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Micromagnetic analysis and current biasing of dual-stripe GMR and dual-GMR sensors for high density recording

机译:用于高密度记录的双条GMR和双GMR传感器的微磁分析和电流偏置

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摘要

A micromagnetic model was developed to study a 4-terminal, insulating spacer Dual-Stripe GMR head (DSGMR) operating in differential mode, and a 2-terminal, high resistivity conducting spacer, Dual-GMR head. Pulse shape and magnetization distributions were correlated with current biasing and non-linear effects. For two (NiFe/sub 20 /spl Aring///Cu/sub 20 /spl Aring//)/sub /spl times/10/ GMR elements and a gap of 500 /spl Aring/, the DSGMR shows higher output than the Dual-GMR at frequencies >400 kfci but has a gap null at 570 kfci. The Dual-GMR has a higher output above 400 kfci, but shows no common-mode effect cancellation, characteristic from dual-stripe heads in differential mode. A single element GMR tape head was fabricated and results compared with simulation.
机译:开发了一个微磁模型来研究以差分模式工作的4端子绝缘垫片双条式GMR磁头(DSGMR)和2端子高电阻率导电垫片Double-GMR头。脉冲形状和磁化分布与电流偏置和非线性效应相关。对于两个(NiFe / sub 20 / spl Aring //// Cu / sub 20 / spl Aring //)/ sub / spl次/ 10 / GMR元素和500 / spl Aring /的间隙,DSGMR显示出比频率> 400 kfci的双GMR,但在570 kfci处的空位为零。 Dual-GMR具有高于400 kfci的更高输出,但没有显示共模效果抵消,这是差模双条纹磁头的特点。制作了单元件GMR磁带头,并将结果与​​仿真进行了比较。

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