G11B23/06

Tape cartridge identification

An apparatus includes a tape cartridge housing, an RFID chip attached to the tape cartridge housing. The RFID chip includes a tape cartridge ID and tape cartridge information, a time relay operably connected to the RFID chip, and external contact points configured to contact another RFID chip of another tape cartridge within the same tier. A method includes receiving a tape cartridge label read request including a position indicator corresponding to a location of a tape cartridge of interest, moving a tape cartridge gripper to the location indicated by the position indicator, activating a field coil on the tape cartridge gripper to provide power to an RFID chip on a selected tape cartridge, detecting information transmitted by the RFID chip on the selected tape cartridge, determining if the selected tape cartridge is the tape cartridge of interest, and activating a next RFID chip on an adjacent tape cartridge.

Tape cartridge identification

An apparatus includes a tape cartridge housing, an RFID chip attached to the tape cartridge housing. The RFID chip includes a tape cartridge ID and tape cartridge information, a time relay operably connected to the RFID chip, and external contact points configured to contact another RFID chip of another tape cartridge within the same tier. A method includes receiving a tape cartridge label read request including a position indicator corresponding to a location of a tape cartridge of interest, moving a tape cartridge gripper to the location indicated by the position indicator, activating a field coil on the tape cartridge gripper to provide power to an RFID chip on a selected tape cartridge, detecting information transmitted by the RFID chip on the selected tape cartridge, determining if the selected tape cartridge is the tape cartridge of interest, and activating a next RFID chip on an adjacent tape cartridge.

WINDING CORE AND WINDING CORE MANUFACTURING METHOD

The present invention provides a winding core which is lightweight, and which has an excellent dimensional accuracy and deflection reducing property in a long length product. Provided is a winding core obtained by molding a resin composition comprising: at least one type of amorphous resin (A) selected from a styrene resin, a polycarbonate, a polyarylate, a polyphenylene oxide and a polysulfone; a polylactic acid (B); and an inorganic filler; wherein the resin composition includes: from 50 to 80 parts by mass of the amorphous resin (A), and from 20 to 50 parts by mass of the polylactic acid resin (B) (wherein the total amount of the amorphous resin (A) and the polylactic acid (B) is 100 parts by mass). Preferably, the winding core further includes from 10 to 40 parts by mass of the inorganic filler (C).

Hub compliance layer for reducing media stress

A product, according to one embodiment, includes: a tape spool having: a first flange, a second flange, and a circular hub sandwiched between the first and second flanges. The tape spool also includes a cylindrical compliance layer which encircles the hub. The compliance layer is configured to dampen radial stress exerted on the hub by a tape wound around the hub. A product, according to another embodiment, includes: a tape cartridge having: an outer housing, and a tape spool positioned within the outer housing. The tape spool further includes: a first flange, a circular hub coupled to the first flange, and a cylindrical compliance layer which encircles the hub. A magnetic tape is also wrapped around the compliance layer and the hub. Moreover, the compliance layer is configured to dampen radial stress exerted on inner wraps of the magnetic tape.

Hub compliance layer for reducing media stress

A product, according to one embodiment, includes: a tape spool having: a first flange, a second flange, and a circular hub sandwiched between the first and second flanges. The tape spool also includes a cylindrical compliance layer which encircles the hub. The compliance layer is configured to dampen radial stress exerted on the hub by a tape wound around the hub. A product, according to another embodiment, includes: a tape cartridge having: an outer housing, and a tape spool positioned within the outer housing. The tape spool further includes: a first flange, a circular hub coupled to the first flange, and a cylindrical compliance layer which encircles the hub. A magnetic tape is also wrapped around the compliance layer and the hub. Moreover, the compliance layer is configured to dampen radial stress exerted on inner wraps of the magnetic tape.

HUB COMPLIANCE LAYER FOR REDUCING MEDIA STRESS

A product, according to one embodiment, includes: a tape spool having: a first flange, a second flange, and a circular hub sandwiched between the first and second flanges. The tape spool also includes a cylindrical compliance layer which encircles the hub. The compliance layer is configured to dampen radial stress exerted on the hub by a tape wound around the hub. A product, according to another embodiment, includes: a tape cartridge having: an outer housing, and a tape spool positioned within the outer housing. The tape spool further includes: a first flange, a circular hub coupled to the first flange, and a cylindrical compliance layer which encircles the hub. A magnetic tape is also wrapped around the compliance layer and the hub. Moreover, the compliance layer is configured to dampen radial stress exerted on inner wraps of the magnetic tape.