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    • 1. 发明申请
    • LIQUID CRYSTAL DISPLAY AND MANUFACTURING METHOD THEREOF
    • 液晶显示及其制造方法
    • US20060197904A1
    • 2006-09-07
    • US11275954
    • 2006-02-07
    • Tomoatsu KinoshitaAkihiko AsanoNatsuki OtaniTakayuki Hatanaka
    • Tomoatsu KinoshitaAkihiko AsanoNatsuki OtaniTakayuki Hatanaka
    • G02F1/13
    • G02F1/1341G02F1/133305
    • A liquid crystal display includes a first substrate made up of a plastic substrate on which a first electrode for driving liquid crystal is formed, a second substrate made up of a plastic substrate on which a second electrode for driving liquid crystal is formed, and a liquid crystal layer held between the first and second substrates. At least one of the first and second substrates is a plastic substrate. The first and second substrate are glued together, and then the glued substrates are cut out into panels employing laser cutting. An opening for passing through either the first or second substrate is formed on a portion serving as a liquid crystal inlet prior to gluing the first and second substrates, and a notched portion in which at least a part of the opening is employed, is formed on a portion serving as the liquid crystal inlet of the panel.
    • 液晶显示器包括由塑料基板构成的第一基板,其上形成用于驱动液晶的第一电极,第二基板,由形成有用于驱动液晶的第二电极的塑料基板和液体 晶体层保持在第一和第二基板之间。 第一和第二基板中的至少一个是塑料基板。 将第一和第二基板胶合在一起,然后将胶合的基板切割成采用激光切割的面板。 在粘合第一和第二基板之前,在用作液晶入口的部分上形成用于通过第一或第二基板的开口,以及在其中使用开口的至少一部分的切口部分形成在 作为面板的液晶入口的部分。
    • 3. 发明授权
    • Reflection liquid crystal display
    • 反射液晶显示
    • US06404471B1
    • 2002-06-11
    • US09806271
    • 2001-06-22
    • Takayuki HatanakaShingo FujitaTetsu Ogawa
    • Takayuki HatanakaShingo FujitaTetsu Ogawa
    • G02F11335
    • G02F1/133553G02F1/133504
    • A reflection-type liquid crystal display device comprises a liquid crystal cell, a polarizing film, a birefringent film, a scattering layer, and a light reflection means, in which a diffuse reflection factor “R” of the scattering layer is designed to be 7% or greater, but 110% or less when an incident angle of light is in the range of 25° or greater and 45° or smaller. Here the diffuse reflection factor “R” is defined by the formula of R=R1/R2×100 (where R1 is a reflection factor irradiated at an incident angle of 0°, and R2 is a reflection factor irradiated at an incident angle of 25°). This structure is able to provide a reflection-type LCD which is bright in White display, capable of producing a high contrast, and reducing blur of an image.
    • 反射型液晶显示装置包括液晶单元,偏振膜,双折射膜,散射层和光反射装置,其中散射层的漫反射因子“R”被设计为7 %以上,但入射角度在25°以上且45°以下的范围内为110%以下。 这里,漫反射系数“R”由R = R1 / R2×100的公式(其中R1是入射角为0°的照射的反射系数,R2是入射角为25°的照射的反射系数) 。 这种结构能够提供在白色显示器中明亮的反射型LCD,能够产生高对比度,并且减少图像的模糊。
    • 4. 发明授权
    • Reflective liquid crystal display device
    • 反光液晶显示装置
    • US6144432A
    • 2000-11-07
    • US479634
    • 2000-01-07
    • Takayuki HatanakaShingo FujitaTetsu Ogawa
    • Takayuki HatanakaShingo FujitaTetsu Ogawa
    • G02F1/1335G02F1/13363G02F1/139
    • G02F1/1397G02F1/13363G02F2203/02
    • A reflective liquid crystal display device employing only one sheet of polarizer film, the liquid crystal display device comprising: a liquid crystal cell comprising liquid crystal sealed between a pair of substrates, a polarizer film, two sheets of retardation film, a scattering film, and a specular reflector. The twisting angle of the liquid crystal is between 220.degree. and 260.degree.. The retardation .DELTA.nLC.multidot.dLC of the liquid crystal is between 700 nm and 1000 nm, and the retardation of the retardation films is .vertline.Rfilm(2)-Rfilm(1).vertline..ltoreq.200 nm. A specific angular relationship is established among the alignment of the liquid crystal molecules, the slow axis of the two sheets of retardation film, and the absorption axis of the polarizer. This configuration provides the reflective liquid crystal display device with a bright white display, an achromatic black and white display with high contrast, and less dependence on viewing angle.
    • 一种仅使用一片偏振膜的反射型液晶显示装置,该液晶显示装置包括:液晶单元,其包含密封在一对基板之间的液晶,偏振片,两片延迟膜,散射膜和 镜面反射器 液晶的扭转角为220°〜260°。 液晶的延迟DELTA nLCxdLC在700nm和1000nm之间,延迟膜的延迟为| Rfilm(2)-Rfilm(1)|
    • 6. 发明授权
    • Reflective liquid crystal display device having front scattering films
    • 具有前散射膜的反射型液晶显示装置
    • US6130735A
    • 2000-10-10
    • US93184
    • 1998-06-08
    • Takayuki HatanakaShingo FujitaHisanori YamaguchiTetsu Ogawa
    • Takayuki HatanakaShingo FujitaHisanori YamaguchiTetsu Ogawa
    • G02F1/1335
    • G02F1/133504G02F2203/02
    • A reflective liquid crystal display device comprising a polarizer, a retardation film, a front scattering film layer, and a liquid crystal cell having a mirror reflector, in which the front scattering film layer includes at least one film of which scattering angle range is asymmetrical to the normal direction of film. A plural front scattering films of which scattering angle range is asymmetrical to the film normal are laminated so that the projection direction onto the film surface in the central angle direction of the scattering angle range may be different. At least one of the scattering films for composing the scattering film layer is a front scattering film for scattering more strongly the transmission light from the second incident angle region not containing the film normal direction than the transmission light from the first incident angle region containing the film normal direction.
    • 一种反射型液晶显示装置,包括偏振器,延迟膜,前散射膜层和具有反射镜的液晶单元,其中前散射膜层包括至少一个散射角范围不对称的膜, 电影的正常方向。 层叠散射角度范围与膜法线不对称的多个前散射膜,使得在散射角度范围的中心角方向上的膜表面上的投影方向可以不同。 用于构成散射膜层的散射膜中的至少一个是用于从不含膜法线方向的第二入射角区域的透射光比来自包含膜的第一入射角区域的透射光更强地散射的前散射膜 正常方向
    • 8. 发明授权
    • Heat exchanger core made of aluminum and method for application of flux
during process of soldering thereof
    • 由铝制成的热交换器芯和在其焊接过程中施加焊剂的方法
    • US4901907A
    • 1990-02-20
    • US159195
    • 1988-02-23
    • Hiroaki EnokidoTakayuki HatanakaTakashi Kozono
    • Hiroaki EnokidoTakayuki HatanakaTakashi Kozono
    • B23K1/00F28F21/08
    • F28F21/084B23K1/0012
    • A method for production of a heat exchanger is disclosed, where a powder flux is applied in a process of soldering a heat exchanger core of aluminum. An annular groove is formed in a seat plate. Measures are taken for preventing wetting of the annular groove of the seat plate when sprayed with the water on the preassembled core, such that a non-corrosive flux would not adhere to the annular groove of the seat plate. Water is sprayed in the form of a mist on a preassembled heat exchanger core through plurality of spray nozzles. The annular grooves of the seat plates are thoroughly dried after the application of water for attaining a perfect absence of residual non-corrosive flux in the annular grooves of the seat plates. A non-corrosive flux powder is sprayed onto the preassembled heat exchanger core of aluminum with a powder spray gun. The non-corrosive flux is caused to adhere fast to the portion wetted with the water.
    • 公开了一种用于生产热交换器的方法,其中在焊接铝的热交换器芯的过程中施加粉末焊剂。 在座板上形成环形槽。 采取措施,防止在预先组装的芯上喷水时座板的环形槽的润湿,使得非腐蚀性的焊剂不会附着在座板的环形槽上。 水通过多个喷嘴喷射在预先组装的热交换器芯上以雾的形式喷洒。 在施加水之后,座板的环形槽被彻底干燥,以在座板的环形槽中完全没有残留的非腐蚀性助焊剂。 用粉末喷枪将非腐蚀性助焊剂粉末喷涂到铝的预先组装的热交换器芯上。 使非腐蚀性助焊剂快速粘附到用水润湿的部分。