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    • 1. 发明授权
    • Droplet discharge device and droplet discharge method
    • 滴液放电装置和液滴排放法
    • US08702187B2
    • 2014-04-22
    • US13391821
    • 2010-08-26
    • Akira IkedaMasaru Ohnishi
    • Akira IkedaMasaru Ohnishi
    • B41J25/308B41J29/38
    • B41J25/308B41J3/28B41J3/4073B41J11/008B41J11/0085B41J11/06
    • A printer comprises: a vacuum table for supporting a jig which holds a medium; a printer head for discharging droplets; and a relative movement means for moving the printer head relative to the medium; a registration mark detection unit and barcode detection unit for acquiring holding platform information and support position information for the jig; and a controller for controlling the movement of the printer head by the relative movement means and controlling the discharge of droplets from the printer head on the basis of the holding platform information, the support position information and information pertaining to the desired pattern. As a result of this configuration, it is possible to generate image data without aligning the jig with a reference position on the vacuum table.
    • 打印机包括:用于支撑保持介质的夹具的真空工作台; 用于排出液滴的打印头; 以及用于相对于介质移动打印头的相对移动装置; 对准标记检测单元和条形码检测单元,用于获取夹具的保持平台信息和支持位置信息; 以及控制器,用于通过相对移动装置控制打印头的移动,并且基于保持平台信息,支持位置信息和与期望图案有关的信息来控制来自打印机头的液滴的排出。 作为这种配置的结果,可以在不使夹具与真空工作台上的基准位置对准的情况下生成图像数据。
    • 2. 发明授权
    • Safety valve for gastight battery and gastight battery using safety valve
    • 气密电池安全阀和气密电池使用安全阀
    • US08522808B2
    • 2013-09-03
    • US12981141
    • 2010-12-29
    • Akira Ikeda
    • Akira Ikeda
    • F16K17/40H01M2/12
    • H01M2/1241H01M2/34H01M2200/20Y10T137/1744Y10T137/7837
    • A safety valve for a battery which is mounted on a sealing plate for sealing an opening portion of a gastight battery case, and which can rapidly release a gas in the battery when a battery internal pressure is elevated is provided. In a safety valve for a gastight battery, a thin-wall valve element is formed on a sealing plate which seals an opening portion of a battery case, and the valve element is opened when a battery internal pressure becomes a predetermined value or more so as to release a gas in the battery to the outside of the battery. The safety valve includes: an outer annular groove formed of an annular thin wall which is formed on the periphery of the valve element and is provided for releasing the whole valve element; an inner annular groove formed of an annular thin wall which is arranged in an area inside the outer annular groove; and a connecting groove formed of a straight thin wall which connects the outer annular groove and the inner annular groove to each other. A wall thickness of the inner annular groove and a wall thickness of the connecting groove are set larger than a wall thickness of the outer annular groove.
    • 一种电池安全阀,其安装在密封板上,用于密封气密性电池壳体的开口部分,并且当电池内部压力升高时能够快速地释放电池中的气体。 在气密电池用安全阀中,在密封电池壳体的开口部的密封板上形成薄壁阀体,当电池内压变为规定值以上时,阀体开启, 将电池中的气体释放到电池的外部。 该安全阀包括:形成于环形薄壁上的外环形槽,该环形薄壁形成在阀元件周边上,用于释放整个阀元件; 由环形薄壁形成的内环形槽,该环形薄壁布置在外环形槽内的区域中; 以及由直的薄壁形成的连接槽,其将外部环形槽和内部环形槽相互连接。 内环形槽的壁厚和连接槽的壁厚被设定为大于外环形槽的壁厚。
    • 6. 发明申请
    • Optical Compensation Film, Polarizing Plate and Liquid Crystal Display Device
    • 光学补偿膜,偏光板和液晶显示装置
    • US20090091690A1
    • 2009-04-09
    • US12085933
    • 2006-11-30
    • Ryota MatsubaraYuta TakahashiAkira IkedaMasaru YoshikawaTakafumi HosokawaMichio NagaiMakoto Takahashi
    • Ryota MatsubaraYuta TakahashiAkira IkedaMasaru YoshikawaTakafumi HosokawaMichio NagaiMakoto Takahashi
    • G02F1/1335C09K19/00G02B5/30
    • G02B5/3083G02F1/133632G02F1/1393G02F2413/105Y10T428/10Y10T428/1041Y10T428/1059
    • The present invention aims to provide an optical compensation film that allows superior phase difference between a first optically anisotropic layer and a second optically anisotropic layer and excellent wavelength dispersibility in terms of front and inclined retardation of liquid crystal layers in liquid crystal cells, a polarizing plate containing the optical compensation film, and a liquid-crystal display device that can display superior images with less color change due to the polarizing plate.In order to attain the object, an optical compensation film etc. is provided that comprises at least a first optically anisotropic layer and a second optically anisotropic layer, wherein the first optically anisotropic layer satisfies at least one of the following Equations (i) to (iii): 1≦Re1450(0°)/Re1650(0°)≦1.25:  Equation (i) 1≦Re1450(40°)/Re1650(40°)≦1.25:  Equation (ii) 1≦Re1450(−40°)/Re1650(−40°)≦1.25:  Equation (iii)
    • 本发明的目的在于提供一种光学补偿膜,其在第一光学各向异性层和第二光学各向异性层之间具有优异的相位差,并且在液晶单元中的液晶层的前方和倾斜延迟方面具有优异的波长分散性,偏振片 含有光学补偿膜的液晶显示装置,以及能够以偏振片为特征,能够显示出较少的颜色变化的优异图像的液晶显示装置。 为了实现该目的,提供一种光学补偿膜等,其至少包括第一光学各向异性层和第二光学各向异性层,其中第一光学各向异性层满足以下等式(i)至( 1)<= Re1450(0°)/ Re1650(0°)<= 1.25:等式(i)<?in -line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 1 <= Re1450(40°)/ Re1650(40°)<= 1.25:等式(ii)<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas” end =“lead”?> 1 <= Re1450(-40°)/ Re1650(-40°)<= 1.25:等式(iii)<?in-line-formula description =“In-line Formulas”end =“tail “?>
    • 9. 发明申请
    • Multilayer reflective film coated substrate, manufacturing method thereof, reflective mask blank, and reflective mask
    • 多层反射膜涂布基板,其制造方法,反射掩模板和反射掩模
    • US20070091421A1
    • 2007-04-26
    • US11580976
    • 2006-10-16
    • Mario HosoyaTakeyuki YamadaAkira Ikeda
    • Mario HosoyaTakeyuki YamadaAkira Ikeda
    • F21V9/04
    • C23C14/3464B82Y10/00B82Y40/00C03C17/36C03C17/361C03C17/3636C03C17/3665C23C14/185C23C14/225G02B5/0833G02B5/0891G03F1/24
    • A multilayer reflective film coated substrate includes a multilayer under film comprised of Mo/Si alternately-layered films, an intermediate layer in the form of a Si film, and a multilayer reflective film comprised of Mo/Si alternately-layered films for reflecting exposure light. The multilayer under film, the intermediate layer, and the multilayer reflective film are formed on a substrate in this order. Given that a cycle length of the multilayer under film is d bottom (unit:nm), a thickness of the intermediate layer is d Si (unit:nm), and a cycle length of the multilayer reflective film is d top (unit:nm), relationships of a formula (1) and a formula (2) are satisfied, the formula (1) given by n×d top−0.05≦d bottom≦n×d top+0.05where n is a natural number equal to or greater than 1, and the formula (2) given by m×d top−1.2≦d Si≦−m×d top+1.2where m is an integer equal to or greater than 0.
    • 多层反射膜被覆基板包括由Mo / Si交替层叠膜构成的多层膜,Si膜形式的中间层和由反射曝光用的Mo / Si交替层叠膜构成的多层反射膜 。 在多层膜,中间层和多层反射膜上依次形成在基板上。 假设膜下层叠的周期长度为d(单位:nm),中间层的厚度为d Si(单位:nm),多层反射膜的周期长度为d(单位:nm) ),满足式(1)和公式(2)的关系,由<?in-line-formula description =“In-line Formulas”end =“lead”?> nxd top- 0.05 <= d bottom <= nxd top + 0.05 <?in-line-formula description =“In-line Formulas”end =“tail”?>其中n是等于或大于1的自然数,以及公式 2)由<?in-line-formula description =“In-line Formulas”end =“lead”?> mxd top-1.2 <= d Si <= - mxd top + 1.2 <?in-line-formula description = “在线公式”end =“tail”?>其中m是等于或大于0的整数。