Patent classifications
G11B25/06
SERVO PATTERN RECORDING METHOD, SERVO PATTERN RECORDING APPARATUS, MANUFACTURING METHOD FOR A TAPE-LIKE MAGNETIC RECORDING MEDIUM, AND TAPELIKE MAGNETIC RECORDING MEDIUM
A servo pattern recording method according to an embodiment of the present technology is a servo pattern recording method of recording a servo pattern on a tape-like magnetic recording medium including a magnetic layer including five or more servo bands, the method including: determining at least three first servo bands in which first servo band identification information constituted by a plurality of bits is to be recorded, and at least two second servo bands in which second servo band identification information constituted by a plurality of bits is to be recorded, the second servo band identification being different from the first servo band identification information; and recording each of the first servo band identification information and the second servo band identification information in the first servo band and the second servo band on the same phase.
Multichannel tape head module having embedded thermal device
In one embodiment, an apparatus includes a module having: an array of transducers formed in thin film structure on a substrate, the array being positioned along a tape bearing surface of the module, and a heating element positioned in the thin film structure and recessed from the tape bearing surface. An apparatus, according to another embodiment, includes a module having an array of transducers formed on a substrate, the array being positioned along a tape bearing surface of the module between skiving edges thereof. A slot is formed in the substrate adjacent one of the skiving edges. A heating element is positioned in the slot.
Tape library rack module with environmentally isolated interior
A data center may include a tape library rack module along with rack computer systems. The rack computer systems may be configured to provide computing capacity within a data center environment. In some embodiments, the tape library rack module may include an enclosure encompassing an interior of the tape library rack module, a rack within the interior, and a tape library unit mounted on the rack. The tape library rack unit may include tape cartridges configured to store data within a tape environment that is different than the data center environment. The tape library rack unit may be within a portion of the interior that is enclosed such that it is environmentally isolated from the data center environment. In some examples, the tape library rack module may include a cooling unit and/or a humidifier unit, which may provide the tape environment to the environmentally isolated portion of the interior of the tape library rack module.
Tape drive corrosion protection
A computer program product, including a storage device storing computer readable program code executable by a processor to implement a method for corrosion protection of a tape drive based on a tape drive corrosion protection system that includes a tape drive, a temperature sensor, a heating entity, and a controller. Humidity information is determined via a humidity sensor. Temperature information, indicative of a temperature in or within the tape drive, is established via the temperature sensor. The temperature information is received at the controller. The heating entity is activated in a manner dependent on the temperature information established via the temperature sensor in order to prevent corrosion within the tape drive. Activating the heating entity is in response to a determination that the relative humidity is above a specified relative humidity threshold value and a temperature drop is above a specified temperature drop value within a specified period of time.
Tape drive corrosion protection
A computer program product, including a storage device storing computer readable program code executable by a processor to implement a method for corrosion protection of a tape drive based on a tape drive corrosion protection system that includes a tape drive, a temperature sensor, a heating entity, and a controller. Humidity information is determined via a humidity sensor. Temperature information, indicative of a temperature in or within the tape drive, is established via the temperature sensor. The temperature information is received at the controller. The heating entity is activated in a manner dependent on the temperature information established via the temperature sensor in order to prevent corrosion within the tape drive. Activating the heating entity is in response to a determination that the relative humidity is above a specified relative humidity threshold value and a temperature drop is above a specified temperature drop value within a specified period of time.
Externally-cooled tape drive
A tape drive includes a housing defining an internal volume, a heat-generating element disposed within the internal volume, a thermally-conductive element, a first end of the thermally-conductive element in thermal communication with the heat-generating element, and a heat dissipation unit disposed in an external volume outside of the internal volume, wherein a second end of the thermally-conductive element is disposed in the external volume and is in thermal communication with the heat dissipation unit.
MULTICHANNEL TAPE HEAD MODULE HAVING EMBEDDED THERMAL DEVICE
In one embodiment, an apparatus includes a module having: an array of transducers formed in thin film structure on a substrate, the array being positioned along a tape bearing surface of the module, and a heating element positioned in the thin film structure and recessed from the tape bearing surface. An apparatus, according to another embodiment, includes a module having an array of transducers formed on a substrate, the array being positioned along a tape bearing surface of the module between skiving edges thereof. A slot is formed in the substrate adjacent one of the skiving edges. A heating element is positioned in the slot.
MULTICHANNEL TAPE HEAD MODULE HAVING THERMOELECTRIC DEVICES FOR CONTROLLING SPAN BETWEEN TRANSDUCERS
An apparatus, according to one embodiment, includes a module having an array of transducers, and a thermoelectric cooling element positioned proximate to the array of transducers. An apparatus, according to one embodiment, includes a module having an array of transducers, a thermoelectric cooling element positioned proximate to the array of transducers, and a heating element positioned proximate to the array of transducers. A method of maintaining a span of an array of transducers of module to a specification, according to one embodiment, includes determining whether the span of the array of transducers in a module is different than a target based on a specification. In response to determining the span is greater than the target, a control signal is applied to a thermoelectric cooling element positioned proximate to the span of the array of transducers for contracting the span of the array of transducers toward the target.
Tape drive corrosion protection
A system for corrosion protection of a tape drive. The system includes: the tape drive; a humidity sensor for determining humidity information; a temperature sensor for establishing temperature information indicative of a temperature in an area of, or within, the tape drive; a heating entity for heating at least a portion of the tape drive; and a controller for activating the heating entity in a manner dependent on the temperature information established via the temperature sensor in order to prevent corrosion within the tape drive, the activating the heating entity being in response to a determination that the humidity information determined via the humidity sensor indicates that the relative humidity is above a specified relative humidity threshold value and the established temperature information indicates a temperature drop above a specified temperature drop value within a specified period of time.
Tape drive corrosion protection
A system for corrosion protection of a tape drive. The system includes: the tape drive; a humidity sensor for determining humidity information; a temperature sensor for establishing temperature information indicative of a temperature in an area of, or within, the tape drive; a heating entity for heating at least a portion of the tape drive; and a controller for activating the heating entity in a manner dependent on the temperature information established via the temperature sensor in order to prevent corrosion within the tape drive, the activating the heating entity being in response to a determination that the humidity information determined via the humidity sensor indicates that the relative humidity is above a specified relative humidity threshold value and the established temperature information indicates a temperature drop above a specified temperature drop value within a specified period of time.