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    • 1. 发明申请
    • MAGNETIC RECORDING DISK DRIVE WITH PATTERNED MEDIA AND OPTICAL SYSTEM FOR CLOCKING WRITE DATA
    • 带有图形媒体的磁记录磁盘驱动器和用于定时写入数据的光学系统
    • US20100061018A1
    • 2010-03-11
    • US12209089
    • 2008-09-11
    • Thomas R. AlbrechtManfred Ernst SchabesBarry Cushing StipeGabriel Zeltzer
    • Thomas R. AlbrechtManfred Ernst SchabesBarry Cushing StipeGabriel Zeltzer
    • G11B5/82
    • G11B5/314B82Y10/00G11B5/4866G11B5/59616G11B5/59677G11B5/743G11B5/82
    • A patterned-media magnetic recording disk drive uses an optical system for accurately clocking the write data. The disk has concentric data tracks patterned into discrete magnetizable data islands with nonmagnetic spaces between the islands. As the disk rotates, a radiation source directs near-field radiation to the islands and spaces, and a radiation detector receives reflected radiation. The radiation is directed from the source through an optical channel or waveguide on the air-bearing slider that supports the read and write heads. The optical channel or waveguide has a near-field transducer at the disk-facing surface of the slider where the near-field radiation exits and reflected radiation returns. The reflected optical power varies depending on whether the near-field transducer couples to an island or a space, so the radiation detector output signal represents the frequency and phase of the islands as the disk rotates. The write clock that controls write pulses to the write head is responsive to the radiation detector output signal, so the frequency and phase of the write clock signal can be matched to the frequency and phase of the islands as the disk rotates.
    • 图形媒体磁记录磁盘驱动器使用光学系统来准确地计时写入数据。 磁盘具有图案化成离散的可磁化数据岛之间的同心数据轨道,岛之间具有非磁性空间。 当盘旋转时,辐射源将近场辐射引导到岛和空间,并且辐射检测器接收反射的辐射。 辐射从源通过支撑读写头的含气滑块上的光通道或波导引导。 光通道或波导在滑块的面向盘的表面处具有近场换能器,其中近场辐射离开并且反射辐射返回。 反射的光功率取决于近场换能器耦合到岛还是空间,因此辐射检测器输出信号表示盘旋转时岛的频率和相位。 将写入脉冲控制到写入头的写入时钟响应于辐射检测器输出信号,因此当时间盘旋转时,写时钟信号的频率和相位可以与岛的频率和相位匹配。
    • 2. 发明授权
    • Method for making a master mold with high bit-aspect-ratio for nanoimprinting patterned magnetic recording disks, master mold made by the method, and disk imprinted by the master mold
    • 用于制造具有高比特宽比的用于纳米压印图案化磁记录盘的母模的方法,通过该方法制造的母模和由母模印制的盘
    • US08003236B2
    • 2011-08-23
    • US12141060
    • 2008-06-17
    • Thomas R. AlbrechtBarry Cushing StipeHenry Hung Yang
    • Thomas R. AlbrechtBarry Cushing StipeHenry Hung Yang
    • G11B5/64
    • G11B5/855
    • A method for making a master mold to be used for nanoimprinting patterned-media magnetic recording disks results in a master mold having topographic pillars arranged in a pattern of annular bands of concentric rings. The ratio of circumferential density of the pillars to the radial density of the concentric rings in a band is greater than 1. The method uses sidewall lithography to first form a pattern of generally radially-directed pairs of parallel lines on the master mold substrate, with the lines being grouped into annular zones or bands. The sidewall lithography process can be repeated, resulting in a doubling of the number of lines each time the process is repeated. Conventional lithography is used to form concentric rings over the radially-directed pairs of parallel lines. After etching and resist removal, the master mold has pillars arranged in circular rings, with the rings grouped into annular bands. The master mold may be used to nanoimprint the disks, resulting in disks having a BAR greater than 1, wherein BAR is the ratio of data track spacing in the radial direction to the data island spacing in the circumferential direction.
    • 用于制造用于纳米压印图案化介质磁记录盘的母模的方法导致具有布置成同心环的环形带图案的形状柱的母模。 柱的圆周密度与带中同心环的径向密度的比率大于1.该方法使用侧壁光刻法首先在母模基底上形成大致径向定向的平行线对图案,其中, 线路被分组成环形区域或带。 可以重复侧壁光刻处理,导致每次重复该过程的行数加倍。 常规光刻用于在径向对平行线上形成同心环。 在蚀刻和抗蚀剂去除之后,主模具有布置成圆形环的柱,其中环被分组成环形带。 主模可以用于纳米压印盘,导致具有大于1的BAR的盘,其中BAR是径向方向上的数据轨道间隔与圆周方向上的数据岛间隔的比率。
    • 3. 发明申请
    • METHOD FOR MAKING A MASTER MOLD WITH HIGH BIT-ASPECT-RATIO FOR NANOIMPRINTING PATTERNED MAGNETIC RECORDING DISKS, MASTER MOLD MADE BY THE METHOD, AND DISK IMPRINTED BY THE MASTER MOLD
    • 用于制造具有高比特率比例的主模具用于纳米图案磁记录盘的方法,通过该方法制造的主模具和主模具所示的盘
    • US20090310256A1
    • 2009-12-17
    • US12141060
    • 2008-06-17
    • Thomas R. AlbrechtBarry Cushing StipeHenry Hung Yang
    • Thomas R. AlbrechtBarry Cushing StipeHenry Hung Yang
    • G11B5/82B44C1/22B28B1/00
    • G11B5/855
    • A method for making a master mold to be used for nanoimprinting patterned-media magnetic recording disks results in a master mold having topographic pillars arranged in a pattern of annular bands of concentric rings. The ratio of circumferential density of the pillars to the radial density of the concentric rings in a band is greater than 1. The method uses sidewall lithography to first form a pattern of generally radially-directed pairs of parallel lines on the master mold substrate, with the lines being grouped into annular zones or bands. The sidewall lithography process can be repeated, resulting in a doubling of the number of lines each time the process is repeated. Conventional lithography is used to form concentric rings over the radially-directed pairs of parallel lines. After etching and resist removal, the master mold has pillars arranged in circular rings, with the rings grouped into annular bands. The master mold may be used to nanoimprint the disks, resulting in disks having a BAR greater than 1, wherein BAR is the ratio of data track spacing in the radial direction to the data island spacing in the circumferential direction.
    • 用于制造用于纳米压印图案化介质磁记录盘的母模的方法导致具有布置成同心环的环形带图案的形状柱的母模。 柱的圆周密度与带中同心环的径向密度的比率大于1.该方法使用侧壁光刻法首先在母模基底上形成大致径向定向的平行线对的图案,其中, 线路被分组成环形区域或带。 可以重复侧壁光刻处理,导致每次重复该过程的行数加倍。 常规光刻用于在径向对平行线上形成同心环。 在蚀刻和抗蚀剂去除之后,主模具有布置成圆形环的柱,其中环被分组成环形带。 主模可以用于纳米压印盘,导致具有大于1的BAR的盘,其中BAR是径向方向上的数据轨道间隔与圆周方向上的数据岛间隔的比率。
    • 5. 发明申请
    • PATTERNED MEDIA MAGNETIC RECORDING DISK DRIVE WITH WRITE CLOCK PHASE ADJUSTMENT FOR WRITE HEAD TRACK MISREGISTRATION
    • 图形磁记录磁盘驱动器,用于写入头部跟踪误差的写时钟相位调整
    • US20100309576A1
    • 2010-12-09
    • US12477765
    • 2009-06-03
    • Thomas R. AlbrechtManfred Ernst Schabes
    • Thomas R. AlbrechtManfred Ernst Schabes
    • G11B21/02
    • G11B5/59627B82Y10/00G11B5/743
    • A patterned-media magnetic recording disk drive has compensation for write head track misregistration (TMR) from the track centerline. As the disk rotates, the read head detects angularly spaced servo sectors and generates a position error signal (PES) which is used by the servo control system to maintain the read head on track. As the disk rotates, the read head also detects angularly spaced synchronization marks, which are used to control the write clock so that magnetization reversal of the magnetic write field from the write head is synchronized with the position of the data islands. If there is TMR of the write head, there will be an effective shift of A(p in the timing of when the center of the data islands pass through the write field. The disk drive includes write clock phase adjustment circuitry that correlates the PES with Δφ to compensate for TMR of the write head.
    • 图案介质磁记录磁盘驱动器对从轨道中心线的写入磁头轨迹重合失调(TMR)进行补偿。 当磁盘旋转时,读取头检测角度间隔的伺服扇区,并产生位置误差信号(PES),伺服控制系统使用该位置误差信号来维持读取头的轨迹。 当盘旋转时,读取头还检测角度间隔的同步标记,其用于控制​​写入时钟,使得写入磁头的磁性写入磁场的磁化反转与数据岛的位置同步。 如果存在写入头的TMR,那么在数据岛的中心经过写入场的时刻,A(p)的有效移位就是写入时钟相位调整电路,它将PES与 &Dgr;&phgr;补偿写入头的TMR。
    • 10. 发明授权
    • Shingled recording systems using multiple pass write, single pass read architecture
    • 嵌入式录音系统采用多通写,单通读结构
    • US08786969B2
    • 2014-07-22
    • US13251031
    • 2011-09-30
    • Prakash KasirajThomas R. Albrecht
    • Prakash KasirajThomas R. Albrecht
    • G11B20/10
    • G11B5/012G11B5/746
    • In one embodiment, a magnetic data storage system includes a bit patterned magnetic medium, wherein centers of bits in adjacent data tracks do not lie on a common line in a cross-track direction, a magnetic head having a writer element having a width greater than a width of a data track in a track width direction adapted for writing data successively to at least two adjacent data tracks of the magnetic medium, and a reader element having a width larger than the width of a data track in the track width direction adapted for reading data concurrently from the at least two adjacent data tracks of the magnetic medium in a single pass, a drive mechanism for passing the magnetic medium over the magnetic head, and a controller electrically coupled to the magnetic head for controlling operation of the magnetic head.
    • 在一个实施例中,磁数据存储系统包括位图形磁介质,其中相邻数据磁道中的位中心不位于交叉磁道方向上的公共线上,磁头具有写入器元件,宽度大于 适于将数据连续地写入磁介质的至少两个相邻数据轨道的轨道宽度方向上的数据轨道的宽度,以及宽度大于轨道宽度方向上的数据轨道的宽度的读取器元件, 在单次通过中从磁介质的至少两个相邻数据轨道同时读取数据,用于使磁介质通过磁头的驱动机构,以及电耦合到磁头的控制器,用于控制磁头的操作。