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    • 3. 发明授权
    • Disk drive compensating for laser induced head protrusion in heat assisted magnetic recording
    • 磁盘驱动补偿热辅助磁记录中的激光引发头突出
    • US08456980B1
    • 2013-06-04
    • US13418904
    • 2012-03-13
    • Pradeep K. Thayamballi
    • Pradeep K. Thayamballi
    • G11B7/00G11B11/00
    • G11B5/607G11B5/012G11B2005/0021
    • A disk drive is disclosed comprising a head actuated over a disk comprising a plurality of data tracks defined by servo sectors. The head comprises a laser operable to heat the disk while writing data to the disk and a fly height actuator operable to adjust a fly height of the head over the disk. When the head approaches a target data sector of a write command, the fly height of the actuator adjusts the fly height of the head to a target pre-heat fly height during a pre-heat interval. After the pre-heat interval and during a pre-laser interval, the fly height actuator increases the fly height of the head. After the pre-laser interval, a power applied to the laser is increased to heat the disk, wherein the pre-laser interval compensates for a protrusion transient of the head toward the disk due to increasing the power applied to the laser.
    • 公开了一种磁盘驱动器,包括在包括由伺服扇区定义的多个数据磁道的磁盘上启动的磁头。 头部包括可操作以在将数据写入盘的同时加热盘的激光器和可操作以调节头部在盘上的飞行高度的飞行高度致动器。 当头部接近写入命令的目标数据扇区时,执行器的飞行高度在预热间隔期间将头部的飞行高度调节到目标预热飞行高度。 在预热间隔之后和预激光间隔期间,飞行高度致动器增加了头部的飞行高度。 在预激光间隔之前,增加施加到激光器的功率以加热盘,其中预激光器间隔由于增加施加到激光器的功率而补偿头朝向盘的突起瞬变。
    • 4. 发明授权
    • Disk drive including damping member disposed upon latch for damping tang-to-latch impact and mitigating tang-to-latch contact
    • 磁盘驱动器包括设置在闩锁上的阻尼构件,用于阻尼碰撞碰撞并减轻碰撞锁闩触点
    • US06704167B1
    • 2004-03-09
    • US09945406
    • 2001-08-31
    • John E. ScuraPradeep K. ThayamballiHaldun Arin
    • John E. ScuraPradeep K. ThayamballiHaldun Arin
    • G11B554
    • G11B5/54
    • A disk drive includes a disk drive base and a latch attached to the disk drive base. The latch includes a latch impact surface having a latch impact surface perimeter. The latch impact surface perimeter defines a latch impact surface area. The disk drive includes a head stack assembly coupled to the disk drive base. The head stack assembly includes a tang. The head stack assembly is sized and configured to rotate to a parked position with the tang in mechanical communication with the latch. The tang has a tang impact surface. The disk drive includes a damping member disposed upon and disposed between the latch and the tang for damping impact between the tang and the latch and mitigating contact between the tang impact surface and the latch impact surface. The damping member has a damping member surface area less than the latch impact surface area.
    • 磁盘驱动器包括磁盘驱动器基座和连接到磁盘驱动器基座的闩锁。 闩锁包括具有闩锁冲击表面周界的闩锁冲击表面。 闩锁冲击表面周界限定了闩锁冲击表面积。 磁盘驱动器包括耦合到磁盘驱动器基座的磁头堆叠组件。 头部堆叠组件包括一个柄脚。 头部堆叠组件的尺寸和构造被设计成旋转到停放位置,其中柄脚与闩锁机械连通。 脚有一个脚冲击表面。 磁盘驱动器包括一个阻尼构件,该阻尼构件设置在闩锁和脚之间,并且设置在闩锁和脚之间,用于阻止柄脚和闩锁之间的冲击并减轻脚部冲击表面和闩锁碰撞表面之间的接触。 阻尼构件具有小于闩锁冲击表面积的阻尼构件表面积。
    • 5. 发明授权
    • Magnetic thin film head zero throat pole tip definition
    • 磁性薄膜头零喉极尖定义
    • US6103073A
    • 2000-08-15
    • US680495
    • 1996-07-15
    • Pradeep K. Thayamballi
    • Pradeep K. Thayamballi
    • B05D5/12C23C14/34
    • G11B5/3163G11B5/3116
    • A thin film magnetic head has a sharply defined zero throat location in the pole tip members utilizing a superior magnetic pole tip material having high resistivity and high magnetic induction. The zero throat location is defined by first depositing a first pole tip member on a first magnetic pole member which may be formed by plating and need not be composed of the same superior magnetic material as the first pole tip member. By etching the zero throat edge of the first pole tip member, a clearly defined edge location is produced. The second pole tip member of superior magnetic material is then deposited on an insulating gap layer which is formed on the lower pole tip member.
    • 利用具有高电阻率和高磁感应的优良磁极尖端材料,薄磁头磁头在极尖部件中具有清晰的零喉部位置。 通过首先将第一极端部构件沉积在第一磁极构件上来限定零喉部位置,第一磁极构件可以通过电镀形成,并且不需要由与第一极端构件相同的优良磁性材料构成。 通过蚀刻第一极端部构件的零喉缘,产生明确限定的边缘位置。 然后将上磁性材料的第二极端部件沉积在形成在下极端部件上的绝缘间隙层上。
    • 8. 发明授权
    • Stabilizing domains in inductive thin film heads
    • 感应薄膜头稳定领域
    • US5385637A
    • 1995-01-31
    • US986252
    • 1992-12-07
    • Pradeep K. Thayamballi
    • Pradeep K. Thayamballi
    • G11B5/31G11B5/00
    • G11B5/3163G11B5/3113Y10T29/49034
    • A method and means for reducing readback non-repeatability in thin film heads due to non-repeatablele domain structure, comprising the steps of depositing a layer of antiferromagnetic material, such as MnFe, to create larger uniaxial anisotropy, and localizing such a layer in the upper magnetic pole to improve head performance without sacrificing efficiency. In a particular implementation, alternating layers of NiFe/MnFe/NiFe, each 500 Angstroms thick, are deposited, followed by a sputtered seed layer for subsequent plating. After lapping to correct throat height, the head is then heated above the Neel temperature of MnFe and cooled in the presence of an applied magnetic field.
    • 一种用于减少由于不可重复域结构导致的薄膜磁头中的回读不可重复性的方法和装置,其特征在于包括沉积诸如MnFe的反铁磁性材料层以产生更大的单轴各向异性的步骤,以及将这种层定位在 上磁极提高头部性能而不牺牲效率。 在一个具体实施方案中,沉积每500埃厚的NiFe / MnFe / NiFe交替层,随后是溅射种子层用于随后的镀覆。 研磨后,将头部加热到高于NeFe的MnFe温度,并在施加的磁场存在下冷却。