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    • 3. 发明授权
    • Liquid container, liquid using apparatus, printing apparatus, and ink jet cartridge
    • 液体容器,液体使用装置,打印装置和喷墨盒
    • US07077514B2
    • 2006-07-18
    • US10805192
    • 2004-03-22
    • Ryoji InoueRyoichi MatsumotoTatsuo NanjoHideki Ogura
    • Ryoji InoueRyoichi MatsumotoTatsuo NanjoHideki Ogura
    • B41J2/175
    • B41J2/17523B41J2/17513B41J2/17556B41J2/17596
    • A liquid container is provided which can prevent a leakage of liquid from an air introduction portion under any environment of use and storage and which can maintain a stable negative pressure characteristic irrespective of a degree of liquid consumption. The liquid container includes a liquid containing portion, a liquid supply portion to supply liquid from the liquid containing portion to a liquid using portion, a valve chamber having a one-way valve which permits a gas introduction into the liquid containing portion and prevents the liquid and gas from getting out of the liquid containing portion, a communication path to communicate the liquid containing portion with the valve chamber, a mechanism having a function of maintaining a volume of the liquid containing space, and a communication path closing member capable of enabling or disabling a communication between the liquid containing portion and the valve chamber through the communication path.
    • 提供了一种液体容器,其可以在任何使用和储存环境下防止液体从空气导入部分泄漏,并且可以保持稳定的负压特性,而与液体消耗程度无关。 液体容器包括液体容纳部分,从液体容纳部分向液体使用部分供应液体的液体供应部分,具有允许气体引入液体容纳部分并防止液体的单向阀的阀室 并且气体从液体容纳部分出来,使液体容纳部分与阀室连通的连通路径,具有保持液体容纳空间的体积的功能的机构,以及能够使能或 通过通信路径禁止液体容纳部分和阀室之间的连通。
    • 4. 发明授权
    • Method for manufacturing semiconductor device
    • 制造半导体器件的方法
    • US07066390B2
    • 2006-06-27
    • US09864189
    • 2001-05-25
    • Ryoichi Matsumoto
    • Ryoichi Matsumoto
    • G06K7/06
    • H01L29/66772H01L21/2652H01L21/76264H01L21/76267H01L21/76281
    • A method for manufacturing a semiconductor device suppresses electric charge charged up in a semiconductor layer of an SOI substrate at the time of ion implantation, preventing a BOX layer and a gate oxide from being damaged. A field oxide film is formed on a semiconductor layer formed on a BOX layer. A conductive layer is formed on the field oxide film and a gate oxide film as well. The conductive layer made of amorphous carbon is formed by sputtering and has a thickness of 5 nm to 10 nm. B+ is implanted in the interface between the semiconductor layer and the gate oxide film by an intermediate dose ion implanter. The electric charge generated in the semiconductor layer at the time of ion implantation results in FN current, which is removed through the gate oxide film and the conductive layer.
    • 半导体器件的制造方法抑制在离子注入时在SOI衬底的半导体层中充电的电荷,从而防止BOX层和栅极氧化物被损坏。 在形成在BOX层上的半导体层上形成场氧化膜。 导电层也形成在场氧化膜和栅极氧化膜上。 由无定形碳制成的导电层通过溅射形成,其厚度为5nm至10nm。 通过中间剂量离子注入机将B +注入到半导体层与栅氧化膜之间的界面中。 在离子注入时在半导体层中产生的电荷导致FN电流,其通过栅极氧化物膜和导电层去除。
    • 10. 发明申请
    • Liquid-feeding system
    • 送液系统
    • US20050068385A1
    • 2005-03-31
    • US10948919
    • 2004-09-24
    • Tatsuo NanjoRyoichi MatsumotoRyoji InoueHideki OguraSatoshi OikawaKen Hosaka
    • Tatsuo NanjoRyoichi MatsumotoRyoji InoueHideki OguraSatoshi OikawaKen Hosaka
    • B41J2/175
    • B41J2/17513B41J2/17523B41J2/17553
    • A liquid-feeding system efficiently transferring liquid from a liquid storage to a liquid chamber and efficiently transferring gas from the liquid chamber to the liquid storage. The liquid-feeding system includes a liquid-using unit, the liquid storage, the liquid chamber in communication with the liquid-using unit, a plurality of communication paths facilitating communication between the liquid chamber and the liquid storage, the liquid chamber having a substantially enclosed space except where the space communicates with the plurality of communication paths and with the liquid-using unit, a pressure regulator disposed in the liquid storage and regulating the internal pressure of the liquid storage, and means for changing an internal pressure of the liquid chamber relatively higher than an internal pressure of the liquid storage.
    • 液体供给系统将液体从液体存储器有效地传送到液体室,并且有效地将气体从液体室传输到液体存储器。 液体供给系统包括液体使用单元,液体储存器,与液体使用单元连通的液体室,多个连通路径,其有助于液体室和液体储存器之间的连通,液体室具有基本上 封闭空间,除了空间与多个连通路径连通并且与液体使用单元之间,设置在液体存储器中并调节液体存储器的内部压力的压力调节器以及用于改变液体室的内部压力的装置 相对高于液体储存器的内部压力。