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    • 21. 发明申请
    • METHOD OF MANUFACTURING OPTICAL DISPLAY UNIT AND MANUFACTURING SYSTEM OF OPTICAL DISPLAY UNIT
    • 制造光学显示单元的方法和光学显示单元的制造系统
    • US20100294418A1
    • 2010-11-25
    • US12864254
    • 2009-01-27
    • Tomokazu YuraKazuo KitadaSatoru KoshioTakuya Nakazono
    • Tomokazu YuraKazuo KitadaSatoru KoshioTakuya Nakazono
    • B32B37/02B32B38/04B32B38/10
    • B32B38/1833B32B2037/268B32B2429/02B32B2457/202B32B2457/206B65H2701/1719G02F1/1303
    • Provided are a method of manufacturing an optical display unit and a manufacturing system of the optical display unit wherein in the case of sticking an optical film to an optical display substrate, a defective optical film is eliminated optimally and precision of the elimination can be confirmed. The method is characterized in that in the process of conveying sheet product, a predictive conveyance distance when conveying positional identification information provided to the sheet product from a first position upstream in the conveyance to a second position downstream of the first position in the conveyance is compared with a measured conveyance distance from the first position to the second position obtained by detecting the positional identification information by use of a detection means respectively at the first position and the second position, and the conveyance processing of the sheet product is corrected so that the measured conveyance distance is within the predetermined range of the predictive conveyance distance.
    • 提供一种制造光学显示单元的方法和光学显示单元的制造系统,其中在将光学膜粘附到光学显示基板的情况下,最佳地消除了缺陷光学膜,并且可以确认消除的精度。 该方法的特征在于,在传送片材产品的过程中,将从输送中的上游的第一位置输送到片材产品的位置识别信息传送到运送中的第一位置的下游的第二位置时的预测输送距离进行比较 通过分别在第一位置和第二位置使用检测装置检测位置识别信息而获得的测量的从第一位置到第二位置的传送距离,并且对片材产品的传送处理进行校正, 输送距离在预测输送距离的预定范围内。
    • 22. 发明授权
    • Optical display device manufacturing system and optical display device manufacturing method
    • 光学显示装置制造系统和光学显示装置的制造方法
    • US08557069B2
    • 2013-10-15
    • US12922803
    • 2009-04-10
    • Kazuo KitadaTomokazu YuraSatoru KoshioTakuya Nakazono
    • Kazuo KitadaTomokazu YuraSatoru KoshioTakuya Nakazono
    • B32B41/00
    • G02F1/1309B29D11/00644B29D11/0073B32B41/00B32B2307/40C09J7/38G02F1/1303G02F1/133528G02F2202/28
    • Provided are an optical display device manufacturing system and an optical display device manufacturing method which can more preferably carry out a defect inspection. A detection condition of a defect in the inspection of an optical film before being bonded to an optical display unit carried out by a defect inspection apparatus (14, 24) is corrected based on the result of inspection of the optical display device with the optical film bonded, carried out by an inspection apparatus (30), and the optical film including the defects detected by the defect inspection apparatuses (14, 24) based on the corrected detection condition are excluded. Accordingly, since it is possible to adjust the standard of the defect inspection carried out by the defect inspection apparatus (14, 24) in conformity to the standard of the defect inspection which is later carried out by the inspection apparatus (30), it is possible to more preferably carry out the defect inspection, and it is possible to improve a yield ratio of the optical film.
    • 提供了一种更优选地进行缺陷检查的光学显示装置制造系统和光学显示装置制造方法。 基于使用光学膜的光学显示装置的检查结果,对由缺陷检查装置(14,24)执行的光学显示单元的粘合前的光学膜的检查缺陷的检测条件进行了校正 通过检查装置(30)进行粘合,并且基于校正的检测条件排除包括由缺陷检查装置(14,24)检测到的缺陷的光学膜。 因此,由于可以根据由检查装置(30)进行的缺陷检查的标准,对由缺陷检查装置(14,24)进行的缺陷检查的标准进行调整,因此, 更优选进行缺陷检查,可以提高光学膜的屈服比。
    • 26. 发明申请
    • SYSTEM AND METHOD FOR MANUFACTURING OPTICAL DISPLAY DEVICE
    • 用于制造光学显示装置的系统和方法
    • US20110111667A1
    • 2011-05-12
    • US13002234
    • 2010-05-06
    • Kazuo KitadaTomokazu YuraSatoru KoshioTakuya Nakazono
    • Kazuo KitadaTomokazu YuraSatoru KoshioTakuya Nakazono
    • H01J9/00H01J9/46
    • G02F1/133528B29D11/0073B32B37/226B32B38/0004B32B2307/42B32B2457/202G02B5/30G02F1/1303Y10T156/1317Y10T156/1322
    • There are provided a system and a method for manufacturing an optical display device, in which optical films fed from two rolls which are the same in the direction of optical anisotropy, such as the direction of absorption axis, can be bonded to one and the other surfaces of an optical display unit so that the optical anisotropy of the one can be orthogonal to that of the other.The system includes: a first cutting and bonding apparatus 18 that is configured to handle a roll of a first sheet material F1 including a first optical film with a width corresponding to the short side of the optical display unit W and also configured to bond the first optical film to one surface of the optical display unit W and then to cut the first optical film into a length corresponding to the long side of the optical display unit W; and a second cutting and bonding apparatus 28 that is configured to handle a roll of a second sheet material F2 including a second optical film with a width corresponding to the long side of the optical display unit W and also configured to bond the second optical film to the other surface of the optical display unit W and then to cut the second optical film into a length corresponding to the short side of the optical display unit W.
    • 提供了一种用于制造光学显示装置的系统和方法,其中从光学各向异性方向相同的两个辊(诸如吸收轴的方向)馈送的光学膜可以一个接一个 光学显示单元的表面,使得该光学显示单元的光学各向异性可以与另一个的光学各向异性正交。 该系统包括:第一切割和粘合装置18,其被配置为处理第一片材F1的卷,所述第一片材F1包括宽度对应于光学显示单元W的短边的第一光学膜,并且还被构造成将第一 光学膜到光学显示单元W的一个表面,然后将第一光学膜切割成与光学显示单元W的长边对应的长度; 以及第二切割粘合装置28,其被配置为处理包括具有对应于光学显示单元W的长边的宽度的第二光学膜的第二片材F2的卷,并且还被配置为将第二光学膜粘合到 光学显示单元W的另一个表面,然后将第二光学膜切割成对应于光学显示单元W的短边的长度。
    • 28. 发明申请
    • OPTICAL DISPLAY DEVICE MANUFACTURING SYSTEM AND OPTICAL DISPLAY DEVICE MANUFACTURING METHOD
    • 光学显示器件制造系统和光学显示器件制造方法
    • US20110005656A1
    • 2011-01-13
    • US12922803
    • 2009-04-10
    • Kazuo KitadaTomokazu YuraSatoru KoshioTakuya Nakazono
    • Kazuo KitadaTomokazu YuraSatoru KoshioTakuya Nakazono
    • B32B41/00
    • G02F1/1309B29D11/00644B29D11/0073B32B41/00B32B2307/40C09J7/38G02F1/1303G02F1/133528G02F2202/28
    • Provided are an optical display device manufacturing system and an optical display device manufacturing method which can more preferably carry out a defect inspection. A detection condition of a defect in the inspection of an optical film before being bonded to an optical display unit carried out by a defect inspection apparatus (14, 24) is corrected based on the result of inspection of the optical display device with the optical film bonded, carried out by an inspection apparatus (30), and the optical film including the defects detected by the defect inspection apparatuses (14, 24) based on the corrected detection condition are excluded. Accordingly, since it is possible to adjust the standard of the defect inspection carried out by the defect inspection apparatus (14, 24) in conformity to the standard of the defect inspection which is later carried out by the inspection apparatus (30), it is possible to more preferably carry out the defect inspection, and it is possible to improve a yield ratio of the optical film.
    • 提供了一种更优选地进行缺陷检查的光学显示装置制造系统和光学显示装置制造方法。 基于使用光学膜的光学显示装置的检查结果,对由缺陷检查装置(14,24)执行的光学显示单元的粘合前的光学膜的检查缺陷的检测条件进行了校正 通过检查装置(30)进行粘合,并且基于校正的检测条件排除包括由缺陷检查装置(14,24)检测到的缺陷的光学膜。 因此,由于可以根据由检查装置(30)进行的缺陷检查的标准,对由缺陷检查装置(14,24)进行的缺陷检查的标准进行调整,因此, 更优选进行缺陷检查,可以提高光学膜的屈服比。
    • 30. 发明授权
    • System for manufacturing optical display unit and feed mechanism
    • 制造光学显示单元和进给机构的系统
    • US08915281B2
    • 2014-12-23
    • US12747390
    • 2009-01-07
    • Kazuo KitadaTakuya NakazonoSatoru KoshioTomokazu Yura
    • Kazuo KitadaTakuya NakazonoSatoru KoshioTomokazu Yura
    • B32B38/10B32B37/16B29D11/00
    • B29D11/0074Y10T156/12Y10T156/17Y10T156/1744
    • Provided is a system for manufacturing an optical display unit and a feed mechanism, which can well prevent an optical film and a pressure-sensitive adhesive layer from being peeled from a release film. A pressure-sensitive adhesive type sheet material, wherein the optical film and the pressure-sensitive adhesive layer (film main body (F)) are cut without cutting a release film (F12, F22) which is laminated to the optical film with the pressure-sensitive adhesive layer in between, is fed along a feed path (12A, 22A). A press member (200) is arranged at a position opposed to a bent portion or a curved portion in the feed path (12A, 22A). Since the film main body (F) which is peeled from the release film (F12, F22) can be pressed to the release film (F12, F22) by the press member (200), the film main body (F) can be well prevented from being peeled from the release film (F12, F22).
    • 提供一种用于制造光学显示单元和进给机构的系统,其可以很好地防止光学膜和压敏粘合剂层从剥离膜剥离。 一种压敏粘合剂型片材,其中切割光学膜和压敏粘合剂层(膜主体(F))而不切割以压力层压到光学膜上的剥离膜(F12,F22) 敏感粘合剂层沿着进给路径(12A,22A)进给。 在进给路径(12A,22A)中的与弯曲部分或弯曲部分相对的位置处设有按压部件(200)。 由于从剥离膜(F12,F22)剥离的胶片主体(F)可以通过按压部件(200)被压向剥离膜(F12,F22),因此胶片主体(F)可以良好 防止从剥离膜(F12,F22)剥离。