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
    • 3. 发明授权
    • Method and apparatus for manufacturing a liquid container having plural
porous members
    • 用于制造具有多个多孔构件的液体容器的方法和装置
    • US5567373A
    • 1996-10-22
    • US379756
    • 1995-01-27
    • Osamu SatoHiroshi SugitaniTsuyoshi OrikasaToshihiko UjitaMasahiko HigumaYasuo KotakiJun Hinami
    • Osamu SatoHiroshi SugitaniTsuyoshi OrikasaToshihiko UjitaMasahiko HigumaYasuo KotakiJun Hinami
    • B41J2/175B65B1/04B65D25/02F17C5/00B29C43/14
    • B41J2/17513
    • The invention provides a method and apparatus for manufacturing a liquid container having an enclosed space within an inner wall of the liquid container, the enclosed space filled with a plurality of porous members. The plurality of porous members include a plurality of inner porous members and a plurality of outer porous members. The method includes the step of packing the porous members into the enclosed space so that the inner porous members only contact and press against other inner porous members and/or outer porous members, and the outer porous members contact and press against the inner porous members and the inner wall of the liquid container. The method also comprises a step of compressing the porous members. The apparatus has compressing means for compressing the porous members and packing means for packing the porous members into the liquid container. The invention aims to reduce an amount of non-dischargeable liquid contained by the liquid container by packing porous members into the liquid container with a desired compression distribution. The invention also aims to allow the same kind of porous members to be suitably packed into containers that store liquids having different surface tensions, or containers having different capacities or shapes.
    • 本发明提供一种用于制造液体容器的方法和装置,该液体容器在液体容器的内壁内具有封闭空间,封闭空间填充有多个多孔构件。 多个多孔构件包括多个内部多孔构件和多个外部多孔构件。 该方法包括将多孔构件包封到封闭空间中的步骤,使得内部多孔构件仅接触并压靠其它内部多孔构件和/或外部多孔构件,并且外部多孔构件与内部多孔构件接触并压靠, 液体容器的内壁。 该方法还包括压缩多孔构件的步骤。 该装置具有用于压缩多孔构件的压缩装置和用于将多孔构件包装到液体容器中的包装装置。 本发明旨在通过将多孔构件以期望的压缩分布填充到液体容器中来减少由液体容器容纳的不可排出液体的量。 本发明还旨在允许将相同种类的多孔构件适当地包装在容纳具有不同表面张力的液体的容器中,或具有不同容量或形状的容器中。
    • 4. 发明授权
    • Ink container having plural porous members for storing ink and ink jet
apparatus having said ink container
    • 油墨容器具有多个用于储存油墨的多孔构件和具有所述油墨容器的喷墨装置
    • US5815184A
    • 1998-09-29
    • US929086
    • 1997-09-15
    • Toshihiko UjitaHiroshi SugitaniTsuyoshi OrikasaOsamu SatoMasahiko HigumaYasuo KotakiJun Hinami
    • Toshihiko UjitaHiroshi SugitaniTsuyoshi OrikasaOsamu SatoMasahiko HigumaYasuo KotakiJun Hinami
    • B41J2/175
    • B41J2/17513
    • An ink container for storing ink and an ink jet apparatus having such an ink container is provided. The ink container has an ink tank providing an enclosed space within an inner wall of the tank. The ink container is filled with inner and outer porous members having open pores for holding ink. The inner porous members are disposed within the enclosed space so as to only contact and press against other inner or outer porous members or both. The outer porous members are disposed within the enclosed space so as to contact and press against the inner porous members and the inner wall of the ink tank. This arrangement of inner and outer porous members within the ink container prevents an uneven compression distribution which occurs when conventional porous members are inserted into ink containers or when ink containers containing such conventional porous members suffer impacts. Further, the porous members can fill the entire ink container regardless of the shape of its interior, thus reducing the amount of non-dischargeable ink and leakage.
    • 提供一种用于储存油墨的油墨容器和具有这种油墨容器的喷墨设备。 墨水容器具有在罐的内壁内提供封闭空间的墨水盒。 油墨容器内装有具有用于保持油墨的开口孔的内部和外部多孔构件。 内部多孔构件设置在封闭空间内,以便仅接触和压靠其它内部或外部多孔构件或两者。 外部多孔构件设置在封闭空间内,以与内部多孔构件和墨水罐的内壁接触并压靠。 内部和外部多孔构件在油墨容器内的布置防止了当传统的多孔构件插入油墨容器或当包含这种常规多孔构件的油墨容器受到冲击时发生的不均匀的压缩分布。 此外,多孔构件可以填充整个墨水容器而不管其内部的形状如何,从而减少不可喷射墨水的量和泄漏。
    • 10. 发明授权
    • Charged particle beam device
    • 带电粒子束装置
    • US08933422B2
    • 2015-01-13
    • US13812842
    • 2011-06-08
    • Ryoichi IshiiTakashi DoiOsamu SatoYasushi Ebizuka
    • Ryoichi IshiiTakashi DoiOsamu SatoYasushi Ebizuka
    • H01J37/18H01J37/16
    • H01J37/18H01J37/16H01J37/185H01J2237/2001H01J2237/2802
    • The objective of the present invention is to provide a charged particle beam device such that a tip part can be effectually maintained in a clean state, while the frequency of valve body replacements is also reduced. To achieve the objective, a charged particle beam device is offered, comprising: a partition that is positioned between a charged particle source-side vacuum space and a specimen stage-side vacuum space, said partition further comprising an opening for a charged particle beam to pass through; a driver mechanism that moves a shutter member between a first location within the optical axis of the charged particle beam and a second location outside the optical axis of the charged particle beam; and a control device that controls the driver mechanism. The first location is a location wherein the shutter member is distanced from the partition, and the control device carries out a control that opens a valve between the specimen chamber and the exchange chamber when the shutter member is in a state of being located in the first location.
    • 本发明的目的是提供一种带电粒子束装置,使得尖端部分可以有效地保持在清洁状态,同时阀体更换的频率也降低。 为了实现该目的,提供一种带电粒子束装置,包括:分隔件,位于带电粒子源侧真空空间和样品台侧真空空间之间,所述隔板还包括用于带电粒子束的开口 通过; 驱动器机构,其将快门部件移动到带电粒子束的光轴内的第一位置与带电粒子束的光轴外的第二位置; 以及控制驱动器机构的控制装置。 第一位置是其中挡板构件与分隔件隔开的位置,并且当挡板构件处于位于第一位置的状态时,控制装置执行在样本室和更换室之间打开阀的控制 位置。