会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 93. 发明申请
    • WATER-BASED INK FOR INKJET PRINTING
    • 喷墨打印机水性墨水
    • US20110257309A1
    • 2011-10-20
    • US13141038
    • 2009-12-17
    • Hiroyuki YoshidaTsuyoshi OdaTakahiro SatoYusuke ShimizuKoji KameiToshiya Iwasaki
    • Hiroyuki YoshidaTsuyoshi OdaTakahiro SatoYusuke ShimizuKoji KameiToshiya Iwasaki
    • C08K5/3417C08K5/23
    • C09D11/326C09B67/0097
    • The first invention relates to a water-based ink for ink-jet printing which includes colorant-containing polymer particles (A) obtained by dispersing a colorant with a water-soluble polymer (x) and a water-insoluble polymer (y), a water-soluble organic solvent (B) and water, wherein a weight ratio of the water-insoluble polymer (y) to the water-soluble polymer (x) [(y)/(x)] is from 2.0 to 5.0, and a content of the water-soluble organic solvent (B) in the ink is from 10 to 70% by weight. The water-based ink for ink-jet printing according to the first invention is excellent in ejection property and optical density and exhibits a low viscosity. The second invention relates to a process for producing a water dispersion for ink-jet printing, which includes a step (I) of mixing a dispersion of a colorant with an emulsion of a water-insoluble polymer containing an organic solvent; a step (II) of subjecting the resulting mixture to dispersing treatment to obtain a dispersion of the colorant onto which the water-insoluble polymer is deposited; and a step (III) of removing the organic solvent from the resulting dispersion. The water dispersion produced by the process of the second invention is capable of exhibiting a high optical density suitable for high-speed printing.
    • 第一发明涉及一种喷墨打印用水性油墨,其包括通过将着色剂与水溶性聚合物(x)和水不溶性聚合物(y)分散而得到的含有着色剂的聚合物粒子(A), 水溶性有机溶剂(B)和水,其中水不溶性聚合物(y)与水溶性聚合物(x)[(y)/(x)]的重量比为2.0〜5.0, 油墨中的水溶性有机溶剂(B)的含量为10〜70重量%。 根据第一发明的喷墨印刷用水性油墨的喷出性和光密度优异,粘度低。 第二发明涉及一种生产用于喷墨印刷的水分散体的方法,其包括将着色剂的分散体与含有机溶剂的水不溶性聚合物的乳液混合的步骤(I) 对所得混合物进行分散处理以获得其上沉积有不溶于水的聚合物的着色剂的分散体的步骤(II); 和从所得分散体中除去有机溶剂的步骤(III)。 通过第二发明的方法制备的水分散体能够表现出适于高速印刷的高光密度。
    • 94. 发明授权
    • Optical waveguide manufacturing method
    • 光波导制造方法
    • US07968274B2
    • 2011-06-28
    • US12478247
    • 2009-06-04
    • Yusuke Shimizu
    • Yusuke Shimizu
    • G02B6/13
    • G02B6/138G02B6/1221
    • An optical waveguide manufacturing method which obviates a developing step and stably provides greater differences in refractive index between a core and cladding layers. A core formation photosensitive resin layer is formed on a surface of an under-cladding layer, and then exposed in a predetermined pattern. A core is formed which is defined by an exposed portion of the core formation photosensitive resin layer. Surfaces of the exposed portion and an unexposed portion of the core formation photosensitive resin layer are covered with an over-cladding layer formation photosensitive resin layer. The two photosensitive resin layers are heated, whereby a resin of the unexposed portion of the core formation photosensitive resin layer and a resin of the over-cladding layer formation photosensitive resin layer are melt-mixed together to form a mixture layer. Then, the mixture layer is exposed, whereby a third cladding layer is formed defined by the exposed mixture layer.
    • 一种消除显影步骤并稳定地提供芯和包层之间的折射率差异的光波导制造方法。 在下包层的表面上形成芯层感光性树脂层,然后以规定的图案曝光。 形成由芯形成感光性树脂层的露出部限定的芯。 芯形成感光性树脂层的露出部和未曝光部的表面被上敷层形成感光性树脂层覆盖。 对两个感光性树脂层进行加热,将芯层感光性树脂层的未曝光部分的树脂和上敷层形成感光性树脂层的树脂熔融混合,形成混合层。 然后,使混合层露出,由露出的混合层形成第3覆层。
    • 97. 发明授权
    • Water-based inks for ink-jet printing
    • 用于喷墨打印的水性油墨
    • US07749316B2
    • 2010-07-06
    • US11701452
    • 2007-02-02
    • Ryuma MizushimaHiroyuki YoshidaIsao TsuruYusuke Shimizu
    • Ryuma MizushimaHiroyuki YoshidaIsao TsuruYusuke Shimizu
    • C09D11/00
    • C09D11/38C09D11/30
    • The present invention relates to a water dispersion for ink-jet printing, including a colorant, particles (A) (except for pigments) having a refractive index of 1.0 to 2.2, and a nonionic organic compound containing a saturated or unsaturated hydrocarbon group having 8 to 30 carbon atoms, and exhibiting a solubility of 1 g or less in 100 g of water as measured at 25° C., as well as a water based ink containing the water dispersion. There are provided a water-based ink for ink-jet printing which can exhibit a high optical density upon one-pass printing on plain papers and, therefore, is suitable for high-speed printing, as well as a water dispersion used in the water-based ink.
    • 本发明涉及一种喷墨打印用水分散体,包括着色剂,折射率为1.0〜2.2的颗粒(A)(颜料除外)和含有饱和或不饱和烃基的非离子有机化合物,其具有8 至30个碳原子,并且在25℃下测量的100克水中的溶解度为1g以下,以及含有水分散体的水性油墨。 提供了一种用于喷墨打印的水性油墨,其可以在普通纸上一次打印时表现出高的光密度,因此适用于高速印刷,以及在水中使用的水分散体 的墨水。
    • 98. 发明授权
    • Optical waveguide device for touch panel and manufacturing method thereof
    • 触摸屏用光波导装置及其制造方法
    • US07630600B2
    • 2009-12-08
    • US12324300
    • 2008-11-26
    • Yusuke Shimizu
    • Yusuke Shimizu
    • G02B6/26
    • G02B6/12004G02B6/42G02B6/4246G02B6/43G06F3/0421
    • A touch panel optical waveguide device which obviates the need for an alignment operation for alignment between light emitting cores of an optical waveguide thereof and light emitting means and alignment between light receiving cores of the optical waveguide thereof and light receiving means, and to provide a production method for the optical waveguide device. A recess (5) is provided in a longitudinally middle portion of an elongated optical waveguide (W) with its wall surfaces defined by end faces of light emitting cores (3), light receiving cores (3) and over-cladding layers (4). A mount member (10) including light emitting means (12) and light receiving means (13) fixed to a single substrate (11) is mounted in the recess (5) so as to achieve alignment between the light emitting cores (3) and the light emitting means (12) and alignment between the light receiving cores (3) and the light receiving means (13).
    • 一种触摸面板光波导装置,其不需要用于其光波导的发光核心与发光装置之间的对准操作和对准其光波导的光接收芯之间的对准操作,并且提供生产 光波导器件的方法。 在细长光波导(W)的纵向中间部分设置有由发光核心(3),光接收芯(3)和上敷层(4)的端面限定的壁面的凹部(5) 。 包括发光装置(12)和固定到单个基板(11)的光接收装置(13)的安装构件(10)安装在凹部(5)中,以便实现发光芯(3)和 发光装置(12)和光接收芯(3)和光接收装置(13)之间的对准。
    • 99. 发明申请
    • Game device, and fraud detecting method for the game device
    • 游戏装置和游戏装置的欺诈检测方法
    • US20080096672A1
    • 2008-04-24
    • US11904994
    • 2007-09-28
    • Shigeru MototaniShinichi FuruhashiYusuke Shimizu
    • Shigeru MototaniShinichi FuruhashiYusuke Shimizu
    • A63F9/24
    • A63F13/75A63F13/12A63F13/48A63F2300/5586A63F2300/636
    • A game machine can detect the reasons of restart and switch the maintenance level of player information based on the reasons. The game machine has first and second control units respectively controlling the execution of a game program and continuing incrementing a count value in a progressing process of the game program; first and second nonvolatile memory areas storing the count value incremented by the second control unit as a life count and a count value acquired by the first control unit based on the life count as a copy count, respectively, wherein the life count stored in the first nonvolatile memory area and the copy count stored in the second nonvolatile memory area are compared at restart, and judgment is made that the power is shut OFF due to an irregular action of a player before the restart if the life count and the copy count are not in a predetermined relationship.
    • 游戏机可以根据原因检测重启的原因,切换玩家信息的维护等级。 游戏机具有分别控制游戏程序的执行的第一和第二控制单元,并且在游戏程序的进行过程中继续增加计数值; 第一和第二非易失性存储区,分别存储由第二控制单元增加的计数值作为寿命计数和由第一控制单元基于作为复印计数的寿命计数获得的计数值,其中存储在第一个 非易失性存储器区域和存储在第二非易失性存储器区域中的复制计数在重新启动时被比较,并且如果寿命计数和复印计数不是,则由重新启动之前的玩家的不规则动作来判断电源是否关闭 以预定的关系。