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Playback Performance of Facing Targets Sputtered Tape Media on Moving Tape Substrate with a High Speed

机译:高速移动磁带基材上面向目标溅射磁带介质的播放性能

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Playback performances and microstructures of facing targets sputtered (FTS) longitudinal recording tape media on moving tape substrates were investigated at a fast (100 cm/min) and a slow (5.8 cm/min) moving speed. CoPtCr-SiO$_{2}$ granular magnetic layers were deposited on Ru underlayer on moving 4.5 $mu$m thick Aramid films by a FTS system at room temperature. Coercivity over 300 kA/m and grain structures with average diameter of 8 nm were achieved on very thin plastic film. Moving speed does not affect microstructure grown by FTS. The magnetic grains are physically isolated by segregation of silicon and chromium to grain boundaries. This was observed by transmission electron microscopy (TEM) and spot energy-dispersive X-ray spectroscopy (EDS). Cross-sectional TEM images show that straight columnar magnetic grains were grown and unaffected by the moving direction of the substrate. In playback tests, it was shown that both samples had over 8 dB higher SNR than commercial particulate tape media of 0.5 Gb/in $^{2}$ areal density.
机译:以快速(100 cm / min)和慢速(5.8 cm / min)的移动速度研究了在移动的磁带基底上溅射的面向目标靶(FTS)纵向记录磁带介质的播放性能和微观结构。在室温下通过FTS系统在移动的4.5μm厚的芳族聚酰胺膜上的Ru底层上沉积CoPtCr-SiO 2-{2} $颗粒磁性层。在非常薄的塑料薄膜上获得了超过300 kA / m的矫顽力和平均直径为8 nm的晶粒结构。移动速度不影响FTS生长的微观结构。磁晶粒通过将硅和铬隔离到晶粒边界而物理隔离。这是通过透射电子显微镜(TEM)和点能量色散X射线光谱(EDS)观察到的。截面TEM图像显示,直的柱状磁性晶粒生长并且不受基板的移动方向的影响。在回放测试中,显示出两个样本的信噪比都比面密度为0.5 Gb / in ^ {2} $的商业微粒磁带介质高8%以上。

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