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    • 31. 发明申请
    • LIGHT GUIDE PLATE AND LIQUID CRYSTAL DISPLAY DEVICE
    • 光导板和液晶显示装置
    • US20110222000A1
    • 2011-09-15
    • US13032720
    • 2011-02-23
    • Mamoru YabeYoshihiro Ueno
    • Mamoru YabeYoshihiro Ueno
    • G02F1/13357F21V7/22B23Q17/00
    • G02B6/0016G02B6/0018G02B6/0068G02B6/0073
    • A light guide plate has a light incident surface arranged facing a plurality of point light sources arrayed in a line, a light exit surface orthogonal to the light incident surface, and two side surfaces orthogonal to the light incident surface and the light exit surface. Light from the plurality of point light sources introduced from the light incident surface is diffused by a diffusion unit arranged on the light exit surface or a surface facing the light exit surface. The light diffused by the diffusion unit is exited from the light exit surface. A distance between a point light source positioned at an end of the plurality of point light sources and the light incident surface is different from a distance between a point light source not positioned at the end of the plurality of point light sources and the light incident surface.
    • 导光板具有面向配置成一行排列的多个点光源的光入射面,与该光入射面正交的光射出面以及与上述光入射面和上述光出射面正交的两个侧面。 来自从光入射面引入的多个点光源的光被布置在光出射表面或面向光出射表面的表面的扩散单元扩散。 由扩散单元扩散的光从光出射表面退出。 位于多个点光源的端部的点光源与光入射面之间的距离与不位于多个点光源的端部的点光源与光入射面的距离不同 。
    • 32. 发明授权
    • Charged-particle condensing device
    • 带电粒子的冷凝装置
    • US08013296B2
    • 2011-09-06
    • US12600741
    • 2007-05-21
    • Hermann WollnikYoshihiro Ueno
    • Hermann WollnikYoshihiro Ueno
    • H01J49/04H01J49/06
    • H01J49/067
    • Ions and charged droplets move from the nozzle (6) towards the orifice (22) of a charged-particle transport device or the desolvation pipe (7). This particle motion is governed by the distribution of the pseudo-potential along particle trajectories. There are RF-voltages applied to neighboring electrodes (241-246) of the electrode array (24) cause the charged particles to substantially hover above the electrode array (24). Right before the ions come to the electrode array (24) they thus experience a repelling force “F” perpendicular to the surface of the electrode array (24). This force “F” causes an effective barrier (B) right before the electrode array (24) and consequently a pseudo-potential well (A) where the charged particles stop their motion parallel to the plume axis (D). Thus they accumulate around the center line (C) of this well (A). Applying additionally to the RF-potentials also DC-potentials to neighboring electrodes within the electrode array (24) small DC-fields can be formed within the well area (23). These additional DC-fields drive the charged particles towards the axis of symmetry (C) and thus towards the orifice (22) of a charged-particle transport device or the desolvation pipe (7). Thus, many of the charged particles which would normally impinge on the wall (21) around the orifice (22) can now be analyzed.
    • 离子和带电液滴从喷嘴(6)移动到带电粒子输送装置或去溶剂化管(7)的孔口(22)。 该粒子运动由沿着粒子轨迹的伪电位的分布决定。 施加到电极阵列(24)的相邻电极(241-246)的RF电压使得带电粒子基本上悬浮在电极阵列(24)上方。 在离子进入电极阵列(24)之前,它们因此经历与电极阵列(24)的表面垂直的排斥力“F”。 该力“F”在电极阵列(24)之前产生有效屏障(B),并因此导致带电粒子停止其平行于羽流轴线(D)的运动的伪势阱(A)。 因此,它们在该井(A)的中心线(C)周围积聚。 另外施加RF电位也可以在电极阵列(24)内的相邻电极的DC电位,可以在阱区(23)内形成小的DC场。 这些附加的直流磁场将驱动带电粒子朝向对称轴线(C),从而驱动带电粒子输送装置或去溶剂化管道(7)的孔口(22)。 因此,现在可以分析许多通常会撞击孔(22)周围的壁(21)上的带电粒子。
    • 35. 发明授权
    • Time of flight mass spectrometer
    • 飞行时间质谱仪
    • US07482583B2
    • 2009-01-27
    • US11603159
    • 2006-11-22
    • Yoshihiro Ueno
    • Yoshihiro Ueno
    • B01D59/48
    • H01J49/30H01J49/408
    • In a time of flight mass spectrometer (TOFMS) having a flight space in which ions fly in a loop orbit formed by a plurality of electric sector fields, the present invention provides a simple structure that creates a spiral path by deflecting the ions in the axial direction of the electric fields at every turn of the ions. In a mode of the present invention, the TOFMS has cylindrical electrodes 11 and 12 for creating electric sector fields E1 and E2, between which a parallel pair of planer magnetic poles 15a and 15b are provided. The planer magnetic poles 15a and 15b create a deflecting magnetic field B1 for shifting the ions in the axial direction (Y-direction) of the electric sector fields. The ions experience a Lorenz force once every turn when they pass through the deflecting magnetic field B1. This construction uses only one pair of magnetic poles facing each other across the ion path P to deflect every ion irrespective of its number of turns. There is no need to provide one deflector for each turn of the ions, as in the case of conventional TOFMSs.
    • 在具有飞行空间的飞行时间质谱仪(TOFMS)中,离子飞行在由多个电扇区形成的环轨道中,本发明提供了一种简单的结构,其通过在轴向上偏转离子而产生螺旋路径 方向的电场每转一圈的离子。 在本发明的模式中,TOFMS具有用于产生电扇区E1和E2的圆柱形电极11和12,平行的一对平面磁极15a和15b之间形成有电扇区E1和E2。 平面磁极15a和15b产生偏转磁场B1,用于使离子在电扇区的轴向(Y方向)上移位。 当离子经过偏转磁场B1时,离子经历一次洛伦茨力。 这种结构仅使一对磁极彼此跨过离子路径P,以偏转每个离子而不考虑其匝数。 对于常规TOFMS的情况,不需要为每一圈的离子提供一个偏转器。
    • 36. 发明授权
    • Head drive device including head support mechanism having support arm rotatable relative to base arm via rotation support part, and disk apparatus including the head drive device
    • 头部驱动装置,包括头部支撑机构,其具有通过旋转支撑部分相对于基部臂可旋转的支撑臂,以及包括头部驱动装置的盘装置
    • US07265945B2
    • 2007-09-04
    • US10514889
    • 2003-06-10
    • Yoshihiro UenoHideki Kuwajima
    • Yoshihiro UenoHideki Kuwajima
    • G11B5/60G11B21/21
    • G11B5/4833
    • A head support mechanism of the invention comprises a head (1011) for recording on a disk or reproducing a disk, a head support member composed of this head (1011) and a support arm (2) having this head (1011) attached to one end portion thereof, a base arm (12) including a rotation support part (11) for supporting the head support member rotatably in a direction perpendicular to the surface of the disk, and an elastic member (4) of which one end portion is connected to other end portion of the support arm (2) and other end portion is connected to the base arm (12) for thrusting the head support member in the disk direction. Therefore, the support arm (2) can be formed of a member of high rigidity, and the slider (1) is prevented from colliding against the disk if an impact force acts from outside.
    • 本发明的头部支撑机构包括用于在盘上记录或再现盘的头部(1011),由该头部(1011)组成的头部支撑构件和具有附接到一个头部的头部(1011)的支撑臂(2) 一个基部臂(12),它包括一个旋转支撑部分(11),用于在与盘的表面垂直的方向上可旋转地支撑头部支撑构件;以及一个端部连接的弹性构件 到支撑臂(2)的另一端部,另一端部连接到基部臂(12),用于沿盘方向推压头部支撑构件。 因此,支撑臂(2)可以由高刚性的构件形成,并且如果冲击力从外部作用,则防止滑块(1)与盘碰撞。
    • 37. 发明申请
    • Head support device and disk device having the same
    • 头支撑装置和具有相同的盘装置
    • US20070139822A1
    • 2007-06-21
    • 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。
    • 38. 发明授权
    • Toner for electrostatic image development
    • 调色剂用于静电图像显影
    • US07232636B2
    • 2007-06-19
    • US11092579
    • 2005-03-29
    • Tetsuhiro SemuraYoshihiro Ueno
    • Tetsuhiro SemuraYoshihiro Ueno
    • G03G9/087
    • G03G9/08795G03G9/08755G03G9/08782G03G9/08797
    • A toner for electrostatic image development comprising a resin binder comprising (a) a high-softening point polyester having a softening point of greater than 120° C. and 160° C. or less; and (b) a low-softening point polyester having a softening point of 75° C. or more and 120° C. or less, each of the high-softening point polyester (a) and the low-softening point polyester (b) being obtained by polycondensing an alcohol component consisting essentially of an aliphatic alcohol with a carboxylic acid component, wherein a difference in the softening points between the high-softening point polyester (a) and the low-softening point polyester (b) is 10° C. or more. This toner has excellent pulverizability and fixing ability, and hardly causes filming, so that it can be applied to a laser beam printer having a linear speed of 280 mm/sec or more.
    • 一种用于静电图像显影的调色剂,包括树脂粘合剂,其包含(a)软化点大于120℃和160℃或更低的高软化点聚酯; 和(b)软化点为75℃以上且120℃以下的低软化点聚酯,高软化点聚酯(a)和低软化点聚酯(b) 通过将基本上由脂肪醇组成的醇组分与羧酸组分缩聚而获得,其中高软化点聚酯(a)和低软化点聚酯(b)之间的软化点的差为10℃ 。 或者更多。 该调色剂具有优异的粉碎性和定影能力,并且几乎不引起成膜,因此可以应用于线速度为280mm / sec以上的激光打印机。
    • 39. 发明授权
    • Head slider and disk drive apparatus
    • 磁头滑块和磁盘驱动器
    • US07095592B2
    • 2006-08-22
    • US10103928
    • 2002-03-25
    • Yoshihiro UenoTatsuhiko InagakiZhi Sheng Deng
    • Yoshihiro UenoTatsuhiko InagakiZhi Sheng Deng
    • G11B5/60
    • G11B5/6005
    • Disclosed is a head slider having excellent shock resistance, a head supporter, as well as a disk drive using the head slider. The head slider is characterized in a form of its opposite-to-disk surface, such that a fixed point is set at a position located outwardly of a rear end portion of the head slider and at a predetermined distance from a load application point, which load urges the slider toward a disk. When a shock force is externally applied to the head slider, the head slider is rotated about this fixed point such that at least one of pitch angle and roll angle is maintained positive. Because of this structure, a disk drive excellent in shock resistance can be provided.
    • 公开了一种具有优异的抗冲击性的头滑块,头支撑器以及使用磁头滑块的磁盘驱动器。 磁头滑块的特征在于其相对盘表面的形式,使得固定点被设置在位于磁头滑块的后端部分的外侧并且距离负载施加点预定距离的位置处, 负载将滑块推向磁盘。 当冲击力外部施加到磁头滑块时,磁头滑块围绕该固定点旋转,使得俯仰角和侧倾角中的至少一个保持为正。 由于这种结构,可以提供耐冲击性优异的磁盘驱动器。