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    • 5. 发明授权
    • Digital magnetic recording/reproduction apparatus and method
    • 数字磁记录/再现装置和方法
    • US4908722A
    • 1990-03-13
    • US214584
    • 1988-07-01
    • Yoshiaki Sonobe
    • Yoshiaki Sonobe
    • G11B5/09G11B5/016G11B5/035G11B20/10G11B20/14
    • G11B20/1419G11B20/10009G11B5/035G11B5/016
    • A digital magnetic recording/reproduction apparatus and method for recording and reproducing a digital information signal. The apparatus comprises a magnetic head, a recording system means for recording the digital information signal and a calibration signal with a specific digital pattern in a magnetic recording medium, through the same signal path, a reproduction system for reproducing the recorded digital information signal and the recorded calibration signal, through the same signal path, and for outputting a reproduced signal, a waveform equalizer for equalizing a waveform of the reproduced signal, a data discriminator for discriminating a data signal from the signal output from the waveform equalizer, by using a window signal, and a calibration system for controlling a characteristic of the waveform equalizer and/or the recording current supplied to the magnetic head so as to maximize a window margin of the data discriminating circuit.
    • 一种用于记录和再现数字信息信号的数字磁记录/再现装置和方法。 该装置包括磁头,用于通过相同的信号路径将数字信息信号和具有特定数字图形的校准信号记录在磁记录介质中的记录系统装置,用于再现所记录的数字信息信号的再现系统和 记录的校准信号,通过相同的信号路径输出再生信号,用于均衡再现信号的波形的波形均衡器,用于从波形均衡器输出的信号中识别数据信号的数据鉴别器,通过使用窗口 信号,以及用于控制波形均衡器的特性和/或提供给磁头的记录电流的校准系统,以便使数据识别电路的窗口边缘最大化。
    • 7. 发明授权
    • Magnetic recording medium and manufacturing method of the same
    • 磁记录介质及其制造方法相同
    • US08414966B2
    • 2013-04-09
    • US12745194
    • 2009-03-09
    • Junichi YasumoriYoshiaki Sonobe
    • Junichi YasumoriYoshiaki Sonobe
    • G11B5/00C23C14/28
    • G11B5/66G11B5/65G11B5/85
    • To provide a magnetic recording medium enabling excellent magnetic recording reproduction characteristics to be exhibited with the spacing loss reduced and a manufacturing method of the medium, a method of manufacturing a magnetic recording medium of the invention is to manufacture a magnetic recording medium having a magnetic recording layer of a granular structure having nonmagnetic boundary portions between pillar-shaped magnetic particles on a nonmagnetic substrate, and an exchange coupling layer provided on the magnetic recording layer to add an action of exchange coupling the magnetic particles, and is characterized by having an ion irradiation step of performing ion irradiation on the entire surface of the exchange coupling layer after layering the exchange coupling layer on the magnetic recording layer.
    • 为了提供能够显着降低间隔损耗的优异磁记录再现特性的磁记录介质和介质的制造方法,本发明的磁记录介质的制造方法是制造具有磁记录的磁记录介质 在非磁性基板上的柱状磁性颗粒之间具有非磁性边界部分的粒状结构层和设置在磁记录层上的交换耦合层,以增加耦合磁性颗粒的作用,其特征在于具有离子辐射 在将记录层上的交换耦合层分层之后,在交换耦合层的整个表面上进行离子辐射的步骤。
    • 8. 发明申请
    • MAGNETIC RECORDING MEDIUM, MAGNETIC RECORDING MEDIUM MANUFACTURING METHOD, AND MAGNETIC DISK
    • 磁记录介质,磁记录介质制造方法和磁盘
    • US20100021768A1
    • 2010-01-28
    • US12526866
    • 2008-02-13
    • Yoshiaki SonobeTakahiro OnoueKoichi Wago
    • Yoshiaki SonobeTakahiro OnoueKoichi Wago
    • G11B5/667B05D5/12B05D3/00G11B5/64
    • G11B5/66G11B5/855
    • [PROBLEMS] To improve the track density by reducing the track edge noise and sharpening the boundaries of a recording magnetic field by blocking the recording magnetic field spreading outside the recording region in magnetic recording.[MEANS FOR SOLVING PROBLEMS] A magnetic recording medium (10) has a substrate (12) and a perpendicular magnetic recording layer (30) formed over the substrate (12). The perpendicular magnetic recording layer (30) has a granular layer (20) in which a magnetic signal is recorded and a continuous film layer (24) magnetically coupled to the granular layer (20). The continuous film layer (24) has hard magnetic portions (204) formed in positions corresponding to the recording regions where magnetic signals are recorded in the granular layer (20) and magnetic shield portions (202) formed between the hard magnetic portions (204), each having a magnetization curve whose slope is larger than those of the hard magnetic portions in the region where the applied magnetic filed is zero when the magnetization curve is measured, and each having a residual magnetic polarization smaller than those in the hard magnetic portions.
    • [问题]通过在磁记录中阻挡记录磁场外的记录磁场扩展,通过减小轨道边缘噪声和锐化记录磁场的边界来提高轨道密度。 解决问题的手段磁记录介质(10)具有在基板(12)上形成的基板(12)和垂直磁记录层(30)。 垂直磁记录层(30)具有其中记录有磁信号的粒状层(20)和磁性耦合到粒状层(20)的连续膜层(24)。 连续薄膜层(24)具有形成在磁性信号被记录在粒状层(20)中的记录区域对应的位置上的硬磁性部分(204)和形成在硬磁性部分(204)之间的磁屏蔽部分(202) 每个磁化曲线在测量磁化曲线时具有比施加的磁场为零的区域中的硬磁性部分的斜率大的磁化曲线,并且每个磁化曲线的残余磁极化小于硬磁性部分中的残余磁极化。