IP Library Granted Patent US 7,149,061
Granted Patent B2
US 7,149,061 · App. 10/025,154 · Granted Dec 12, 2006

Magnetic head with electro-lapping guide

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Quick Facts
Patent No.
US 7,149,061
App. No.
10/025,154
Granted
Dec 12, 2006
Kind
B2
Abstract

A thin-film includes an inductive element and a first and second magneto-resistive effect elements in which the first and second magneto-resistive effect elements are arranged in proximity to each other on a substrate, and one surface of the substrate perpendicular to the surface formed with the first and second magneto-resistive effect elements constitutes a slider surface, thereby providing appropriate hight of the magneto-resistive effect elements.

Claims (34)

1. A thin-film magnetic head on a substrate having a slider surface comprising:

a first magneto-resistive effect element configured to detect a magnetic signal from a magnetic recording medium; and

a second magneto-resistive effect element disposed adjacent to the first magneto-resistive effect element and configured to measure an amount of lapping of the first magneto-resistive effect element along the slider surface,

the first magneto-resistive effect element comprising:

a first magneto-resistive effect film;

an upper shield film disposed above the first magneto-resistive effect film; and

a lower shield film disposed below the first magneto-resistive effect film,

the second magneto-resistive effect element comprising a second magneto-resistive effect film disposed between a first electrode and a second electrode, wherein the first magneto-resistive effect film and the second magneto-resistive effect film have substantially similar shapes,

wherein the second magneto-resistive effect element does not include shield films disposed on each surface of the second magneto-resistive film.

2. The thin-film magnetic head according to claim 1 , wherein said substrate is formed of a non-magnetic material of Al 2 O 3 —TiC or SiC.

3. The thin-film magnetic head according to claim 1 , further comprising an inductive element coupled to the first magneto-resistive effect element and configured to write information on a magnetic recording medium.

4. The thin-film magnetic head according to claim 1 , wherein an end portion of the first magneto-resistive effect element constitutes a portion of the slider surface.

5. The thin-film magnetic head according to claim 1 , wherein a resistance characteristic of the second magneto-resistive effect element is configured to change as a portion of the second magneto-resistive effect element is removed during lapping.

6. A thin-film magnetic head on a substrate having an air bearing surface including:

a first magneto-resistive effect element configured to detect a magnetic signal from a magnetic recording medium;

a first connection terminal configured to detect the magnetic resistance of said first magneto-resistive effect element;

a second magneto-resistive effect element adjacent to said first magneto-resistive effect element and configured to measure an amount of lapping of the first magneto-resistive effect element along the slider surface; and

a second connection terminal configured to detect the resistance of said second magneto-resistive effect element,

the first magneto-resistive effect element comprising:

a first magneto-resistive effect film;

a first shield film disposed adjacent a first side of the first magneto-resistive effect film; and

a second shield film disposed adjacent a second side of the first magneto-resistive effect film opposite from the first side,

the second magneto-resistive effect element consisting only of a second magneto-resistive effect film disposed between a first electrode and a second electrode, wherein the first magneto-resistive effect film and the second magneto-resistive effect film have substantially similar shapes.

7. A thin-film magnetic head comprising:

a first magneto-resistive effect element configured to read a magnetic signal recorded on a magnetic disk and having an end portion that is configured to be exposed to an air bearing surface; and

a second magneto-resistive effect element adjacent to the first magneto-resistive effect element and configured to measure an amount of lapping of the first magneto-resistive effect element at the air bearing surface,

the first magneto-resistive effect element comprising:

a first magneto-resistive effect film;

a first shield film disposed adjacent a first side of the first magneto-resistive effect film; and

a second shield film disposed adjacent a second side of the first magneto-resistive effect film opposite from the first side,

the second magneto-resistive effect element consisting only of a second magneto-resistive effect film disposed between a first electrode and a second electrode, wherein the first magneto-resistive effect film and the second magneto-resistive effect film have substantially similar shapes.

8. A thin-film magnetic head on a substrate having a slider surface comprising:

a first magneto-resistive effect element configured to detect a magnetic signal from a magnetic recording medium, including a first magneto-resistive effect film, an upper shield film disposed above the first magneto-resistive effect film, and a lower shield film disposed below the first magneto-resistive effect film, wherein the first magneto-resistive effect film, the upper shield film, and the lower shield film are stacked on said substrate; and

a second magneto-resistive effect element disposed adjacent to the first magneto-resistive effect element and configured to measure an amount of lapping of the first magneto-resistive effect element along the slider surface, the second magneto-resistive effect element consisting only of a second magneto-resistive effect film disposed between a first electrode and a second electrode, wherein the first magneto-resistive effect film and the second magneto-resistive effect film have substantially similar shapes.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2016
From: HGST NETHERLANDS B.V.
To: WESTERN DIGITAL TECHNOLOGIES, INC.
Reel/Frame 040820/0802 →