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    • 21. 发明授权
    • Connector
    • 连接器
    • US6019629A
    • 2000-02-01
    • US966150
    • 1997-11-07
    • Hikaru ItoSatoru Nishide
    • Hikaru ItoSatoru Nishide
    • H01R13/639H01R13/627H01R13/635H01R13/64H01R13/641H01R13/703H01R3/00
    • H01R13/635H01R13/641H01R13/6272H01R13/7032
    • An easily produced connector is provided with a partial engagement preventing function. A movable member 30 movably provided in a male connector housing along an engagement direction is biased by coil springs 40 toward a front end position with respect to the engagement direction. When the engagement is stopped when connector housings 10, 20 are partly engaged, the connector housings 10, 20 are separated away from each other by the forces of the coil springs 40, thereby informing an operator that the connector housings 10, 20 were partly engaged. The movable member 30 is formed with an engaging hole 31 which extends in a direction normal to its moving direction and is engageable with a lock arm 12 provided on the female connector housing 10. By providing an engaging portion with the lock arm 12 in the movable member 30, the connector housing can have a simpler construction and can be easily produced unlike a prior art male connector housing which has a complicated construction because the engaging portion is provided therein.
    • 容易制造的连接器具有部分接合防止功能。 沿着接合方向可移动地设置在阳连接器壳体中的可动构件30被螺旋弹簧40朝向相对于接合方向的前端位置偏置。 当连接器壳体10,20部分地接合时接合停止时,连接器壳体10,20被螺旋弹簧40的力彼此分开,从而通知操作者连接器壳体10,20部分地接合 。 可移动部件30形成有沿垂直于其移动方向的方向延伸的接合孔31,并且可与设置在阴连接器壳体10上的锁定臂12接合。通过在锁定臂12上设置可移动的接合部分 连接器壳体可以具有更简单的结构,并且可以容易地制造,这与现有技术的阳连接器壳体不同,这是因为其中设置有接合部分而具有复杂的结构。
    • 22. 发明授权
    • Connector manufacturing method
    • 连接器制造方法
    • US5894661A
    • 1999-04-20
    • US613660
    • 1996-03-11
    • Yasunori WadaHikaru ItoShinsuke TsutsuiHajime KawaseOsamu Sasai
    • Yasunori WadaHikaru ItoShinsuke TsutsuiHajime KawaseOsamu Sasai
    • B29C45/00H01R13/436H01R43/18H01R43/00
    • H01R43/18B29C45/006H01R13/4361Y10S425/01Y10S425/058Y10T29/49204Y10T29/4922Y10T29/49222
    • When a stationary metallic mold and a movable metallic mold are closed, a housing is molded having a retainer insertion hole by the existence of a sliding mold. A retainer is also molded. First, when only the metallic mold is opened, the core pin is withdrawn, and the sliding mold is withdrawn in the longitudinal direction by the cam action of the angular pin, so that the molding portion is withdrawn from the retainer insertion hole. Successively, the sliding mold is relatively drawn out to the front of the advancing and withdrawing passage together with the stationary metallic mold, and the advancing and withdrawing passage becomes open. Next, an auxiliary sliding mold is advanced, and the retainer held by the auxiliary sliding mold is inserted into the retainer insertion hole and temporarily assembled to the housing. It is possible to insert the retainer straight into the retainer insertion hole. The finished product is protruded to the front of the movable metallic mold by the protruding pin.
    • 当固定金属模具和活动金属模具关闭时,通过滑动模具的存在,模制具有保持器插入孔的壳体。 保持器也被模制。 首先,当仅金属模具打开时,芯销被拉出,并且滑动模具通过角销的凸轮作用在纵向方向上被拉出,使得模制部分从保持器插入孔中退出。 接下来,滑动模具与固定金属模具相对地拉出到前进和后退通道的前部,并且前进和退出通道打开。 接着,辅助滑动模具前进,并且由辅助滑动模具保持的保持器插入保持器插入孔中并临时组装到壳体。 可以将保持器直接插入到保持器插入孔中。 成品通过突出销突出到可动金属模具的前部。
    • 23. 发明授权
    • LCD device having driving circuits with multilayer external terminals
    • 具有具有多层外部端子的驱动电路的LCD装置
    • US5748179A
    • 1998-05-05
    • US645484
    • 1996-05-13
    • Hikaru ItoMasataka NatoriMasahiko SuzukiKimitoshi OhgiichiKuniyuki MatsunagaJunichi OhwadaMasumi SasugaShiro Ueda
    • Hikaru ItoMasataka NatoriMasahiko SuzukiKimitoshi OhgiichiKuniyuki MatsunagaJunichi OhwadaMasumi SasugaShiro Ueda
    • G02F1/13G02F1/1345G02F1/1362
    • G02F1/13458G02F1/1345G02F1/13452
    • A liquid crystal display device is provided which reduces the resistance of input wires disposed between a flexible board and driving ICs mounted in a flip-chip style, and enhances resistance against electrocorrosion of input terminals thereof. The liquid crystal display device includes two transparent insulating substrates (SUB1, SUB2) confronting each other through a liquid crystal layer, plural liquid crystal driving circuits (ICs) mounted in a flip-chip style on a surface of one of the substrates located at the side of the liquid crystal layer, a flexible board (FPC) for inputting a signal to each of the liquid crystal driving circuits, and plural input wires (Td) provided on the surface of the one substrate at the side of the liquid crystal layer to connect output terminals of the flexible board to input terminals of the liquid crystal driving circuits. Each input wire includes a first metal layer (g1) in the vicinity of the surface of the substrate, a transparent conductive layer (d1) laminated on the first metal layer, connected to the input terminals of the flexible board, with open portions in the neighborhood of the input terminals of the liquid crystal driving circuits and in the neighborhood of the output terminals of the flexible board, a second metal layer (d2) laminated on the transparent conductive film and connected to the first metal layer at the open portions, and a protection film (PSV1) covering at least the second metal layer.
    • 提供了一种液晶显示装置,其降低了布置在柔性板和以倒装芯片形式安装的驱动IC之间的输入线的电阻,并且增强了其输入端的电腐蚀性。 液晶显示装置包括通过液晶层彼此面对的两个透明绝缘基板(SUB1,SUB2),在位于所述液晶层的一个基板的表面上以倒装芯片式安装的多个液晶驱动电路 液晶层的输入信号的柔性基板(FPC)和设置在液晶层一侧的一个基板的表面上的多个输入布线(Td),以及 将柔性板的输出端连接到液晶驱动电路的输入端。 每个输入线包括在基板表面附近的第一金属层(g1),层叠在第一金属层上的透明导电层(d1),连接到柔性板的输入端,其中开口部分 在液晶驱动电路的输入端子附近和柔性板的输出端附近,叠置在透明导电膜上并与开口部分的第一金属层连接的第二金属层(d2),以及 至少覆盖第二金属层的保护膜(PSV1)。
    • 26. 发明授权
    • Coating and developing apparatus
    • 涂装显影装置
    • US08302556B2
    • 2012-11-06
    • US12855534
    • 2010-08-12
    • Masami AkimotoShinichi HayashiYasushi HayashidaNobuaki MatsuokaYoshio KimuraIssei UedaHikaru Ito
    • Masami AkimotoShinichi HayashiYasushi HayashidaNobuaki MatsuokaYoshio KimuraIssei UedaHikaru Ito
    • B05C5/02B05C11/02
    • H01L21/67184H01L21/67173H01L21/67178H01L21/67207H01L21/67745
    • Provided is a coating and developing apparatus composed of an assembly of plural unit blocks. A first unit-block stack and a second unit-block stack are arranged at different positions with respect to front-and-rear direction. Unit blocks for development, each of which comprises plural processing units including a developing unit that performs developing process after exposure and a transfer device that transfers a substrate among the processing units, are arranged at the lowermost level. Unit blocks for application, or coating, each of which comprises plural processing units including a coating unit that performs application process before exposure and a transfer device that transfers a substrate among the processing units, are arranged above the unit blocks for development. Unit blocks for application are arranged in both the first and second unit-block stacks. Unit blocks for application which a wafer goes through are determined depending on the layering positional relationship between an antireflective film and a resist film. An exposed wafer goes only through the unit block for development without going through any one of the unit blocks for application.
    • 提供一种由多个单元块组成的涂层显影装置。 第一单位块堆叠和第二单位块堆叠被布置在相对于前后方向的不同位置。 用于显影的单元块,每个包括多个处理单元,包括执行曝光之后的显影处理的显影单元和在处理单元之间传送基板的转印装置布置在最下层。 用于应用或涂布的单元块包括多个处理单元,其包括在曝光之前进行施加处理的涂覆单元和在处理单元之间传送基板的转印装置,布置在用于显影的单位块上方。 用于应用的单元块被布置在第一和第二单元块堆叠中。 根据防反射膜和抗蚀剂膜之间的层叠位置关系确定晶片通过的应用单元块。 暴露的晶片仅通过单元块进行开发,而不经过用于应用的单元块中的任何一个。
    • 30. 发明申请
    • ELECTROPHORETIC DISPLAY DEVICE
    • 电子显示装置
    • US20080284722A1
    • 2008-11-20
    • US12180667
    • 2008-07-28
    • Hikaru ItoHideki YoshinagaHideo Mori
    • Hikaru ItoHideki YoshinagaHideo Mori
    • G09G3/34
    • G02F1/167
    • An electrophoretic display device is constituted by a first substrate and a second substrate which are disposed with a spacing therebetween, a partition wall disposed in the spacing, electrophoretic particles sealed in a closed space defined by the first and second substrates and the partition wall, a first electrode disposed at a side surface of the closed space, and a second electrode disposed at a bottom surface of the closed space. In the electrophoretic display device, a distribution state of the electrophoretic particles is changed to effect display, and the first electrode has an area substantially equal to or larger than an area of the second electrode.
    • 电泳显示装置由隔着间隔配置的第一基板和第二基板构成,间隔配置的隔壁,密封在由第一基板和第二基板以及分隔壁限定的封闭空间内的电泳粒子, 设置在所述封闭空间的侧面的第一电极,以及设置在所述封闭空间的底面的第二电极。 在电泳显示装置中,改变电泳粒子的分布状态进行显示,第一电极的面积大致等于或大于第二电极的面积。