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    • 29. 发明申请
    • Defect inspection method for perpendicular magnetic recording medium, magnetic disk device, and method of registering defects in magnetic disk device having a perpendicular magnetic recording medium therein
    • 垂直磁记录介质的缺陷检查方法,磁盘装置以及其中具有垂直磁记录介质的磁盘装置中的缺陷记录方法
    • US20060109000A1
    • 2006-05-25
    • US11286130
    • 2005-11-22
    • Kiyoshi MakinoYoshibumi Matsuda
    • Kiyoshi MakinoYoshibumi Matsuda
    • G01R33/12
    • G11B27/36G01R33/1207G11B5/4555G11B19/04G11B2005/001G11B2005/0029
    • Because of its characteristics, a perpendicular magnetic recording medium has the inconvenience that since sections with low signal stability due to magnetic defects are not easily detectible in advance, these sections are detected after mounting of the medium in a magnetic disk device or after product shipping. According to one embodiment, in the manufacturing processes for the perpendicular magnetic recording medium, a DC-erase process step for direct-current demagnetizing the medium is performed after a magnetic film deposition process step and a lubricating-agent application process step. This maximizes the effects of a demagnetizing field and intentionally increases directional instability of magnetization. After the above processes, the medium is further provided with a heating process to accelerate the reversal of magnetization in latent defective sections. A defect examination step for detecting the magnetization reversal sections on the basis of changes in the baseline of the signal read out from the medium under the above state is performed, whereby defects can be detected efficiently.
    • 由于其特征,垂直磁记录介质具有不便之处,即由于磁缺陷引起的信号稳定性低的部分预先不易检测,所以在将介质安装在磁盘装置中或在产品运输之后检测这些部分。 根据一个实施例,在垂直磁记录介质的制造过程中,在磁性薄膜沉积工艺步骤和润滑剂涂布工艺步骤之后进行直流去磁介质的直流 - 擦除处理步骤。 这使得去磁场的作用最大化,故意增加磁化的方向不稳定性。 在上述处理之后,介质还具有加热处理,以加速潜在缺陷部分中的磁化反转。 执行基于在上述状态下从介质读出的信号的基线的变化来检测磁化反转部的缺陷检查步骤,由此能够有效地检测缺陷。