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    • 6. 发明授权
    • Optimized lighting method for slider serial reading using class variance
    • 使用类方差的滑块串行读取的优化照明方法
    • US07574046B2
    • 2009-08-11
    • US11303784
    • 2005-12-15
    • Yohtaroh IchimuraShinichi IwasaTakayuki ErikawaYukihiro Nakamura
    • Yohtaroh IchimuraShinichi IwasaTakayuki ErikawaYukihiro Nakamura
    • G06K9/00
    • G06K9/2036
    • Embodiments of the invention provide a method for setting a light source parameter in order to recognize an identification mark on an object surface. In one embodiment, a grayscale image is generated by setting the light volume of the light source to a given value. Plural thresholds each for binarizing the grayscale image in density are set. The inter-class variance values to be produced respectively according to the thresholds are calculated and the largest inter-class variance value is selected as the peak inter-class variance value from the inter-class variance values calculated. The light volume is changed to a plurality of different values. Peak inter-class variance values are obtained respectively for the values and the largest peak inter-class variance value is selected as the maximum inter-class variance value from the peak inter-class variance values obtained. The object surface is irradiated by the light source whose light volume is set to a value which would give the maximum inter-class variance value.
    • 本发明的实施例提供了一种用于设置光源参数以便识别物体表面上的识别标记的方法。 在一个实施例中,通过将光源的光量设置为给定值来生成灰度图像。 设置用于将灰度图像二值化为密度的多个阈值。 计算根据阈值分别产生的类间方差值,并且从所计算的类间方差值中选择最大类间方差值作为峰值类间方差值。 光量变为多个不同的值。 针对这些值分别获得峰值类间方差值,并且从获得的峰值类间方差值中选择最大峰值类间方差值作为最大类间方差值。 物体表面被光源照射,其光量被设定为将给出最大类间方差值的值。
    • 7. 发明申请
    • Magnetic head assembly and magnetic disk drive
    • 磁头组件和磁盘驱动器
    • US20070263323A1
    • 2007-11-15
    • US11804035
    • 2007-05-15
    • Yoshio UematsuKenjirou WatanabeTatsumi TsuchiyaYukihiro Nakamura
    • Yoshio UematsuKenjirou WatanabeTatsumi TsuchiyaYukihiro Nakamura
    • G11B5/60
    • G11B5/4826G11B5/6011
    • Embodiments in accordance with the present invention provide a magnetic head assembly in which a slider can be removed with deformation of a suspension suppressed and the posture angle of a magnetic head can be maintained stably, and a magnetic disk drive mounted with the magnetic head assembly. A head gimbal assembly (HGA) according to an embodiment includes a suspension, a magnetic head slider provided with a magnetic head element section, and gimbal retaining the slider and connected to the suspension. The gimbal includes a spacer formed around a conductive adhesive application area. A nonconductive adhesive application area having a planar dimension not larger than that of the conductive adhesive application area is formed outside the slider. The gimbal and the slider are brought into conduction through a conductive adhesive applied to the conductive adhesive application area and are adhered to each other with a nonconductive adhesive applied to the nonconductive adhesive application area.
    • 根据本发明的实施例提供了一种磁头组件,其中可以通过抑制悬架的变形来移除滑块,并且可以稳定地保持磁头的姿态角度,以及安装有磁头组件的磁盘驱动器。 根据实施例的头万向架组件(HGA)包括悬架,设置有磁头元件部分的磁头滑动器和保持滑块并连接到悬架的万向节。 万向节包括在导电粘合剂施加区域周围形成的间隔物。 具有不大于导电粘合剂施加区域的平面尺寸的非导电粘合剂施加区域形成在滑块外部。 万向架和滑块通过施加到导电粘合剂施加区域上的导电粘合剂导通,并且用施加到非导电粘合剂施加区域的非导电粘合剂彼此粘合。
    • 10. 发明授权
    • Acoustic signal transmission method and apparatus with insertion signal
    • 具有插入信号的声信号传输方法及装置
    • US07657435B2
    • 2010-02-02
    • US11200288
    • 2005-08-08
    • Satoshi IwakiAkira NakayamaTamotsu MachinoIkuo KitagishiYukihiro Nakamura
    • Satoshi IwakiAkira NakayamaTamotsu MachinoIkuo KitagishiYukihiro Nakamura
    • G10L13/00G01C21/00
    • G01C21/3629G10L19/018H04H20/31H04H20/34H04H20/93H04H2201/50
    • The acoustic signal transmission method is based on generating a synthesized sound electrical signal by electrically synthesizing an audible sound signal and another signal different than the audible sound signal at the sending side, and transmitting the synthesized sound electrical signal, and extracting the another signal different than the audible sound signal from the synthesized sound electrical signal at the receiving side. Here, generation of the synthesized sound electrical signal is made by using a data hiding technique, for example. Accordingly, the acoustic signal represented by the synthesized sound electrical signal can be heard by human ears in the same way as the audible sound signal, and the synthesized another signal cannot be detected by human ears. Here, the synthesized sound electrical signal can be transmitted as a sound wave in air space, as electrical signal through a transmission line or as radio signals such as infrared and electromagnetic waves.
    • 声信号发送方法是基于通过电话合成可听声音信号和与发送侧的可听声音信号不同的另一信号来生成合成声音电信号,并且发送合成声音电信号,并提取不同于 来自接收侧的合成声音电信号的声音信号。 这里,例如通过使用数据隐藏技术来生成合成声音电信号。 因此,由合成声音信号表示的声音信号可以以与可听见的声音信号相同的方式被人耳听到,并且合成的另一信号不能被人耳探测。 这里,合成的声音电信号可以作为空气中的声波作为电信号通过传输线传输,也可以作为无线电信号如红外线和电磁波传输。