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    • 1. 发明授权
    • Heat transfer recording method
    • 热转印记录方法
    • US5072238A
    • 1991-12-10
    • US632641
    • 1990-12-26
    • Makoto TakamiyaKosuke YamamotoHaruhiko TakahashiYasuyuki TamuraNobuyuki KuwabaraTadashi YamamotoHitoshi Kishino
    • Makoto TakamiyaKosuke YamamotoHaruhiko TakahashiYasuyuki TamuraNobuyuki KuwabaraTadashi YamamotoHitoshi Kishino
    • B41J2/325
    • B41J2/325
    • The present invention provides a heat transfer recording apparatus for recording an image on a recording medium by selectively applying thermal energy by a recording head, comprises: conveying means for conveying a transfer medium, a recording head for selectively applying the energy to the transfer medium, pressing means for changing a pressing force of the recording head, tension means for changing a conveying tension on the transfer medium, peeling angle changing means for changing an angle of the transfer medium peeled from the recording medium; and control means for changing the conveying tension on the transfer medium or/and the peeling angle in response to the change in the pressing force of the recording head. The present invention further provides a heat transfer recording method for recording an image on a recording medium by selectively applying thermal energy by a recording head, wherein: when a pressing force of the recording head is increased, a tension on a transfer medium at a downstream side of the transfer medium with respect to the recording head is increased, or a tension on the transfer medium at an upstream side of the transfer medium with respect to the recording head is decreased, or a peeling angle of the transfer medium peeled from the recording medium is increased.
    • 本发明提供了一种用于通过选择性地通过记录头施加热能将图像记录在记录介质上的热转印记录装置,包括:用于输送转印介质的输送装置,用于选择性地将能量施加到转印介质的记录头, 用于改变记录头的按压力的按压装置,用于改变转印介质上的输送张力的张力装置,用于改变从记录介质上剥离的转印介质的角度的剥离角度改变装置; 以及用于响应于记录头的按压力的变化而改变传送介质上的传送张力或/和剥离角度的控制装置。 本发明还提供一种用于通过选择性地通过记录头施加热能将图像记录在记录介质上的热转印记录方法,其中:当记录头的按压力增加时,在下游的转印介质上的张力 转印介质相对于记录头的一侧增加,或者转印介质相对于记录头的上游侧的转印介质上的张力减小,或转印介质从记录纸剥离的角度 培养基增加。
    • 6. 发明申请
    • Thermal Printer with Energy Save Features
    • 具有节能功能的热敏打印机
    • US20120320138A1
    • 2012-12-20
    • US13160499
    • 2011-06-14
    • Tadashi Yamamoto
    • Tadashi Yamamoto
    • B41J2/315
    • B41J2/33535B41J2/3351B41J2/33525B41J2/3354B41J2/3357B41J2/3358B41J2/33585
    • A thermal printer having a thermal printhead with energy save features which is capable of high speed and high quality printing is provided. The thermal printer has an energy storage device and a thermal printhead including a substrate, a resistor layer formed on one surface of the substrate, and a thermoelectric element disposed on the other surface of the substrate opposite to where the resistor layer is formed, wherein the thermoelectric element converts heat generated by the resistor layer to electrical energy when a temperature difference between the resistor layer and an opposite side of the thermoelectric element where the resistor layer is disposed nearby becomes large enough for the thermoelectric element to convert heat into electric energy, and the electrical energy is stored in the energy storage device.
    • 提供一种具有能够高速和高质量打印的节能特征的热打印头的热敏打印机。 热敏打印机具有能量存储装置和热打印头,该打印头包括基板,形成在基板的一个表面上的电阻层,以及布置在与形成电阻层相反的基板的另一个表面上的热电元件,其中, 当电阻层和邻近设置电阻层的热电元件的相对侧之间的温度差变得足够大以使热电元件将热量转换为电能时,热电元件将由电阻层产生的热量转换为电能,以及 电能存储在能量存储装置中。
    • 9. 发明申请
    • MAGNETIC DEVICE MANUFACTURING METHOD
    • 磁性装置制造方法
    • US20100308012A1
    • 2010-12-09
    • US12865034
    • 2009-01-23
    • Tadashi Yamamoto
    • Tadashi Yamamoto
    • G11B5/84
    • G11B5/855B82Y10/00G11B5/743G11B5/746G11B5/82H01F10/12H01F41/34H01L27/22H01L27/222H01L43/12
    • A method for manufacturing a magnetic device that obtains sufficient processing accuracy without increasing mask removal steps. A first mask layer is formed above a magnetic layer using one selected from the group consisting of Ti, Ta, W, and an oxide or a nitride thereof. A second mask layer is formed on the first mask layer using Ru or Cr. A resist pattern is formed on the second mask layer. A second mask pattern is formed by performing reactive ion etching with reactive gas containing oxygen on the second mask layer using the resist pattern. A first mask pattern is formed by performing reactive ion etching with reactive gas containing halogen gas on the first mask layer using the second mask pattern. A magnetic pattern is formed by performing reactive ion etching with reactive gas containing oxygen on the magnetic layer using the first mask pattern.
    • 一种在不增加掩模去除步骤的情况下获得足够的加工精度的磁性装置的制造方法。 使用选自Ti,Ta,W及其氧化物或氮化物的一种,在磁性层的上方形成第一掩模层。 使用Ru或Cr在第一掩模层上形成第二掩模层。 在第二掩模层上形成抗蚀剂图案。 通过使用抗蚀剂图案在第二掩模层上对含有氧的反应性气体进行反应离子蚀刻来形成第二掩模图案。 通过使用第二掩模图案在第一掩模层上对含有卤素气体的反应性气体进行反应离子蚀刻来形成第一掩模图案。 通过使用第一掩模图案在磁性层上对含有氧的反应性气体进行反应离子蚀刻来形成磁性图案。
    • 10. 发明申请
    • METHOD FOR MANUFACTURING A VERTICAL MAGNETIC RECORDING MEDIUM
    • 制造垂直磁记录介质的方法
    • US20100187197A1
    • 2010-07-29
    • US12669214
    • 2008-07-17
    • Tadashi Yamamoto
    • Tadashi Yamamoto
    • G11B5/84
    • G11B5/855
    • A method for manufacturing a vertical magnetic recording medium that has: a substrate; a soft magnetic layer formed on the substrate; a magnetic recording layer formed directly on the soft magnetic layer or formed on the soft magnetic layer with an intermediate layer therebetween, and having an axis of easy magnetization perpendicular to a surface thereof, in which a plurality of grooves dividing the magnetic recording layer into a plurality of recording elements, the method including a step of forming the grooves by reactive ion etching using a gas containing at least halogen and oxygen, and using the hard mask layer as a mask.
    • 一种用于制造垂直磁记录介质的方法,所述垂直磁记录介质具有:基板; 形成在所述基板上的软磁性层; 磁记录层直接形成在软磁层上,在软磁层上形成有中间层,并且具有与其表面垂直的易磁化轴,其中将多个将磁记录层分割为 多个记录元件,该方法包括通过使用至少包含卤素和氧气的气体通过反应离子蚀刻形成凹槽,并使用硬掩模层作为掩模的步骤。