Patent · US5323984A · A · US
Ferromagnetic insert for use with a magnetic tape cartridge and method of manufacturing the same
- (11) Publication number
- US5323984A
- (21) Application number
- 08/002,866
- (22) Filing date
- 1993-01-15
- (30) Priority date
- 1992-03-25
- (43) Publication date
- 1994-06-28
- (45) Date of grant
- 1994-06-28
- (51) IPC
- G11B 23/037; G11B 23/107
- (52) CPC
- G11B Information storage based on relative movement between record carrier and transducer: 23/037, 23/107
- (72) Inventors
- Robert Lackowski
- (54) Title
- Ferromagnetic insert for use with a magnetic tape cartridge and method of manufacturing the same
- (57) Abstract
An insert that is to be mounted on a hub of a spool positioned in a magnetic tape cartridge for permitting the spool to be attracted to the magnetic element of a computer drive mechanism includes a circular ferromagnetic disk having oppositely positioned upper and lower planar surfaces. The disk is provided with a centrally positioned through hole, and a plurality of recesses disposed radially outwardly of the centrally positioned through hole. Each recess is provided with a securing through hole for permitting the ferromagnetic disk to be secured to the spool hub of a magnetic tape cartridge. The disk can also include an annular flange that extends around the outer periphery of the disk and axially away from the upper surface, and an annular flange that surrounds the centrally positioned hole and extends axially away from the upper surface. Each of the recesses is defined by an inclined side wall that extends axially away from the upper surface of the disk and radially inwardly toward the longitudinal axis of the respective securing through hole.
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Claims (20)
- A magnetic tape cartridge for housing magnetic tape which is adapted to have data stored thereon, comprising: a housing; a rotatable spool positioned within the housing and adapted to have tape wound therearound, said spool having a spool hub and including means for being engaged by a drive mechanism to rotatably drive the spool, said spool hub having a ferromagnetic disk mounted thereon for permitting the spool to be attracted to a magnetic element of a drive mechanism, said ferromagnetic disk having oppositely facing first and second surfaces, said disk having an outer periphery and an annular flange located at the outer periphery of said disk and extending away from the first surface, a centrally positioned through hole formed in the disk, an annular flange extending away from the first surface and extending around the centrally positioned through hole, and a plurality of recesses formed in the disk, each of said recesses having a securing through hole formed therein for allowing the disk to be secured to the spool, said securing through holes having an axis, said recesses being defined by an inclined side wall that extends axially away from said first surface and radially inwardly towards the axis of the respective securing through hole.
- The magnetic tape cartridge according to claim 1, wherein said annular flange located at said outer periphery has a free end that is turned radially outwardly away from a longitudinal axis of the disk.
- The magnetic tape cartridge according to claim 1, wherein said disk is made of a ferromagnetic material having a maximum thickness less than 1.35 mm.
- The magnetic tape cartridge according to claim 1, wherein said disk is made of a ferromagnetic material having a maximum thickness between 0.15 mm and 0.50 mm.
- The magnetic tape cartridge according to claim 4, wherein said material is stainless steel.
- An insert for attachment to a hub of a spool positioned in a magnetic tape cartridge for permitting the spool to be attracted to a magnetic element of a drive mechanism, comprising a circular ferromagnetic disk having oppositely positioned first and second surfaces, said disk being provided with a centrally positioned through hole for allowing a portion of the drive mechanism to contact a locking mechanism forming a part of the magnetic tape cartridge, an annular flange extending away from the first surface and extending around the centrally positioned through hole, said disk being provided with a plurality of spaced apart recesses located radially outwardly of the centrally positioned through hole, each of said recesses having a securing through hole formed therein for securing the disk to the hub of the spool, said recesses having an inclined side wall that extends axially away from said upper surface and radially inwardly towards a longitudinal axis of the respective securing through hole.
- The insert according to claim 6, wherein said disk is provided with three recesses equally spaced from one another and equally spaced from the centrally positioned through hole.
- The insert according to claim 6, wherein said disk includes an outer periphery and an annular flange located at the outer periphery and extending away from the first surface of the disk.
- The insert according to claim 8, wherein said annular flange located at said outer periphery has a free end that is turned radially outwardly away from a longitudinal axis of the disk.
- The insert according to claim 9, wherein said disk is made of a ferromagnetic material having a maximum thickness less than 1.35 mm.
- The insert according to claim 9, wherein said disk is made of a ferromagnetic material having a maximum thickness between 0.15 mm and 0.50 mm.
- A method of fabricating an insert for attachment to a spool hub of a spool that forms a part of a magnetic tape cartridge for permitting the spool to be attracted to a magnetic element forming a part of a computer drive mechanism, comprising the steps of: providing a strip of ferromagnetic material having oppositely positioned first and second surfaces; piercing said strip of ferromagnetic material to form a plurality of through holes that includes a centrally positioned through hole and a plurality of securing through holes radially outwardly disposed with respect to said centrally positioned through hole; countersinking said strip of ferromagnetic material at a plurality of places that correspond to said securing through holes to form a plurality of recesses in the strip, each of the recesses surrounding one of the securing through holes and each of the recesses including an inclined side wall that extends axially away from said first surface and radially inwardly toward a longitudinal axis of the securing through hole; forming an annular flange that extends around the centrally positioned through hole and that extends away from the first surface; and punching a circular disk of material from the strip to form the insert, said circular disk of material that is punched from the strip encompassing the centrally positioned hole, the securing through holes and the plurality of recesses.
- The method according to claim 12, wherein said step of piercing the strip to form a plurality of securing through holes includes piercing said strip to form three through holes that are spaced from one another by substantially equal distances and spaced from the centrally positioned through hole by equal distances.
- The method according to claim 13, including forming an axially extending annular flange along the entire outer periphery of the disk.
- A magnetic tape cartridge for housing magnetic tape which is adapted to have data stored thereon, comprising: a housing; a rotatable spool positioned within the housing and adapted to have tape wound therearound, said spool having a spool hub and including means for being engaged by a drive mechanism to rotatably drive the spool, said spool hub having a disk mounted thereon for permitting the spool to be attracted to a magnetic element of a drive mechanism, said disk being made of a ferromagnetic material having a maximum thickness less than 1.35 mm, said disk having oppositely facing first and second surfaces, said disk having an outer periphery and an annular flange located at the outer periphery of said disk, said annular flange extending away from the first surface, and a plurality of recesses formed in the disk, each of said recesses having a securing through hole formed therein for allowing the disk to be secured to the spool, said securing through holes having an axis, said recesses being defined by an inclined side wall that extends axially away from said first surface and radially inwardly towards the axis of the respective securing through hole.
- The magnetic tape cartridge according to claim 15, wherein said ferromagnetic disk is made of material having a thickness between 0.15 mm and 0.50 mm.
- An insert for attachment to a hub of a spool positioned in a magnetic tape cartridge for permitting the spool to be attracted to a magnetic element of a drive mechanism, comprising a circular disk having oppositely positioned first and second surfaces, said disk being made of a ferromagnetic material having a maximum thickness less than 1.35 mm, said disk being provided with a centrally positioned through hole for allowing a portion of the drive mechanism to contact a locking mechanism forming a part of the magnetic tape cartridge, an annular flange extending around an outer periphery of the disk and extending away from the first surface, said disk being provided with a plurality of spaced apart recesses located radially outwardly of the centrally positioned through hole, each of said recesses having a securing through hole formed therein for securing the disk to the hub of the spool, said recesses having an inclined side wall that extends axially away from said upper surface and radially inwardly towards a longitudinal axis of the respective securing through hole.
- The insert according to claim 17, wherein said disk is provided with three recesses equally spaced from one another and equally spaced from the centrally positioned through hole.
- The insert according to claim 17, wherein said disk is made of a material having a thickness between 0.15 mm and 0.50 mm.
- The insert according to claim 17, wherein said disk includes an annular flange that extends axially away from the upper surface and around the centrally positioned through hole.
Description
This application is a continuation-in-part of application Ser. No. 07/857,505 filed on Mar. 25, 1992.
The present invention pertains to an insert for use with a magnetic tape cartridge. More particularly, the present invention relates to a ferromagnetic insert that is to be attached to the hub of a spool positioned within a magnetic tape cartridge for permitting the spool to be attracted to a magnetic element of a computer drive mechanism to thereby result in rotation of the spool.
It is known that the storage of data on a recording medium can be accomplished through use of magnetic storage techniques. Magnetic tape is highly desirable because it provides a good medium for storing large amounts of computer data and information. Typically, these magnetic tapes are stored in magnetic tape cartridges. One type of magnetic tape cartridge that is widely used in the industry is referred to as the 3480 cartridge or data card. This type of magnetic tape cartridge is illustrated in FIG. 1.
The cartridge 10 includes a housing 12 having an opening 14 in one comer for permitting the passage of the magnetic tape in and out of the cartridge 10. A centrally positioned opening 16 is provided in the housing 12 to permit access to a unit 18 that is engaged by a computer drive mechanism (not shown) for winding and unwinding the magnetic tape.
As seen in more detail in FIG. 2, the unit 18 includes a spool 20 that is adapted to receive the magnetic tape (not shown). The spool 20 is provided with a hub 22 having teeth 24 on the outer face thereof. These teeth 24 extend around the outer periphery of the hub 22.
Citations (11)
- AT103274B
- US2943661A
- US3298625A
- GB1186464A
- US3856066A
- US4254922A
- US4376606A
- US4343441A
- US4723731A
- US4970748A
- US5029771A
Record as JSON
{
"publication_number": "US5323984A",
"country": "US",
"kind": "A",
"title": "Ferromagnetic insert for use with a magnetic tape cartridge and method of manufacturing the same",
"abstract": "An insert that is to be mounted on a hub of a spool positioned in a magnetic tape cartridge for permitting the spool to be attracted to the magnetic element of a computer drive mechanism includes a circular ferromagnetic disk having oppositely positioned upper and lower planar surfaces. The disk is provided with a centrally positioned through hole, and a plurality of recesses disposed radially outwardly of the centrally positioned through hole. Each recess is provided with a securing through hole for permitting the ferromagnetic disk to be secured to the spool hub of a magnetic tape cartridge. The disk can also include an annular flange that extends around the outer periphery of the disk and axially away from the upper surface, and an annular flange that surrounds the centrally positioned hole and extends axially away from the upper surface. Each of the recesses is defined by an inclined side wall that extends axially away from the upper surface of the disk and radially inwardly toward the longitudinal axis of the respective securing through hole.",
"claims": [
"1. A magnetic tape cartridge for housing magnetic tape which is adapted to have data stored thereon, comprising: a housing; a rotatable spool positioned within the housing and adapted to have tape wound therearound, said spool having a spool hub and including means for being engaged by a drive mechanism to rotatably drive the spool, said spool hub having a ferromagnetic disk mounted thereon for permitting the spool to be attracted to a magnetic element of a drive mechanism, said ferromagnetic disk having oppositely facing first and second surfaces, said disk having an outer periphery and an annular flange located at the outer periphery of said disk and extending away from the first surface, a centrally positioned through hole formed in the disk, an annular flange extending away from the first surface and extending around the centrally positioned through hole, and a plurality of recesses formed in the disk, each of said recesses having a securing through hole formed therein for allowing the disk to be secured to the spool, said securing through holes having an axis, said recesses being defined by an inclined side wall that extends axially away from said first surface and radially inwardly towards the axis of the respective securing through hole.",
"2. The magnetic tape cartridge according to claim 1, wherein said annular flange located at said outer periphery has a free end that is turned radially outwardly away from a longitudinal axis of the disk.",
"3. The magnetic tape cartridge according to claim 1, wherein said disk is made of a ferromagnetic material having a maximum thickness less than 1.35 mm.",
"4. The magnetic tape cartridge according to claim 1, wherein said disk is made of a ferromagnetic material having a maximum thickness between 0.15 mm and 0.50 mm.",
"5. The magnetic tape cartridge according to claim 4, wherein said material is stainless steel.",
"6. An insert for attachment to a hub of a spool positioned in a magnetic tape cartridge for permitting the spool to be attracted to a magnetic element of a drive mechanism, comprising a circular ferromagnetic disk having oppositely positioned first and second surfaces, said disk being provided with a centrally positioned through hole for allowing a portion of the drive mechanism to contact a locking mechanism forming a part of the magnetic tape cartridge, an annular flange extending away from the first surface and extending around the centrally positioned through hole, said disk being provided with a plurality of spaced apart recesses located radially outwardly of the centrally positioned through hole, each of said recesses having a securing through hole formed therein for securing the disk to the hub of the spool, said recesses having an inclined side wall that extends axially away from said upper surface and radially inwardly towards a longitudinal axis of the respective securing through hole.",
"7. The insert according to claim 6, wherein said disk is provided with three recesses equally spaced from one another and equally spaced from the centrally positioned through hole.",
"8. The insert according to claim 6, wherein said disk includes an outer periphery and an annular flange located at the outer periphery and extending away from the first surface of the disk.",
"9. The insert according to claim 8, wherein said annular flange located at said outer periphery has a free end that is turned radially outwardly away from a longitudinal axis of the disk.",
"10. The insert according to claim 9, wherein said disk is made of a ferromagnetic material having a maximum thickness less than 1.35 mm.",
"11. The insert according to claim 9, wherein said disk is made of a ferromagnetic material having a maximum thickness between 0.15 mm and 0.50 mm.",
"12. A method of fabricating an insert for attachment to a spool hub of a spool that forms a part of a magnetic tape cartridge for permitting the spool to be attracted to a magnetic element forming a part of a computer drive mechanism, comprising the steps of: providing a strip of ferromagnetic material having oppositely positioned first and second surfaces; piercing said strip of ferromagnetic material to form a plurality of through holes that includes a centrally positioned through hole and a plurality of securing through holes radially outwardly disposed with respect to said centrally positioned through hole; countersinking said strip of ferromagnetic material at a plurality of places that correspond to said securing through holes to form a plurality of recesses in the strip, each of the recesses surrounding one of the securing through holes and each of the recesses including an inclined side wall that extends axially away from said first surface and radially inwardly toward a longitudinal axis of the securing through hole; forming an annular flange that extends around the centrally positioned through hole and that extends away from the first surface; and punching a circular disk of material from the strip to form the insert, said circular disk of material that is punched from the strip encompassing the centrally positioned hole, the securing through holes and the plurality of recesses.",
"13. The method according to claim 12, wherein said step of piercing the strip to form a plurality of securing through holes includes piercing said strip to form three through holes that are spaced from one another by substantially equal distances and spaced from the centrally positioned through hole by equal distances.",
"14. The method according to claim 13, including forming an axially extending annular flange along the entire outer periphery of the disk.",
"15. A magnetic tape cartridge for housing magnetic tape which is adapted to have data stored thereon, comprising: a housing; a rotatable spool positioned within the housing and adapted to have tape wound therearound, said spool having a spool hub and including means for being engaged by a drive mechanism to rotatably drive the spool, said spool hub having a disk mounted thereon for permitting the spool to be attracted to a magnetic element of a drive mechanism, said disk being made of a ferromagnetic material having a maximum thickness less than 1.35 mm, said disk having oppositely facing first and second surfaces, said disk having an outer periphery and an annular flange located at the outer periphery of said disk, said annular flange extending away from the first surface, and a plurality of recesses formed in the disk, each of said recesses having a securing through hole formed therein for allowing the disk to be secured to the spool, said securing through holes having an axis, said recesses being defined by an inclined side wall that extends axially away from said first surface and radially inwardly towards the axis of the respective securing through hole.",
"16. The magnetic tape cartridge according to claim 15, wherein said ferromagnetic disk is made of material having a thickness between 0.15 mm and 0.50 mm.",
"17. An insert for attachment to a hub of a spool positioned in a magnetic tape cartridge for permitting the spool to be attracted to a magnetic element of a drive mechanism, comprising a circular disk having oppositely positioned first and second surfaces, said disk being made of a ferromagnetic material having a maximum thickness less than 1.35 mm, said disk being provided with a centrally positioned through hole for allowing a portion of the drive mechanism to contact a locking mechanism forming a part of the magnetic tape cartridge, an annular flange extending around an outer periphery of the disk and extending away from the first surface, said disk being provided with a plurality of spaced apart recesses located radially outwardly of the centrally positioned through hole, each of said recesses having a securing through hole formed therein for securing the disk to the hub of the spool, said recesses having an inclined side wall that extends axially away from said upper surface and radially inwardly towards a longitudinal axis of the respective securing through hole.",
"18. The insert according to claim 17, wherein said disk is provided with three recesses equally spaced from one another and equally spaced from the centrally positioned through hole.",
"19. The insert according to claim 17, wherein said disk is made of a material having a thickness between 0.15 mm and 0.50 mm.",
"20. The insert according to claim 17, wherein said disk includes an annular flange that extends axially away from the upper surface and around the centrally positioned through hole."
],
"description_excerpt": "This application is a continuation-in-part of application Ser. No. 07/857,505 filed on Mar. 25, 1992.\n\nThe present invention pertains to an insert for use with a magnetic tape cartridge. More particularly, the present invention relates to a ferromagnetic insert that is to be attached to the hub of a spool positioned within a magnetic tape cartridge for permitting the spool to be attracted to a magnetic element of a computer drive mechanism to thereby result in rotation of the spool.\n\nIt is known that the storage of data on a recording medium can be accomplished through use of magnetic storage techniques. Magnetic tape is highly desirable because it provides a good medium for storing large amounts of computer data and information. Typically, these magnetic tapes are stored in magnetic tape cartridges. One type of magnetic tape cartridge that is widely used in the industry is referred to as the 3480 cartridge or data card. This type of magnetic tape cartridge is illustrated in FIG. 1.\n\nThe cartridge 10 includes a housing 12 having an opening 14 in one comer for permitting the passage of the magnetic tape in and out of the cartridge 10. A centrally positioned opening 16 is provided in the housing 12 to permit access to a unit 18 that is engaged by a computer drive mechanism (not shown) for winding and unwinding the magnetic tape.\n\nAs seen in more detail in FIG. 2, the unit 18 includes a spool 20 that is adapted to receive the magnetic tape (not shown). The spool 20 is provided with a hub 22 having teeth 24 on the outer face thereof. These teeth 24 extend around the outer periphery of the hub 22.",
"cpc": [
"G11B 23/037",
"G11B 23/107"
],
"ipc": [
"G11B 23/037",
"G11B 23/107"
],
"inventors": [
"Robert Lackowski"
],
"filing_date": "1993-01-15",
"publication_date": "1994-06-28",
"grant_date": "1994-06-28",
"priority_date": "1992-03-25",
"application_number": "US-286693-A",
"family_id": "46247080",
"cited_by_count": 16,
"citations": [
"AT103274B",
"US2943661A",
"US3298625A",
"GB1186464A",
"US3856066A",
"US4254922A",
"US4376606A",
"US4343441A",
"US4723731A",
"US4970748A",
"US5029771A"
]
}
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