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    • 1. 发明申请
    • WEAR GAUGE ARRAY FOR HEAD PROTECTIVE COATING
    • 磨损保护涂层阵列
    • US20100269565A1
    • 2010-10-28
    • US12431529
    • 2009-04-28
    • Robert Glenn BiskebornW. Stanley CzarneckiJason LiangCalvin Shyhjong Lo
    • Robert Glenn BiskebornW. Stanley CzarneckiJason LiangCalvin Shyhjong Lo
    • G01N3/56G11B5/33B05D5/12
    • G01N3/56G01N2203/0664G11B5/3106G11B5/40
    • In one embodiment, a system comprises a magnetic head, a protective coating on a media-facing side of the head, and an indentation in the protective coating having a dimension that, when the protective coating wears, is indicative of an amount of wear of the protective coating. A method, in another embodiment, comprises creating an indentation in a protective coating of a magnetic head, the indentation having a dimension that, when the protective coating wears, is indicative of an amount of wear of the protective coating. In another embodiment, a method comprises visually inspecting indentations in a protective coating of a magnetic head, wherein at least two of the indentations have differing dimensions that, when the protective coating wears, are indicative of the amount of wear of the protective coating. The method also includes estimating an amount of wear of the protective coating based on the visual inspection.
    • 在一个实施例中,系统包括磁头,位于头部面向介质侧的保护涂层,以及保护涂层中的凹陷,其尺寸使得当保护涂层磨损时,其表示磨损量 保护涂层。 在另一个实施方案中,一种方法包括在磁头的保护涂层中产生凹陷,所述凹陷具有当保护涂层磨损时指示保护涂层的磨损量的尺寸。 在另一个实施例中,一种方法包括目视检查磁头的保护涂层中的凹陷,其中至少两个凹槽具有不同的尺寸,当保护涂层磨损时,其表示保护涂层的磨损量。 该方法还包括基于目视检查估计保护涂层的磨损量。
    • 6. 发明授权
    • Wear gauge array for head protective coating
    • 用于头部保护涂层的磨损量规阵列
    • US08621910B2
    • 2014-01-07
    • US12431529
    • 2009-04-28
    • Robert Glenn BiskebornW. Stanley CzarneckiJason LiangCalvin Shyhjong Lo
    • Robert Glenn BiskebornW. Stanley CzarneckiJason LiangCalvin Shyhjong Lo
    • G01N3/56G01N19/02
    • G01N3/56G01N2203/0664G11B5/3106G11B5/40
    • In one embodiment, a system comprises a magnetic head, a protective coating on a media-facing side of the head, and an indentation in the protective coating having a dimension that, when the protective coating wears, is indicative of an amount of wear of the protective coating. A method, in another embodiment, comprises creating an indentation in a protective coating of a magnetic head, the indentation having a dimension that, when the protective coating wears, is indicative of an amount of wear of the protective coating. In another embodiment, a method comprises visually inspecting indentations in a protective coating of a magnetic head, wherein at least two of the indentations have differing dimensions that, when the protective coating wears, are indicative of the amount of wear of the protective coating. The method also includes estimating an amount of wear of the protective coating based on the visual inspection.
    • 在一个实施例中,系统包括磁头,位于头部面向介质侧的保护涂层,以及保护涂层中的凹陷,其尺寸使得当保护涂层磨损时,其表示磨损量 保护涂层。 在另一个实施方案中,一种方法包括在磁头的保护涂层中产生凹陷,所述凹陷具有当保护涂层磨损时指示保护涂层的磨损量的尺寸。 在另一个实施例中,一种方法包括目视检查磁头的保护涂层中的凹陷,其中至少两个凹槽具有不同的尺寸,当保护涂层磨损时,其表示保护涂层的磨损量。 该方法还包括基于目视检查估计保护涂层的磨损量。
    • 7. 发明授权
    • Method for reading data from a magnetic recordign tape
    • 从磁记录带读取数据的方法
    • US07724459B2
    • 2010-05-25
    • US12205452
    • 2008-09-05
    • W. Stanley CzarneckiIcko E. Iben
    • W. Stanley CzarneckiIcko E. Iben
    • G11B15/12G11B5/58
    • G11B5/00826G11B5/584
    • A method for reading data from a magnetic recording tape having multiple adjacent data tracks according to one embodiment includes simultaneously detecting signals from a plurality of read devices, at least some of the read devices being positioned over multiple data tracks while other of the adjacent read devices are positioned over single data tracks; determining which of the read devices is positioned over a single data track; and simultaneously reading data from the data tracks using only those read devices over the single data tracks. A method for reading and writing data to a magnetic recording tape according to another embodiment includes simultaneously writing data tracks to a magnetic medium; and simultaneously reading the data tracks on the magnetic medium using a plurality of adjacent read devices; wherein the number of the adjacent read devices is at least twice the number of the adjacent write devices.
    • 根据一个实施例的用于从具有多个相邻数据轨道的磁记录带读取数据的方法包括同时检测来自多个读取装置的信号,至少一些读取装置位于多个数据轨道上,而其他相邻读取装置 位于单个数据轨道上; 确定哪个读取设备位于单个数据轨道上; 并且同时从单个数据轨道上仅使用那些读取装置从数据轨道读取数据。 根据另一实施例的用于将数据读取和写入磁记录带的方法包括:将数据轨迹同时写入磁介质; 并使用多个相邻的读取装置同时读取磁性介质上的数据轨道; 其中相邻读取装置的数目至少是相邻写装置的数量的两倍。
    • 9. 发明授权
    • Patterned multi-track thin film heads for image area record/reproduce on
magnetics-on-film
    • 用于图像区域记录/复制的图形化多轨薄膜头
    • US5678086A
    • 1997-10-14
    • US681019
    • 1996-07-22
    • Kent Raphael GandolaWlodzimierz Stanley CzarneckiPeter VanderSalm Koeppe
    • Kent Raphael GandolaWlodzimierz Stanley CzarneckiPeter VanderSalm Koeppe
    • G03B17/24G11B5/31G11B5/48G11B15/62G11B5/147G11B5/187
    • G03B17/24G11B15/62G11B5/3163G11B5/4893
    • Magnetic recording and reproducing linear thin film head arrays particularly for use for recording and reading information on a magnetics-on-film (MOF) layer in the image area of photographic filmstrips and particularly a configuration and mounting of such heads to achieve high compliance with the relatively stiff filmstrip and MOF layer in cameras or other filmstrip handling apparatus without damaging the filmstrip. When constrained in the film transport path, the filmstrip assumes a convex cross film curvature on the MOF layer side approximated by a sixth order polynomial having even terms only. A base line for the deposition of thin film head layers of each head of the array on a linear substrate is approximated by the sixth order polynomial having even terms only. After deposition of the thin film layers, the linear head array is shaped to the cross film curvature, and the lapped head surfaces are aligned with the base line. Preferably, at least one electrical lapping guide is deposited on the substrate in relation to the linear array of magnetic head elements and the base line, wherein the head element layer height is controlled in the head fabrication processing by monitoring the electrical resistance of the electrical lapping guide during shaping of the convex curvature of the head surface.
    • 磁记录和再现线性薄膜磁头阵列,特别是用于记录和读取照相胶片图像区域中的胶卷(MOF)层上的信息,特别是这种磁头的配置和安装,以实现与 相机或其他幻灯片处理设备中相对较硬的胶片和MOF层,而不会损坏胶卷。 当胶片传送路径受到约束时,胶卷在MOF层侧呈现凸交叉膜曲率,近似于具有偶数项的六阶多项式。 用于在线性衬底上沉积阵列的每个头部的薄膜头层的基线由具有偶数项的六阶多项式近似。 在沉积薄膜层之后,直线头阵列被成形为十字膜曲率,并且重叠的头表面与基线对齐。 优选地,相对于磁头元件和基线的线性阵列,在衬底上沉积至少一个电研磨引导件,其中通过监测电研磨的电阻来控制头部元件层高度在头部制造处理中 在头表面的凸曲率成形期间引导。