A dual magnetoresistive (DMR) reproduce head, consisting of two nominally identical, adjacent magnetoresistive stripes separated by a conductive spacer, is demonstrated. This two-terminal device is relatively simple to fabricate, does not require magnetic shields for high linear resolution, is self-biased, and is immune to electrical shorting between MR elements. The measured output voltage vs. recorded density agrees well with theoretical predictions. For large linear record densities > 100 kFCI, more advanced DMR designs are theoretically predicted to achieve signal levels comparable to the most advanced shielded MR heads yet demonstrated, and with more robust fabrication and yield.
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NASA, Office of Space Tracking &, Data Systems, Washington, DC, USA, NASA, Office of Space Tracking & Data Systems, Washington, DC, USANASA, Office of Space Tracking &, Data Systems, Washington, DC, USA, NASA, Office of Space Tracking & Data Systems, Washington, DC, USA
Kalil, Ford
Buschman, Al
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NASA, Office of Space Tracking &, Data Systems, Washington, DC, USA, NASA, Office of Space Tracking & Data Systems, Washington, DC, USANASA, Office of Space Tracking &, Data Systems, Washington, DC, USA, NASA, Office of Space Tracking & Data Systems, Washington, DC, USA