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    • 61. 发明授权
    • Detection device and processing system
    • 检测装置及处理系统
    • US08444055B2
    • 2013-05-21
    • US13182110
    • 2011-07-13
    • Seigo MakidaShoji YamaguchiKatsumi Sakamaki
    • Seigo MakidaShoji YamaguchiKatsumi Sakamaki
    • G06K7/08
    • G08B13/2408G07D7/04G08B13/19695G08B13/2445G08B13/2471G08B13/248G08B13/2482G08B25/08
    • When a user who has a magnetic substance attached paper enters a gate which generates a magnetic field, steep magnetization reversal is produced in the magnetic substance by the magnetic field. As a result, pulse current flows into a detection coil provided in the gate, and a generated waveform signal indicating a characteristic transient response is output to a terminal device. The terminal device calculates correlation coefficients of this waveform and a plurality of stored reference waveforms, additionally calculates an average of the calculated correlation coefficients, and determines whether or not the average is equal to or more than a threshold. When the average is equal to or more than the threshold, the terminal device instructs an imaging device to image a user. When the average is below the threshold, the imaging device is not allowed to image the user.
    • 当具有磁性物质的纸张的用户进入产生磁场的门时,通过磁场在磁性物质中产生陡峭的磁化反转。 结果,脉冲电流流入设置在栅极中的检测线圈,并且向终端装置输出表示特征瞬态响应的生成波形信号。 终端设备计算该波形和多个存储的参考波形的相关系数,另外计算所计算的相关系数的平均值,并确定平均值是否等于或大于阈值。 当平均值等于或大于阈值时,终端设备指示成像设备对用户进行成像。 当平均值低于阈值时,不允许成像设备对用户进行成像。
    • 62. 发明授权
    • Process for producing a polymer
    • 聚合物的制造方法
    • US07951887B2
    • 2011-05-31
    • US10558814
    • 2004-05-26
    • Shoji YamaguchiHideo Kubo
    • Shoji YamaguchiHideo Kubo
    • C08F112/04
    • C08F297/02
    • The object of the present invention is to provide a process for industrially advantageously producing a polymer having a high molecular weight and a narrow, monodispersed molecular weight distribution, and more particularly, a block copolymer of an anionic polymerizable monomer and an acrylic monomer. The object of the present invention was able to be achieved by reacting an acrylic monomer with a polymer anion, the terminal of which has been modified by a compound that forms a living carbanion capable of polymerizing an anionic polymerizable monomer by reacting with an anion, but which itself does not polymerize, in the presence of a compound represented by formula (1): (R1)nM (wherein, R1 represents a C1-C20 alkyl group or a C6-C20 aryl group, R1 may be the same or different in the case n is 2 or more, M represents an atom belonging to Group 2, 12 or 13 of the long form of the periodic table, and n represents the valency of M).
    • 本发明的目的是提供一种工业上有利地制备具有高分子量和窄的单分散分子量分布的聚合物的方法,更具体地说,是阴离子可聚合单体和丙烯酸单体的嵌段共聚物。 本发明的目的是通过使丙烯酸类单体与聚合物阴离子反应来实现,该阴离子的末端已经被能够通过与阴离子反应而形成可阴离子聚合的单体聚合的活性碳负离子的化合物改性,但是 (R1)nM(其中R1表示C1-C20烷基或C6-C20芳基)表示的化合物,其自身不聚合,R1可以相同或不同, 情况n为2以上,M表示属于长周期表的第2,12或13族的原子,n表示M的化合价。
    • 63. 发明申请
    • Process for producing polymer
    • 生产聚合物的方法
    • US20070015890A1
    • 2007-01-18
    • US10558814
    • 2004-05-26
    • Shoji YamaguchiHideo Kubo
    • Shoji YamaguchiHideo Kubo
    • C08F118/02
    • C08F297/02
    • The object of the present invention is to provide a process for industrially advantageously producing a polymer having a high molecular weight and a narrow, monodispersed molecular weight distribution, and more particularly, a block copolymer of an anionic polymerizeable monomer and an acrylic monomer. The object of the present invention was able to be achieved by reacting an acrylic monomer with a polymer anion, the terminal of which has been modified by a compound that forms a living carbanion capable of polymerizing an anionic polymerizeable monomer by reacting with an anion, but which itself does not polymerize, in the presence of a compound represented by formula (1): (R1)nM (wherein, R1 represents a C1-C20 alkyl group or a C6-C20 aryl group, R1 may be the same or different in the case n is 2 or more, M represents an atom belonging to Group 2, 12 or 13 of the long form of the periodic table, and n represents the valency of M).
    • 本发明的目的是提供一种工业上有利地制备具有高分子量和窄的单分散分子量分布的聚合物的方法,更具体地说,是阴离子聚合单体和丙烯酸类单体的嵌段共聚物。 本发明的目的是通过使丙烯酸类单体与聚合物阴离子反应来实现,该阴离子的末端已经被能够通过与阴离子反应而形成能够使阴离子聚合性单体聚合的活性碳负离子的化合物改性,但是 (R1)nM(其中R1表示C1-C20烷基或C6-C20芳基)表示的化合物,其自身不聚合,R1可以相同或不同, 情况n为2以上,M表示属于长周期表的第2,12或13族的原子,n表示M的化合价。
    • 69. 发明授权
    • Ink sheet and printer which adjusts beam position responsive to
polarization of reflected light from ink sheet
    • 油墨纸和打印机,其响应于来自油墨纸的反射光的偏振来调节光束位置
    • US5936656A
    • 1999-08-10
    • US554590
    • 1995-11-06
    • Shoji Yamaguchi
    • Shoji Yamaguchi
    • B41J2/32B41J2/475B41J2/48B41J31/00B41M5/382B41M5/392B41M5/46B41J2/435
    • B41M5/38221B41J2/4753
    • An ink sheet having an ink layer, containing ink to be molten by heat generated by its absorption of received light, includes a magnetic layer being magnetized to have a preset magnetic pattern. The direction of polarization of the reflecting light varies depending on a state of the magnetization on the magnetic layer when part of the received light is incident on and reflected from the magnetic layer. The ink sheet is combined with a printer in which a recording medium and the ink sheet are coupled together, and ink is transferred to the recording medium when the ink sheet receives light. The printer includes optical heads for projecting a light beam upon the ink sheet while moving in the width direction of the ink sheet, sensors for sensing a state of polarization of the light beam reflected from the ink sheet, and actuators for adjusting an irradiating position of the light beam on the ink sheet on the basis of a state of polarization of the reflecting light that is sensed by the sensor.
    • 具有油墨层的油墨层,其含有通过吸收接收的光而产生的热量而被熔融的油墨,包括被磁化以具有预设磁性图案的磁性层。 反射光的偏振方向根据磁性层上的磁化的状态而变化,当部分接收的光入射到磁性层上并从其反射时。 油墨纸与其中记录介质和油墨纸联接在一起的打印机组合,并且当油墨纸接收到光时油墨被转印到记录介质上。 打印机包括用于在油墨纸的宽度方向上移动时将光束投影到油墨纸上的光学头,用于感测从油墨纸反射的光束的偏振状态的传感器,以及用于调节从油墨纸的照射位置调节的致动器 基于由传感器感测的反射光的偏振状态,油墨片上的光束。