scispace - formally typeset
Search or ask a question

Showing papers by "Robert G. Biskeborn published in 2007"


Patent
12 Apr 2007
TL;DR: A magnetic write transducer includes a yoke having a lower pole portion, an upper pole portion and a first bobbin portion as mentioned in this paper, and a magnetic coil is used to wrap around the yoke in a first plane and a second plane above the first plane.
Abstract: A magnetic write transducer includes a yoke having a lower pole portion, an upper pole portion, and a first bobbin portion; a first coil turn wrapped around the first bobbin portion of the yoke in a first plane; a second coil turn wrapped around the first bobbin portion of the yoke in a second plane above the first plane; a third coil turn wrapped around the First bobbin portion of the yoke in a third plane above the second plane; and a fourth coil turn wrapped around the first bobbin portion of the yoke in a fourth plane above the third plane.

22 citations


Patent
04 May 2007
TL;DR: In this paper, a servo write head that provides fast servo pattern writing and improved tape manufacturing speed is provided, where a planar top pole coupled to the bottom pole is formed.
Abstract: A servo write head that provides fast servo pattern writing and improved tape manufacturing speed is provided. The write head may be fabricated using thin-film fabrication techniques. A coil is formed on a bottom pole of the write head. The coil has a plurality of turns that enable the write head to generate a magnetic field sufficient for writing data with reduced current. The inductance of the coil is reduced due to its small dimensions. Reduced inductance of the coil may enable increased switching frequency of the write head, allowing data to be written at a higher frequency. The write head includes a planar top pole coupled to the bottom pole. The top pole has more than one write gap is formed therein.

20 citations


Patent
12 Apr 2007
TL;DR: In this article, the authors present a device select system coupled to the first and second devices, where each of the first electrical contacts is associated with at least two of the second electrical contacts.
Abstract: In one general embodiment, a system includes a first device on a first substrate; a second device on a second substrate; and a device select system coupled to the first and second devices. The device select system includes: a first portion having an array of first electrical contacts; a second portion having an array of second electrical contacts, there being more second electrical contacts than first electrical contacts, the second portion being coupled to the first and second devices, each of the first electrical contacts being associated with at least two of the second electrical contacts; and a select mechanism for selectively placing each of the first electrical contacts in electrical communication with one of the second electrical contacts associated therewith.

18 citations


Patent
Robert G. Biskeborn1
09 Mar 2007
TL;DR: A magnetic data storage system according to one embodiment includes a head having a reader, the reader further comprising a shield, a sensor, and leads coupled to the sensor; a charge clamp circuit electrically coupling the shield to the leads; and a bias circuit for passing a bias current through the sensor via the leads, wherein the bias circuit maintains a potential of the shields at about a ground potential.
Abstract: A magnetic data storage system according to one embodiment includes a head having a reader, the reader further comprising a shield, a sensor, and leads coupled to the sensor; a charge clamp circuit electrically coupling the shield to the leads; and a bias circuit for passing a bias current through the sensor via the leads; wherein the bias circuit maintains a potential of the shields at about a ground potential.

15 citations


Patent
09 Jul 2007
TL;DR: In this article, a magnetic head according to one embodiment includes a substrate, a sensor, a shield, and a nonmagnetic, non-electrically insulative layer between the substrate and the sensor.
Abstract: A magnetic head according to one embodiment includes a substrate; a sensor formed above the substrate; a second shield formed above the sensor and the substrate; a first insulation layer positioned between the substrate and the sensor; a second insulation layer positioned between the sensor and the second shield; and a nonmagnetic, non-electrically insulative layer formed between the substrate and the sensor.

8 citations


Patent
Robert G. Biskeborn1, Calvin S. Lo1
08 May 2007
TL;DR: A magnetic storage system according to one embodiment includes a magnetic head adapted for at least one of reading from a magnetic medium and writing to the medium; a drive mechanism for directing the medium over the head; and a first element for selectively altering a voltage of the medium for altering a state of hydration of a medium.
Abstract: A magnetic storage system according to one embodiment includes a magnetic head adapted for at least one of reading from a magnetic medium and writing to the medium; a drive mechanism for directing the medium over the head; and a first element for selectively altering a voltage of the medium for altering a state of hydration of the medium.

7 citations


Patent
Robert G. Biskeborn1
20 Mar 2007
TL;DR: In this article, a magnetic tape head system and associated method are described and a length of the tape bearing surface is between approximately 0.57 millimeters and 0.7 millimeters, and the tape wrap angle is between 0.5 degrees and 1.3 degrees.
Abstract: A magnetic tape head system and associated method are disclosed. Included is one or more head assemblies each including a base with a row bar coupled thereto with a head situated therein for defining a tape bearing surface defining a tape wrap angle with respect to a horizontal plane. A length of the tape bearing surface is between approximately 0.57 millimeters and 0.7 millimeters and the tape wrap angle is between approximately 0.5 degrees and 1.3 degrees such that a resolution of the magnetic tape head system is substantially independent of a velocity of the tape.

6 citations


Patent
Robert G. Biskeborn1, Calvin S. Lo1
30 Aug 2007
TL;DR: In this paper, a method of manufacturing thin closure magnetic read/write heads such as magnetic tape heads is described, which provides improved flexural strength of the closure so that the closure breakage during fabrication of the heads is mitigated and closure thickness is reduced.
Abstract: A method of manufacturing thin closure magnetic read/write heads, such as magnetic tape heads is provided. The method provides improved flexural strength of the closure so that the closure breakage during fabrication of the heads is mitigated and closure thickness is reduced. An array of chips is fabricated on a wafer. The array is closed, with a closure strip bonded to each row of the array. Closures span only the length of a row, so that the closures are not subjected to flexure during processing and breakage due to flexure is mitigated. Side bars are bonded to the array to form a column with dimensions similar to prior art columns. This allows columns manufactured by the invention to undergo additional processing using existing processes.

5 citations


Patent
Robert G. Biskeborn1
07 May 2007
TL;DR: In this paper, a magnetic head according to one embodiment includes a substrate, at least one transducer formed above the substrate, and a wear resistant portion formed between the overcoat portion and a media-proximal surface of the magnetic head, the wear resistant part being formed of a material having a greater resistance to media wear than a material from which the over-coat portion is formed.
Abstract: A magnetic head according to one embodiment includes a substrate; at least one transducer formed above the substrate, the at least one transducer being selected from a group consisting of a reader and a writer; an overcoat portion formed above the at least one transducer; and a wear resistant portion formed between the overcoat portion and a media-proximal surface of the magnetic head, the wear resistant portion being formed of a material having a greater resistance to media wear than a material from which the overcoat portion is formed.

5 citations


Patent
Robert G. Biskeborn1
03 Jan 2007
TL;DR: In this paper, a magnetic tape head system and associated method are described and a length of the tape bearing surface is between approximately 0.57 millimeters and 0.7 millimeters, and the tape wrap angle is between 0.5 degrees and 1.3 degrees.
Abstract: A magnetic tape head system and associated method are disclosed. Included is one or more head assemblies each including a base with a row bar coupled thereto with a head situated therein for defining a tape bearing surface defining a tape wrap angle with respect to a horizontal plane. A length of the tape bearing surface is between approximately 0.57 millimeters and 0.7 millimeters and the tape wrap angle is between approximately 0.5 degrees and 1.3 degrees such that a resolution of the magnetic tape head system is substantially independent of a velocity of the tape.

4 citations


Patent
01 Feb 2007
TL;DR: In this paper, an apparatus, system, and method for detecting the formation of a short between a magnetoresistive (MR) head and a head substrate is presented. But the authors focus on detecting the short between the MR head and the head substrate by detecting a change in the electric potential level monitored by the monitoring module from the baseline level to a predetermined threshold level.
Abstract: An apparatus, system, and method are disclosed for detecting the formation of a short between a magnetoresistive (“MR”) head and a head substrate. The apparatus is presented with a logic unit containing a plurality of modules configured to functionally execute the necessary steps of generating a baseline electric potential level between a head substrate and ground, monitoring the level of the electric potential between the head substrate and ground, and detecting the formation of a short circuit between the MR head and the head substrate by detecting a change in the electric potential level monitored by the monitoring module from the baseline level to a predetermined threshold level. Beneficially, such an apparatus, system, and method would reduce read errors on the magnetic tape storage system, the time and resources required to recover from such errors, and allow for preventative measures to obviate contamination short related failures of tape drive systems.

Patent
Robert G. Biskeborn1, Philipp Herget1
07 Jun 2007
TL;DR: In this article, a magnetic head in one embodiment includes a substrate; a write transducer; leads coupled to the write transducers; and a resistor coupled between one of the leads and the substrate or a common line.
Abstract: A magnetic, head in one embodiment includes a substrate; a write transducer; leads coupled to the write transducer; and a resistor coupled between one of the leads and the substrate or a common line. A magnetic storage system in another embodiment includes a cable having a characteristic impedance associated with a pair of conductors; a write signal generator coupled to the pair of conductors; at least one first device coupled to the cable in series with the write signal generator and at least one of the cable conductors, the at least one first device providing a first impedance; at least one second device providing a second impedance and coupled to a second end of the cable in series with at least one of the cable conductors and the first device; and a head having a write transducer coupled to the at least one second device.

Patent
Robert G. Biskeborn1, Jason Liang1
23 Jul 2007
TL;DR: In this article, a guide mechanism for passing a magnetic recording tape over the head and a cleaning device for cleaning the head is presented. But the cleaning device does not contact the tape during cleaning of the head.
Abstract: A tape drive system according to one embodiment includes a tape head; a guide mechanism for passing a magnetic recording tape over the head; and a cleaning device for cleaning the head, wherein, while the tape is adjacent the head, a relative spacing between the tape and the head is created before the cleaning device cleans the head, wherein the cleaning device does not contact the tape during cleaning of the head. Other systems and methods are also presented.

Patent
Robert G. Biskeborn1
07 May 2007
TL;DR: In this paper, a magnetic head according to one embodiment includes a substrate, at least one transducer formed above the substrate, and a wear resistant portion formed between the overcoat portion and a media-proximal surface of the magnetic head, the wear resistant part being formed of a material having a greater resistance to media wear than a material from which the over-coat portion is formed.
Abstract: A magnetic head according to one embodiment includes a substrate; at least one transducer formed above the substrate, the at least one transducer being selected from a group consisting of a reader and a writer; an overcoat portion formed above the at least one transducer; and a wear resistant portion formed between the overcoat portion and a media-proximal surface of the magnetic head, the wear resistant portion being formed of a material having a greater resistance to media wear than a material from which the overcoat portion is formed.

Patent
Robert G. Biskeborn1
01 Mar 2007
TL;DR: A tape head assembly according to one embodiment includes a single beam having an upper surface and a plurality of apertures into the upper surface, the beam defining a void positioned towards an inner portion thereof, the void being for receiving a cable as discussed by the authors.
Abstract: A tape head assembly according to one embodiment includes a single beam having an upper surface and a plurality of apertures into the upper surface, the beam defining a void positioned towards an inner portion thereof, the void being for receiving a cable; multiple modules coupled to the beam, at least one of the modules being coupled to the beam by members, the members extending into the apertures in the upper surface of the beam and being immovably coupled to the beam, each of the modules having at least one of readers for reading from a magnetic medium and writers for writing to a magnetic medium.