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首页> 外文期刊>IEEE Transactions on Magnetics >Current-in-Plane GMR Trilayer Head Design for Hard-Disk Drives: Characterization and Extendibility
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Current-in-Plane GMR Trilayer Head Design for Hard-Disk Drives: Characterization and Extendibility

机译:用于硬盘驱动器的当前平面内GMR三层磁头设计:特性和可扩展性

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摘要

The current-in-plane giant magnetoresistive (GMR) trilayer readback sensor (CIP-3L), where only one permanent magnet at the back edge of the GMR stack is used to stabilize and bias a dual free layer system, is reviewed. Micromagnetic modeling is employed to show that the design has improved efficiency over abutted junction (ABJ) tunneling magnetoresistive (TMR) head designs. An experimental evaluation of how permanent magnet thickness (PM Th), interlayer exchange coupling (J), and stripe height impact the signal-to-noise ratio, symmetry, and stability of prototype CIP-3L heads is conducted. The study indicates that PM Th >400 nm, J<-0.8 erg/cm2, and a read width to SH aspect ratio of 1:1 to 0.75:1, gives optimal transfer curve performance. A head gimbal assembly spinstand comparison on perpendicular recording media with best-in-class TMR readers shows that although the amplitude of the CIP-3L heads is lower (believed to be process related), the symmetry, stability, and most important, bit-error rate normalized to electrical write width and read width, are comparable. In addition, the CIP-3L design shows better linearity and low-frequency noise performance than TMR heads. The areal density performance of the best CIP-3L heads shows 195 Gb/in2 recording capability and linear densities of 1100 kbpi
机译:审查了当前的面内巨型磁阻(GMR)三层回读传感器(CIP-3L),其中仅在GMR堆栈后边缘使用一个永磁体来稳定和偏置双自由层系统。使用微磁建模表明,该设计比邻接结(ABJ)隧道磁阻(TMR)磁头设计具有更高的效率。对永磁体厚度(PM Th),层间交换耦合(J)和条纹高度如何影响原型CIP-3L磁头的信噪比,对称性和稳定性进行了实验评估。研究表明,PM Th> 400 nm,J <-0.8 erg / cm2,读取宽度与SH的宽高比为1:1至0.75:1,可提供最佳的传输曲线性能。磁头万向架组件旋转支架与同类最佳TMR读取器在垂直记录介质上的比较表明,尽管CIP-3L磁头的振幅较低(被认为与工艺有关),但其对称性,稳定性和最重要的是,归一化为电写入宽度和读取宽度的错误率是可比较的。此外,与TMR磁头相比,CIP-3L设计具有更好的线性度和低频噪声性能。最佳CIP-3L磁头的面密度性能显示出195 Gb / in2的记录能力和1100 kbpi的线性密度

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