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    • 83. 发明授权
    • Time-of-flight mass spectrometer
    • 飞行时间质谱仪
    • US08664592B2
    • 2014-03-04
    • US13821202
    • 2011-09-06
    • Masaru NishiguchiShinji MiyauchiYoshihiro Ueno
    • Masaru NishiguchiShinji MiyauchiYoshihiro Ueno
    • H01J49/00H01J49/06G01N27/62
    • H01J49/405
    • Provided is a time-of-flight mass spectrometer having a reflectron which eliminates energy dependency of the flight time of ions having the same m/z while ensuring a high degree of design freedom. An electric field created by the reflectron is virtually divided into a decelerating region for decelerating ions and a reflecting region for reflecting ions. For an ion having a mass-to-charge ratio which has departed with initial energy higher than Ud, the total flight time required for the ion to travel through a free-flight region and the decelerating region into the reflecting region and return will be equal to the total flight time required for an ion of the same mass-to-charge ratio to make a round trip in which the ion turns around at a point of the reference potential value at the boundary between the decelerating region and the reflecting region or in the decelerating region.
    • 提供了具有反射器的飞行时间质谱仪,其消除具有相同m / z的离子的飞行时间的能量依赖性,同时确保高度的设计自由度。 由反射镜产生的电场实际上被分成用于使离子减速的减速区域和用于反射离子的反射区域。 对于具有高于Ud的初始能量已经离开的质荷比的离子,离子通过自由飞行区域和减速区域进入反射区域并返回所需的总飞行时间将相等 到相同质荷比的离子所需的总飞行时间进行往返,其中离子在减速区域和反射区域之间的边界处的参考电位值的点处转动,或者在 减速区域。
    • 87. 发明申请
    • MASS SPECTROMETER
    • 质谱仪
    • US20100116979A1
    • 2010-05-13
    • US12594450
    • 2008-01-17
    • Masaru NishiguchiYoshihiro UenoDaisuke OkumuraHiroto Itoi
    • Masaru NishiguchiYoshihiro UenoDaisuke OkumuraHiroto Itoi
    • H01J49/00
    • H01J49/063H01J49/004H01J49/065H01J49/4235
    • One virtual rod electrode is composed by a plurality of electrode plain plates arranged in the ion optical axis direction, and four virtual rod electrodes are arranged around the ion optical axis to form a virtual quadrupole rod type ion transport optical system (30). In one virtual rod electrode, the interval between the adjacent electrode plain plates is set to be large in the anterior area (30A) and small in the posterior area (30B). As the interval between electrodes becomes larger, high-order multipole field components increase and therefore the ion acceptance is increased, which enables an efficient acceptance of ions coming from the previous stage. On the other hand, if the interval between electrodes is small, the quadrupole field components relatively increase and the ion beam's convergence is improved. Therefore, ions can be effectively introduced into a quadrupole mass filter for example in the subsequent stage, which contributes to the enhancement of the mass analysis' sensitivity and accuracy.
    • 一个虚拟棒状电极由离子光轴方向排列的多个电极平板构成,四根虚拟棒状电极配置在离子光轴的周围,形成虚拟四极杆型离子传输光学系统(30)。 在一个虚拟棒状电极中,相邻的电极平板之间的间隔在前部区域(30A)中设定得较大,后部区域(30B)较小。 随着电极之间的间隔变大,高阶多极场分量增加,因此离子接受度增加,这使得能够有效地接受来自前一阶段的离子。 另一方面,如果电极之间的间隔小,则四极场成分相对增加,离子束的会聚也提高。 因此,离子可以有效地引入四极质量过滤器中,例如在后续阶段,这有助于提高质量分析的灵敏度和精度。
    • 88. 发明授权
    • Head support device and disk device having the same
    • 头支撑装置和具有相同的盘装置
    • US07652851B2
    • 2010-01-26
    • US10590864
    • 2005-12-09
    • Hideyuki HashiYoshihiro UenoMakoto Miyamoto
    • Hideyuki HashiYoshihiro UenoMakoto Miyamoto
    • G11B5/55
    • G11B5/5569G11B5/4833
    • A head support device of self-balancing type and a disk drive are disclosed. The head support device reduces manufacturing variation in a load and the number of components, and has stability and reliability, while being inexpensive. In this head support device, a flange and a nut cramp, via a collar, a head support arm having a reinforcing plate fixed thereto. The head support arm is supported rotatably about a line provided between contact points at which pivots contact the flange and in a direction perpendicular to a recording medium. A spring as an elastic member provides an urging force toward the recording medium, and is provided unitarily with the head support arm. Bent portions are provided on both sides of the arm composing the head support arm to a tab.
    • 公开了一种自平衡型头盘支撑装置和磁盘驱动器。 头部支撑装置降低了负载的制造变化和部件的数量,并且具有稳定性和可靠性,同时价格便宜。 在该头部支撑装置中,通过套环,具有固定在其上的加强板的头部支撑臂的凸缘和螺母抽筋。 头部支撑臂围绕设置在枢转接触凸缘的接触点之间并且在垂直于记录介质的方向上的线路可旋转地支撑。 作为弹性构件的弹簧向记录介质提供推力,并且与头部支撑臂一体地设置。 弯曲部分设置在构成头部支撑臂的臂的两侧到突出部。
    • 89. 发明申请
    • Head Holding Member, Disk Device With the Head Holding Member,
And Head Holding Method In The Disk Device
    • 主管会员,磁盘设备总监,
    • US20080247090A1
    • 2008-10-09
    • US10575456
    • 2005-06-21
    • Yoshihiro UenoMakoto Umeda
    • Yoshihiro UenoMakoto Umeda
    • G11B5/48
    • G11B21/22G11B5/4826G11B5/4833G11B21/12
    • The present invention provides a head holding member and a head holding method of a head actuator having a very high impact resisting property by a simple construction, and a disk device using the head holding member and the head holding method. Concretely, a head support arm has a leaf spring portion for pressing the head support arm against a lamp portion (14), and is constructed so as to be rotated around a line perpendicular to a plane formed by a center line of the longitudinal direction of the head support arm and the axis of a rotating shaft. The head holding member is constructed by forming a load side wall face (14d), a tab portion upper wall face (14g) and a tab portion holding plane (14e) in the lamp portion (14). The load side wall face (14d) prevents tab portion (8a) from being moved from an escaping position to the direction of recording medium (4) and tab portion (8a) abuts on load side wall face (14d). Tab portion upper wall face (14g) prevents tab portion (8a) from being moved in the upward direction. Tab portion holding plane (14e) holds tab portion (8a) in the escaping position. Thus, the head holding member resists an impact applied at a stopping time, and a stable operation can be performed at a power turning-on time.
    • 本发明提供一种通过简单的结构具有非常高的耐冲击性的头致动器的头保持构件和头保持方法,以及使用头保持构件和头保持方法的盘装置。 具体而言,头部支撑臂具有用于将头部支撑臂压靠在灯具部分(14)上的片簧部分,并且被构造成围绕垂直于由纵向方向的中心线形成的平面的线旋转 头部支撑臂和旋转轴的轴线。 头部保持构件通过在灯部分(14)中形成负载侧壁面(14d),突出部分上壁面(14g)和突出部保持面(14e)而构成。 负载侧壁面(14d)防止突片部分(8a)从逸出位置移动到记录介质(4)的方向,并且突片部分(8a)抵靠负载侧壁面(14d)。 突片部分上壁面(14g)防止舌片部分(8a)沿向上的方向移动。 突片部分保持平面(14e)将突出部分(8a)保持在逃逸位置。 因此,头部保持构件抵抗在停止时间施加的冲击,并且可以在通电时进行稳定的操作。
    • 90. 发明申请
    • Head Slider, Head Support Unit and Disk Drive Apparatus
    • 头滑块,头支撑单元和磁盘驱动装置
    • US20080239573A1
    • 2008-10-02
    • US10594173
    • 2006-01-23
    • Zhisheng DengYoshihiro Ueno
    • Zhisheng DengYoshihiro Ueno
    • G11B5/60
    • G11B5/6005G11B5/6082
    • A head slider which has a head part and which performs at least one of recording and reproducing by the head part in a state in which the head slider floats over a recording medium, which including: a first air bearing part which is disposed on an air inflow end side on a base surface; a second air bearing part which is disposed on an air outflow end side more than the first air bearing part on the base surface and which has the head part and has an area smaller than that of the first air bearing part; a pair of positive pressure generating parts which is disposed on both sides of a center axis of the head slider in the longitudinal direction closer to the air outflow end side than a step part formed of the first air bearing part and the base surface on the air inflow end side; a side rail parts which are disposed between the first air bearing part and one positive pressure generating part of the pair of positive pressure generating parts, and between the first air bearing part and the other positive pressure generating part of the pair of positive pressure generating parts; and an outside side rail parts which are disposed outside the pair of positive pressure generating parts with respect to the center axis of the head slider in the longitudinal direction.
    • 一种头部滑块,其具有头部,并且在头部滑块浮动在记录介质上的状态下执行头部的记录和再现中的至少一个,其包括:设置在空气上的第一空气轴承部 流入端侧在基面上; 第二空气轴承部,其设置在比所述基面上的所述第一空气轴承部更多的空气流出端侧,并且具有头部,并且具有比所述第一空气轴承部的面积小的面积; 一对正压产生部件,其设置在比第一空气轴承部分形成的阶梯部分和空气基底表面上更靠近空气流出端侧的头滑块的中心轴线的两侧 流入端 设置在一对正压生成部的第一空气轴承部和一个正压生成部之间以及一对正压生成部的第一空气轴承部与另一个正压生成部之间的侧轨部 ; 以及相对于头部滑动器的纵向方向的中心轴线设置在一对正压力产生部分的外侧的外侧轨道部分。