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    • 61. 发明申请
    • Head for perpendicular recording with a floating-trailing shield
    • 用垂直记录的头部,带有浮动后挡板
    • US20070146930A1
    • 2007-06-28
    • US11708958
    • 2007-02-20
    • Yimin HsuQuang LeMason Williams
    • Yimin HsuQuang LeMason Williams
    • G11B5/127G11B5/147G11B5/00
    • G11B5/315G11B5/1278G11B5/147G11B5/1871
    • Heads for perpendicular recording using a floating-trailing shield are described. The floating-trailing shield is separated from the main pole piece by a layer of non-magnetic material along its entire length and the air bearing surface of the floating-trailing shield is substantially larger than that of the main pole piece. The reluctance between the trailing shield and the underlayer in the recording medium is made so low that both are at the same magnetomotive force (or potential), so that no direct connection is needed between the floating-trailing shield and the yoke. When the head is used in a storage system with a magnetic recording medium with a soft underlayer, the floating-trailing shield is, in effect, magnetically shorted to the return pole piece during recording. In one embodiment the floating-trailing shield wraps around the sides of the main pole piece.
    • 描述使用浮动后挡板进行垂直记录的头部。 浮动后挡板沿着其整个长度由非磁性材料层与主极片分开,并且浮动后挡板的空气支承表面基本上大于主极片的空气支承表面。 记录介质中的后屏蔽和底层之间的磁阻被制作得很低以致两者都具有相同的磁动势(或电位),使得在浮动后挡板和轭之间不需要直接连接。 当头部用于具有软底层的磁记录介质的存储系统中时,浮动拖尾屏蔽件实际上在记录期间与返回极片磁性短路。 在一个实施例中,浮动后挡板围绕主极片的侧面包裹。
    • 63. 发明申请
    • Notched shield and pole structure with slanted wing for perpendicular recording
    • 具有垂直记录的倾斜翼的缺口盾和杆结构
    • US20060092565A1
    • 2006-05-04
    • US10976479
    • 2004-10-29
    • Kuok HoYimin HsuChing Tsang
    • Kuok HoYimin HsuChing Tsang
    • G11B5/147
    • G11B5/1278G11B5/3116G11B5/398
    • A magnetic structure for use in a magnetic head for avoiding stray field writing. The magnetic structure can be for example a magnetic shield or could be a magnetic pole of a write head and is particularly advantageous for use in a perpendicular recording system, because such perpendicular recording systems are especially susceptible to stray field writing. The magnetic structure includes a forward protruding portion that extends toward the air bearing surface (ABS) of the head also includes first and second wing portions that extend laterally from the forward protruding portion. The wing portions each have a front edge that is recessed from the ABS. The wings are tapered so that the amount of recess of the front edge of the wings increases with lateral distance from the center of the magnetic structure.
    • 用于磁头的磁结构,用于避免杂散场写入。 磁性结构可以是例如磁屏蔽或者可以是写入磁头的磁极,并且对于在垂直记录系统中使用是特别有利的,因为这样的垂直记录系统特别容易受到杂散磁场写入的影响。 磁性结构包括朝向头部的空气支承表面(ABS)延伸的向前突出部分还包括从前突出部分横向延伸的第一和第二翼部分。 翼部各自具有从ABS凹入的前边缘。 翅膀是锥形的,使得翼的前边缘的凹部的数量随着与磁性结构的中心的横向距离而增加。
    • 66. 发明授权
    • Laminated yoke head with a domain control element
    • 具有域控制元件的层叠轭头
    • US06259583B1
    • 2001-07-10
    • US09154527
    • 1998-09-16
    • Robert Edward Fontana, Jr.Yimin HsuPrakash KasirajMason Lamar Williams
    • Robert Edward Fontana, Jr.Yimin HsuPrakash KasirajMason Lamar Williams
    • G11B5147
    • G11B5/3153G11B5/3113G11B5/3156
    • The present invention is a magnetic head which has a preferably planar pole member having a yoke and a tip with a first planar pole P1 and a second planar pole P2 positioned above pole P1. The pole member is built up of two types of layers: a first type of layer with high magnetic permeability &mgr; and low anisotropy Hk, with the easy axis oriented substantially perpendicular to the flux propagation direction to ensure rapid response, and a second layer type which is non-magnetic. The magnetic head also has a domain control element whose magnetization in the vicinity of the pole tip P2 and in the absence of applied field is aligned along the length of the element so as to facilitate the conduction of flux between poles P1 and P2. The domain control element can be a non-laminated element made of a material with high saturation magnetization MS such as NiFe, Ni80Fe20, Ni45Fe55, NiFeCo, FeCo, CoZrNb, FeAlN and FeTaN and proper dimensioning of the element further increases the flux conduction efficiency.
    • 本发明是一种磁头,其具有优选的具有磁轭的平面磁极部件和具有位于磁极P1上方的第一平面磁极P1和第二平面磁极P2的末端。 极构件由两种类型的层构成:具有高磁导率μm和低各向异性H k的第一类型的层,易轴定向为基本上垂直于磁通传播方向,以确保快速响应,以及第二层类型 是非磁性的。 磁头还具有域控制元件,其磁极尖端P2附近的磁化和不存在施加磁场的磁化沿着元件的长度排列,以便于磁极P1和P2之间的磁通传导。 域控制元件可以是由诸如NiFe,Ni80Fe20,Ni45Fe55,NiFeCo,FeCo,CoZrNb,FeAlN和FeTaN的高饱和磁化MS的材料制成的非层叠元件,并且元件的适当尺寸进一步增加了通量传导效率。
    • 68. 发明授权
    • Write head design and method for reducing adjacent track interference at very narrow track widths
    • 用于在非常窄的轨道宽度上减少相邻轨道干扰的写头设计和方法
    • US08054586B2
    • 2011-11-08
    • US11286077
    • 2005-11-23
    • Hamid BalamaneYimin HsuAron PentekYi Zheng
    • Hamid BalamaneYimin HsuAron PentekYi Zheng
    • G11B5/33G11B5/127
    • G11B5/3163G11B5/112G11B5/1278G11B5/3116G11B5/3146G11B5/315Y10T29/49021
    • A perpendicular write head having a wrap around trailing shield for reducing stray field writing and adjacent track interference. A method for constructing such a write head allows for excellent control of side shield gap thickness and trailing shield gap thickness, and allows the ratio of side gap to trailing gap thicknesses to be maintained at about two to one as desired. The method includes depositing forming a write pole by constructing a mask which may include a bi-layer hard mask, and then ion milling to form the write pole. Once the write pole has been formed, a layer of alumina or some other non-magnetic material can be conformally deposited. A reactive ion mill (RIM) can be performed to open up the top of the write pole (remove the horizontally disposed portions of the alumina layer). Then, a second layer of alumina or some other non-magnetic material can be deposited, and the write pole can be plated. The thickness of the side shield gaps is defined by the sum of the final thicknesses of the first and second alumina layers, while the thickness of the first magnetic layer defines the thickness of the trailing shield gap.
    • 垂直写头,其具有围绕后屏蔽的卷绕,用于减少杂散场写入和相邻轨道干涉。 用于构造这样的写头的方法允许对侧屏蔽间隙厚度和后屏蔽间隙厚度的优良控制,并且允许侧间隙与后间隙厚度的比率根据需要保持在大约二对一。 该方法包括通过构成可包括双层硬掩模的掩模沉积形成写入极,然后进行离子铣削以形成写入极。 一旦形成了写极,就可以共形沉积一层氧化铝或其它非磁性材料。 可以执行反应离子磨(RIM)以打开写柱的顶部(去除氧化铝层的水平放置的部分)。 然后,可以沉积第二层氧化铝或一些其它非磁性材料,并且可以对写入极进行电镀。 侧屏蔽间隙的厚度由第一和第二氧化铝层的最终厚度之和限定,而第一磁性层的厚度限定了后屏蔽间隙的厚度。