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    • 2. 发明授权
    • Magnetic material detecting device
    • 磁性材料检测装置
    • US08185006B2
    • 2012-05-22
    • US12372349
    • 2009-02-17
    • Katsumi TakahashiKazuhisa Koizumi
    • Katsumi TakahashiKazuhisa Koizumi
    • G03G15/10
    • G03G15/0849G03G15/0853G03G2215/0602G03G2215/0634
    • A magnetic material detecting device, in which a concentration of magnetic material can be correctly detected, even when the magnetic material with unevenness in its density distribution flows. A magnetic field generating device is arranged in a two-component developer composed of magnetic carrier and non-magnetic toner and generates a magnetic field. A signal output device is arranged in the developer and outputs a signal depending on a magnetic permeability of the developer due to the magnetic field generated by the magnetic field generating device. An agitating unit agitates the developer and makes the developer flow between the magnetic field generating device and the signal output device. A detecting unit detects a proportion of the toner in the developer based on a result of multiple times sampling of the signal outputted from the signal output device after the agitating unit starts to operate.
    • 即使当其密度分布不​​均匀的磁性材料流动时,也可以正确地检测磁性材料的浓度的磁性材料检测装置。 磁场产生装置布置在由磁性载体和非磁性调色剂组成的双组分显影剂中,并产生磁场。 信号输出装置布置在显影器中,并且由于由磁场产生装置产生的磁场而根据显影剂的磁导率输出信号。 搅拌单元搅动显影剂并使显影剂在磁场产生装置和信号输出装置之间流动。 检测单元基于在搅拌单元开始操作之后从信号输出装置输出的信号的多次采样的结果来检测显影剂中的调色剂的比例。
    • 3. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20120038731A1
    • 2012-02-16
    • US13204998
    • 2011-08-08
    • Katsumi TakahashiShinya Suzuki
    • Katsumi TakahashiShinya Suzuki
    • B41J2/385
    • G03G15/0189G03G15/0131G03G15/5058G03G2215/0129G03G2215/0161
    • An image forming apparatus comprises: an exposure unit configured to irradiate each of a plurality of photosensitive members with a light beam, a light amount control unit configured to control a light amount of the light beam, a plurality of developing units configured to develop electrostatic latent images, formed on the plurality of photosensitive members by exposure with the light beams, and a transfer unit configured to transfer toner images formed on the plurality of photosensitive members onto an image carrier; a pattern forming unit configured to control the image forming unit to form, a misalignment detection pattern for detecting a relative misalignment between the toner images transferred onto the image carrier; a pattern reading unit configured to read the misalignment detection pattern; and a correction unit configured to correct the relative misalignment between the toner images based on the reading result obtained by the pattern reading unit.
    • 一种图像形成装置包括:曝光单元,被配置为用光束照射多个感光构件中的每一个;光量控制单元,被配置为控制光束的光量;多个显影单元,被配置为显影静电潜像 通过用光束曝光形成在多个感光构件上的图像;以及转印单元,其被配置为将形成在多个感光构件上的调色剂图像转印到图像载体上; 图案形成单元,被配置为控制图像形成单元以形成用于检测转印到图像载体上的调色剂图像之间的相对未对准的未对准检测图案; 图案读取单元,被配置为读取所述未对准检测图案; 以及校正单元,被配置为基于由图案读取单元获得的读取结果来校正调色剂图像之间的相对未对准。
    • 6. 发明申请
    • MAGNETIC MATERIAL DETECTING DEVICE
    • 磁性材料检测装置
    • US20090208234A1
    • 2009-08-20
    • US12372349
    • 2009-02-17
    • Katsumi TakahashiKazuhisa Koizumi
    • Katsumi TakahashiKazuhisa Koizumi
    • G03G15/10
    • G03G15/0849G03G15/0853G03G2215/0602G03G2215/0634
    • A magnetic material detecting device, in which a concentration of magnetic material can be correctly detected, even when the magnetic material with unevenness in its density distribution flows. A magnetic field generating device is arranged in a two-component developer composed of magnetic carrier and non-magnetic toner and generates a magnetic field. A signal output device is arranged in the developer and outputs a signal depending on a magnetic permeability of the developer due to the magnetic field generated by the magnetic field generating device. An agitating unit agitates the developer and makes the developer flow between the magnetic field generating device and the signal output device. A detecting unit detects a proportion of the toner in the developer based on a result of multiple times sampling of the signal outputted from the signal output device after the agitating unit starts to operate.
    • 即使当其密度分布不​​均匀的磁性材料流动时,也可以正确地检测磁性材料的浓度的磁性材料检测装置。 磁场产生装置布置在由磁性载体和非磁性调色剂组成的双组分显影剂中,并产生磁场。 信号输出装置布置在显影器中,并且由于由磁场产生装置产生的磁场而根据显影剂的磁导率输出信号。 搅拌单元搅动显影剂并使显影剂在磁场产生装置和信号输出装置之间流动。 检测单元基于在搅拌单元开始操作之后从信号输出装置输出的信号的多次采样的结果来检测显影剂中的调色剂的比例。
    • 7. 发明授权
    • Mail distribution system, mail distribution method, and mail distribution program
    • 邮件分发系统,邮件分发方式和邮件分发程序
    • US07558827B2
    • 2009-07-07
    • US10574589
    • 2004-10-14
    • Masahisa KawashimaJun MiyakeTsuyoshi AbeKatsumi Takahashi
    • Masahisa KawashimaJun MiyakeTsuyoshi AbeKatsumi Takahashi
    • G06F15/16
    • H04L51/28
    • When an alias mail having an alias address X as a destination is received from an originator terminal, an alias mail relay server restores a recipient address R and an alias address generation argument C, generates a reply destination address Y including the generation argument C restores and an originator address S, and replaces the destination and a transmission source with the recipient address R and Y to transfer the alias mail to a recipient terminal. On the other hand, when a reply mail is received from the recipient terminal, a remailer restored the originator address S and the generation argument C from Y, regenerates X from the generation argument C restored and the recipient address R, and replaces a destination and a transmission source with the originator address S and X to transfer the reply mail to the originator terminal.
    • 当从发起方终端接收到具有别名地址X作为目的地的别名邮件时,别名邮件中继服务器恢复接收方地址R和别名地址生成参数C,生成包括生成参数C恢复的应答目的地地址Y, 发起者地址S,并用接收方地址R和Y替换目的地和传输源,以将别名邮件传送到接收方终端。 另一方面,当从接收终端接收到回复邮件时,重新接收者从Y恢复发起者地址S和生成参数C,从生成参数C恢复X再生X和接收方地址R,并且替换目的地和 具有发起者地址S和X的传送源将回复邮件传送到发起者终端。