PHOTOACID GENERATING POLYMERS CONTAINING A URETHANE LINKAGE FOR LITHOGRAPHY
    102.
    发明申请
    PHOTOACID GENERATING POLYMERS CONTAINING A URETHANE LINKAGE FOR LITHOGRAPHY 有权
    包含用于LITHOGRAPHY的URETHANE链接的光学发生聚合物

    公开(公告)号:US20130260313A1

    公开(公告)日:2013-10-03

    申请号:US13436881

    申请日:2012-03-31

    IPC分类号: G03F7/20 G03F7/004 C08F228/02

    摘要: A photoacid generating polymer (PAG polymer) comprises i) a first repeat unit of capable of reacting with a photogenerated acid to form a carboxylic acid containing repeat unit, ii) a second repeat unit of capable of forming the photogenerated acid, and iii) a third repeat unit comprising a norbornyl ester, wherein a norbornyl ring of the norbornyl ester comprises a monovalent substituent having the formula *-L′-C(CF3)2(OH). L′ is a divalent linking group comprising at least one carbon and the starred bond of L′ is linked to the norbornyl ring. The first repeat unit, second repeat unit, and the third repeat unit are covalently bound repeat units of the PAG polymer.

    摘要翻译: 产生光酸的聚合物(PAG聚合物)包括i)能够与光生酸反应形成含羧酸的重复单元的第一重复单元,ii)能够形成光生酸的第二重复单元,和iii) 包含降冰片基酯的第三重复单元,其中降冰片基酯的降冰片基环包含具有式* -L'-C(CF 3)2(OH)的一价取代基。 L'是包含至少一个碳的二价连接基团,L'的星形键与降冰片基环连接。 第一重复单元,第二重复单元和第三重复单元是PAG聚合物的共价键重复单元。

    Method for measuring blood components and biosensor and measuring instrument for use therein
    103.
    发明授权
    Method for measuring blood components and biosensor and measuring instrument for use therein 有权
    用于测量血液成分的方法和用于其中的生物传感器和测量仪器

    公开(公告)号:US08524055B2

    公开(公告)日:2013-09-03

    申请号:US13094356

    申请日:2011-04-26

    IPC分类号: G01N27/327 G01N33/66

    摘要: The present invention provides a method of measuring a component in blood, by which the amounts of blood cells and an interfering substance can be measured with high accuracy and high reliability and the amount of the component can be corrected accurately based on the amounts of the blood cells and the interfering substance. In a sensor for measuring a blood component, a first working electrode 13 measures a current that flows during a redox reaction of a blood component, a second working electrode 17 measures the amount of blood cells, and a third working electrode 12 measures the amount of an interfering substance. Next, based on the measurement results, the amount of the blood component to be measured is corrected. Thus, more accurate and precise measurement of the amount of the blood component can be realized.

    摘要翻译: 本发明提供一种测定血液成分的方法,通过该方法能够以高精度,高可靠性测定血细胞量和干扰物质的量,并且能够根据血液的量准确地校正成分的量 细胞和干扰物质。 在用于测量血液成分的传感器中,第一工作电极13测量在血液成分的氧化还原反应期间流动的电流,第二工作电极17测量血细胞的量,第三工作电极12测量 干扰物质。 接下来,基于测定结果,校正被测量的血液成分的量。 因此,可以实现对血液成分量的更准确和精确的测量。

    SILICON OXYNITRIDE FILM AND METHOD FOR FORMING SAME, AND SEMICONDUCTOR DEVICE
    104.
    发明申请
    SILICON OXYNITRIDE FILM AND METHOD FOR FORMING SAME, AND SEMICONDUCTOR DEVICE 有权
    硅氧烷膜及其形成方法和半导体器件

    公开(公告)号:US20130181291A1

    公开(公告)日:2013-07-18

    申请号:US13823108

    申请日:2010-12-08

    IPC分类号: H01L21/02 H01L29/786

    摘要: An insulating film that does not contain hydrogen or free fluorine and has good film properties is provided. A silicon oxynitride film includes silicon, nitrogen, oxygen, and fluorine, wherein the elemental percentage (N+O+F)/Si of the total (N+O+F) of nitrogen (N), oxygen (0), and fluorine (F) to silicon (Si) is in a range of 1.93 to 1.48, and in the silicon oxynitride film, an elemental percentage of silicon ranges from 0.34 to 0.41, an elemental percentage of nitrogen ranges from 0.10 to 0.22, an elemental percentage of oxygen ranges from 0.14 to 0.38, and an elemental percentage of fluorine ranges from 0.17 to 0.24. The film can be formed on a substrate by inductive coupling type plasma CVD whereby a plasma is generated by inductive coupling using a silicon tetrafluoride gas, a nitrogen gas, and an oxygen gas as a material gas.

    摘要翻译: 提供不含氢或游离氟并具有良好膜性能的绝缘膜。 氧氮化硅膜包括硅,氮,氧和氟,其中氮(N),氧(0)和氟(N)的总(N + O + F)的总元素(N + O + F)/ Si (F)与硅(Si)的比例在1.93〜1.48的范围内,氮氧化硅膜的元素百分比为0.34〜0.41,氮的元素百分比为0.10〜0.22,元素的比例 氧的范围为0.14〜0.38,氟的元素百分比为0.17〜0.24。 可以通过感应耦合型等离子体CVD在基板上形成膜,由此通过使用四氟化硅气体,氮气和氧气作为原料气体的感应耦合产生等离子体。

    DISPLAY DEVICE
    107.
    发明申请
    DISPLAY DEVICE 审中-公开
    显示设备

    公开(公告)号:US20120262660A1

    公开(公告)日:2012-10-18

    申请号:US13518265

    申请日:2011-03-28

    IPC分类号: H05B33/12 G02F1/1333

    摘要: An organic EL display device (1) includes an organic substrate (2) and an organic EL display element (11) provided on the organic substrate (2). A honeycomb-shaped structural element (30) including a plurality of cells (30b) separated from each other by a cell wall (30a) is provided on a surface opposite to the organic EL display element (11) of the organic substrate (2).

    摘要翻译: 有机EL显示装置(1)包括有机基板(2)和设置在有机基板(2)上的有机EL显示元件(11)。 在与有机基板(2)的有机EL显示元件(11)相对的表面上,设置有由单元壁(30a)彼此分离的多个单元(30b)的蜂窝状结构体(30) 。

    Image acquisition apparatus
    109.
    发明授权
    Image acquisition apparatus 有权
    图像采集装置

    公开(公告)号:US08144189B2

    公开(公告)日:2012-03-27

    申请号:US12133861

    申请日:2008-06-05

    申请人: Masaki Fujiwara

    发明人: Masaki Fujiwara

    摘要: This invention provides an inexpensive image acquisition apparatus capable of capturing not only an image of a still object, but also an image of a moving object with the use of an appropriate quantity of illumination light. The image acquisition apparatus includes a head section incorporating an image acquisition device therein and including a lens module and an illuminating part, a main body section including an illumination light source, an image acquisition control part and an image processing part, and a cable section connecting between the main body section and the head section. The lens module is one of a first lens module incorporating therein a lens for high-speed observation and a second lens module incorporating therein a lens for enlargement observation, which is selectively attached to the head section. In a case where the first lens module is attached to the head section, the illuminating part is a first lens illumination unit for illuminating a region of which an image is captured by the first lens module. Herein, the first lens illumination unit is attached to the head section.

    摘要翻译: 本发明提供一种廉价的图像采集装置,其能够利用适当数量的照明光捕获静止物体的图像,而且捕获移动物体的图像。 图像采集装置包括:头部,其中包括图像获取装置,包括透镜模块和照明部分,主体部分包括照明光源,图像获取控制部分和图像处理部分,以及连接 在主体部分和头部之间。 透镜模块是其中包括用于高速观察的透镜的第一透镜模块和其中包括用于放大观察的透镜的第二透镜模块之一,其被选择性地附接到头部。 在第一透镜模块附接到头部的情况下,照明部分是用于照亮第一透镜模块捕获图像的区域的第一透镜照明单元。 这里,第一透镜照明单元附接到头部。

    Biosensor, thin film electrode forming method, quantification apparatus, and quantification method
    110.
    发明授权
    Biosensor, thin film electrode forming method, quantification apparatus, and quantification method 有权
    生物传感器,薄膜电极形成方法,定量装置和定量方法

    公开(公告)号:US08142629B2

    公开(公告)日:2012-03-27

    申请号:US12802573

    申请日:2010-06-09

    IPC分类号: G01N27/327

    摘要: A biosensor according to the present invention comprises a support 1, a conductive layer 2 composed of an electrical conductive material such as noble metal, for example gold, palladium or the like, and carbon, slits 3a and 3b parallel to the side of the support 1, slits 4a and 4b vertical to the side of the support 1, a working electrode 5, a counter electrode 6, a detecting electrode 7, a spacer 8 which covers the working electrode 5, the counter electrode 6 and the detecting electrode 7 on the support 1, a rectangular cutout part 9 forming a specimen supply path, an inlet 9a of the specimen supply path, a reagent layer 12 formed by applying a reagent including an enzyme or the like to the working electrode 5, the counter electrode 6 and the detecting electrode 7, which is exposed from the cutout part 9 of the spacer 8, and a cover 13 which covers the spacer 8, as shown in FIG. 1. The so-constructed biosensor can be formed by a simple method, and a biosensor which is excellent in a measuring accuracy as well as a biosensor in which a reagent layer is placed uniformly on the electrodes regardless of a reagent liquid composition, and which has a uniform performance can be realized.

    摘要翻译: 根据本发明的生物传感器包括支撑体1,由诸如金,钯等的诸如贵金属的导电材料构成的导电层2和碳,平行于载体侧的狭缝3a和3b 如图1所示,与支撑体1侧垂直的狭缝4a,4b,工作电极5,对电极6,检测电极7,覆盖工作电极5的间隔件8,对置电极6和检测电极7 支撑体1,形成试样供给路径的矩形切口部9,试料供给路径的入口9a,通过将包含酶等的试剂涂布在工作电极5上而形成的试剂层12,对电极6和 从间隔件8的切口部9暴露的检测电极7和覆盖间隔件8的盖13,如图1所示。 如此构造的生物传感器可以通过简单的方法形成,并且测量精度优异的生物传感器以及试剂层均匀地放置在电极上而不考虑试剂液体组成的生物传感器,并且其中 具有统一的性能可以实现。