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High-density digital recording using karlquist and thin-film heads

机译:使用卡尔奎斯特和薄膜磁头的高密度数字记录

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Linear superposition based on simple theory suggests that the improvement in linear bit density for the thin-film head is about 25% over its Karlquist counterpart. Dynamic iterative simulation via the Extended Dynamic Iterative Model (EDIM) concluded that a finite pole-width head is excellent for writing but poor as a read head due to limited low-frequency response,and the previous superposition prediction appears optimistic. A good combination would be a narrow polewidth for WRITE and a wide pole-width for READ. The criteria of linear and non-linear distortion for magnetic recording are reviewed, and a group of universal test patterns, capable of revealing worst-case peakshift and resolution independent of coding schemes, is proposed. The modelling technique of EDIM is briefly discussed with illustrations of the recording and demagnetizing distribution for in-depth analysis of the high-density digital recording process.
机译:基于简单理论的线性叠加表明,薄膜磁头的线性位密度比其卡尔奎斯特对应物提高了约25%。通过扩展动态迭代模型(EDIM)进行的动态迭代仿真得出的结论是,由于有限的低频响应,有限的磁极宽度磁头对于写入非常好,但作为读取磁头却很差,并且以前的叠加预测看起来很乐观。好的组合将是对于WRITE而言窄的极宽和对于READ而言较宽的极宽。回顾了磁记录线性和非线性失真的标准,并提出了一组通用测试模式,该模式可以揭示最坏情况下的峰移和分辨率,而与编码方案无关。简要讨论了EDIM的建模技术,并举例说明了记录和消磁分布,以深入分析高密度数字记录过程。

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