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    • 72. 发明申请
    • VRM SELECTION
    • VRM选择
    • US20100182960A1
    • 2010-07-22
    • US12376936
    • 2006-08-09
    • Andras ValkoZoltan TuranyiCsaba KeszeiAtsushi IwasakiKatsutoshi Nishida
    • Andras ValkoZoltan TuranyiCsaba KeszeiAtsushi IwasakiKatsutoshi Nishida
    • H04W72/04
    • H04W8/08H04W80/04H04W80/10
    • There are provided a method, a network system, and a router capable of decreasing the chance of VRM or VLM changes so as to reduce signaling, and consequently contributing to better scalability. The method is applied to mobility management used in an IP-based network system, which contains a plurality of access routers (AR), location managers (LM) and routing managers (RM), through which a mobile node (MN) transmits and receives information. According to the method, a visited routing manager (VRM) where the MN is currently located monitors the MN, an AR currently communicating with the MN discriminates whether or not the MN is moving out of its connectivity range, and the VRM discriminates whether or not the MN is moving out of its control range. Then, the method switches mobility management over from the current AR to a new AR in accordance with the discrimination results, and switches mobility management over from the current VRM to a new VRM in accordance with the discrimination result.
    • 提供了一种方法,网络系统和路由器,能够降低VRM或VLM变化的机会,从而减少信令,从而有助于更好的可扩展性。 该方法应用于基于IP的网络系统中使用的移动性管理,该系统包含多个接入路由器(AR),位置管理器(LM)和路由管理器(RM),移动节点(MN)通过该路由器(MN)发送和接收 信息。 根据该方法,MN当前所在的访问路由选择管理器(VRM)监视MN,当前与MN通信的AR识别MN是否正在移出其连接范围,并且VRM判别MN MN正在移出其控制范围。 然后,该方法根据鉴别结果将移动性管理从当前AR切换到新的AR,并且根据判别结果将移动性管理从当前VRM切换到新的VRM。
    • 74. 发明授权
    • Image generating apparatus
    • 图像生成装置
    • US07359654B2
    • 2008-04-15
    • US11556774
    • 2006-11-06
    • Atsushi Iwasaki
    • Atsushi Iwasaki
    • G03G15/20
    • G03G15/657G03G15/2039G03G2215/00772
    • An image generating apparatus is provided which can maximize the throughput without causing thermal damage of the fusing components. It determines a sub-thermistor temperature threshold value for switching small size paper feed intervals in response to a sub-thermistor initial temperature. It supplies a heating body with current for heating, and starts feeding recording mediums at the feed interval determined by a feed interval initial value. It makes a successively conveyed paper count. Every time the successively conveyed paper count reaches a paper count threshold value, it performs the switching control of the sub-thermistor temperature threshold value. If the sub-thermistor temperature exceeds the threshold value while the recording medium is passing through the fusing apparatus, it carries out the switching control of the feed intervals. In another mode, it prevents the extension of the paper feed interval of the paper conveyance during a specified paper count α.
    • 提供一种图像产生装置,其可以使得生产量最大化而不引起熔断部件的热损伤。 它决定了一个亚热敏电阻温度阈值,用于响应于亚热敏电阻初始温度切换小尺寸进纸间隔。 它供给具有用于加热的电流的加热体,并且以由进料间隔初始值确定的进料间隔开始进料记录介质。 它连续传送纸张数量。 每次连续传送的纸张计数达到纸张计数阈值时,执行副热敏电阻温度阈值的切换控制。 当记录介质通过定影装置时,如果亚热敏电阻温度超过阈值,则执行进给间隔的切换控制。 在另一种模式下,它可以防止在指定的纸张计数α期间延长纸张输送的送纸间隔。
    • 75. 发明申请
    • IMAGE GENERATING APPARATUS
    • 图像发生装置
    • US20080031648A1
    • 2008-02-07
    • US11856986
    • 2007-09-18
    • Atsushi IwasakiAkira HayakawaMasaru TsukadaTaro Ishifune
    • Atsushi IwasakiAkira HayakawaMasaru TsukadaTaro Ishifune
    • G03G15/20
    • G03G15/657G03G15/2039G03G2215/00772
    • An image generating apparatus is provided which can maximize the throughput without causing thermal damage of the fusing components. It determines a sub-thermistor temperature threshold value for switching small size paper feed intervals in response to a sub-thermistor initial temperature. It supplies a heating body with current for heating, and starts feeding recording mediums at the feed interval determined by a feed interval initial value. It makes a successively conveyed paper count. Every time the successively conveyed paper count reaches a paper count threshold value, it performs the switching control of the sub-thermistor temperature threshold value. If the sub-thermistor temperature exceeds the threshold value while the recording medium is passing through the fusing apparatus, it carries out the switching control of the feed intervals. In another mode, it prevents the extension of the paper feed interval of the paper conveyance during a specified paper count α.
    • 提供一种图像产生装置,其可以使得生产量最大化而不引起熔断部件的热损伤。 它决定了一个亚热敏电阻温度阈值,用于响应于亚热敏电阻初始温度切换小尺寸进纸间隔。 它供给具有用于加热的电流的加热体,并且以由进料间隔初始值确定的进料间隔开始进料记录介质。 它连续传送纸张数量。 每次连续传送的纸张计数达到纸张计数阈值时,执行副热敏电阻温度阈值的切换控制。 当记录介质通过定影装置时,如果亚热敏电阻温度超过阈值,则执行进给间隔的切换控制。 在另一种模式下,它可以防止在指定的纸张计数α期间延长纸张输送的送纸间隔。
    • 76. 发明授权
    • Image heating apparatus having a flexible sleeve
    • 图像加热装置具有柔性套筒
    • US07242895B2
    • 2007-07-10
    • US11056975
    • 2005-02-14
    • Seiji InadaFumiki InuiAtsushi IwasakiToshiki NagaseTakehiko Suzuki
    • Seiji InadaFumiki InuiAtsushi IwasakiToshiki NagaseTakehiko Suzuki
    • G03G15/20
    • G03G15/2053G03G2215/2035
    • An object of the present invention is to provide an image heating apparatus having a flexible sleeve of an excellent durability. To this end, an image heating apparatus according to the present invention includes: a flexible sleeve; a driving roller contacting an external periphery surface of the sleeve and serving to rotate the sleeve; a sliding member contacting an internal periphery surface of the sleeve to form a nip portion in cooperation with the driving roller; and a restricting member for restricting a movement of the sleeve in a generatrix direction of the sleeve, wherein, within an edge face of the sleeve in a mounted state on the apparatus, equally bisected by an imaginary plane substantially parallel to a nip plane of the nip portion into a first area closer to the nip portion and a second area farther from the nip portion, the restricting member executes a restricting action only on the second area.
    • 本发明的目的是提供一种具有优异耐久性的柔性套筒的图像加热装置。 为此,根据本发明的图像加热装置包括:柔性套筒; 驱动辊与套筒的外周表面接触并用于使套筒旋转; 滑动构件与所述套筒的内周面接触以与所述驱动辊协作形成压合部; 以及限制构件,用于限制套筒在套筒的母线方向上的运动,其中,在装置的安装状态下在套筒的边缘面内,被平均于基本上平行于 夹持部分进入更靠近夹持部分的第一区域和离咬合部分更远的第二区域,限制构件仅在第二区域上执行限制动作。
    • 77. 发明申请
    • IMAGE GENERATING APPARATUS
    • 图像发生装置
    • US20070059008A1
    • 2007-03-15
    • US11556774
    • 2006-11-06
    • Atsushi IwasakiAkira HayakawaMasaru TsukadaTaro Ishifune
    • Atsushi IwasakiAkira HayakawaMasaru TsukadaTaro Ishifune
    • G03G15/20
    • G03G15/657G03G15/2039G03G2215/00772
    • An image generating apparatus is provided which can maximize the throughput without causing thermal damage of the fusing components. It determines a sub-thermistor temperature threshold value for switching small size paper feed intervals in response to a sub-thermistor initial temperature. It supplies a heating body with current for heating, and starts feeding recording mediums at the feed interval determined by a feed interval initial value. It makes a successively conveyed paper count. Every time the successively conveyed paper count reaches a paper count threshold value, it performs the switching control of the sub-thermistor temperature threshold value. If the sub-thermistor temperature exceeds the threshold value while the recording medium is passing through the fusing apparatus, it carries out the switching control of the feed intervals. In another mode, it prevents the extension of the paper feed interval of the paper conveyance during a specified paper count α.
    • 提供一种图像产生装置,其可以使得生产量最大化而不引起熔断部件的热损伤。 它决定了一个亚热敏电阻温度阈值,用于响应于亚热敏电阻初始温度切换小尺寸进纸间隔。 它供给具有用于加热的电流的加热体,并且以由进料间隔初始值确定的进料间隔开始进料记录介质。 它连续传送纸张数量。 每次连续传送的纸张计数达到纸张计数阈值时,执行副热敏电阻温度阈值的切换控制。 当记录介质通过定影装置时,如果亚热敏电阻温度超过阈值,则执行进给间隔的切换控制。 在另一种模式下,它可以防止在指定的纸张计数α期间延长纸张输送的送纸间隔。
    • 78. 发明授权
    • Method and device for making substrates
    • 制造基材的方法和装置
    • US06855619B2
    • 2005-02-15
    • US10239869
    • 2001-04-02
    • Atsushi IwasakiBruno Ghyselen
    • Atsushi IwasakiBruno Ghyselen
    • C30B29/06C30B31/22C30B33/00H01L21/762H01L21/322
    • C30B29/06C30B31/22C30B33/00H01L21/76254
    • The invention concerns a method for making substrates, in particular for optics, electronics or optoelectronics. The method includes an operation which consists in implanting (100) atomic species beneath the surface of a material in the form of a cylindrical ingot (1), at a depth of implantation distributed about a certain value by bombardment of the atomic species on a zone of the ingot (1) cylindrical surface, and an operation which consists in removing (300), at a separation depth located proximate to the depth of implantation, the layer (2) of material located between the surface and the separation depth, to remove the layer (2) from the rest of the cylindrical ingot (1).
    • 本发明涉及一种制造衬底的方法,特别是用于光学,电子学或光电子学的方法。 该方法包括一种操作,其包括在圆柱形铸锭(1)形式的材料的表面下方植入(100)原子物质,通过在区域上轰击原子物质而分布在约一定值上的注入深度 (1)圆柱形表面的操作,以及一种操作,其包括在位于植入深度附近的分离深度处移除(300)位于表面和分离深度之间的材料层(2),以移除 来自圆柱形锭(1)的其余部分的层(2)。