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    • 1. 发明申请
    • Black Ink Composition, Ink Set Containing the Same, and Ink Jek Recording Method
    • 黑色墨水组合物,含有墨水的墨水组合和墨水喷墨记录方法
    • US20080043079A1
    • 2008-02-21
    • US11632653
    • 2005-07-12
    • Kenji IkedaToshiharu Tanaka
    • Kenji IkedaToshiharu Tanaka
    • C09D11/00B41J2/01
    • C09D11/328C09D11/40
    • Black ink compositions are provided. First embodiment contains a water-soluble long-wavelength dye L and a water-soluble short-wavelength dye S, in which the water-soluble short-wavelength dye S has 3 or more azo groups per molecule and a naphthalene skeleton. Second embodiment contains a water-soluble short-wavelength dye S whose absorption spectrum in aqueous solvent has a maximum between 440 nm and 540 nm and a half-band width of 90 to 200 nm and a water-soluble long-wavelength dye L whose absorption spectrum in aqueous solvent has a maximum between 550 nm and 700 nm and a half-band width of 100 nm or more. Third embodiment contains water, a water-miscible organic solvent, and a coloring material, in which C. I. Direct Red 84 is contained as a water-soluble short-wavelength dye S.
    • 提供黑色油墨组合物。 第一实施方案包含水溶性长波长染料L和水溶性短波长染料S,其中水溶性短波长染料S每分子具有3个或更多个偶氮基和萘骨架。 第二实施方案包含水溶性短波长染料S,其在水性溶剂中的吸收光谱的最大值在440nm至540nm之间,半带宽度为90至200nm,并且其水溶性长波长染料L的吸收 水溶剂中的光谱在550nm和700nm之间具有最大值,并且半带宽度为100nm以上。 第三实施方案包含水,水混溶性有机溶剂和着色材料,其中包含C.I.直接红84作为水溶性短波长染料S.
    • 2. 发明授权
    • Black ink composition, ink set containing the same, and ink jet recording method
    • 黑色油墨组合物,含有该油墨组合物的油墨组合物,以及喷墨记录方法
    • US07520928B2
    • 2009-04-21
    • US11632653
    • 2005-07-12
    • Kenji IkedaToshiharu Tanaka
    • Kenji IkedaToshiharu Tanaka
    • C09D11/00C09D11/02B41J2/01
    • C09D11/328C09D11/40
    • Black ink compositions are provided. First embodiment contains a water-soluble long-wavelength dye L and a water-soluble short-wavelength dye S, in which the water-soluble short-wavelength dye S has 3 or more azo groups per molecule and a naphthalene skeleton. Second embodiment contains a water-soluble short-wavelength dye S whose absorption spectrum in aqueous solvent has a maximum between 440 nm and 540 nm and a half-band width of 90 to 200 nm and a water-soluble long-wavelength dye L whose absorption spectrum in aqueous solvent has a maximum between 550 nm and 700 nm and a half-band width of 100 nm or more. Third embodiment contains water, a water-miscible organic solvent, and a coloring material, in which C. I. Direct Red 84 is contained as a water-soluble short-wavelength dye S.
    • 提供黑色油墨组合物。 第一实施方案包含水溶性长波长染料L和水溶性短波长染料S,其中水溶性短波长染料S每分子具有3个或更多个偶氮基和萘骨架。 第二实施方案包含水溶性短波长染料S,其在水性溶剂中的吸收光谱的最大值在440nm至540nm之间,半带宽度为90至200nm,并且其水溶性长波长染料L的吸收 水溶剂中的光谱在550nm和700nm之间具有最大值,并且半带宽度为100nm以上。 第三实施方案包含水,水混溶性有机溶剂和着色材料,其中包含C.I.直接红84作为水溶性短波长染料S.
    • 6. 发明申请
    • VALVE TIMING CONTROL DEVICE AND VALVE TIMING CONTROL MECHANISM
    • 阀门定时控制装置和阀门时序控制机制
    • US20140130755A1
    • 2014-05-15
    • US14131102
    • 2012-06-15
    • Masaki KobayashiKenji Ikeda
    • Masaki KobayashiKenji Ikeda
    • F01L1/356
    • F01L1/356F01L1/3442F01L2001/34453F01L2001/34466F01L2001/34469F01L2001/34476F01L2001/34483
    • A valve timing control device is switchable between a first state in which a fluid is supplied to a communication flow path to lift a restriction by a restriction member and release a lock by a lock member, a second state in which the fluid is supplied to a retarded angle chamber to release the lock by the lock member and set the restriction by the restriction member, and a third state in which the restriction member is restricted and the lock member is locked without supplying the fluid to the communication flow path and supplying the fluid to the retarded angle chamber, and is configured such that the minimum cross-sectional area of an advanced passage for supplying the fluid to an advanced chamber is greater than the minimum cross-sectional area of a retarded passage for supplying the fluid to the retarded angle chamber.
    • 气门正时控制装置可在第一状态和第二状态之间切换,在第一状态中,流体被提供给连通流路以通过限制构件提升限制,并且通过锁定构件释放锁定,第二状态将流体供应到 延迟角室,以通过所述锁定构件释放所述锁定,并且通过所述限制构件设置所述限制;以及第三状态,其中所述限制构件被限制,并且所述锁定构件被锁定,而不将所述流体供应到所述连通流动路径并且供应所述流体 并且被构造成使得用于将流体供应到先进室的前进通道的最小横截面面积大于用于将流体供应到延迟角度的延迟通道的最小横截面面积 房间。
    • 9. 发明授权
    • Data processing system and control method utilizing a plurality of date transfer means
    • 数据处理系统和利用多个日期传送装置的控制方法
    • US07380100B2
    • 2008-05-27
    • US10399360
    • 2002-09-06
    • Hiroshi ShimuraKenji IkedaTomoyoshi Sato
    • Hiroshi ShimuraKenji IkedaTomoyoshi Sato
    • G06F15/00
    • G06F15/7867G06F15/80
    • The present invention provides a data processing system that includes a plurality of processing units and first, second, and third data transfer means. The first data transfer means connects a plurality of processing units in a network, exchanges first data, and configures at least one reconfigurable data flow by connecting at least two of the plurality of processing units. The second data transfer means supplies control information that loads setting data as second data to the plurality of processing units in parallel. The third data transfer means supplies the setting data to each of the plurality of the processing units individually. Setting data is data for setting a data flow with a different function by directly or indirectly changing other processing unit connected to a processing unit via the first data transfer means, and/or changing a process included in the processing unit.
    • 本发明提供一种包括多个处理单元和第一,第二和第三数据传送装置的数据处理系统。 第一数据传送装置连接网络中的多个处理单元,交换第一数据,并且通过连接多个处理单元中的至少两个来配置至少一个可重构数据流。 第二数据传送装置将并行地设置数据作为第二数据加载到多个处理单元的控制信息。 第三数据传送装置将设置数据分别提供给多个处理单元中的每一个。 设置数据是用于通过直接或间接地改变经由第一数据传送装置连接到处理单元的其它处理单元和/或改变包括在处理单元中的处理来设置具有不同功能的数据流的数据。