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    • 35. 发明申请
    • Image forming apparatus and its control method
    • 图像形成装置及其控制方法
    • US20050169655A1
    • 2005-08-04
    • US11046818
    • 2005-02-01
    • Satoru KoyamaHidetoshi HanamotoAkihiko Takeuchi
    • Satoru KoyamaHidetoshi HanamotoAkihiko Takeuchi
    • G03G21/00G03G15/00G03G15/20
    • G03G15/2039G03G15/80G03G2215/00983G03G2215/2035
    • There are provided an image forming apparatus which can implement on-demand fusing with quick rise in temperature by using the upper current (power) limit of a commercial power supply more effectively and a control method for the apparatus. This image forming apparatus includes a rechargeable battery device capable of charging and discharging, and is designed such that a load other than the heating element of a fusing device can receive power from the commercial power supply and/or the rechargeable battery device. When printing is to be executed, the temperature of the fusing device is detected by a temperature detection element provided for the fusing device, and the supply of power from the commercial power supply or rechargeable battery device to the load is controlled in accordance with the detected temperature. The power supplied from the commercial power supply to the fusing device is then limited to a limit level corresponding to the control result.
    • 提供一种图像形成装置,其能够通过更有效地使用商用电源的上电流(功率)极限来实现按照快速升温的按需熔断和该装置的控制方法。 该图像形成装置包括能够进行充放电的可再充电电池装置,并且被设计为使得除了定影装置的加热元件之外的负载可以从商用电源和/或可再充电电池装置接收电力。 当执行打印时,通过为定影装置提供的温度检测元件来检测定影装置的温度,并且根据检测到的来自商业电源或可再充电电池装置向负载​​的电力供应进行控制 温度。 然后,将从商用电源供给到定影装置的电力限制在与控制结果对应的极限值。
    • 36. 发明授权
    • Induction heating type image heating apparatus
    • 感应加热式图像加热装置
    • US06704537B2
    • 2004-03-09
    • US10352041
    • 2003-01-28
    • Akihiko TakeuchiMasahiro SuzukiTomonori Shida
    • Akihiko TakeuchiMasahiro SuzukiTomonori Shida
    • G03G1520
    • G03G15/2053G03G15/2042G03G2215/2035
    • An image heating apparatus for heating an image formed on a recording material includes a heating member having a heat-generating layer, and magnetic field-generating means for generating a magnetic field to induce an eddy current in the heat-generating layer. The magnetic field-generating means includes a core and a coil disposed around the core in a longitudinal direction of the core. When the coil has a minimum length L1 and a maximum length L2 respectively in a longitudinal direction thereof; the core has a maximum length Lc in the longitudinal direction thereof; the core and the heating layer form a gap d therebetween; and the recording material has a prescribed maximum size giving a passing width Lp; these values satisfying the following relationship: Lp+2(2d+1)≦Lc≦L1
    • 用于加热形成在记录材料上的图像的图像加热装置包括具有发热层的加热构件和用于产生磁场以在发热层中引起涡流的磁场产生装置。 所述磁场产生装置包括芯和围绕所述芯沿所述芯的纵向设置的线圈。 当线圈的长度方向分别具有最小长度L1和最大长度L2时, 芯部在其长度方向上具有最大长度Lc; 芯和加热层之间形成间隙d; 并且所述记录材料具有给定通过宽度Lp的规定的最大尺寸; 这些值满足以下关系:
    • 38. 发明授权
    • Lyophilized compositions containing shingoglycolipid and process for preparing them
    • 含有胶质糖脂的冻干组合物及其制备方法
    • US06417167B1
    • 2002-07-09
    • US09897992
    • 2001-07-05
    • Kazutoshi MaruyamaHideaki NomuraAkihiko Takeuchi
    • Kazutoshi MaruyamaHideaki NomuraAkihiko Takeuchi
    • A61K3170
    • A61K31/7032A61K9/0019A61K9/19A61K47/183A61K47/26A61K47/28
    • The object of the present invention is to improve the solubility of sphingoglycolipids having low solubility in water. Disclosed is a lyophilized composition comprising the &agr;-glycosylceramide represented by the following formula (A) or a salt thereof, a polyoxysorbitan fatty acid ester and disaccharide or monosaccharide, and preferably additional deoxycholic acid or histidine, and a process for preparing it: wherein R1 represents H or OH; X denotes an integer in the range of 7-25; R2 represents any one of the substituents —CH2(CH2)YCH3, —CH(OH)(CH2)YCH3, —CH(OH)(CH2)YCH(CH3)2, —CH═CH(CH2)YCH3, or —CH(OH)(CH2)YCH(CH3)CH2CH3, wherein Y denotes an integer in the range of 5-17; either one of R3 or R4 represents H, and the other represents H, OH, NH2 or NHCOCH3; either one of R5 or R6 represents H, and the other represents OH; either one of R7 or R8 represents H, and the other represents OH; R9 represents H, CH3 or CH2OH.
    • 本发明的目的是改善在水中溶解度低的鞘糖脂的溶解度。 公开了包含下式(A)表示的α-糖基神经酰胺或其盐,多脱氧山梨糖醇脂肪酸酯和二糖或单糖,优选其它脱氧胆酸或组氨酸的冻干组合物及其制备方法,其中R1表示 H或OH; X表示7-25的整数; R2表示取代基-CH2(CH2)YCH3,-CH(OH)(CH2)YCH3,-CH(OH)(CH2)YCH( CH3)2,-CH = CH(CH2)YCH3或-CH(OH)(CH2)YCH(CH3)CH2CH3,其中Y表示5-17的整数; R3或R4中的任一个表示H,另一个表示H,OH,NH 2或NHCOCH 3; R5或R6中的任一个表示H,另一个表示OH; R7或R8中的任一个表示H,另一个表示OH; R9代表H,CH3或CH2OH。
    • 39. 发明授权
    • Image forming apparatus having intermediary transfer member
    • 具有中间转印部件的图像形成装置
    • US5953572A
    • 1999-09-14
    • US905830
    • 1997-08-04
    • Akihiko TakeuchiTatsuya KobayashiToshiaki MiyashiroNaoki EnomotoTakaaki Tsuruya
    • Akihiko TakeuchiTatsuya KobayashiToshiaki MiyashiroNaoki EnomotoTakaaki Tsuruya
    • G03G15/00G03G15/01G03G15/16
    • G03G15/1675G03G15/1605G03G2215/0177
    • An image forming apparatus includes an image bearing member for bearing an image; an intermediary transfer member onto which an image is transferred from the image bearing member at a first transfer position and from which the image thus transferred is transferred onto a transfer material at a second transfer position; a contact member provided at an image bearing side of the intermediary transfer member, the contact member being capable of forming a nip between the intermediary transfer member; a supporting member for supporting the intermediary transfer member at a position opposite from the nip; a sum of a resistance value of the contact member and a resistance value of the supporting member is not more than 1/10 of a resistance value of the intermediary transfer member; and the contact member and the supporting member are contacted to the intermediary transfer member, and when no transfer material is present at the nip, a voltage is detected while a predetermined current is applied between the contact member and the supporting member through the intermediary transfer member.
    • 图像形成装置包括用于承载图像的图像承载部件; 中间转印部件,在第一转印位置从图像承载部件转印图像,并且将这样转印的图像从该转印部件转印到第二转印位置的转印材料上; 设置在所述中间转印部件的图像承载侧的接触部件,所述接触部件能够在所述中间转印部件之间形成辊隙; 支撑构件,用于在与辊隙相对的位置处支撑中间转印构件; 接触构件的电阻值和支撑构件的电阻值的和不大于中间转印构件的电阻值的+ E,fra 1/10 + EE; 并且接触构件和支撑构件与中间转印构件接触,并且当在辊隙处不存在转印材料时,检测到电压,同时通过中间转印构件在接触构件和支撑构件之间施加预定电流 。
    • 40. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US5608505A
    • 1997-03-04
    • US640000
    • 1996-04-30
    • Akihiko TakeuchiToshihiko OchiaiMotoi KatohToshiaki MiyashiroTakehiko Suzuki
    • Akihiko TakeuchiToshihiko OchiaiMotoi KatohToshiaki MiyashiroTakehiko Suzuki
    • G03G15/00G03G15/01G03G15/02G03G15/16
    • G03G15/1685G03G15/0131
    • An image forming apparatus includes an electrophotographic photosensitive member; a charger for charging the photosensitive member to form an electrostatic latent image on the photosensitive member; an exposure device for exposing the photosensitive member to image light; a developing device for developing the latent image with toner; a transfer member contactable to the photosensitive member at a transfer position, the transfer member comprising an electrically conductive base, a high resistance surface layer, and a low resistance or intermediate resistance conductive layer between the conductive base and the surface layer; and transfer voltage applying device for applying a transfer voltage to the transfer member; wherein Ws>Wt>Wp>W1 is satisfied, where Ws is a width of a photosensitive layer measured in a direction perpendicular to a movement direction of the photosensitive member, W1 is an image exposure width of the exposure device, Wp is a width of a transfer material usable with the image forming apparatus, and Wt is an overlapping width between a charging width of the charger and the width of the conductive layer of the transfer member.
    • 图像形成装置包括电子照相感光构件; 用于对感光构件充电以在感光构件上形成静电潜像的充电器; 曝光装置,用于将感光构件曝光成图像光; 用调色剂显影潜像的显影装置; 所述转印构件在转印位置处与所述感光构件接触,所述转印构件包括在所述导电基底和所述表面层之间的导电基底,高电阻表面层和低电阻或中间电阻导电层; 以及用于向转印部件施加转印电压的转印电压施加装置; 其中Ws> Wt> Wp> W1,其中Ws是在与感光构件的移动方向垂直的方向上测量的感光层的宽度,W1是曝光装置的图像曝光宽度,Wp是 可与图像形成装置一起使用的转印材料,并且Wt是充电器的充电宽度与转印部件的导电层的宽度之间的重叠宽度。