US20020021530A1 - Mechanism to clamp magnetic disk against cartridge shell - Google Patents
Mechanism to clamp magnetic disk against cartridge shell Download PDFInfo
- Publication number
- US20020021530A1 US20020021530A1 US09/901,935 US90193501A US2002021530A1 US 20020021530 A1 US20020021530 A1 US 20020021530A1 US 90193501 A US90193501 A US 90193501A US 2002021530 A1 US2002021530 A1 US 2002021530A1
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- Prior art keywords
- cartridge
- nut
- screw
- door
- shell
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- Abandoned
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- 230000007246 mechanism Effects 0.000 title claims abstract description 63
- 230000004044 response Effects 0.000 claims description 6
- 238000003780 insertion Methods 0.000 claims 1
- 230000037431 insertion Effects 0.000 claims 1
- 238000013500 data storage Methods 0.000 abstract description 3
- 230000008878 coupling Effects 0.000 description 4
- 238000010168 coupling process Methods 0.000 description 4
- 238000005859 coupling reaction Methods 0.000 description 4
- 238000004026 adhesive bonding Methods 0.000 description 3
- 238000003466 welding Methods 0.000 description 3
- 230000008901 benefit Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 240000004929 Juglans cinerea Species 0.000 description 1
- 230000003292 diminished effect Effects 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 239000010409 thin film Substances 0.000 description 1
Images
Classifications
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- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B23/00—Record carriers not specific to the method of recording or reproducing; Accessories, e.g. containers, specially adapted for co-operation with the recording or reproducing apparatus ; Intermediate mediums; Apparatus or processes specially adapted for their manufacture
- G11B23/02—Containers; Storing means both adapted to cooperate with the recording or reproducing means
- G11B23/03—Containers for flat record carriers
- G11B23/0301—Details
- G11B23/0308—Shutters
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B23/00—Record carriers not specific to the method of recording or reproducing; Accessories, e.g. containers, specially adapted for co-operation with the recording or reproducing apparatus ; Intermediate mediums; Apparatus or processes specially adapted for their manufacture
- G11B23/02—Containers; Storing means both adapted to cooperate with the recording or reproducing means
- G11B23/03—Containers for flat record carriers
- G11B23/0301—Details
- G11B23/0306—Means for locking the record carriers
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B23/00—Record carriers not specific to the method of recording or reproducing; Accessories, e.g. containers, specially adapted for co-operation with the recording or reproducing apparatus ; Intermediate mediums; Apparatus or processes specially adapted for their manufacture
- G11B23/02—Containers; Storing means both adapted to cooperate with the recording or reproducing means
- G11B23/03—Containers for flat record carriers
- G11B23/0301—Details
- G11B23/0312—Driving features
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B23/00—Record carriers not specific to the method of recording or reproducing; Accessories, e.g. containers, specially adapted for co-operation with the recording or reproducing apparatus ; Intermediate mediums; Apparatus or processes specially adapted for their manufacture
- G11B23/02—Containers; Storing means both adapted to cooperate with the recording or reproducing means
- G11B23/03—Containers for flat record carriers
- G11B23/032—Containers for flat record carriers for rigid discs
- G11B23/0323—Containers for flat record carriers for rigid discs for disc-packs
Definitions
- This invention relates to data storage drives and more particularly, to a removable cartridge for magnetic disk drives.
- Magnetic disk drives which write and read digital data from flexible magnetic disks have been extensively used. “Floppy disk drives” have been extensively used for small, so-called microcomputer systems, for word-processing applications and the like.
- the flexible disk cartridge includes a relatively thin, flexible jacket which is inserted into the floppy disk drive.
- Rigid disk drives such as the IBM 3350, usually have a fixed rigid magnetic media. The magnetic heads do not contact the magnetic surface, but ride on a thin film of air. Because of this, and other features, these disk drives are capable of extremely precise and high speed operation. This type of disk drive is commonly referred to as a “Winchester” drive. Rigid disks enclosed in a rigid, removable cartridge, or shell have also been used. U.S. Pat. No. 4,864,452-Thompson et al is an example of such a drive.
- the cartridges for these drives have a door which closes the cartridge when it is removed from the drive. This prevents debris from contaminating the magnetic recording medium when the cartridge is not in the drive. When the cartridge is inserted into the drive, this door slides to an open position to provide access for the magnetic recording heads to engage the recording medium.
- U.S. Pat. No. 5,444,586, Iftikar, et al. discloses a mechanism for clamping the cartridge against the cartridge shell when the cartridge is removed from the drive and releasing the clamping mechanism when the cartridge is inserted into the drive.
- a nut and screw mechanism is actuated by a tang which is rotated as the cartridge is inserted into the drive.
- Unfortunately, such a design requires added complexity of the drive because the mechanism to actuate the tang is disposed within the drive, as distinguished from within the cartridge.
- U.S. Pat. No. 5,650,899 Schick, et al. discloses a cam mechanism which clamps the hub against the cartridge shell as the access door of the cartridge is opened and closed when the cartridge is inserted into or ejected from the drive.
- a clamping mechanism in a data storage cartridge includes a movable member and a stationary member.
- the mechanism is actuated by the door of the cartridge which is opened when the cartridge is inserted into the drive and is closed when the cartridge is removed from the drive.
- the mechanism of the present invention restrains the recording medium to prevent rattling when the cartridge is removed from the drive, i.e. when the door closed.
- the clamping mechanism is disposed on the same axis as the rotatable recording medium.
- the clamping mechanism When the door is closed the clamping mechanism translates the motion of the door closing into a surface that clamps the hub on which the recording medium is mounted against a the rear wall of the cartridge.
- the clamping mechanism is at least partially located in a cavity formed in the hub while the clamping mechanism is in the clamped position.
- the clamping mechanism comprises a stationary member and a movable member.
- the stationary member is affixed to the planar surface of the cartridge.
- the movable is operationally coupled to the door via an actuating arm, and movably coupled to the stationary member such that as the door opens and closes, the movable member is rotated on the stationary member.
- the door movement thus, causes axially motion of the clamping mechanism which is disposed in a cavity in the hub.
- a surface of the clamping mechanism bears against the disk hub to clamp the disk hub against the planar wall of the cartridge.
- each of which provides an actuating arm that is coupled to the cartridge door, a stationary member that is rigidly connected to the cartridge shell, and a movable member that is coupled to the stationary member.
- the actuating arm rotates the movable member, which is coupled to the stationary member such that rotation of the movable member produces axial translation of the movable member.
- the movable member translates toward the recording medium housed within the cartridge while the cartridge is removed from the drive so as to clamp the recording medium between a contact surface of the movable member and the cartridge shell.
- a spring that is coiled around the axis of rotation provides torsion to the movable member, which are a nut and a screw, respectively, to bias the movable member toward the camped position.
- a helical spring is disposed near the periphery of the movable member, which is a screw, to bias the movable member toward the clamped position.
- the fourth embodiment lacks a spring to bias the movable member, which is a spiral spring and plate assembly. Therefore, the clamping mechanism of the fourth embodiment may either be actuated entirely by the door, or may be biased by a spring coupled to the actuating arm.
- the present invention produces the advantage that the mechanism for actuating the clamping mechanism is disposed within the cartridge shell, preferably within a cavity in the disk hub, which saves vertical space within the drive and reduces complexity. Further, providing a clamping mechanism that has only one moving part (in addition to the door and the actuating arm) within the cartridge produces less debris, which is an important and growing consideration with increasing areal density of the magnetic information.
- the present invention encompasses any clamping mechanism that is operatively coupled to the cartridge door and that includes a movable member that is coupled to a stationary member such that rotation or pivoting of the movable member results in axial translation.
- the present invention encompasses a screw/nut combination regardless of whether the movable member clamps the recording medium against the top or the bottom of the cartridge shell, or whether the screw or the nut comprises the movable member
- the present invention encompasses a protrusion (for example, a pin) that slides within a helical or inclined groove, and also a helix or helically oriented members that slide within a helical groove—regardless of whether the grooves are disposed in the stationary or movable member.
- the terms “screw” and “nut” are broadly used herein to comprise threads of any type on either or both the movable member and stationary member.
- FIG. 1A shows a top view of the cartridge of the present invention
- FIG. 1B is a front view of the cartridge
- FIGS. 3A and 3B are cross sectional views illustrating a first embodiment of the present invention in an unclamped and clamped position, respectively;
- FIG. 4 is a view of a portion of the embodiment shown in FIGS. 3A and 3B;
- FIG. 5 is a portion of the embodiment shown in FIGS. 3A and 3B;
- FIG. 7 is a portion of the embodiment shown in FIGS. 6A and 6B;
- FIG. 9 is a view of a portion of the embodiment shown in FIGS. 8A and 8B;
- FIG. 10A and 10B are cross sectional views illustrating a fourth embodiment of the present invention in an unclamped and clamped position, respectively;
- FIG. 13 is a view of an aspect of the present invention that may be employed with any of the first three embodiments;
- FIGS. 1 a and 1 B show a cartridge having two half shells 11 and 122 joined together at 13 .
- the cartridges has a front 14 , a back 15 , and two sides 16 and 17 . Between the two sides are two substantially flat, planar surfaces: shell first planar surface 18 and shell second planar surface 19 , which have four edges that connect to the front 14 , back 15 , and sides 16 and 17 .
- An opening 20 in the front of the cartridge provides access by the read/write heads to the recording medium disposed within the cartridge.
- a flexible door 23 covers the opening 20 when the cartridge is removed or is outside of the drive.
- Door 23 sides in tracks 28 disposed in the planar surfaces 18 and 19 .
- a spindle motor aperture 21 is disposed in surface 19 .
- FIGS. 2A and 2B illustrates the operation of a clamping mechanism of the invention that prevents the recording medium from rattling within the cartridge.
- the cartridge further comprises a recording medium 70 , including a platter 72 that is fixed to a hub 74 , a clamping mechanism 10 , and an arm 58 .
- Clamping mechanism 10 is disposed within a center hollow 77 of hub 74 , and arm 58 is coupled between door 23 and clamping mechanism 10 .
- arm 58 moves concurrently. This movement of door 23 and arm 58 actuates clamping mechanism 10 between positions A (shown in phantom) to clamp medium 72 against cartridge shell 12 or B to release recording medium 72 .
- Clamping mechanism 10 generally comprises two members 36 , 42 —one stationary and another movable.
- the present invention contemplates two configurations for clamping mechanism 10 .
- member 36 is stationary, e.g., fixed to shell 11
- member 42 rotates around stationary member 36 .
- member 42 is stationary (e.g., fixed to shell 11 ) and movable member 42 rotates within stationary member 36 .
- Exemplary embodiments of these two configurations, as well as others, are provided herein below.
- the movable member is coupled to door 23 via arm 58 .
- the movable member translates the motion of door 23 into an rotary motion about the other member so that the movable member is thereby translated axially.
- the axial motion provides a force within hub 74 to clamp against shell 12 .
- arm 58 (including specific embodiments 58 a,b,c,d ) preferably is able to flex so that an end that is coupled to the movable member may easily move axially with the movable member. Further, arm 58 is operationally coupled to door 23 , which includes a catch (not shown). The drive engages the catch as the cartridge enters the drive so as to pull the door along the side of the cartridge. Preferably the catch is pulled along the outside of the cartridge.
- the present invention encompasses doors having a catch formed integrally thereon and doors having a catch that are attached thereon as a separate member or strap, and encompasses doors that travel along the inside wall of the cartridge and that travel along the outside wall when the door is proximate its fully open position.
- screw 36 a , nut 42 b , nut 42 c , post 108 , and stationary member 36 a ′ are provided as examples of stationary members according to the present invention.
- Nut 42 a , screw 36 b , screw 36 c , the assembly comprising coil 96 and plate 102 , and movable member 42 a ′ are provided as examples of movable members according to the present invention.
- Other embodiments of stationary and movable members within the scope of the present invention will be apparent to those generally familiar with cartridges.
- a clamping mechanism 10 a is actuated as the door 23 is opened and closed.
- Mechanism 10 a which is rotatable on the same axis 56 on which a recording medium rotates, comprises a screw 36 a , a nut 42 a , and a coil spring 46 a , and is coupled to an actuating arm 58 a.
- Actuating arm 58 a which is also shown in FIG. 12, includes a door end 60 a for coupling arm 58 a to door 23 , and a clamp mechanism end 62 .
- Coil spring 46 a is preferably a helical spring, preferably having several turns, that has a first end 48 a and a second end 50 a , each of which are bent substantially radially from the coil.
- Spring 46 a is disposed around post 40 a , preferably proximate shell surface 18 .
- Spring end 48 a is disposed in post slot 48 a and spring end 50 a is disposed in nut slot 54 .
- Spring 46 a provides torsion (the direction of which depends on the orientation of threads 38 a and 44 a ) so as to rotate nut 42 a in a direction that translates nut 42 a away from shell surface 18 and into contact with recording medium 70 .
- FIG. 3B shows clamping mechanism 10 a in an expanded position corresponding to cartridge door 23 in a fully closed position. Nut 42 a has been fully rotated by door 23 such that nut 42 a has translated axially away from surface 18 . Clamping surface 43 a urges against hub contact surface 76 a to force hub 74 against shell surface 19 so as to clamp recording medium 70 against the shell half 12 .
- a clamping mechanism 10 b is similar to first embodiment clamping mechanism 10 a in that there is one stationary threaded part and one movable threaded part.
- Clamping mechanism 10 b comprises a screw 36 b , a nut 42 b , and a coil spring (which is similar to spring 46 a shown in FIGS. 3A and 3B, but which is omitted from FIGS. 6A and 6B for clarity), and is coupled to an actuating arm 58 b .
- nut 42 b is stationary and screw 36 b rotates and translates on nut 42 b.
- Nut 42 b comprises nut threads 44 b and a door slot 45 .
- Nut 42 b is preferably shaped as a hollow, short cylinder with and open end and another end that is rigidly connected to planar surface 18 opposite spindle motor aperture 21 .
- Nut 42 b may be integrally molded into planar surface 18 in one piece, or may be formed as a separate piece and connected to surface 18 by welding or gluing, or by several screws (not shown) through surface 18 and into nut 42 b .
- Door slot 45 provides an open portion on the side of nut 42 b to provide access to screw 36 b by arm 58 b .
- Nut threads 44 b preferably are disposed on the inside surface of nut 42 b .
- FIG. 7 shows an enlarged view of nut 42 b.
- Screw 36 b comprises a post 40 b , screw threads 38 b , and movable clamping surface 43 b .
- Screw threads 38 b preferably three or four, are disposed on post 40 a , preferably in a helical pattern.
- Screw threads 38 b are shown schematically in FIG. 6A to illustrate that the present invention encompasses a groove (generally located similar to threads 38 b ) that receives a protruding thread 44 b as shown in FIG. 7.
- Post 40 a has a post slot 52 (not shown for clarity) disposed therein that may be formed as a recess or slotted hole.
- Screw 36 b interacts with nut 42 b by screwing nut threads 38 b in mesh with threads 44 b .
- Clamping surface 43 b is disposed on screw 36 b proximate the recording medium 70 , as will be described below.
- Actuating arm 58 b which is also shown in FIG. 12, includes a door end 60 b for coupling arm 58 b to door 23 , and a clamp mechanism end 62 b .
- the coil spring (not shown) is disposed substantially between screw 36 b and nut 42 b , and provides torsion to rotate screw 36 b away from planar surface 18 .
- FIG. 6A shows the clamping mechanism 10 b in a retracted position corresponding to the cartridge door 23 in an open position.
- Screw 36 b is threaded into nut 42 b such that screw 36 b is in its fully retracted position, and closest to shell planar surface 18 .
- the coil (not shown) is urging screw 36 b to unscrew from nut 42 b , but is unable to produce motion because door 23 is held open by a mechanism within the drive (not shown).
- Recording medium 70 is unencumbered in this position and may spin freely, as described above.
- a clamping mechanism 10 c comprises a screw 36 c , a nut 42 c , and a helical spring 90 , and is coupled to an actuating arm 58 c.
- Screw 36 c comprises a cylindrical portion 80 , an internal flange 82 , a contact shoulder 43 c , screw threads 38 c , and a screw spring anchor 86 (shown in FIG. 9).
- Screw 38 c is preferably open at both ends of cylindrical portion 80 , and has an internal flange 82 disposed on the spindle motor side of cylindrical portion 80 .
- Contact shoulder 43 c is formed on the interior upper surface of flange 82 .
- Threads 38 c are sized to mesh with nut threads 44 c .
- the interior upper corners of flange 82 and the corresponding corners of disk hub 74 may be beveled (not shown) to provide self-alignment during clamping.
- spring anchor 86 comprises a radial tab on the exterior portion of cylindrical portion 80 .
- spring anchor 86 may be formed on arm 58 c.
- Nut 44 c which preferably is formed on the rim of second surface 19 formed by aperture 21 , comprises nut threads 44 c .
- the invention also encompasses providing a shell having a thickened portion in the rim region in the direction of axis of rotation 56 to provide greater depth for threads 44 c . Further, nut threads 44 c may be finer and more numerous than corresponding threads 44 a and 44 b because of the comparatively lesser depth.
- FIG. 8B shows clamping mechanism 10 c in a clamped position corresponding to cartridge door 23 in a fully closed position.
- Screw 36 c has been fully rotated by door 23 such that screw 36 c has translated axially toward recording medium 70 .
- Contact surface 70 urges against hub contact surface 76 a to force hub 74 against shell surface 18 so as to clamp recording medium 70 against the shell half 11 .
- clamping mechanism 10 d comprises a helical coil 96 , a contact plate 102 , and a post 108 , and is coupled to actuating arm 58 d .
- Post 108 is fixed to the surface 18 concentric with axis 56 , and may be integrally molded into planar surface 18 in one piece, or may be formed as a separate piece and connected to surface 18 by welding or gluing, or by several screws (not shown) through surface 18 and into post 108 .
- Post 108 has a longitudinal keyway 110 formed therein that is disposed on its end opposite its fixed end.
- Helical coil 96 which is substantially concentrically disposed around the axis of rotation 56 , comprises a first end 98 that is coupled to actuating arm 58 d at a central circular potion 61 proximate surface 18 , and a second end 100 that is coupled to plate 102 .
- FIG. 10B shows clamping mechanism 10 d in an expanded position corresponding to cartridge door 23 in a fully closed position.
- movement of arm 58 d results in rotation of coil 96 in a direction that urges plate 102 to translate toward recording medium 70 along post 108 .
- Plate 102 translation occurs in response to coil 96 rotation because plate 102 is prevented from rotating by key 106 .
- Plate 102 moves toward recording medium 70 until contact surface 43 d on plate 102 contacts a hub contact surface 105 , which may be disposed on a hollow, longitudinally protruding portion 107 of hub 74 .
- the present invention has been described with reference to a cartridge in which a flexible door travels along a radius of curvature that changes by angular position (that is, as shown in FIG. 1A), the present invention encompasses a cartridge in which a rigid door travels along an arc of constant radius.
- the door may be formed of rigid plastic or metal in a circular arc that travels in the circular track, and the actuating arm may span the entire arcuate segment of the door to form substantially a radial portion of a circle.
Landscapes
- Moving Of Heads (AREA)
- Holding Or Fastening Of Disk On Rotational Shaft (AREA)
Abstract
A data storage cartridge has a recording medium and a door covering an opening in the shell. The door is opened when the cartridge is inserted into the drive and closed when the cartridge is removed from the drive. A movable member rotates in cooperation with a stationary member by a actuating arm that is coupled to the door. Preferably, a screw/nut mechanism is operated by the opening and closing of the door to actuate a clamping mechanism which clamps the recording against a planar wall of the shell when the cartridge the is removed the drive
Description
- Cross Reference to Related Applications: this application is a continuation-in-part of co-pending U.S. application Ser. No. 08/834,188, filed Apr. 15, 1997, which is incorporated herein by reference in its entirely, and which is a continuation of U.S. application Ser. No. 08/550,818, (which issued as U.S. Pat. No. 5,560,899) filed Oct. 31, 1995, which is a continuation-in-part of U.S. patent application Ser. No. 477,764, filed Jul. 7, 1995, which is now abandoned.
- This invention relates to data storage drives and more particularly, to a removable cartridge for magnetic disk drives.
- Magnetic disk drives which write and read digital data from flexible magnetic disks have been extensively used. “Floppy disk drives” have been extensively used for small, so-called microcomputer systems, for word-processing applications and the like. The flexible disk cartridge includes a relatively thin, flexible jacket which is inserted into the floppy disk drive.
- Rigid disk drives, such as the IBM 3350, usually have a fixed rigid magnetic media. The magnetic heads do not contact the magnetic surface, but ride on a thin film of air. Because of this, and other features, these disk drives are capable of extremely precise and high speed operation. This type of disk drive is commonly referred to as a “Winchester” drive. Rigid disks enclosed in a rigid, removable cartridge, or shell have also been used. U.S. Pat. No. 4,864,452-Thompson et al is an example of such a drive.
- “Bernoulli” disk drives having performance characteristics similar to that of Winchester drives, but with removable cartridges, have been developed. A flexible magnetic disk is enclosed in a rigid box which is normally completely closed. U.S. Pat. No. 4,400,748-Bauck, et al and related patents to the common assignee show such drives using Bernoulli stabilized flexible disks. U.S. Pat. No. 4,901,173-Jones et al and related patents to the common assignee, show improvements which relate to so-called “half height” drives.
- The cartridges for these drives have a door which closes the cartridge when it is removed from the drive. This prevents debris from contaminating the magnetic recording medium when the cartridge is not in the drive. When the cartridge is inserted into the drive, this door slides to an open position to provide access for the magnetic recording heads to engage the recording medium.
- When the cartridge is removed from the drive, it is often subject to rough handling. During handling, physical contact of the disk with the shell may damage the disk, particularly if the disk and cartridge shell are subject to excessive “rattling”.
- U.S. Pat. No. 5,444,586, Iftikar, et al. discloses a mechanism for clamping the cartridge against the cartridge shell when the cartridge is removed from the drive and releasing the clamping mechanism when the cartridge is inserted into the drive. In the Iftikar, et al. patent a nut and screw mechanism is actuated by a tang which is rotated as the cartridge is inserted into the drive. Unfortunately, such a design requires added complexity of the drive because the mechanism to actuate the tang is disposed within the drive, as distinguished from within the cartridge.
- U.S. Pat. No. 5,650,899 Schick, et al. discloses a cam mechanism which clamps the hub against the cartridge shell as the access door of the cartridge is opened and closed when the cartridge is inserted into or ejected from the drive.
- It is a goal of the present invention to provide an advantageous clamping mechanism which is actuated by the opening and closing of the cartridge door as it is inserted into and ejected from the drive, which optimizes head space, which reduces the number of moving parts, and which diminishes rattling of the cartridge while the cartridge is outside of the drive.
- In accordance with the present invention, a clamping mechanism in a data storage cartridge includes a movable member and a stationary member. The mechanism is actuated by the door of the cartridge which is opened when the cartridge is inserted into the drive and is closed when the cartridge is removed from the drive. The mechanism of the present invention restrains the recording medium to prevent rattling when the cartridge is removed from the drive, i.e. when the door closed. The clamping mechanism is disposed on the same axis as the rotatable recording medium.
- When the door is closed the clamping mechanism translates the motion of the door closing into a surface that clamps the hub on which the recording medium is mounted against a the rear wall of the cartridge. Preferably, the clamping mechanism is at least partially located in a cavity formed in the hub while the clamping mechanism is in the clamped position. The clamping mechanism comprises a stationary member and a movable member. The stationary member is affixed to the planar surface of the cartridge. The movable is operationally coupled to the door via an actuating arm, and movably coupled to the stationary member such that as the door opens and closes, the movable member is rotated on the stationary member. The door movement, thus, causes axially motion of the clamping mechanism which is disposed in a cavity in the hub. A surface of the clamping mechanism bears against the disk hub to clamp the disk hub against the planar wall of the cartridge.
- Four embodiments of the present invention are provided, each of which provides an actuating arm that is coupled to the cartridge door, a stationary member that is rigidly connected to the cartridge shell, and a movable member that is coupled to the stationary member. The actuating arm rotates the movable member, which is coupled to the stationary member such that rotation of the movable member produces axial translation of the movable member. The movable member translates toward the recording medium housed within the cartridge while the cartridge is removed from the drive so as to clamp the recording medium between a contact surface of the movable member and the cartridge shell.
- In the first two embodiments, a spring that is coiled around the axis of rotation provides torsion to the movable member, which are a nut and a screw, respectively, to bias the movable member toward the camped position. In the third embodiment, a helical spring is disposed near the periphery of the movable member, which is a screw, to bias the movable member toward the clamped position. The fourth embodiment lacks a spring to bias the movable member, which is a spiral spring and plate assembly. Therefore, the clamping mechanism of the fourth embodiment may either be actuated entirely by the door, or may be biased by a spring coupled to the actuating arm.
- The present invention produces the advantage that the mechanism for actuating the clamping mechanism is disposed within the cartridge shell, preferably within a cavity in the disk hub, which saves vertical space within the drive and reduces complexity. Further, providing a clamping mechanism that has only one moving part (in addition to the door and the actuating arm) within the cartridge produces less debris, which is an important and growing consideration with increasing areal density of the magnetic information.
- The present invention encompasses any clamping mechanism that is operatively coupled to the cartridge door and that includes a movable member that is coupled to a stationary member such that rotation or pivoting of the movable member results in axial translation. For example, the present invention encompasses a screw/nut combination regardless of whether the movable member clamps the recording medium against the top or the bottom of the cartridge shell, or whether the screw or the nut comprises the movable member Further, in addition to a nut and screw arrangement, the present invention encompasses a protrusion (for example, a pin) that slides within a helical or inclined groove, and also a helix or helically oriented members that slide within a helical groove—regardless of whether the grooves are disposed in the stationary or movable member. Further, the terms “screw” and “nut” are broadly used herein to comprise threads of any type on either or both the movable member and stationary member.
- The foregoing and other objects, features and advantages of the invention will be better understood from the following more detailed description and appended claims.
- FIG. 1A shows a top view of the cartridge of the present invention;
- FIG. 1B is a front view of the cartridge;
- FIGS. 3A and 3B are cross sectional views illustrating a first embodiment of the present invention in an unclamped and clamped position, respectively;
- FIG. 4 is a view of a portion of the embodiment shown in FIGS. 3A and 3B;
- FIG. 5 is a portion of the embodiment shown in FIGS. 3A and 3B;
- FIGS. 6A and 6B are cross sectional views illustrating a second embodiment of the present invention in an unclamped and clamped position, respectively;
- FIG. 7 is a portion of the embodiment shown in FIGS. 6A and 6B;
- FIGS. 8A and 8B are cross sectional views illustrating a third embodiment of the present invention in an unclamped and clamped position, respectively;
- FIG. 9 is a view of a portion of the embodiment shown in FIGS. 8A and 8B;
- FIG. 10A and 10B are cross sectional views illustrating a fourth embodiment of the present invention in an unclamped and clamped position, respectively;
- FIG. 11 is a view of a portion of the embodiment shown in FIGS. 9A and 9B;
- FIG. 12 shows a view of an actuating arm.
- FIG. 13 is a view of an aspect of the present invention that may be employed with any of the first three embodiments;
- FIGS. 14 and 15 are perspective views of portions of the mechanism shown in FIG. 13.
- FIGS. 1a and 1B show a cartridge having two
half shells 11 and 122 joined together at 13. The cartridges has a front 14, a back 15, and twosides planar surface 18 and shell secondplanar surface 19, which have four edges that connect to the front 14, back 15, and sides 16 and 17. An opening 20 in the front of the cartridge provides access by the read/write heads to the recording medium disposed within the cartridge. Aflexible door 23 covers the opening 20 when the cartridge is removed or is outside of the drive.Door 23 sides intracks 28 disposed in theplanar surfaces spindle motor aperture 21, best shown in FIG. 3A, is disposed insurface 19. - When a cartridge, such as the cartridge of FIGS. 1A and 1B is not in use (e.g., outside of a disk drive), it is desirable to fix the recording medium into place such that it cannot “rattle” inside of the cartridge shell. The following discussion uses reference numerals with corresponding letters to refer generally to parts of the invention. Description of particular embodiments below use these reference numerals consistently, and add a letter designation to distinguish embodiments. FIGS. 2A and 2B illustrates the operation of a clamping mechanism of the invention that prevents the recording medium from rattling within the cartridge. The cartridge further comprises a
recording medium 70, including aplatter 72 that is fixed to ahub 74, aclamping mechanism 10, and anarm 58. Clampingmechanism 10 is disposed within a center hollow 77 ofhub 74, andarm 58 is coupled betweendoor 23 andclamping mechanism 10. As a result of the coupling ofarm 58 todoor 23, whendoor 23 moves in the direction indicated byarrow 202, thearm 58 moves concurrently. This movement ofdoor 23 andarm 58actuates clamping mechanism 10 between positions A (shown in phantom) to clamp medium 72 againstcartridge shell 12 or B to releaserecording medium 72. - Clamping
mechanism 10 generally comprises twomembers mechanism 10. In thefirst configuration member 36 is stationary, e.g., fixed to shell 11, andmember 42 rotates aroundstationary member 36. Alternatively, in another configuration,member 42 is stationary (e.g., fixed to shell 11) andmovable member 42 rotates withinstationary member 36. Exemplary embodiments of these two configurations, as well as others, are provided herein below. In either configuration, the movable member is coupled todoor 23 viaarm 58. The movable member translates the motion ofdoor 23 into an rotary motion about the other member so that the movable member is thereby translated axially. The axial motion provides a force withinhub 74 to clamp againstshell 12. - As shown in the figures, arm58 (including
specific embodiments 58 a,b,c,d) preferably is able to flex so that an end that is coupled to the movable member may easily move axially with the movable member. Further,arm 58 is operationally coupled todoor 23, which includes a catch (not shown). The drive engages the catch as the cartridge enters the drive so as to pull the door along the side of the cartridge. Preferably the catch is pulled along the outside of the cartridge. The present invention encompasses doors having a catch formed integrally thereon and doors having a catch that are attached thereon as a separate member or strap, and encompasses doors that travel along the inside wall of the cartridge and that travel along the outside wall when the door is proximate its fully open position. - As will be described fully below, screw36 a, nut 42 b,
nut 42 c,post 108, and stationary member 36 a′ are provided as examples of stationary members according to the present invention.Nut 42 a, screw 36 b, screw 36 c, theassembly comprising coil 96 andplate 102, andmovable member 42 a′ are provided as examples of movable members according to the present invention. Other embodiments of stationary and movable members within the scope of the present invention will be apparent to those generally familiar with cartridges. - Referring to FIGS. 3A, 3B,4 and 5 to illustrate a first embodiment of the present invention, a
clamping mechanism 10 a is actuated as thedoor 23 is opened and closed.Mechanism 10 a, which is rotatable on thesame axis 56 on which a recording medium rotates, comprises a screw 36 a, anut 42 a, and acoil spring 46 a, and is coupled to anactuating arm 58 a. - Screw36 a comprises a
post 40 a andscrew threads 38 a. Preferably, post 40 a is rigidly connected toplanar surface 18 oppositespindle motor aperture 21 disposed inplanar surface 19.Post 40 a may be integrally molded intoplanar surface 18 in one piece, or may be formed as a separate piece and connected to surface 18 by welding or gluing, or by a screw throughsurface 18 and intopost 40.Screw threads 38 a, preferably three or four, are disposed onpost 40 a, preferably in a helical pattern.Post 40 a has apost slot 52 disposed therein that may be formed as a recess or slotted hole. FIG. 4 shows screw 36 a withexemplary threads 38 a and slot 52 a in greater detail. -
Nut 42 a, which is preferably shaped as a hollow cylinder with and open end and a closed, comprisesnut threads 44 a, a clamping surface 43 a, and a nut slot 54.Nut threads 44 a preferably are disposed on the inside surface ofnut 42 a. Clamping surface 43 a is disposed onnut 42 a proximate therecording medium 70, as will be described below. FIG. 5 shows an enlarged view of the nut slot 54. -
Actuating arm 58 a, which is also shown in FIG. 12, includes a door end 60 a forcoupling arm 58 a todoor 23, and a clamp mechanism end 62. -
Coil spring 46 a is preferably a helical spring, preferably having several turns, that has a first end 48 a and asecond end 50 a, each of which are bent substantially radially from the coil.Spring 46 a is disposed around post 40 a, preferablyproximate shell surface 18. Spring end 48 a is disposed in post slot 48 a and spring end 50 a is disposed in nut slot 54.Spring 46 a provides torsion (the direction of which depends on the orientation ofthreads nut 42 a in a direction that translatesnut 42 a away fromshell surface 18 and into contact withrecording medium 70. - FIG. 3A shows the
clamping mechanism 10 a in a retracted position corresponding to thecartridge door 23 in an open position.Nut 42 a is threaded onto screw 36 a such thatnut 42 a is in its fully retracted position, and closest to shellplanar surface 18.Coil spring 46 a is urgingnut 42 a to unscrew from screw 36 a, but is unable to produce motion becausedoor 23 is held open by a mechanism within the drive (not shown). Recordingmedium 70 is unencumbered from both clampingmechanism 10 a and shell surfaces 18 and 19 so that a drive spindle motor (not shown), which accesses adisk hub 74 at surface 76 b throughaperture 21, may spinrecording medium 70. - When the cartridge is to be removed from the drive,
spring 46 aurges nut 42 a to screw away fromplanar surface 18 and to clamp againstrecording medium 70.Spring 46 a may provide sufficient torsion to drivenut 42 a and to drivedoor 23 from its open to its closed position, or a mechanism within the drive may help drive the door closed, and therefore augment the torsion ofspring 46 a. FIG. 3B shows clampingmechanism 10 a in an expanded position corresponding tocartridge door 23 in a fully closed position.Nut 42 a has been fully rotated bydoor 23 such thatnut 42 a has translated axially away fromsurface 18. Clamping surface 43 a urges againsthub contact surface 76 a to forcehub 74 againstshell surface 19 so as to clamprecording medium 70 against theshell half 12. - Referring to FIGS. 6A and 6B to illustrate a second embodiment of the present invention, a clamping mechanism10 b is similar to first
embodiment clamping mechanism 10 a in that there is one stationary threaded part and one movable threaded part. Clamping mechanism 10 b comprises a screw 36 b, a nut 42 b, and a coil spring (which is similar tospring 46 a shown in FIGS. 3A and 3B, but which is omitted from FIGS. 6A and 6B for clarity), and is coupled to an actuating arm 58 b. Unlikemechanism 10 a, nut 42 b is stationary and screw 36 b rotates and translates on nut 42 b. - Nut42 b comprises
nut threads 44 b and adoor slot 45. Nut 42 b is preferably shaped as a hollow, short cylinder with and open end and another end that is rigidly connected toplanar surface 18 oppositespindle motor aperture 21. Nut 42 b may be integrally molded intoplanar surface 18 in one piece, or may be formed as a separate piece and connected to surface 18 by welding or gluing, or by several screws (not shown) throughsurface 18 and into nut 42 b.Door slot 45 provides an open portion on the side of nut 42 b to provide access to screw 36 b by arm 58 b.Nut threads 44 b preferably are disposed on the inside surface of nut 42 b. FIG. 7 shows an enlarged view of nut 42 b. - Screw36 b comprises a post 40 b, screw threads 38 b, and movable clamping surface 43 b. Screw threads 38 b, preferably three or four, are disposed on
post 40 a, preferably in a helical pattern. Screw threads 38 b are shown schematically in FIG. 6A to illustrate that the present invention encompasses a groove (generally located similar to threads 38 b) that receives a protrudingthread 44 b as shown in FIG. 7.Post 40 a has a post slot 52 (not shown for clarity) disposed therein that may be formed as a recess or slotted hole. Screw 36 b interacts with nut 42 b by screwing nut threads 38 b in mesh withthreads 44 b. Clamping surface 43 b is disposed on screw 36 b proximate therecording medium 70, as will be described below. - Actuating arm58 b, which is also shown in FIG. 12, includes a door end 60 b for coupling arm 58 b to
door 23, and a clamp mechanism end 62 b. The coil spring (not shown) is disposed substantially between screw 36 b and nut 42 b, and provides torsion to rotate screw 36 b away fromplanar surface 18. - FIG. 6A shows the clamping mechanism10 b in a retracted position corresponding to the
cartridge door 23 in an open position. Screw 36 b is threaded into nut 42 b such that screw 36 b is in its fully retracted position, and closest to shellplanar surface 18. The coil (not shown) is urging screw 36 b to unscrew from nut 42 b, but is unable to produce motion becausedoor 23 is held open by a mechanism within the drive (not shown). Recordingmedium 70 is unencumbered in this position and may spin freely, as described above. - When the cartridge is to be removed from the drive, the spring (not shown) urges screw36 b to screw away from
planar surface 18 and to clamp againstrecording medium 70. The spring (not shown) may provide sufficient torsion to drive screw 36 b and to drivedoor 23 from its open to its closed position, or a mechanism within the drive may help drive the door closed, and therefore augment the torsion of the spring (not shown). FIG. 6B shows clamping mechanism 10 b in an expanded position corresponding tocartridge door 23 in a fully closed position. Screw 36 b has been full rotated bydoor 23 such that screw 36 b has translated axially away fromsurface 18. Clamping surface 43 b urges againsthub contact surface 76 a to forcehub 74 againstshell surface 19 so as to clamprecording medium 70 against theshell half 12. - Referring to FIGS. 8A, 8B, and9 to illustrate a third embodiment of the present invention, a clamping mechanism 10 c comprises a
screw 36 c, anut 42 c, and ahelical spring 90, and is coupled to anactuating arm 58 c. -
Screw 36 c comprises acylindrical portion 80, aninternal flange 82, acontact shoulder 43 c,screw threads 38 c, and a screw spring anchor 86 (shown in FIG. 9).Screw 38 c is preferably open at both ends ofcylindrical portion 80, and has aninternal flange 82 disposed on the spindle motor side ofcylindrical portion 80.Contact shoulder 43 c is formed on the interior upper surface offlange 82.Threads 38 c are sized to mesh withnut threads 44 c. The interior upper corners offlange 82 and the corresponding corners ofdisk hub 74 may be beveled (not shown) to provide self-alignment during clamping. Referring specifically to FIG. 9,spring anchor 86 comprises a radial tab on the exterior portion ofcylindrical portion 80. Alternatively,spring anchor 86 may be formed onarm 58 c. -
Nut 44 c, which preferably is formed on the rim ofsecond surface 19 formed byaperture 21, comprisesnut threads 44 c. The invention also encompasses providing a shell having a thickened portion in the rim region in the direction of axis ofrotation 56 to provide greater depth forthreads 44 c. Further,nut threads 44 c may be finer and more numerous than correspondingthreads -
Helical spring 90 is disposed between an anchor 84 (shown in FIG. 9), which is fixed to surface 19, andanchor 86, and biases screw 36 c toward the clamped, upward direction. Proximate one point on the circumference ofnut 42 c, anarcuate spring retainer 92 is formed to preventspring 90 from bowing in the radial direction, althoughspring 90 may be designed such that it is under constant tension. Preferably,retainer 92 comprises an arcuate wall and a recessedportion 91 ofsurface 19 that provides a space tohouse spring 90. Becausespring 90 is partially within recessedportion 91, theretainer 92 is shorter and the vertical dimension ofspring 90 oversurface 19 is diminished. - FIG. 8A shows the clamping mechanism10 c in a retracted position corresponding to the
cartridge door 23 in an open position.Screw 36 c is threaded intonut 42 c such thatnut 42 c is in its fully retracted position, and farthest from shellplanar surface 18.Helical spring 90 biases screw 36 c to rotate and translate toward the clamped position.Spring 90 may provide sufficient torsion to drivenut 42 c and to drivedoor 23 from its open to its closed position, or a mechanism within the drive may help drive the door closed, and therefore augment the torsion ofspring 90. - FIG. 8B shows clamping mechanism10 c in a clamped position corresponding to
cartridge door 23 in a fully closed position.Screw 36 c has been fully rotated bydoor 23 such thatscrew 36 c has translated axially towardrecording medium 70.Contact surface 70 urges againsthub contact surface 76 a to forcehub 74 againstshell surface 18 so as to clamprecording medium 70 against theshell half 11. - Referring to FIGS. 10A, 10B, and11 to illustrate a fourth embodiment of the present invention, clamping
mechanism 10 d comprises ahelical coil 96, acontact plate 102, and apost 108, and is coupled to actuatingarm 58 d.Post 108 is fixed to thesurface 18 concentric withaxis 56, and may be integrally molded intoplanar surface 18 in one piece, or may be formed as a separate piece and connected to surface 18 by welding or gluing, or by several screws (not shown) throughsurface 18 and intopost 108.Post 108 has alongitudinal keyway 110 formed therein that is disposed on its end opposite its fixed end. -
Helical coil 96, which is substantially concentrically disposed around the axis ofrotation 56, comprises afirst end 98 that is coupled to actuatingarm 58 d at a centralcircular potion 61proximate surface 18, and asecond end 100 that is coupled toplate 102. -
Plate 102 is preferably a circular disk that is rigidly coupled to thesecond end 100 ofcoil 96, and hascenter cutout portion 103 and akey portion 106 that protrudes intocenter cutout 103 and that is insertable intokeyway 110 in thepost 108.Key 106 may slide freely longitudinally withinkeyway 110, andplate 102 preferably is perpendicular toaxis 56.Plate 102 has acontact surface 43 d disposed on its side facingrecording medium 70. -
Actuating arm 58 d, which is also shown in FIG. 12, includes a door end 60 d for couplingarm 58 d to door 23, a circular portion disposed substantially concentric withpost 108, and aclamp mechanism end 62 d.Arm 58 d is movably fixed toshell surface 18 in a way that enablesarm 58 d to rotate or pivot, but which keepsarm 58 d substantially flat againstsurface 18. For example, multiple retainer clamps 63, shown in relief in FIG. 10A may be used at points around the circumference of the circular portion ofarm 58 d to preventarm 58 from moving away fromsurface 18 yet enablearm 58 to rotate or pivot aroundpost 108. - FIG. 10A shows the
clamping mechanism 10 d in a retracted position corresponding to thecartridge door 23 in an open position.Plate 102 is in its closest position to surface 18 withcoil 96 connected betweenarm 58 d andplate 102.Plate 102 is at rest on top ofcoil 96 withkey 106 disposed inkeyway 110. Recordingmedium 70 is unencumbered in this position and may spin freely, as described above. - When the cartridge is to be removed from the drive,
arm 58 d rotates or pivots aroundaxis 56 in response to the door moving in a closing direction. FIG. 10B shows clampingmechanism 10 d in an expanded position corresponding tocartridge door 23 in a fully closed position. Asdoor 23 closes, movement ofarm 58 d results in rotation ofcoil 96 in a direction that urgesplate 102 to translate towardrecording medium 70 alongpost 108.Plate 102 translation occurs in response tocoil 96 rotation becauseplate 102 is prevented from rotating bykey 106.Plate 102 moves towardrecording medium 70 untilcontact surface 43 d onplate 102 contacts ahub contact surface 105, which may be disposed on a hollow, longitudinally protrudingportion 107 ofhub 74. A shown in FIG. 10A, post 108 may be disposed within the hollow portion of protrudingportion 107 while the cartridge is in the unclamped position. Therefore, adequate clearance betweenpost 108 and the interior of protrudingportion 107 so as to enablerecording medium 70 to rotate freely during drive operation. When the door is in its fully closed position, contact surface urges againstsurface 105 and hub contact surface 76 b urges againstshell surface 19 so as to clamprecording medium 70. Althoughclamp mechanism 10 d is illustrated using a disk hub having a protruding portion,clamp mechanism 10 d according to the present invention may also be employed with disk hubs having a cavity, as shown in the first two embodiments. - Although the first three embodiments have been described using threads on both the stationary and movable members, the present invention encompasses using other designs to translate the movable member in response to rotation by the actuating arm. FIGS. 13, 14, and15 illustrate an alternate assembly that is similar to the first embodiment shown in FIGS. 3A and 3B, and that may be used to form the movable and stationary members according to the present invention Specifically, a
clamping mechanism 10 a′ may be used in place of screw 36 a andnut 42 a shown in FIGS. 3A and 3B. Recordingmedium 70,spring 46 a, andsurface 19 have been omitted from FIG. 13 for clarity. - Clamping
mechanism 10 a′ comprises a stationary member 36 a′, amovable member 42 a′, and is coupled to door 58 a. Stationary member 36 a′ comprises apost 40 a′ that is rigidly fixed to surface 18 andplural pins 114 extending substantially radially frompost 40 a′.Movable member 42 a′ comprises a hollow cylinder with ahelical groove 116 formed on the inside surface capable of receivingpins 114. - In response to movement of
door 23,movable member 42 a′ rides onpins 114 to translate relative to stationary member 36 s′, similar to as described with respect to the first embodiment. -
Nuts 42 a,b,c interact with screws 36 a,b,c by screwingnut threads 44 a,b,c in mesh withscrew threads 38 a,b,c with adequate clearance therebetween such thatthreads 38 a,b,c and 44 a,b,c do not deform. Such a clearance enablesnut 42 a, screw 36 b, andnut 42 c to rotate and translate on screw 36 a, nut 42 b, and screw 36 c with a minimum amount of rotational force applied thereto. -
Actuating arm 58 a,b,c,d may include atelescoping wire 64 disposed in a recess opening 62 inarm 58 a,b,c,d, as more fully described in U.S. Pat. No. 5,560,899-Schick et al. to the present assignee, which is incorporated herein by reference in its entirety. - Although the present invention has been described with reference to a cartridge in which a flexible door travels along a radius of curvature that changes by angular position (that is, as shown in FIG. 1A), the present invention encompasses a cartridge in which a rigid door travels along an arc of constant radius. In the latter design, the door may be formed of rigid plastic or metal in a circular arc that travels in the circular track, and the actuating arm may span the entire arcuate segment of the door to form substantially a radial portion of a circle.
- The terms “axial” and “axially” as used herein refer to an axis of rotation of the recording medium. The term “longitudinal” when used herein to any part of the clamping mechanism, refers to a direction or orientation substantially parallel to the axis of rotation of the recording medium.
- While a particular embodiment has been shown and described various modifications may be made. The appended claims are, therefore, intended to cover all such modifications within the true spirit and scope of the invention.
Claims (37)
1. A cartridge for a drive in which read/write heads read/record data on a recording medium comprising:
a shell having a front, a back and two sides between substantially flat, planar surfaces;
said recording medium being in said shell;
said shell having an opening in the front thereof for access by said read/write to said recording medium;
a door covering said opening when said cartridge is removed from said drive;
a screw having screw threads;
a nut having threads engaging said threads;
one of said screw and said nut being connected to said shell and the other being connected to said door so that movement of said door between positions covering said opening and not covering said opening causes relative movement between said screw and said nut; and
clamping means movable by said relative movement to clamp said medium against a planar surface of said shell when said door is closed.
2. The cartridge recited in claim 1 wherein said screw is rotatable on the same axis as said recording medium and said nut is connected to said shell.
3. The cartridge recited in claim 1 wherein said nut is rotatable on the same axis as said recording medium and said screw is connected to said shell.
4. The cartridge recited in either one of claims 1 and 2 wherein said clamping means is moved axially by said relative movement.
5. The cartridge recited in either one of claims 1 and 2 further comprising:
a hub on which said recording medium is mounted, said clamping means applying an axial force to said hub to clamp said medium against a planar wall of said shell.
6. The cartridge recited in claim 5 further comprising a coil spring disposed on said axis, said spring biasing said clamping means against said hub to clamp said medium against said planar wall when said door is closed.
7. The cartridge recited in claim 6 wherein said coil spring is compressed pulling said claiming means away from said hub as said door is opened.
8. The cartridge recited in claim 7 wherein said screw is attached to a planar surface of said nut is rotatable about said screw by said door.
9. The cartridge recited in claim 8 wherein said nut is attached to a planar shell and said screw is rotatable about said nut.
10. The cartridge recited in claim 8 wherein said screw is molded into a planar wall of said shell.
11. The cartridge recited in claim 1 wherein said one of said screw and said nut is connected to said door by a member rotatable about the axis of said recording medium.
12. The cartridge recited in claim 11 wherein said spring returns said door to the closed position when said cartridge is removed from said drive.
13. A cartridge for a drive in which read/write heads read/record data on a recording medium, comprising:
a shell having a front, a back and two sides between substantially flat, planar surfaces;
said recording medium being in said shell;
said shell having an opening in the front thereof for access by said read/write to said recording medium;
a door substantially covering said opening when said cartridge is removed from the drive;
an actuating arm having a first end and an opposing second end that is coupled to the door;
a stationary member rigidly coupled to one of the planar surfaces; and
a movable member coupled to the actuating arm and movably coupled to the stationary member such that movement of the door produces axial translation of the movable member, whereby said axial translation enables clamping of said medium against a planar surface of said shell when said door is closed.
14. The cartridge of claim 13 wherein said movable member is coupled to said stationary member such that movement of said door produces rotation of said movable member relative to said stationary surface, said movable member coupled to said stationary member such that rotation of the movable member produces axial translation of the movable member.
15. The cartridge of claim 14 wherein said translating member has a sliding surface slidably coupled to a stationary surface disposed on said stationary member, at least one of said sliding surface and said stationary service defining an incline for axially translating the translating surface upon rotation of said movable member.
16. The cartridge of claim 14 wherein the stationary member has a surface that extends which extends axially as a function of the circumference of said stationary member when the translating member is rotated as said door is opened and closed.
17. The cartridge of claim 13 further comprising a spring having one end coupled to said stationary member and an other end coupled to said movable member, said spring biasing said movable member toward an unclamped position.
18. The cartridge of claim 17 wherein the spring is disposed around an axis of rotation of the recording medium.
19. The cartridge of claim 17 wherein the spring is disposed proximate the periphery of said movable member.
20. The cartridge of claim 13 wherein the stationary member comprises a screw rigidly coupled to one of the planar surfaces and the movable member comprises a nut movably coupled to said screw.
21. The cartridge of claim 20 wherein the screw has screw threads disposed thereon, and the nut has nut threads disposed thereon that are capable of meshing with said screw threads.
22. The cartridge of claim 21 further comprising a spring having one end coupled to said screw and an other end coupled to said nut, said spring biasing said nut toward an unclamped position.
23. The cartridge of claim 22 wherein the spring is disposed around an axis of rotation of the recording medium.
24. The cartridge of claim 13 wherein the stationary member comprises a nut rigidly coupled to one of the planar surfaces and the movable member comprises a screw movably coupled to said nut.
25. The cartridge of claim 24 wherein the screw has screw threads disposed thereon, and the nut has nut threads disposed thereon that are capable of meshing with said screw threads.
26. The cartridge of claim 25 wherein said nut has a cut away portion to provide access to said screw by said recording arm.
27. The cartridge of claim 25 further comprising a spring having one end coupled to said screw and an other end coupled to said nut, said spring biasing said screw toward an unclamped position.
28. The cartridge of claim 27 wherein the spring is disposed around an axis of rotation of the recording medium.
29. The cartridge of claim 13 wherein the stationary member comprises screw threads coupled to one of the planar surfaces, and the movable member comprises a nut having nut threads that are capable of meshing with said screw threads.
30. The cartridge of claim 29 wherein the screw threads are formed on a rim of the one planar surface proximate a spindle motor aperture.
31. The cartridge of claim 30 further comprising a spring having one end coupled to said nut and an other end coupled to said one planar surface, said spring biasing said nut toward an unclamped position.
32. The cartridge of claim 13 wherein the screw comprises a protrusion, and the nut comprises a groove capable of cooperating with said protrusion to axially translate the nut in response to rotation of the nut.
33. The cartridge of claim 13 wherein the groove is inclined relative to at least one of planar surfaces.
34. The cartridge of claim 13 wherein the movable member comprises a coil and a plate coupled to said coil, said plate capable of axial translation in response to rotation of said coil.
35. The cartridge of claim 34 wherein the coil comprises a first end coupled to said actuating arm and a second end coupled to said plate.
36. The cartridge of claim 34 wherein said stationary member comprises a post that is rigidly coupled to said shell and that defines a longitudinal keyway therein, and wherein said plate comprises a disk having a center cutout and a key projecting into said center cutout, said key capable of insertion into said keyway so as to prevent said plate from rotating
37. A cartridge for a drive in which read/write heads read/record data on a recording medium, comprising:
a shell having a front, a back and two sides between substantially flat, planar surfaces;
said recording medium, being in said shell, having a disk hub that forms a cavity therein;
said shell having an opening in the front thereof for access by said read/write to said recording medium;
a door substantially covering said opening when said cartridge is removed from the drive;
an actuating arm having a first end and an opposing second end that is coupled to the door;
a clamping mechanism, at least partially insertable within said cavity.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US09/901,935 US20020021530A1 (en) | 1995-06-07 | 2001-07-10 | Mechanism to clamp magnetic disk against cartridge shell |
Applications Claiming Priority (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US47776495A | 1995-06-07 | 1995-06-07 | |
US08/550,818 US5650899A (en) | 1995-06-07 | 1995-10-31 | Cam mechanism to clamp magnetic disk against cartridge shell |
US08/834,188 US5862026A (en) | 1995-06-07 | 1997-04-15 | Cam mechanism to clamp magnetic disk against cartridge shell |
US09/118,635 US6304417B1 (en) | 1995-06-07 | 1998-07-17 | Mechanism to clamp magnetic disk against cartridge shell |
US09/901,935 US20020021530A1 (en) | 1995-06-07 | 2001-07-10 | Mechanism to clamp magnetic disk against cartridge shell |
Related Parent Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US09/118,635 Division US6304417B1 (en) | 1995-06-07 | 1998-07-17 | Mechanism to clamp magnetic disk against cartridge shell |
Publications (1)
Publication Number | Publication Date |
---|---|
US20020021530A1 true US20020021530A1 (en) | 2002-02-21 |
Family
ID=22379828
Family Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US09/118,635 Expired - Fee Related US6304417B1 (en) | 1995-06-07 | 1998-07-17 | Mechanism to clamp magnetic disk against cartridge shell |
US09/901,935 Abandoned US20020021530A1 (en) | 1995-06-07 | 2001-07-10 | Mechanism to clamp magnetic disk against cartridge shell |
Family Applications Before (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US09/118,635 Expired - Fee Related US6304417B1 (en) | 1995-06-07 | 1998-07-17 | Mechanism to clamp magnetic disk against cartridge shell |
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US (2) | US6304417B1 (en) |
EP (1) | EP1099219B1 (en) |
JP (1) | JP2002520766A (en) |
CA (1) | CA2337938A1 (en) |
DE (1) | DE69901614T2 (en) |
WO (1) | WO2000004546A1 (en) |
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Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6339583B1 (en) * | 1997-06-20 | 2002-01-15 | Hitachi Maxell, Ltd. | Cartridge for information-recording media having deformable elastic member on shutter |
JP3900272B2 (en) * | 2002-08-15 | 2007-04-04 | ソニー株式会社 | Disk cartridge and recording medium drive device |
KR100674989B1 (en) * | 2005-08-26 | 2007-01-29 | 삼성전자주식회사 | Hard disk and spindle motor assembly |
US7893808B2 (en) * | 2007-10-02 | 2011-02-22 | Advanced Magnet Lab, Inc. | Conductor assembly having an axial field in combination with high quality main transverse field |
US8693140B1 (en) | 2012-10-22 | 2014-04-08 | Western Digital Technologies, Inc. | Bayonet-style disk clamp |
US8908325B1 (en) | 2013-03-08 | 2014-12-09 | Western Digital Technologies, Inc. | Threaded disk clamping element with step on disk contact surface |
Family Cites Families (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5914167U (en) * | 1982-07-16 | 1984-01-28 | 富士写真フイルム株式会社 | magnetic disk cartridge |
JPS5928878U (en) * | 1982-08-18 | 1984-02-22 | 富士写真フイルム株式会社 | magnetic disk cartridge |
US4543619A (en) * | 1982-09-30 | 1985-09-24 | Minnesota Mining And Manufacturing Company | Magnetic disk cartridge and disk drive |
JPS6419572A (en) * | 1987-07-15 | 1989-01-23 | Nec Corp | Optical disk cartridge |
US4879621A (en) * | 1988-07-11 | 1989-11-07 | Minnesota Mining And Manufacturing Company | Disk restraint |
US4943880A (en) * | 1988-11-14 | 1990-07-24 | Minnesota Mining And Manufacturing Company | Disk locking mechanism for disk cartridge |
US5444586A (en) * | 1992-11-13 | 1995-08-22 | Syquest Technology, Inc. | Removable cartridge for a disk drive with a 1.8 inch form factor |
CA2222872A1 (en) * | 1995-06-07 | 1996-12-19 | Edward L. Rich | Disk cartridge anti-rattle mechanism |
DE69513050T2 (en) * | 1995-06-07 | 2000-04-13 | Iomega Corp., Roy | Record cassette with anti-rattle process |
JPH1064224A (en) * | 1996-08-26 | 1998-03-06 | Sony Corp | Removable disk cartridge |
US5974026A (en) * | 1997-11-14 | 1999-10-26 | Castlewood Systems, Inc. | Anti-rattle mechanism for a removable video disk cartridge |
-
1998
- 1998-07-17 US US09/118,635 patent/US6304417B1/en not_active Expired - Fee Related
-
1999
- 1999-07-16 CA CA002337938A patent/CA2337938A1/en not_active Abandoned
- 1999-07-16 EP EP99937281A patent/EP1099219B1/en not_active Expired - Lifetime
- 1999-07-16 WO PCT/US1999/016158 patent/WO2000004546A1/en active IP Right Grant
- 1999-07-16 DE DE69901614T patent/DE69901614T2/en not_active Expired - Fee Related
- 1999-07-16 JP JP2000560581A patent/JP2002520766A/en active Pending
-
2001
- 2001-07-10 US US09/901,935 patent/US20020021530A1/en not_active Abandoned
Also Published As
Publication number | Publication date |
---|---|
EP1099219A1 (en) | 2001-05-16 |
JP2002520766A (en) | 2002-07-09 |
US6304417B1 (en) | 2001-10-16 |
EP1099219B1 (en) | 2002-05-29 |
WO2000004546A1 (en) | 2000-01-27 |
CA2337938A1 (en) | 2000-01-27 |
DE69901614D1 (en) | 2002-07-04 |
DE69901614T2 (en) | 2002-12-19 |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |
|
AS | Assignment |
Owner name: EMC CORPORATION,MASSACHUSETTS Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:IOMEGA CORPORATION;REEL/FRAME:024001/0708 Effective date: 20100211 |