITIMURA MARI , MATIDA KENZO , KISII NORIJUKI , TANAKA MASANOBU
IPC: G01N33/543 , A61K9/62
Abstract: Группаизобретенийотноситсяк способуполучениямикробусини самиммикробусинами можетиспользоватьсядлябиохимическихисследований. Указанныйспособвключаетстадию S- формированиегидрофильногослоя, выполненногоизгидрофильногоорганическогоматериаланасубстрате, стадию S- ламинированиенагидрофильномслоетонкойпленки, котораяможетотслаиватьсяв видемикробусин, стадиюформования Sтонкойпленкив заданнуюконфигурациюметодомфотолитографии, стадию S- образованиетвердойфазызаданноговеществанасформованныхтонкихпленках, истадиюотслаиванияотсубстрата Sсформованныхтонкихпленок, которыеужеобразовалитвердуюфазус веществом, поменьшеймере, нарядус частьюгидрофильногослоя, чтобыполучитьмикробусины. Группаизобретенийобеспечиваетвысокуюаналитическуюточностьбиохимическихисследований. 2.н. и 12 з.п. ф-лы, 8 пр., 9 ил.
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公开(公告)号:AU2003280768A1
公开(公告)日:2004-06-18
申请号:AU2003280768
申请日:2003-11-13
Applicant: SONY CORP
Inventor: TANAKA MASANOBU
Abstract: Disclosed are an electrochemical display and a drive method therefor by which it is possible to restrain deterioration of display density with time variation and to realize excellent display characteristics. In impressing a voltage on pixel electrodes in pixels so as to display an image through deposition and dissolution of a metal, the time of impressing a write voltage on the pixel electrodes is controlled so as to perform gradation display. In this instance, the current density of the current passed through the pixels by the write voltage is set to be not more than 50 mA/cm 2 , the time of impressing the write voltage is divided into a plurality of sub-fields, and whether the voltage is to be impressed or not is selected in each of the sub-fields, whereby the time of impressing the write voltage is controlled.
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公开(公告)号:AU5127285A
公开(公告)日:1986-07-03
申请号:AU5127285
申请日:1985-12-16
Applicant: SONY CORP
Inventor: TANAKA MASANOBU , TANI TAKERU
Abstract: A receiver having a tuner (5, 13) for tuning to a desired broadcast station and connected with a detector (3, 10) through which a demodulated signal is supplied as an input signal to a function selector (5) which receives at least one other input signal from another source thereof and which selects either the demodulated signal or the other input signal as the output signal therefrom, a tuning control (6) for selecting the broadcast frequency to which the tuner (5,13) is adjusted and a volume control (5) for adjusting the volume of the output signal from the function selector (5); is provided with a common display device (17), desirably constituted by a row of bar-type display elements (18 1 , 18 2 ...), which selectively displays either the broadcast frequency, when the function selector (5) selects the demodualted input signal, or the volume level when the function selector (5) selects the other input signal or when the volume control (5) effects a change in the volume level.
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公开(公告)号:DE102010011010A1
公开(公告)日:2010-10-07
申请号:DE102010011010
申请日:2010-03-11
Applicant: SONY CORP
Inventor: TANAKA MASANOBU
IPC: H01L21/82 , G02F1/133 , G09F9/35 , H01L21/301 , H01L21/3205 , H01L21/84 , H01L27/32
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公开(公告)号:CA1241997A
公开(公告)日:1988-09-13
申请号:CA497960
申请日:1985-12-18
Applicant: SONY CORP
Inventor: TANAKA MASANOBU , TANI TAKERU
Abstract: FREQUENCY AND VOLUME DISPLAY FOR A RECEIVER A receiver having a tuner for tuning to a desired broadcast station and connected with a detector through which a demodulated signal is supplied as an input signal to a function selector which receives at least one other input signal from another source thereof and which selects either the demodulated signal or the other input signal as the output signal therefrom, a tuning control for selecting the broadcast frequency to which the tuner is adjusted and a volume control for adjusting the volume of the output signal from the function selector; is provided with a common display device, desirably constituted by a row of bar-type display elements, which selectively displays either the broadcast frequency, when the function selector selects the demodulated input signal, or the volume level when the function selector selects the other input signal or when the volume control effects a change in the volume level.
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公开(公告)号:JP2013032022A
公开(公告)日:2013-02-14
申请号:JP2012249304
申请日:2012-11-13
Inventor: TANAKA MASANOBU , ISHIHARA HIROSHI , SHIMAMURA TOSHIKI , KAMEI TAKAHIRO
Abstract: PROBLEM TO BE SOLVED: To provide a method of forming a metal thin film, capable of achieving refinement and high yield than that of a conventional case, without raising the resistance value of a thin film higher than necessity.SOLUTION: An electroless plating processing is applied to a substrate 40 to which an ink 2A including a catalyst material is transcribed. A metal thin film 42 is selectively formed to the transcriptional region of the ink 2A on the substrate 40. Moreover, the ink 2 is transcribed by using a plate blanket 1, and the contact is performed by the pressure compression in a transfer process. The alignment becomes easy and the pressure at the contact is made uniform in the whole, and the yield when the metal thin film 42 is formed improved. Moreover, not the material of the metal thin film 42 but the catalyst material of the electroless plating processing is included in the ink 2. The resistance value of metal thin film 42 lowers and the refinement of the pattern becomes easy compared with that of the conventional case.
Abstract translation: 要解决的问题:提供一种形成金属薄膜的方法,其能够实现比常规情况下的细化和高产率,而不需要提高薄膜的电阻值。 解决方案:对包含催化剂材料的油墨2A进行转印的基板40施加化学镀处理。 金属薄膜42选择性地形成在基板40上的墨水2A的转录区域上。此外,通过使用印版橡皮布1来转录墨水2,并且在转印过程中通过压力压缩进行接触。 对准变得容易,并且使接触处的压力整体上均匀,并且改善形成金属薄膜42时的产量。 此外,不是金属薄膜42的材料,而是化学镀处理的催化剂材料不包括在油墨2中。与常规的相比,金属薄膜42的电阻值降低,图案的细化变得容易 案件。 版权所有(C)2013,JPO&INPIT
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