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    • 41. 发明授权
    • Method for manufacturing joined body, and joined body
    • 制造接合体和接合体的方法
    • US09156206B2
    • 2015-10-13
    • US14122374
    • 2011-05-31
    • Hiroyuki Masuda
    • Hiroyuki Masuda
    • B29C65/48B32B37/15B32B38/04B32B38/10B29C69/00G02B5/20H01L51/00B32B3/02
    • B29C69/004B32B3/02G02B5/20G02B5/201H01L51/0024H01L51/003H01L2251/566Y10T156/1082Y10T428/24851
    • The present invention provides a joined body manufacturing method with which the resin material is accurately attached to the first base material. The method includes: an attaching step of attaching a sheet material having resin material on one main surface of a sheet base material to a first base material such that a predetermined area is covered; a forming step of forming a slit for ease of separation on the sheet material attached to the first base material in accordance with the predetermined area; and a separating step of separating part of the resin material inside the slit from the sheet base material such that the part of the resin material inside the slit remains on the predetermined area of the first base material and part of the resin material outside the slit does not remain on the first base material.
    • 本发明提供了一种连接体制造方法,其中树脂材料被精确地附着在第一基材上。 该方法包括:附着步骤,将具有树脂材料的片材在片材基材的一个主表面上附着到第一基材上,使得预定区域被覆盖; 形成步骤,根据所述预定区域在附接到所述第一基材的所述片材上形成用于分离的狭缝; 以及分离步骤,将所述狭缝中的树脂材料的一部分与所述片材基材分离,使得所述狭缝内部的所述树脂材料的所述部分保留在所述第一基材的预定区域上,并且所述狭缝外部的所述树脂材料的一部分 不留在第一基材上。
    • 42. 发明授权
    • Method for assaying keratan sulfate, assay kit therefor and method for detecting joint disease by using the same
    • 用于测定硫酸角质素的方法,其测定试剂盒及其用于检测关节疾病的方法
    • US08822229B2
    • 2014-09-02
    • US13142262
    • 2009-12-24
    • Shigeyuki WakitaniHiroshi FujitaTakeshi IshimaruKoji YamamotoYasuhiro KurahashiJunichi OnayaHiroyuki Masuda
    • Shigeyuki WakitaniHiroshi FujitaTakeshi IshimaruKoji YamamotoYasuhiro KurahashiJunichi OnayaHiroyuki Masuda
    • G01N33/564
    • G01N33/53G01N2400/40G01N2800/102
    • The inventions provides a method for immunologically determining a keratan sulfate level which method includes bringing an anti-keratan sulfate monoclonal antibody into contact with a biological sample, the anti-keratan sulfate monoclonal antibody exhibiting a relative reaction specificity between keratan sulfate-I and keratan sulfate-II represented by IC50KS-I/KS-II of 0.4 to 5, to thereby provide a signal; and detecting keratan sulfate contained in the biological sample from the signal. On the basis of the method, the invention also provides a joint disease detection method and a method for assessing the effect of a remedy for a joint disease and a candidate substance therefor. Through these methods, a very small amount of keratan sulfate contained in a sample, can be determined. Particularly, these methods can determine, at high-sensitivity and high-specificity, the total keratan sulfate including keratan sulfate-I, which have been difficult to determine through a conventional technique. The methods also enables detect a joint disease and assess the effect of a remedy for a joint disease or a candidate substance therefor.
    • 本发明提供了一种免疫测定硫酸角质素水平的方法,该方法包括使硫酸角质素硫酸单克隆抗体与生物样品接触,硫酸角质素-I与硫酸角质素之间呈现相对反应特异性的硫酸角质素单体抗体 -II由IC50KS-I / KS-II表示,为0.4〜5,从而提供信号; 并从信号中检测生物样品中所含的硫酸角质素。 在该方法的基础上,本发明还提供了关于联合疾病的检测方法和评估对于关节疾病及其候选物质的补救效果的方法。 通过这些方法,可以测定样品中所含的极少量硫酸角质素。 特别地,这些方法可以高灵敏度和高特异性地确定通过常规技术难以确定的总硫酸角质素,包括硫酸角质素-I。 该方法还能够检测关节疾病并评估对于关节疾病或候选物质的补救的效果。
    • 45. 发明授权
    • Manufacturing method for semiconductor integrated circuit device
    • 半导体集成电路器件的制造方法
    • US08187966B2
    • 2012-05-29
    • US12411387
    • 2009-03-25
    • Hiroyuki MasudaHiroshi OshitaNobuhiro Konishi
    • Hiroyuki MasudaHiroshi OshitaNobuhiro Konishi
    • H01L21/4763
    • H01L21/02074H01L21/67046H01L21/67051H01L21/67219H01L21/67745H01L21/76808H01L21/76832H01L21/76834H01L2221/1036
    • A Cu-CMP step applied to processes for 130 nm, 90 nm, and 65 nm technical nodes or the like mainly employs slurry to which an anticorrosive agent is added for preventing corrosion of Cu wiring. The inventors of the present application have studied and clearly found that in the Cu-CMP step using the slurry with the anticorrosive agent added thereto, the anticorrosive agent often forms complexes with Cu, which remain as foreign matter on a wafer in large quantity, leading to a reduction in yield, and in reliability of TDDB characteristics of the Cu wiring. In the invention of the present application, a post-CMP cleaning process involves applying wet cleaning to a wafer by supplying a cleaning solution, such as a chemical solution or pure water, to a device surface of the wafer substantially in a vertical direction with respect to the horizontal device surface, while rotating the wafer substantially about its center in the horizontal plane. The rotation speed of the wafer is set low such that the thickness of the cleaning solution over the entire device surface becomes substantially uniform.
    • 应用于130nm,90nm和65nm技术节点等的处理的Cu-CMP步骤主要采用添加有防腐蚀剂以防止Cu布线腐蚀的浆料。 本申请的发明人已经研究并清楚地发现,在使用添加了防锈剂的浆料的Cu-CMP步骤中,防腐剂通常与Cu形成复合物,Cu与大量的晶片上留下异物,导致 降低产量,并且在Cu布线的TDDB特性的可靠性方面。 在本申请的发明中,后CMP清洗工艺涉及通过向晶片的装置表面提供基本上沿垂直方向的清洁溶液(例如化学溶液或纯水)向晶片施加湿清洗 同时使晶片基本上绕其水平面的中心旋转。 将晶片的旋转速度设定得较低,使得整个器件表面上的清洁溶液的厚度变得基本均匀。
    • 47. 发明申请
    • PLAY RESULT PROCESSING SYSTEM
    • 播放结果处理系统
    • US20110124416A1
    • 2011-05-26
    • US13055396
    • 2009-07-14
    • Hiroyuki MasudaKoji MakinoYoshito FukudaMasanori KonoMasato OtsukaTakayuki Akita
    • Hiroyuki MasudaKoji MakinoYoshito FukudaMasanori KonoMasato OtsukaTakayuki Akita
    • A63F9/24A63F13/02
    • A63F13/335A63F13/12A63F13/79A63F2300/1075A63F2300/208A63F2300/407A63F2300/537A63F2300/5546A63F2300/572A63F2300/61A63F2300/8047
    • A play result processing system includes a first storage part for storing player identifiers, each of which is unique to a player of a computer game and for storing medium identifiers each of which is unique to an information storage medium used for playing the computer game, each one of the player identifiers being associated with at least one of the medium identifiers in the first storage part. The play result processing system also includes a second storage part for storing the player identifiers and data-generation information elements, each of the data-generation information elements being necessary for generating a data element that indicates a message in a manner that is unique to the player corresponding to the message, the player identifier for each single player being associated with the data-generation information element for the player in the second storage part. The play result processing system receives data indicating a set including a play result and a medium identifier for an information storage medium used for the play; generates a message that indicates the play result contained in the set indicated by the data received at the receiver in a manner that is unique to a player, the manner depending on the data-generation information element associated in the second storage part with the player identifier that is associated in the first storage part with the medium identifier received at the receiver; and transmits the generated message to a webpage production system.
    • 播放结果处理系统包括:第一存储部分,用于存储播放器标识符,每个播放器标识符对于计算机游戏的播放器是唯一的,并且用于存储媒体标识符,每个标识符对于用于播放计算机游戏的信息存储介质是唯一的,每个 播放器标识符之一与第一存储部分中的至少一个媒体标识符相关联。 播放结果处理系统还包括用于存储玩家标识符和数据生成信息元素的第二存储部件,每个数据生成信息元素是生成表示消息的数据元素所必需的, 播放器对应于消息,每个单个播放器的播放器标识符与第二存储部分中的玩家的数据生成信息元素相关联。 播放结果处理系统接收指示包括用于播放的信息存储介质的播放结果和媒体标识符的集合的数据; 生成指示包含在由接收机接收的数据所指示的集合中的播放结果的消息,该播放结果以播放器唯一的方式,取决于与具有播放器标识符的第二存储部分中相关联的数据生成信息元素 在第一存储部分中与在接收机处接收的介质标识符相关联; 并将生成的消息发送到网页制作系统。
    • 49. 发明申请
    • MANUFACTURING METHOD FOR SEMICONDUCTOR INTEGRATED CIRCUIT DEVICE
    • 半导体集成电路器件的制造方法
    • US20090286392A1
    • 2009-11-19
    • US12411387
    • 2009-03-25
    • Hiroyuki MasudaHiroshi OshitaNobuhiro Konishi
    • Hiroyuki MasudaHiroshi OshitaNobuhiro Konishi
    • H01L21/768
    • H01L21/02074H01L21/67046H01L21/67051H01L21/67219H01L21/67745H01L21/76808H01L21/76832H01L21/76834H01L2221/1036
    • A Cu-CMP step applied to processes for 130 nm, 90 nm, and 65 nm technical nodes or the like mainly employs slurry to which an anticorrosive agent is added for preventing corrosion of Cu wiring. The inventors of the present application have studied and clearly found that in the Cu-CMP step using the slurry with the anticorrosive agent added thereto, the anticorrosive agent often forms complexes with Cu, which remain as foreign matter on a wafer in large quantity, leading to a reduction in yield, and in reliability of TDDB characteristics of the Cu wiring. In the invention of the present application, a post-CMP cleaning process involves applying wet cleaning to a wafer by supplying a cleaning solution, such as a chemical solution or pure water, to a device surface of the wafer substantially in a vertical direction with respect to the horizontal device surface, while rotating the wafer substantially about its center in the horizontal plane. The rotation speed of the wafer is set low such that the thickness of the cleaning solution over the entire device surface becomes substantially uniform.
    • 应用于130nm,90nm和65nm技术节点等的处理的Cu-CMP步骤主要采用添加有防腐蚀剂以防止Cu布线腐蚀的浆料。 本申请的发明人已经研究并清楚地发现,在使用添加有防锈剂的浆料的Cu-CMP步骤中,防腐剂通常与Cu大量形成与Cu大量的复合物,其作为异物留在晶片上,导致 降低产量,并且在Cu布线的TDDB特性的可靠性方面。 在本申请的发明中,后CMP清洗工艺涉及通过向晶片的装置表面提供基本上沿垂直方向的清洁溶液(例如化学溶液或纯水)向晶片施加湿清洗 同时使晶片基本上绕其水平面的中心旋转。 将晶片的旋转速度设定得较低,使得整个器件表面上的清洁溶液的厚度变得基本均匀。