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    • 1. 发明申请
    • Liquid crystal display device
    • 液晶显示装置
    • US20090079890A1
    • 2009-03-26
    • US12232791
    • 2008-09-24
    • Hideo TanabeMasaru TakabatakeManabu Yamashita
    • Hideo TanabeMasaru TakabatakeManabu Yamashita
    • G02F1/1368
    • G02F1/1368G02F1/133345G02F1/1337G02F2201/50H01L27/124H01L27/1288
    • (Object) To take measures against defects in the conduction by preventing shavings of the orientation film from getting into the terminal portion for liquid crystal display devices using an organic passivation film on a TFT substrate.(Means for Achieving Object) Image signal lines 107 extend to a terminal portion. The image signal lines 107, excluding the terminal portion, are covered with an inorganic passivation film 108 and an organic passivation film 109. In the terminal portion, terminal portion through holes are created in the organic passivation film 109 and the inorganic passivation film 108, in order to make electrical connection possible. The terminal portion is covered with an ITO film 120 in order to protect the video signal lines 107. The taper angle θ in the organic passivation film 109 in the terminal portion through holes is 35 degrees or less, and the thickness of the organic passivation film 109 in the periphery of the terminal portion through holes is 300 nm to 600 nm, so that shavings of the orientation film can be prevented from getting into the terminal portion, and thus, defects in the conduction can be prevented.
    • (物体)通过防止取向膜的刮削进入用于在TFT基板上使用有机钝化膜的液晶显示装置的端子部分来进行导通的缺陷的措施。 (实现对象的手段)图像信号线107延伸到终端部分。 除了端子部分之外的图像信号线107被无机钝化膜108和有机钝化膜109覆盖。在端子部分中,在有机钝化膜109和无机钝化膜108中形成端子部分通孔, 以使电气连接成为可能。 端子部分被ITO膜120覆盖以保护视频信号线107.端子部分通孔中的有机钝化膜109中的锥角θ为35度以下,有机钝化膜的厚度 109在端子部贯通孔的周围为300nm〜600nm,能够防止取向膜的切屑进入端子部,能够防止导通缺陷。
    • 2. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US07760281B2
    • 2010-07-20
    • US12232791
    • 2008-09-24
    • Hideo TanabeMasaru TakabatakeManabu Yamashita
    • Hideo TanabeMasaru TakabatakeManabu Yamashita
    • G02F1/1368
    • G02F1/1368G02F1/133345G02F1/1337G02F2201/50H01L27/124H01L27/1288
    • To take measures against defects in the conduction by preventing shavings of the orientation film from getting into the terminal portion for liquid crystal display devices using an organic passivation film on a TFT substrate.Image signal lines 107 extend to a terminal portion. The image signal lines 107, excluding the terminal portion, are covered with an inorganic passivation film 108 and an organic passivation film 109. In the terminal portion, terminal portion through holes are created in the organic passivation film 109 and the inorganic passivation film 108, in order to make electrical connection possible. The terminal portion is covered with an ITO film 120 in order to protect the video signal lines 107. The taper angle θ in the organic passivation film 109 in the terminal portion through holes is 35 degrees or less, and the thickness of the organic passivation film 109 in the periphery of the terminal portion through holes is 300 nm to 600 nm, so that shavings of the orientation film can be prevented from getting into the terminal portion, and thus, defects in the conduction can be prevented.
    • 通过防止在TFT基板上使用有机钝化膜的液晶显示装置的取向膜的切屑进入端子部,来进行导通的缺陷的措施。 图像信号线107延伸到端子部分。 除了端子部分之外的图像信号线107被无机钝化膜108和有机钝化膜109覆盖。在端子部分中,在有机钝化膜109和无机钝化膜108中形成端子部分通孔, 以使电气连接成为可能。 端子部分被ITO膜120覆盖,以保护视频信号线107。 在端子部通孔中的有机钝化膜109中为35度以下,端子部贯通孔周围的有机钝化膜109的厚度为300nm〜600nm,因此取向膜 可以防止其进入端子部分,从而可以防止导通缺陷。
    • 4. 发明授权
    • Stacking device and stacking method
    • 堆叠装置和堆垛方式
    • US09461330B2
    • 2016-10-04
    • US14009660
    • 2012-04-06
    • Masashi WatanabeHiroshi YuharaManabu Yamashita
    • Masashi WatanabeHiroshi YuharaManabu Yamashita
    • H01M10/04B32B38/18H01M10/0585H01M10/052B32B39/00
    • H01M10/0404B32B38/18B32B39/00B32B2457/10H01M10/0468H01M10/052H01M10/0585Y02E60/122Y02T10/7011Y10T29/49108Y10T29/53135
    • A first holding unit (114) reciprocates between a first table (121) and a stacking table (141) and a second holding unit (115) reciprocates between the stacking table (141) and a second table (141). When the first holding unit (114) holds a separator-electrode assembly (20) whose horizontal position has been adjusted on the first table (121), the second holding unit (115) releases a second electrode (30) over the stacking table (141). When the first holding unit (114) releases the separator-electrode assembly (20) over the stacking table (141), the second holding unit (115) holds the second electrode (30) whose horizontal position has been adjusted on the second table (131). The present invention provides a stacking device and a stacking method which are capable of stacking the separator-electrode assembly including a first electrode sandwiched by separators and the second electrode having a different polarity from the first electrode efficiently with high accuracy.
    • 第一保持单元(114)在第一台(121)和堆叠台(141)之间往复运动,第二保持单元(115)在堆叠台(141)和第二台(141)之间往复运动。 当第一保持单元(114)保持在第一工作台(121)上已经调整了水平位置的分隔电极组件(20)时,第二保持单元(115)将堆叠台上的第二电极(30) 141)。 当第一保持单元(114)将分离器电极组件(20)释放在堆叠台(141)上时,第二保持单元(115)将其水平位置已被调整的第二电极(30)保持在第二台 131)。 本发明提供一种层叠装置和层叠方法,其能够以高精度有效地堆叠包括由隔板夹持的第一电极和与第一电极具有不同极性的第二电极的隔离电极组件。
    • 10. 发明申请
    • CARRYING APPARATUS AND CARRYING METHOD FOR BATTERY ELECTRODE MEMEBER
    • 携带电池电池的装置和实施方法
    • US20140014702A1
    • 2014-01-16
    • US14008223
    • 2012-04-06
    • Hiroshi YuharaManabu Yamashita
    • Hiroshi YuharaManabu Yamashita
    • B65H20/16
    • B65H20/16H01M4/04H01M4/139H01M10/0404H01M10/0413Y02P70/54
    • A carrying apparatus carries a battery electrode member (an electrode material film web or an electrode film). The carrying apparatus includes a carrier for holding while curving, and then carrying the electrode member. The carrier is configured to hold the electrode member at a position that doesn't cause a contact with components for another process at a downstream along a carrying direction. Since the electrode member is curved, its stiffness along the carrying direction is strengthened and thereby sagging down is prevented. In addition, the holding position by the carrier is the position that doesn't cause a contact with components for another process at a downstream along a carrying direction. Therefore, according to the carrying apparatus, it is possible to carry the electrode member (an end of an electrode material web or an electrode) to a target position reliably.
    • 携带装置承载电池电极构件(电极材料膜片或电极膜)。 携带装置包括用于在弯曲时保持的载体,然后承载电极构件。 载体构造成将电极构件保持在不沿着输送方向在下游的不与其他过程的部件接触的位置。 由于电极构件是弯曲的,所以其沿着传送方向的刚度被加强,从而防止了下垂。 此外,载体的保持位置是不沿着输送方向在下游沿不与其他处理部件接触的位置。 因此,根据携带装置,可以将电极构件(电极材料纤维网或电极的端部)可靠地搬运到目标位置。