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    • 11. 发明授权
    • Transfer and fixing device using radiant heating and image forming apparatus using same
    • 使用辐射加热的转印和定影装置和使用它的成像装置
    • US08571452B2
    • 2013-10-29
    • US12458316
    • 2009-07-08
    • Takashi SetoTakashi FujitaAtsushi NagataHiromitsu Takagaki
    • Takashi SetoTakashi FujitaAtsushi NagataHiromitsu Takagaki
    • G03G15/16G03G15/00
    • G03G15/22G03G2215/1695
    • A transfer and fixing device as means for heating a recording medium prior to transfer and fixing, without risk of fire, superior in energy efficiency, and able to stably heat irrespective of the thickness of the recording medium; and an imaging forming apparatus comprising such a transfer and fixing device comprising: a transfer and fixing member by which an image is transferred; a pressurizing member that forms a nip by pressure contact with the transfer and fixing member and pressurizes and fixes the image on the recording medium that passes through the aforementioned nip; a radiant heat source that is arranged on the upstream side of the nip in the direction of transport of the recording medium; and a thermoconductive member that is heated by the radiant heat source and heats the recording medium when in contact, wherein a radiant heat region is provided, between the nip and the thermoconductive member, where the recording medium is heated by radiant heat from the radiant heat source.
    • 传送和固定装置,作为在传送和固定之前加热记录介质的装置,没有火灾的危险,能量效率优异,能够稳定地加热而与记录介质的厚度无关; 以及包括这样的转印和定影装置的成像形成装置,包括:转印和固定构件,通过该转印和固定构件转印图像; 加压构件,其通过与所述转印和固定构件压力接触而形成压区,并且将所述图像加压固定在通过所述辊隙的记录介质上; 辐射热源,其布置在所述辊隙的上游侧,沿着所述记录介质的运送方向; 以及导热部件,其被辐射热源加热并且在接触时加热记录介质,其中在所述辊隙和所述导热体之间设置有辐射热区域,其中所述记录介质由来自所述辐射热的辐射热加热 资源。
    • 14. 发明申请
    • BASE STATION, USER TERMINAL, AND COMMUNICATION METHOD
    • 基站,用户终端和通信方法
    • US20120300751A1
    • 2012-11-29
    • US13434732
    • 2012-03-29
    • Kenji ARAITakashi FUJITA
    • Kenji ARAITakashi FUJITA
    • H04W72/04H04J3/00
    • H04L5/0053H04L1/0026H04L1/1671H04L1/1867H04W88/08
    • A base station includes a transmission timing adjustment determination unit determining whether it to adjust a transmission timing of an uplink signal for each of user terminals; a radio resource allocation unit allocating a radio resource for instruction information to be transmitted to first one of the user terminals for which it has been determined, by the transmission timing adjustment determination unit, that he transmission timing of the uplink signal is not to be adjusted, the instruction information indicating that the transmission timing is not to be adjusted; and an instruction information transmission unit transmitting the instruction information to the first one of the user terminals using the radio resource allocated by the radio resource allocation unit. Further, the radio resource allocation unit is configured to allocate the instruction information to a radio resource to be shared and used by the first one of the user terminals.
    • 基站包括发送定时调整确定单元,确定是否为每个用户终端调整上行链路信号的发送定时; 无线电资源分配单元,通过发送定时调整确定单元,将不发送上行链路信号的发送定时的无线资源分配给要发送的用于已被确定的用户终端的第一个用户终端的无线电资源, 指示发送定时不被调整的指示信息; 以及指令信息发送单元,使用由无线资源分配单元分配的无线资源,向第一用户终端发送指示信息。 此外,无线资源分配单元被配置为向第一用户终端共享和使用的无线电资源分配指令信息。
    • 15. 发明授权
    • Sheet conveying apparatus and image forming apparatus
    • 片材输送装置和成像装置
    • US08240665B2
    • 2012-08-14
    • US12962955
    • 2010-12-08
    • Takashi Fujita
    • Takashi Fujita
    • B65H7/02
    • B65H5/062B65H7/10B65H9/16B65H2404/611B65H2511/24B65H2511/242B65H2511/514B65H2513/108B65H2513/11B65H2513/41B65H2701/1315B65H2220/02B65H2220/01B65H2220/03B65H2220/11
    • The apparatus of the present invention is provided with: a spherical conveying rotation member that is driven to rotate in a desired direction; a driven rotation member disposed above the conveying rotation member so as to be pressed onto an upper portion of the conveying rotation member so that the driven rotation member nips a sheet in cooperation with the conveying rotation member to convey the sheet; two driving rollers press with the conveying rotation member so as to drive the conveying rotation member to rotate; and a driven roller that is made in press-contact with the conveying rotation member to be driven together therewith, and in this structure, the two driving rollers and the driven roller are disposed below the conveying rotation member so as to support the conveying rotation member by the two driving rollers and the driven roller from below.
    • 本发明的装置具有:被驱动以沿期望的方向旋转的球形输送旋转构件; 驱动旋转构件,其设置在所述输送旋转构件的上方,以被按压到所述输送旋转构件的上部,使得所述从动旋转构件与所述输送旋转构件协作地夹持片材以输送所述片材; 两个驱动辊与传送旋转构件一起按压以驱动传送旋转构件旋转; 以及与所述输送旋转部件压接而与其一起被驱动的从动辊,在该结构中,所述两个驱动辊和所述从动辊位于所述输送旋转部件的下方,以支撑所述输送旋转部件 由两个驱动辊和从动辊从下面。
    • 16. 发明授权
    • Wafer polish monitoring method and device
    • 晶圆抛光监测方法及装置
    • US08173037B2
    • 2012-05-08
    • US12008350
    • 2008-01-10
    • Takashi FujitaToshiyuki YokoyamaKeita Kitade
    • Takashi FujitaToshiyuki YokoyamaKeita Kitade
    • H01L21/302
    • B24B49/10H01L22/26
    • A wafer polish monitoring method and device for detecting the end point of the polishing of a conductive film with high precision and accuracy by monitoring the variation of the film thickness of the conductive film without adverse influence of slurry or the like after the film thickness of the conductive film decreases to an extremely small film thickness defined by the skin depth. A high-frequency transmission path is formed in a portion facing the conductive film on the surface of the wafer, the polishing removal state of the conductive film is evaluated based at least on the transmitted electromagnetic waves passing through the high-frequency transmission path or the reflected electromagnetic waves that are reflected without passing through the high-frequency transmission path, and the end point of the polishing removal and the point equivalent to the end point of the polishing removal are detected.
    • 一种晶片抛光剂监测方法和装置,其通过在导电膜的膜厚度之后监测导电膜的膜厚度的变化而不受浆料等的影响而高精度和精确地检测导电膜的抛光终点 导电膜减少到由皮肤深度限定的非常小的膜厚度。 在晶片的表面上面对导电膜的部分形成高频传输路径,至少基于通过高频传输路径的传输电磁波或导电膜的抛光去除状态来评估导电膜的抛光去除状态 反射的电磁波被反射而不通过高频传输路径,并且检测抛光去除的终点和与抛光去除的终点相当的点。
    • 18. 发明授权
    • Sheet feeding device and image forming apparatus
    • 送纸装置和成像装置
    • US08079585B2
    • 2011-12-20
    • US12891958
    • 2010-09-28
    • Takashi Fujita
    • Takashi Fujita
    • B65H3/14B65H1/16
    • B65H7/02B65H1/14B65H3/128B65H3/48B65H2511/22B65H2511/51B65H2553/612B65H2801/06B65H2220/02B65H2220/01
    • An upper limit detection sensor detects that a top face position of a sheet stack on a tray reaches an upper limit position which enables feeding of sheets one by one by a sheet feeding portion and a lower limit detection sensor detects that the top face position of the sheet stack on the tray reaches a lower limit position which enable feeding of sheets one by one. When the sheet stack is loosened by blowing air against a side face of the sheet stack on the tray with an air spouting nozzle provided on an air loosening device, if a sheet floated by air from the air loosening device exceeds an upper limit position of a feeding enabled range, the lowering amount of the tray is controlled so that at least a sheet next to the sheet to be fed is not lower than a lower end position of the air spouting port of the air loosening device.
    • 上限检测传感器检测到托盘上的纸叠的顶面位置达到上限位置,该上限位置能够通过纸张进给部逐一进给纸张,下限检测传感器检测到纸张的顶面位置 托盘上的纸张堆叠达到下限位置,使得能够一张一张地进给纸张。 当通过在空气松动装置上设置有空气喷射喷嘴将空气吹向托盘上的纸叠的侧面而松开纸叠时,如果来自空气松开装置的空气浮起的纸超过了上限位置 进给使能范围时,托盘的下降量被控制,使得至少一个待进给片材的片材不低于空气松开装置的空气喷射口的下端位置。
    • 20. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20110158724A1
    • 2011-06-30
    • US12974318
    • 2010-12-21
    • Takashi Fujita
    • Takashi Fujita
    • G03G15/00
    • G03G15/6567G03G15/235
    • According to the present invention, skew feeding of a sheet is corrected while conveying the sheet, positioning of a side edge of the sheet in the width direction is carried out, and an image is formed on the sheet by an image forming portion 90. Two steering mechanisms 120a and 120b are disposed upstream of the image forming portion along the conveying direction, and the steering mechanisms 120a and 120b can feed a sheet on the skew in any direction with respect to the sheet conveying direction. Two CISs 100a and 100b are disposed along the sheet conveying direction corresponding to the steering mechanisms. A skew feeding angle and a skew feeding velocity of each of the steering mechanisms is changed according to differential value between a side edge position detected by the CISs 100a and 100b and a target position of a side edge of a sheet.
    • 根据本发明,在输送片材的同时校正纸张的偏斜输送,并且执行片材在宽度方向上的侧边缘的定位,并且通过图像形成部分90在片材上形成图像。两个 转向机构120a和120b沿着输送方向设置在图像形成部分的上游,并且转向机构120a和120b可以在相对于纸张输送方向的任何方向上将纸张进给到歪斜。 两个CIS 100a和100b沿着对应于转向机构的片材输送方向设置。 每个转向机构的倾斜进给角度和倾斜进给速度根据由CIS 100a和100b检测的侧边位置与片材的侧边缘的目标位置之间的差值而改变。