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    • 3. 发明授权
    • Flying magnetic head slider
    • 飞磁头滑块
    • US5768053A
    • 1998-06-16
    • US686099
    • 1996-07-24
    • Noboru YamanakaMasashi Shiraishi
    • Noboru YamanakaMasashi Shiraishi
    • G11B5/60G11B21/21
    • G11B5/6005
    • A flying magnetic head slider with leading and trailing edges and side edges includes a plurality of rails extending along the side edges from the leading edge to the trailing edge. At least one of the rails includes a first narrow portion with a narrower rail width, located at a position near the leading edge, at least one second narrow portion with a partially narrower rail width, located at a position apart from the leading edge by a distance with a ratio of 0.6 to 0.9 to a whole longitudinal length of the slider, and a widening portion located between the at least one second narrow portion and the trailing edge, partially having a rail width increasing from the narrower rail width of the second narrow portion.
    • 具有前缘和后缘和侧边缘的飞行磁头滑块包括沿着从前缘到后缘的侧边缘延伸的多个轨道。 轨道中的至少一个包括具有较窄轨道宽度的第一窄部分,位于靠近前缘的位置处,具有部分较窄的轨道宽度的至少一个第二窄部分位于与前缘相距一个位置 与滑块的整个纵向长度的比率为0.6至0.9的距离,以及位于至少一个第二窄部分和后缘之间的加宽部分,其部分地具有从第二狭窄部分的较窄轨道宽度增加的轨道宽度 一部分。
    • 5. 发明授权
    • Electronic device and method for producing the same
    • 电子装置及其制造方法
    • US07790539B2
    • 2010-09-07
    • US12274977
    • 2008-11-20
    • Ryuichiro MaruyamaMasafumi AtaMasashi Shiraishi
    • Ryuichiro MaruyamaMasafumi AtaMasashi Shiraishi
    • H01L21/336
    • H01L51/0595B82Y10/00H01L51/0048H01L51/0508Y10S977/762Y10S977/936Y10S977/938Y10S977/949
    • A microelectronic device and a method for producing the device can overcome the disadvantages of known electronic devices composed of carbon molecules, and can deliver performance superior to the known devices. An insulated-gate field-effect transistor includes a multi-walled carbon nanotube (10) having an outer semiconductive carbon nanotube layer (1) and an inner metallic carbon nanotube layer (2) that is partially covered by the outer semiconductive carbon nanotube layer (1). A metal source electrode (3) and a metal drain electrode (5) are brought into contact with both ends of the semiconductive carbon nanotube layer (1) while a metal gate electrode (4) is brought into contact with the metallic carbon nanotube layer (2). The space between the semiconductive carbon nanotube layer (1) and the metallic carbon nanotube layer (2) is used as a gate insulating layer. Two layers including the outer semiconductive carbon nanotube layer (1) and the inner metallic carbon nanotube layer (2) are selected from carbon nanotube layers of a multi-walled carbon nanotube. These layers are processed into a form suitable for use as the multi-walled carbon nanotube (10).
    • 微电子器件及其制造方法可以克服由碳分子构成的已知电子器件的缺点,能够提供优于已知器件的性能。 绝缘栅场效应晶体管包括具有外半导体碳纳米管层(1)的多壁碳纳米管(10)和被外半导体碳纳米管层部分覆盖的内金属碳纳米管层(2) 1)。 金属源电极(3)和金属漏电极(5)与半导体碳纳米管层(1)的两端接触,同时金属栅电极(4)与金属碳纳米管层 2)。 将半导体碳纳米管层(1)与金属碳纳米管层(2)之间的间隔用作栅极绝缘层。 包含外半导体碳纳米管层(1)和内金属碳纳米管层(2)的两层选自多壁碳纳米管的碳纳米管层。 这些层被加工成适合用作多壁碳纳米管(10)的形式。
    • 6. 发明授权
    • Head gimbal assembly including first and second dimples, and disk drive unit including the same
    • 头万向架组件包括第一和第二凹坑,以及包括其的磁盘驱动器单元
    • US07684157B2
    • 2010-03-23
    • US11319580
    • 2005-12-29
    • MingGao YaoMasashi ShiraishiYiRu Xie
    • MingGao YaoMasashi ShiraishiYiRu Xie
    • G11B5/56
    • G11B5/4826
    • A HGA of the present invention includes a slider; a micro-actuator comprising two thin film PZT pieces to define a notch; a suspension to load the slider and the micro-actuator. The suspension comprises: a flexure having an actuator loading portion with a slot corresponding to the notch of the micro-actuator, and a slider-loading portion to partially hold the slider; and a load beam having a first dimple to support the flexure at a position thereof corresponding to a central area of the slider, and a second dimple extending through both the slot of the flexure and the notch defined by the micro-actuator and toward an leading edge end portion of the slider to form a gap between the slider and the second dimple. The invention also discloses a disk drive unit having the improved HGA.
    • 本发明的HGA包括滑块; 微致动器包括两个薄膜PZT片,以限定切口; 悬架装载滑块和微型致动器。 悬架包括:具有致动器加载部分的弯曲部,其具有与微致动器的凹口相对应的槽,以及滑块加载部分,以部分地保持滑块; 以及负载梁,其具有第一凹坑以在其对应于所述滑块的中心区域的位置处支撑所述挠曲;以及第二凹坑,其延伸穿过所述挠曲件的所述槽和由所述微致动器限定的所述凹口,并且朝向引导 滑块的边缘端部,以在滑块和第二凹坑之间形成间隙。 本发明还公开了一种具有改进的HGA的磁盘驱动器单元。
    • 9. 发明授权
    • Head gimbal assembly with particle filter device, and disk drive unit with the same
    • 头云台装配有颗粒过滤装置,与磁盘驱动装置相同
    • US07525763B2
    • 2009-04-28
    • US11190045
    • 2005-07-27
    • MingGao YaoMasashi Shiraishi
    • MingGao YaoMasashi Shiraishi
    • G11B5/60
    • G11B5/483G11B5/6082
    • A HGA includes a slider, a suspension to load the slider, and a particle filter device to fix in leading side of the slider. The particle filter device is made of power material or porous material. The HGA further comprise a micro-actuator to connect with the slider. Because the particle filter device is positioned on the leading edge of the slider that is a passage of the particles, so the particles generating from the components in the disk drive unit, such as the HGA will be catched by the particle filter device. Thus the particles will be prevented from flying on the disk and deposited on ABS of the slider, this will ensure the slider to read from/write to data information to the disk successfully and eliminate a possibility to damage the slider/the disk. A disk drive unit with such an HGA is also disclosed herein.
    • HGA包括滑块,用于装载滑块的悬架和用于固定在滑块的前侧的颗粒过滤装置。 颗粒过滤装置由动力材料或多孔材料制成。 HGA还包括与滑块连接的微致动器。 由于颗粒过滤装置位于作为颗粒通道的滑块的前缘上,因此由盘驱动单元中的诸如HGA的部件产生的颗粒将被颗粒过滤装置捕获。 因此,颗粒将被阻止在盘上飞行并沉积在滑块的ABS上,这将确保滑块成功读取/写入数据信息到磁盘,并消除损坏滑块/磁盘的可能性。 此处还公开了具有这种HGA的磁盘驱动器单元。