会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • USING INDUCTANCE TO MEASURE WRITER SPACING IN PERPENDICULAR MAGNETIC RECORDING
    • 使用电感测量平均磁记录中的写入间距
    • US20080316630A1
    • 2008-12-25
    • US11765650
    • 2007-06-20
    • Bernd LambertsVladimir NikitinJames Terrence Olson
    • Bernd LambertsVladimir NikitinJames Terrence Olson
    • G11B27/36G11B5/17G11B5/33
    • G11B5/1278G11B5/3133G11B5/6064G11B5/607
    • A magnetic data recording system that can directly measure soft underlayer spacing of a perpendicular magnetic write head during operation. The soft underlayer spacing of the magnetic write head can be determined by measuring the magnetic inductance of the write head. The inductance of the write head varies with changes in the distance between the write pole and the soft underlayer of the magnetic medium. By connecting the write head with magnetic inductance measuring circuitry, the soft underlayer spacing can be constantly monitored during operation of the magnetic data recording system. The system can also include active fly height control such as a thermal fly height control capability. By directly measuring the soft underlayer spacing in real time during use of the data recording system, the actively fly height controlling features can be operated efficiently to precisely maintain a desired spacing between the write pole and the soft underlayer of the magnetic medium.
    • 一种磁性数据记录系统,可在操作过程中直接测量垂直磁性写入头的软底层间距。 可以通过测量写头的磁感来确定磁写头的软底层间距。 写头的电感随磁介质的写极和软底层之间的距离变化而变化。 通过将写入头与磁感测量电路连接起来,可以在磁数据记录系统的操作期间不间断地监视软底层间距。 该系统还可以包括主动飞行高度控制,例如热飞行高度控制能力。 通过在使用数据记录系统期间实时地直接测量软底层间距,可以有效地操作主动飞行高度控制特征,以精确地保持磁性介质的写极和软底层之间的期望间隔。
    • 3. 发明申请
    • CURRENT-PERPENDICULAR-TO-THE-PLANE (CPP) MAGNETORESISTIVE READ HEAD WITH MULTIPLE SENSING ELEMENTS FOR PATTERNED-MEDIA
    • 具有多种传感元件的电流 - 平面(CPP)磁性读取头
    • US20110069413A1
    • 2011-03-24
    • US12565721
    • 2009-09-23
    • Stefan MaatJames Terrence OlsonHal J. Rosen
    • Stefan MaatJames Terrence OlsonHal J. Rosen
    • G11B5/33G11B5/60
    • G11B5/746B82Y10/00G11B5/02G11B5/3948G11B5/3977G11B5/4886G11B5/743G11B2005/0005
    • A magnetoresistive (MR) sensor or read head for a magnetic recording disk drive has multiple independent current-perpendicular-to-the-plane (CPP) MR sensing elements. The sensing elements are spaced-apart in the cross-track direction and separated by an insulating separation region so as to be capable of reading data from multiple data tracks on the disk. The sensing elements have independent CPP sense currents, each of which is directed to independent data detection electronics, respectively. Each sensing element comprises a stack of layers formed on a common electrically conducting base layer, which may be a bottom magnetic shield layer formed of electrically conducting magnetically permeable material. Each sensing element has a top electrical lead layer. A top magnetic shield layer is located above the sensing elements in contact with the top lead layers. The top shield layer is formed of soft magnetically permeable material, but is electrically insulating, so that the independent sense currents can be passed to the independent sensing elements.
    • 用于磁记录磁盘驱动器的磁阻(MR)传感器或读头具有多个独立的电流垂直于平面(CPP)MR感测元件。 感测元件在交叉轨道方向上间隔开并且被绝缘分离区分开,以便能够从盘上的多个数据轨道读取数据。 感测元件具有独立的CPP感测电流,每个电流分别被引导到独立的数据检测电子器件。 每个感测元件包括形成在公共导电基底层上的一叠层,其可以是由导电的导磁材料形成的底部磁屏蔽层。 每个感测元件具有顶部电引线层。 顶部磁屏蔽层位于与顶部引线层接触的感测元件上方。 顶部屏蔽层由软磁导电材料形成,但是是电绝缘的,使得独立的感测电流可以传递到独立的感测元件。
    • 7. 发明授权
    • Perpendicular magnetic recording system with medium having thin soft underlayer and recording head having thick-throat trailing shield
    • 垂直磁记录系统,介质具有薄的软底层和记录头,具有厚喉后挡板
    • US07532432B2
    • 2009-05-12
    • US11379858
    • 2006-04-24
    • Yoshihiro IkedaByron Hassberg Lengsfield, IIIJames Terrence OlsonPetrus Antonius VanDerHeijden
    • Yoshihiro IkedaByron Hassberg Lengsfield, IIIJames Terrence OlsonPetrus Antonius VanDerHeijden
    • G11B5/127G11B5/23
    • G11B5/3116G11B5/11G11B5/1278G11B5/3146G11B5/667
    • A perpendicular magnetic recording data storage system combines a perpendicular medium that has a thin low-magnetic-permeability or “soft” underlayer (SUL) with a recording head that has a trailing shield (TS) with a thick throat height, i.e., a thickness in a direction orthogonal to the recording layer of the medium. The SUL is thin enough and has a low enough magnetic permeability to become saturated in a region beneath the trailing gap of the head during writing, but the throat height of the TS is thick enough to prevent the TS from becoming magnetically saturated during writing. The magnetic saturation of the SUL during writing changes the magnetic reluctance such that more of the magnetic flux going through the SUL changes direction (“field undershoot”) and goes to the TS. If the permeability of the SUL is so low (e.g., close to unity) that the SUL does not magnetically saturate, field undershoot may still occur because the reluctance from the SUL to the TS is still smaller than the reluctance from the SUL to the return pole (RP). Field undershoot enables a high write field gradient, which results in narrower magnetic transitions.
    • 垂直磁记录数据存储系统将具有薄的低磁导率或“软”底层(SUL)的垂直介质与具有厚的喉部高度的后挡板(TS)的记录头组合,即厚度 在与介质的记录层正交的方向上。 SUL足够薄并且在写入期间具有足够低的磁导率以在头部的拖尾间隙下方的区域饱和,但是TS的喉部高度足够厚以防止TS在写入期间变得磁饱和。 在写入期间SUL的磁饱和度改变磁阻,使得穿过SUL的更多的磁通量改变方向(“场下冲”)并且进入TS。 如果SUL的磁导率如此低(例如,接近于1),SUL不会磁饱和,则由于从SUL到TS的磁阻仍然小于从SUL到返回的磁阻,所以仍然可能发生场下冲 杆(RP)。 场下冲可实现高写磁场梯度,从而导致较小的磁转变。