Wear pads for timing-based surface film servo heads
A thin film magnetic recording head is provided with a tape bearing surface that has magnetically isolated channels while still providing a maximum continuous surface area with which to engage the media. This can be accomplished by providing spaces in the magnetically permeable thin film that are large enough to prevent cross-talk between the channels, but small enough to prevent significant interference with the moving media. Alternatively, magnetically impermeable thin film spacers can be provided to magnetically isolate each of the channels. The spacers are generally even with the magnetically permeable thin film so as to provide a continuous media-bearing surface.
1. A method of making a surface film magnetic recording head, comprising:
depositing a magnetically permeable thin film layer over a multi-channel head substrate;
patterning photoresist on top of the magnetically permeable thin film layer so as to leave areas between the channels uncovered;
removing the uncovered magnetically permeable thin film so as to form spaces in the magnetically permeable thin film between the channels consistent with the areas defined by the photoresist, wherein the spaces are sufficiently large to allow for magnetic isolation between the channels; and
providing magnetically permeable wear pads in the spaces formed in the magnetically permeable thin film to provide magnetic isolation between the channels and provide an even and continuous tape-bearing surface.
2. The method of claim 1 , further comprising:
forming a writing gap through the thin film layer.
3. The method of claim 2 , further comprising:
filling in the writing gap with a magnetically impermeable material.
4. The method of claim 3 , wherein a Focused Ion Beam is used to fill in the writing gap.
5. A method of making a surface film magnetic recording head, comprising:
depositing a magnetically permeable thin film layer over a multi-channel head substrate;
patterning a masking layer on top of the magnetically permeable thin film layer so as to leave areas between the channels uncovered;
removing the uncovered magnetically permeable thin film so as to form spaces in the magnetically permeable thin film between the channels consistent with the areas defined by the masking layer, wherein the spaces are sufficiently large to allow for magnetic isolation between the channels; and
providing magnetically permeable wear pads and non-magnetically permeable spacers in the spaces formed in the magnetically permeable thin film to provide magnetic isolation between the channels and provide an even and continuous tape-bearing surface.
6. The method of claim 5 , further comprising:
forming a writing gap through the thin film layer.
7. The method of claim 6 , further comprising:
filling in the writing gap with a magnetically impermeable material.
8. The method of claim 7 , wherein a Focused Ion Beam is used to fill in the writing gap.