An interconnect for dissipating electrostatic charges on a head slider
11 claims: 11 independent, 0 dependent
- 1An interconnect for a flexure (22) of a hard disk drive (10) comprising:a flexure (22) coupled to an actuator arm (24) pivotally mounted to a base plate (16) via a bearing assembly (26);a head slider (21) adhered to the flexure (22);anda circuit (60) coupled to the head slider (21)characterized in thatthe circuit (60) is formed on the flexure (22), andthe circuit (60) is generating current sufficient to dissipate electrostatic voltage on the head slider (21). Interconnexion pour un élément souple (22) d'un disque dur (10), comprenant: un élément souple (22) accouplé à un bras de commande (24) monté pivotant sur un plateau de base (16) par l'intermédiaire d'un ensemble palier (26) ;un patin de tête (21) collé sur l'élément souple (22) ;etun circuit (60) accouplé au patin de tête (21)caractérisé en ce quele circuit (60) est formé sur l'élément souple (22), etle circuit (60) produit un courant suffisant pour dissiper une tension électrostatique sur le patin de tête (21) . Zwischenverbindungsvorrichtung für ein Biegeglied (22) eines Festplattenlaufwerks (10), die umfasst: ein Biegeglied (22), das mit einem Stellarm (24) verbunden ist, der über eine Lageranordnung (26) schwenkbar an einer Grundplatte (16) angebracht ist;einen Kopf-Gleiter (21), der an dem Biegeglied (22) angeklebt ist;undeine Schaltung (60), die mit dem Kopf-Gleiter (21) verbunden ist,dadurch gekennzeichnet, dassdie Schaltung (60) an dem Biegeglied (22) ausgebildet ist, unddie Schaltung (60) Strom erzeugt, der ausreicht, um elektrostatische Spannung an dem Kopf-Gleiter (21) abzuleiten.
- 2Interconnexion selon la revendication 1, comprenant en outre une tête (20) accouplée au patin de tête (21). The interconnect of Claim 1 further comprising a head (20) coupled to the head slider (21). Zwischenverbindungsvorrichtung (1), die des Weiteren einen Kopf (20) umfasst, der an den Kopf-Gleiter (21) gekoppelt ist.
- 3Interconnexion selon la revendication 2, dans laquelle le circuit (60) produit un courant qui circule à travers une tête (20) accouplée au patin de tête (21) pour dissiper une tension électrostatique sur la tête (20) et le patin de tête (21). The interconnect of Claim 2 wherein the circuit (60) generates current that flows through a head (20) coupled to the head slider (21) to dissipate electrostatic voltage on the head (20) and head slider (21). Zwischenverbindungsvorrichtung nach Anspruch 2, wobei die Schaltung (60) Strom erzeugt, der durch einen Kopf (20) fließt, der mit dem Kopf-Gleiter (21) verbunden ist, um elektrostatische Spannung an dem Kopf (20) und dem Kopf-Gleiter (21) abzuleiten.
- 4Interconnexion selon la revendication 1, dans laquelle un adhésif est prévu pour coller le patin de tête (21) sur l'élément souple (22). The interconnect of Claim 1 wherein an adhesive is provided to adhere the head slider (21) to the flexure (22). Zwischenverbindungsvorrichtung nach Anspruch 1, wobei ein Klebstoff vorhanden ist, um den Kopf-Gleiter (21) an das Biegeglied (21) anzukleben.
- 5Interconnexion selon la revendication 4, dans laquelle l'adhésif comprend un époxyde électriquement conducteur. The interconnect of Claim 4 wherein the adhesive comprises an electrically conductive epoxy. Zwischenverbindungsvorrichtung nach Anspruch 4, wobei der Klebstoff ein elektrisch leitendes Epoxidharz umfasst.
- 6Interconnexion selon l'une quelconque des revendications précédentes, dans laquelle le circuit (60) est accouplé à la tête (20), au patin de tête (21) et à l'élément souple (22), le circuit (60) produit un courant suffisant pour faire chuter l'impédance de l'adhésif conducteur afin de permettre au courant de circuler à travers l'adhésif. The interconnect of any on of the previous claims, wherein the circuit (60) is coupled to the head (20), head slider (21), and to the flexure (22), the circuit (60) generates current sufficient to breakdown the impedance of the conductive adhesive to allow current to flow through the adhesive. Zwischenverbindungsvorrichtung nach einem der vorangehenden Ansprüche, wobei die Schaltung (60) mit dem Kopf (20), dem Kopf-Gleiter (21) und mit dem Biegeglied (22) verbunden ist und die Schaltung (60) Strom erzeugt, der ausreicht, um die Impedanz des leitenden Klebstoffs zu überwinden, so dass Strom durch den Klebstoff fließen kann.
- 7Interconnexion selon l'une quelconque des revendications précédentes, dans laquelle le circuit (60) produit un courant qui circule à travers la tête (20) et le patin de tête (21) pour dissiper une tension électrostatique sur la tête (20) et le patin de tête (21). The interconnect of any one of the previous claims wherein the circuit (60) generates current that flows through the head (20) and head slider (21) to dissipate electrostatic voltage on the head (20) and head slider (21). Zwischenverbindungsvorrichtung nach einem der vorangehenden Ansprüche, wobei die Schaltung (60) Strom erzeugt, der durch den Kopf (20) und den Kopf-Gleiter (21) fließt, um elektrostatische Spannung an dem Kopf (20) und dem Kopf-Gleiter (21) abzuleiten.
- 8Interconnexion selon l'une quelconque des revendications précédentes, dans laquelle le circuit (60) comprend un commutateur (91) destiné à commander la circulation du courant à travers la tête (20) et le patin de tête (21). The interconnect of any one of the previous claims wherein the circuit (60) includes a switch (91) for controlling the flow of current through the head (20) and head slider (21). Zwischenverbindungsvorrichtung nach einem der vorangehenden Ansprüche, wobei die Schaltung (60) einen Schalter (91) enthält, um den Fluss von Strom durch den Kopf (20) und den Kopf-Gleiter (21) zu steuern.
- 9Interconnexion selon l'une quelconque des revendications 6 à 8, dans laquelle le circuit (60) permet au courant de circuler à travers la tête (20) et le patin de tête (21) pour dissiper une tension électrostatique sur la tête (20) et le patin de tête (21). The interconnect of any one of the Claims 6 to 8, wherein the circuit (60) allows current to flow through the head (20) and head slider (21) to dissipate electrostatic voltage on the head (20) and head slider (21). Zwischenverbindungsvorrichtung nach einem der Ansprüche 6 bis 8, wobei die Schaltung (60) Strom durch den Kopf (20) und den Kopf-Gleiter (21) fließen lässt, um elektrostatische Spannung an dem Kopf (20) und dem Kopf-Gleiter (21) abzuleiten.
- 10A method for dissipating electrostatic voltage on a head slider (21), the method comprising the following steps:(a) providing a flexure (22) coupled to an actuator arm (24) pivotally mounted to a base plate (16) via a bearing assembly (26);(b) providing a head slider (21) adhered to the flexure (22), the head slider (21) adhered to the flexure (22) via a conductive adhesive;(c) generating a current sufficient to breakdown the impedance of the conductive adhesive;and(d) applying current to the head slider (21) to dissipate electrostatic voltage on the head slider (21). Procédé de dissipation d'une tension électrostatique sur un patin de tête (21), le procédé comprenant les étapes consistant à : (a) prévoir un élément souple (22) accouplé à un bras de commande (24) monté pivotant sur un plateau de base (16) par l'intermédiaire d'un ensemble palier (26) ;(b) prévoir un patin de tête (21) collé sur l'élément souple (22), le patin de tête (21) étant collé sur l'élément souple (22) par l'intermédiaire d'un adhésif conducteur ;(c) produire un courant suffisant pour faire chuter l'impédance de l'adhésif conducteur ;et(d) appliquer un courant au patin de tête (21) pour dissiper une tension électrostatique sur le patin de tête (21). Verfahren zum Ableiten elektrostatischer Spannung an einem Kopf-Gleiter (21), wobei das Verfahren die folgenden Schritte umfasst: (a) Bereitstellen eines Biegegliedes (22), das mit einem Stellarm (24) verbunden ist, der über eine Lageranordnung (26) schwenkbar an einer Grundplatte (16) angebracht ist;(b) Bereitstellen eines Kopf-Gleiters (21), der an dem Biegeglied (22) angeklebt ist, wobei der Kopf-Gleiter (21) über einen leitenden Klebstoff an dem Biegeglied (22) angeklebt ist;(c) Erzeugen eines Stroms, der ausreicht, um die Impedanz des leitenden Klebstoffs zu überwinden;und(d) Anlegen von Strom an den Kopf-Gleiter (21), um elektrostatische Spannung an den Kopf-Gleiter (21) abzuleiten.
- 11Procédé selon la revendication 10, dans lequel le courant est appliqué par intermittence au patin de tête pour dissiper une tension électrostatique sur le patin de tête. The method of Claim 10 wherein the current is intermittently applied to the head slider to dissipate electrostatic voltage on the head slider. Verfahren nach Anspruch 10, wobei der Strom intermittierend an den Kopf-Gleiter angelegt wird, um elektrostatische Spannung an dem Kopf-Gleiter abzuleiten.
Independent claims11
31 paragraphs in 4 sections, as filed
BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to a method and apparatus for dielectric breakdown of a conductive adhesive on a suspension interconnect of a hard disk drive to reduce the severity of electrostatic events encountered by a head slider coupled to the interconnect.
2. Background Information
Hard disk drives contain a plurality of magnetic heads that are coupled to rotating disks. The heads write and read information by magnetizing and sensing the magnetic fields of the disk surfaces. Typically the magnetic heads include a write element for magnetizing the disks and a separate read element for sensing the magnetic field of the disks. The read element is typically constructed using a magneto-resistive material that has a resistance that varies with the magnetic field of the disk. Heads with magneto-resistive read elements are commonly referred to as magneto-resistive (MR) and giant magneto-resistive (GMR) heads.
Each head is mechanically coupled to a head slider. The head slider is attached to a flexure arm to create a subassembly known as a head suspension assembly (HSA). The HSA comprises a subassembly of a known head gimbal assembly (HGA). The HGA's are attached to an actuator arm. The actuator arm has a voice coil motor that can move the heads across the surfaces of the disks.
Information is stored in radial tracks that extend across the surfaces of each disk. Each track is typically divided up into a number of segments or sectors. The voice coil motor and actuator arm can move the heads to different tracks of the disks and to different sectors of each track.
A suspension interconnect extends along the length of the flexure arm and connects the head to a preamplifier device of the voice coil motor. The suspension interconnect typically comprises a pair of conductive write traces and a pair of conductive read traces formed on a stainless steel lamina.
Changes in the geometry of the flexure may cause the read/write heads to contact the surface of the disk. If the read/write heads contact the surface of the disk, electrostatic charging may occur. The electrostatic discharge (ESD) that occurs when the head contacts the disk surface may jump to the head and may severely damage or destroy the head.
An electrostatic discharge may also be formed on the head during the build processes of the HSA, HGA, and hard disk drive. Each ESD event that the head is exposed to may significantly shorten the life of the head and head slider.
Accordingly, there exists a need for an interconnect design that may reduce the head and head slider's exposure to severe ESD events.
<patcit id="pcit0001" dnum="US20030102218A"><text>US 2003/0102218</text></patcit> discloses an interconnect according to the preamble of claim 1.
BRIEF SUMMARY OF THE INVENTION
The invention provides an interconnect that may reduce a head and head slider's exposure to electrostatic discharge (ESD) events and may dissipate electrostatic charging of the head. The invention may provide a reduced signal to noise ratio during data read/write operations. The invented interconnect allows electrostatic charges on the head to flow to a preamplifier circuit to provide low resistance between the head and suspension. This may minimize variations of the flying height of the head over the surface of a rotating disk.
The invented interconnect includes conductive and nonconductive adhesives that are used to bond the head slider to a flexure arm of the interconnect. An electromagnetic interference (EMI) generating circuit generates current that flows through the conductive adhesive bonding the head slider to the flexure arm. The EMI current breaks down the resistance of the conductive adhesive to dissipate electrostatic charges on the head slider. This may limit the head slider's exposure to severe ESD events, which may prolong the life of the head.
BRIEF DESCRIPTION OF THE DRAWINGS
The objects and features of the present invention, which are believed to be novel, are set forth with particularity in the appended claims. The present invention, both as to its organization and manner of operation, together with further objects and advantages, may best be understood by reference to the following description, taken in connection with the accompanying drawings, in which: <ul id="ul0001" list-style="none" compact="compact"><li><figref idref="f0001">Figure 1</figref> is a top view of an embodiment of a hard disk drive of the invention;</li><li><figref idref="f0002">Figure 2</figref> is an enlarged bottom view of a head slider of the invention;</li><li><figref idref="f0003">Figure 3</figref> is an enlarged view of a head slider coupled to the flexure arm; and</li><li><figref idref="f0004">Figure 4 and Figure 5</figref> are schematic diagrams showing a circuit that generates current for dissipating electrostatic voltage on a head slider of the invention.</li></ul>
DESCRIPTION OF THE PREFERRED EMBODIMENTS
The following description is provided to enable any person skilled in the art to make and use the invention and sets forth the best modes presently contemplated by the inventors of carrying out the invention. Various modifications, however, will remain readily apparent to those skilled in the art, since the generic principles of the present invention have been defined herein.
The invention includes an improved interconnect for a flexure arm of a hard disk drive. The invention provides an interconnect that may reduce a head and head slider's exposure to severe electrostatic discharge (ESD) events and may dissipate electrostatic voltage charges on the head. The invention may provide a reduced signal to noise ratio during data read/write operations. The invention may also minimize variations of the flying height of the head slider over the surface of a rotating disk.
The invented interconnect includes conductive and nonconductive adhesives that are used to bond the head slider to a flexure arm. A circuit, which may be an electromagnetic interference (EMI) generating circuit, generates current that flows through the conductive adhesive bonding the head slider to the flexure arm. This current may break down the resistance of the conductive adhesive to dissipate the electrostatic charge on the head and head slider. This may prolong the life of both the head and head slider.
Referring to the drawings, more particularly by reference numbers, <figref idref="f0001">Figure 1</figref> shows an embodiment of a hard disk drive 10 of the present invention. The hard disk drive 10 may include one or more magnetic disks 12 that are rotated by a spindle motor 14. The spindle motor 14 may be mounted to a base plate 16 of the drive 10. The disk drive 10 may further include a cover 18 that encloses the disks 12.
The disk drive 10 may include a plurality of heads 20 coupled to head sliders 21. Each head 20 is located adjacent to a rotating disk 12. Each head 20 may have separate write and read elements (both not shown) that magnetize and sense the magnetic fields of the disks 12.
Each head slider 21 may be gimbal mounted to a flexure arm, or flexure, 22 to form a head gimbal assembly (HGA). The flexure 22 comprises the invented interconnect. The flexure 22 is attached to an actuator arm 24 that is pivotally mounted to the base plate 16 by a bearing assembly 26. A voice coil 28 is coupled to a magnet assembly 30 to create a voice coil motor (VCM) 32. Providing a current to the voice coil 28 creates a torque that swings the actuator arm 24 and moves the heads 20 across the surfaces of the disks 12.
The disk drive 10 may further include a printed circuit board assembly 34. The printed circuit board assembly 34 may include a plurality of integrated circuits 36 coupled to a printed circuit board 38. The printed circuit board 38 is coupled to the voice coil 28, heads 20, and spindle motor 14 by wires (not shown).
As shown in <figref idref="f0002">Figure 2</figref> and <figref idref="f0003">Figure 3</figref>, pair of conductive write traces W+, W- and a pair of conductive read traces R+, R- extend along the flexure 22, over the head slider 21, and couple to the head 20. The traces are formed on a stainless steel lamina 40. The stainless steel lamina 40 may be formed using known methods.
A ridge 42 may be formed along each side 44 of an underside 46 of the head slider 21. A ridge 42 may also be formed adjacent to a front edge 48 of the head slider 21 and adjacent a rear portion 50 of the head slider 21. The ridges 42 may be configured to form a base for supporting a head 20 that is secured to the head slider 21. The ridges 42 may comprise any suitable tough, durable polymeric material. By way of example, the ridges 42 comprise polyimide and are formed using known methods.
An adhesive, such as epoxy, may be used to secure the head 20 to the head slider 21. The adhesive may comprise either conductive epoxy, or non-conductive epoxy, or both. The adhesive is applied to the head slider 21 using known methods. The head 20 is positioned on the adhesive to affix the head 20 to the head slider 21.
By way of example, a deposition of non-conductive adhesive 52 may be disposed on the stainless steel lamina 40 adjacent each corner of the front edge 48 of the head slider 21. A portion of each deposition of non-conductive adhesive 52 may extend over a front end 54 of the adjacent ridge 42. The non-conductive adhesive 52 may be elliptical in cross-sectional configuration. The non-conductive adhesive 52 may comprise non-conductive epoxy. By way of example, the impedance of the non-conductive adhesive 52 may range from approximately 3 KΩ to approximately 12 MΩ.
Similarly, a deposition of conductive adhesive 56 may be disposed on the stainless steel lamina 40 adjacent each corner of the rear portion 50 of the head slider 21. A portion of each deposition of conductive adhesive 56 may extend over a rear end 58 of the adjacent ridge 42. The conductive adhesive 56 may be substantially circular in cross-sectional configuration. The conductive adhesive 56 may comprise conductive epoxy.
The breakdown voltage of the conductive adhesive 56 may vary depending upon material comprising the adhesive, such as epoxy, the quantity of adhesive, and shape of the deposition of adhesive. Preferably, the breakdown voltage of the conductive adhesive 56 ranges between 1 and 5 volts. The dielectric breakdown of the conductive adhesive 56 results in a low resistance thereof. The impedance of the conductive adhesive 56 may be less than approximately 50 ohms. Preferably, the impedance of the conductive adhesive 56 ranges from approximately 10 ohms to approximately 20 ohms. Thus, each deposition of conductive adhesive 56 may be capable of providing a current path between the head 20, head slider 21, and flexure 22 to reduce the voltage potential between the head 20 and flexure 22.
As shown in <figref idref="f0004">Figure 4 and Figure 5</figref>, a circuit, shown schematically only, at 60, is provided to generate electrical current that flows through the depositions of conductive adhesive 56 that bond the head to the head slider 21. It is to be understood that the circuit 60 may be formed on the flexure 22 as is known in the art.
The circuit 60 may comprise an electromagnetic interference (EMI) generating circuit. The circuit 60 is capable of generating sufficient electrical current to breakdown the resistance of the conductive epoxy 56 to dissipate electrostatic voltage on the head 20. Preferably, the circuit 60 may be capable of generating current between 1 and 5 milliamps of current.
The circuit 60 may include a pair of resistors R1, R2 that are coupled in series. A capacitor or inductor C1 may be coupled in parallel with resistor R2 and coupled to ground 62. A switch S 1 may be provided between resistor R2 and ground 62. The circuit 60 may be electromagnetically coupled to the head 20 across node N1, for coupling the circuit 60 to the head 20. A conductor 64, such as a wire, may be secured to the head 20 and coupled to ground 62 for completing the circuit 60. The conductor 64 may also be coupled to resistor R2 to provide a current path between the head 20 and resistor R2.
When it is desired to dissipate an electrostatic voltage charge on the head 20, the switch S I is closed. Closure of the switch SI allows current to flow from the head 20 to ground 62 to dissipate voltage on the head. Closure of the switch S 1 may be performed during manufacture the hard disk drive 10. Closure of the switch S 1 may be momentary. The switch S 1 may be repeatedly opened and closed to dissipate electrostatic voltage on the head 20.
Contents4
4 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4
5 priority claims, no other members on record
Priority claims5
| Document | Office | Kind | Date |
|---|---|---|---|
| 750638 | United States of America | – | |
| 75063803 | United States of America | A | |
| 75063803 | United States of America | A | |
| 750638 | – | – | – |
| US20030750638 | – | – | – |
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Numbers
- Publication
- 1544849
- Publication, DOCDB
- 1544849
- Publication, EPODOC
- EP1544849
- Application
- 4029908
- Application, DOCDB
- 04029908
- Application, EPODOC
- EP20040029908
Titles3
- German
- Verbindung zum Entladen elektrostatischer Ladungen auf einem Kopfgleiter
- English
- An interconnect for dissipating electrostatic charges on a head slider
- French
- Interconnexion pour dissipation des charges électrostatiques sur un patin de tête
Classification
- CPC, 2
- G11B5/4853
- G11B21/21
- IPC, 4
- G11B5 48
- G11B5 60
- G11B21 21
- G11B5 58
Designated states1
- Contracting states, 1
- Germany
