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公开(公告)号:US06917408B2
公开(公告)日:2005-07-12
申请号:US10307343
申请日:2002-12-02
申请人: Hiromi Nishino
发明人: Hiromi Nishino
IPC分类号: G02F1/1345 , G09F9/30 , G09F9/35 , H05B33/06 , G02F1/1368
CPC分类号: G02F1/1345
摘要: A thin tantalum film deposited on an insulating substrate is patterned to form an electrode wiring of a first layer which is the lowermost layer for constituting the input lead wiring and, then, an SiNx film is formed as the gate-insulating film. An electrode wiring of a second layer formed of an ITO (indium tin oxide) film and an electrode wiring of a third layer formed of a thin tantalum film are laminated on the gate-insulating film in a manner that the plurality of electrode wiring portions possess widths W1, W2 and W3 which are 300 μm or less at the greatest. Here, the electrode wiring of the second layer and the electrode wiring of the third layer are so arranged as will not be overlapped on the edge portions on both sides of the electrode wiring of the first layer.
摘要翻译: 对沉积在绝缘基板上的薄的钽膜进行图案化以形成作为用于构成输入引线的最下层的第一层的电极配线,然后形成SiNx膜作为栅极绝缘膜。 由ITO(氧化铟锡)膜形成的第二层和由薄钽膜形成的第三层的电极布线的电极布线层叠在栅极绝缘膜上,使得多个电极布线部分具有 宽度W 1,W 2和W 3最大为300μm或更小。 这里,第二层的电极配线和第三层的电极配线布置成不会重叠在第一层的电极布线两侧的边缘部分上。
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公开(公告)号:US5252988A
公开(公告)日:1993-10-12
申请号:US628845
申请日:1990-12-11
申请人: Hiroyuki Katayama , Hiroshi Suzuki , Masato Kawanishi , Mitsuhiko Yoshikawa , Toshitaka Tamura , Takatoshi Mizoguchi , Hiromi Nishino , Akiyoshi Fujii , Takayuki Taminaga , Katsuyasu Deguchi
发明人: Hiroyuki Katayama , Hiroshi Suzuki , Masato Kawanishi , Mitsuhiko Yoshikawa , Toshitaka Tamura , Takatoshi Mizoguchi , Hiromi Nishino , Akiyoshi Fujii , Takayuki Taminaga , Katsuyasu Deguchi
CPC分类号: B41J2/3355 , B41J2/3357 , B41J2/3358 , H05K1/0201 , H05K1/16
摘要: A thermal head for a thermal recording machine including an insulating substrate which is composed of a printed circuit board made of a heat resistant resin and covered with a copper film, a plurality of thermal resistors disposed on the insulating substrate in the direction corresponding to the scanning, discrete electrodes electrically connecting first ends of the thermal resistors to a control element, a common electrode electrically connecting the other ends of the thermal resistors together, a heat releasing layer formed of the copper film of the insulating substrate on the lower portions of the thermal resistors, and a thermal accumulating layer of a polyimide resin covering the heat releasing layer.
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公开(公告)号:US20130077009A1
公开(公告)日:2013-03-28
申请号:US13702749
申请日:2011-04-21
申请人: Isao Asako , Yukinori Nakagawa , Hiromi Nishino , Shinji Shimada
发明人: Isao Asako , Yukinori Nakagawa , Hiromi Nishino , Shinji Shimada
IPC分类号: G02F1/1339
CPC分类号: G02F1/1339 , G02F1/1334 , G02F1/133512
摘要: Provided is a display panel using polymer network liquid crystal in which a monomer unreacted region is reduced and a thin-film transistor can be prevented from being irradiated with light energy. In the display panel, a black matrix (22a) is provided as an element having a light-shielding property in a first substrate (2a), a pixel electrode (37) and a thin-film transistor (32) serving as a switching element for driving the pixel electrode (37) are provided in a second substrate (3a), polymer network liquid crystal (11) is filled between the first substrate (2a) and the second substrate (3a), a cover portion (221) that is part of the black matrix (22a) provided in the first substrate (2a) faces the thin-film transistor (32) provided in the second substrate (3a), and the outer periphery of the cover portion (221) is located outside the outer periphery of a channel region by a specified dimension or more.
摘要翻译: 提供一种使用聚合物网络液晶的显示面板,其中单体未反应区域被还原,并且可以防止薄膜晶体管被光能照射。 在显示面板中,在第一基板(2a),像素电极(37)和用作开关元件的薄膜晶体管(32)中,设置黑矩阵(22a)作为具有遮光性的元件 为了驱动像素电极(37)设置在第二基板(3a)中,聚合物网络液晶(11)填充在第一基板(2a)和第二基板(3a)之间,盖部分(221)是 设置在第一基板(2a)中的黑矩阵(22a)的一部分面向设置在第二基板(3a)中的薄膜晶体管(32),并且盖部分(221)的外周位于外部 通道区域的周边为指定维度以上。
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公开(公告)号:US5586385A
公开(公告)日:1996-12-24
申请号:US599858
申请日:1996-02-13
申请人: Hiromi Nishino , Akiyoshi Fujii
发明人: Hiromi Nishino , Akiyoshi Fujii
CPC分类号: G11B5/10 , G11B5/3106 , Y10T29/49032 , Y10T29/49048
摘要: A method of manufacturing a thin film magnetic head includes the steps of, integrally forming a resin mold of a prescribed thickness by insert molding on a substrate including an element portion and a wiring connection portion, and shaping in the vicinity of the element portion an end of the substrate to form a magnetic recording medium sliding surface. According to this method, the manufacturing process can be simplified, and the lower manufacturing cost and higher yield can be implemented.
摘要翻译: 一种制造薄膜磁头的方法包括以下步骤:通过嵌入成型将具有规定厚度的树脂模具整体地形成在包括元件部分和布线连接部分的基板上,并且在元件部分附近形成端部 以形成磁记录介质滑动表面。 根据该方法,能够简化制造工序,能够实现较低的制造成本和较高的产量。
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公开(公告)号:US20120154733A1
公开(公告)日:2012-06-21
申请号:US13393136
申请日:2010-05-21
申请人: Yukinori Nakagawa , Isao Asako , Hiromi Nishino , Shinji Shimada
发明人: Yukinori Nakagawa , Isao Asako , Hiromi Nishino , Shinji Shimada
IPC分类号: G02F1/1339
CPC分类号: G02F1/1341 , G02F2001/13396 , G02F2001/13775
摘要: Provided is a liquid crystal display panel that employs polymer network liquid crystals and that can prevent a separation between a substrate and a liquid crystal layer. The liquid crystal display panel includes a color filter 1 and a TFT array substrate 2 that face each other in a substantially parallel manner with a prescribed gap therebetween, a layer of polymer network liquid crystals 33 formed between the color filter 1 and the TFT array substrate 2, and a layer of a sealing material 34 that encloses and seals the polymer network liquid crystals 33. In a region enclosed by the sealing material 34 in the color filter 1, first spacers 12a that define the gap between the color filter 1 and the TFT array substrate 2 are formed. A total cross-sectional area of the first spacers 12a and an area of the region enclosed by the sealing material 34 satisfy the following condition: (the total cross-sectional area of the first spacers 12a)/(the area of the region enclosed by the sealing material 34)=0.001 to 0.017.
摘要翻译: 提供一种使用聚合物网络液晶并且可以防止基板和液晶层之间的分离的液晶显示面板。 液晶显示面板包括滤色器1和TFT阵列基板2,它们以大致平行的方式彼此面对,具有规定的间隙,形成在滤色器1和TFT阵列基板之间的聚合物网络液晶层33 封闭和密封聚合物网络液晶33.在由滤色器1中的密封材料34包围的区域中,限定滤色器1和滤色器之间的间隙的第一间隔物12a 形成TFT阵列基板2。 第一间隔件12a的总截面积和由密封材料34包围的区域的面积满足以下条件:(第一间隔件12a的总横截面积)/(由 密封材料34)= 0.001〜0.017。
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公开(公告)号:US08830439B2
公开(公告)日:2014-09-09
申请号:US13702749
申请日:2011-04-21
申请人: Isao Asako , Yukinori Nakagawa , Hiromi Nishino , Shinji Shimada
发明人: Isao Asako , Yukinori Nakagawa , Hiromi Nishino , Shinji Shimada
IPC分类号: G02F1/1339 , G02F1/1335 , G02F1/1334
CPC分类号: G02F1/1339 , G02F1/1334 , G02F1/133512
摘要: Provided is a display panel using polymer network liquid crystal in which a monomer unreacted region is reduced and a thin-film transistor can be prevented from being irradiated with light energy. In the display panel, a black matrix (22a) is provided as an element having a light-shielding property in a first substrate (2a), a pixel electrode (37) and a thin-film transistor (32) serving as a switching element for driving the pixel electrode (37) are provided in a second substrate (3a), polymer network liquid crystal (11) is filled between the first substrate (2a) and the second substrate (3a), a cover portion (221) that is part of the black matrix (22a) provided in the first substrate (2a) faces the thin-film transistor (32) provided in the second substrate (3a), and the outer periphery of the cover portion (221) is located outside the outer periphery of a channel region by a specified dimension or more.
摘要翻译: 提供一种使用聚合物网络液晶的显示面板,其中单体未反应区域被还原,并且可以防止薄膜晶体管被光能照射。 在显示面板中,在第一基板(2a),像素电极(37)和用作开关元件的薄膜晶体管(32)中,设置黑矩阵(22a)作为具有遮光性的元件 为了驱动像素电极(37)设置在第二基板(3a)中,聚合物网络液晶(11)填充在第一基板(2a)和第二基板(3a)之间,盖部分(221)是 设置在第一基板(2a)中的黑矩阵(22a)的一部分面向设置在第二基板(3a)中的薄膜晶体管(32),并且盖部分(221)的外周位于外部 通道区域的周边为指定维度以上。
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公开(公告)号:US5183725A
公开(公告)日:1993-02-02
申请号:US592443
申请日:1990-10-01
申请人: Hiromi Nishino , Keiji Tarui , Hideyuki Toyoshi , Tatsuo Morita
发明人: Hiromi Nishino , Keiji Tarui , Hideyuki Toyoshi , Tatsuo Morita
IPC分类号: G02F1/1343 , G03F7/30 , H01L31/18
CPC分类号: H01L31/1884 , G02F1/13439 , G03F7/30 , Y02E10/50
摘要: An electrode pattern forming method comprising the steps of: forming a transparent conductive film on a substrate, covering said transparent conductive film with an aluminum film, forming a resist material film for etching on said aluminum film, exposing said resist material film followed by developing by immersing said substrate in an electrolyte to form a resist pattern, and patterning said aluminum film using said resist pattern as a mask;the formation of said resist pattern in said electrolyte being conducted with another transparent conductive film which is in direct contact with said electrolyte and electrically connected to said aluminum film.
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