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    • 94. 发明授权
    • Linear scale measuring device
    • 线性刻度测量装置
    • US4791289A
    • 1988-12-13
    • US049299
    • 1987-05-13
    • Yoshio WatanabeTakeshi KitayamaShiratori Kazuo
    • Yoshio WatanabeTakeshi KitayamaShiratori Kazuo
    • G01D5/36G01B11/02G01D5/347H01J3/14
    • G01D5/34753
    • A linear scale measuring device capable of minimizing an error in measuring which occurs due to vibration and/or shock, carrying out the mounting on a machine tool or the like at a sufficient degree of freedom and being efficiently assembled. The device includes a slider having an index scale arranged opposite to a main scale and adapted to be moved in relation to the main scale and a stationary link to which the slider is securely connected. The slider is connected to the stationary link at two positions defined along a movement direction of the slider by an elastic connection means comprising a coil spring and a wire spring which act to force the slider toward the main scale.
    • 一种线性刻度测量装置,其能够最小化由于振动和/或冲击而发生的测量误差,以足够的自由度进行安装在机床等上并被有效地组装。 该装置包括滑块,该滑块具有与主刻度尺相对布置的并且适于相对于主刻度移动的索引刻度尺以及滑块牢固连接到的固定链节。 滑块通过弹性连接装置在滑块的移动方向上限定的两个位置处连接到固定连杆,该弹性连接装置包括螺旋弹簧和线弹簧,其用于迫使滑块朝向主刻度尺。
    • 95. 发明授权
    • High-voltage resistance wire
    • 高压电阻丝
    • US4748435A
    • 1988-05-31
    • US432
    • 1987-01-05
    • Yoshimi YukawaYoshio WatanabeYoshinori Serizawa
    • Yoshimi YukawaYoshio WatanabeYoshinori Serizawa
    • H01B7/00H01B7/18H01C3/06
    • H01B7/0063H01B7/182
    • A high-voltage resistance wire for use in an engine ignition device has a resistive conductor, an insulating layer covering the resistive conductor, and a protctive sheath layer surrounding the insulating layer. The protective sheath layer is loosely fitted to the insulating layer so as to provide a gap of 0.1 mm or greater therebetween. The gap results in a small electrostatic capacitance between the innermost resistive conductor and the outermost protective which improves the ignitability of the resistance wire. Additionally, the protective sheath layer is formed by impregnating or coating silicone resin or fluororesin into or onto a tubular fiber braided body of glass or polyaramide fiber. The protective sheath has an improved flexibility and tearing strength from an end terminal.
    • 用于发动机点火装置的高压电阻线具有电阻性导体,覆盖电阻性导体的绝缘层和围绕绝缘层的保护层。 保护皮层松散地配合到绝缘层上,以便在它们之间提供0.1mm或更大的间隙。 该间隙导致最内电阻导体和最外保护层之间的小静电电容,这改善了电阻丝的可点燃性。 另外,通过将有机硅树脂或氟树脂浸渍或涂布在玻璃或聚芳酰胺纤维的管状纤维编织体中或其上形成保护性皮层。 保护护套具有从终端终端提高的柔韧性和撕裂强度。
    • 97. 发明授权
    • Discharge lamp lighting device
    • 放电灯照明装置
    • US4503359A
    • 1985-03-05
    • US529127
    • 1983-09-02
    • Yoshio WatanabeHiroyuki Iyama
    • Yoshio WatanabeHiroyuki Iyama
    • H05B41/04H05B39/00H05B37/00
    • H05B41/046Y10S315/07
    • Disclosed is a discharge lamp lighting device which comprises a series closed-loop circuit including an AC power supply, a ballast having an inductance, and a discharge lamp, and a switch circuit in parallel to the discharge lamp. The switch circuit is turned on when the voltage across the discharge lamp is reduced to zero, and then turned off when the current flowing in the switch reaches a predetermined value. The switch circuit thus repeats its on-off operation every half cycle of the voltage across the discharge lamp. The electromagnetic energy is stored in the inductance of the ballast when the switch circuit is on, and the stored electromagnetic energy is superimposed on the source voltage and applied to the discharge lamp when the switch circuit is turned off, thus reigniting the discharge lamp every half cycle. This makes it possible to light directly a discharge lamp having a lamp voltage approximate to the source voltage.
    • 公开了一种放电灯点亮装置,其包括串联闭环电路,其包括AC电源,具有电感的镇流器和放电灯,以及与放电灯并联的开关电路。 当放电灯两端的电压降至零时,开关电路导通,然后当开关中流过的电流达到预定值时,开关电路接通。 开关电路因此在放电灯两端的电压的每半个周期重复其开 - 关操作。 当开关电路接通时,电磁能量存储在镇流器的电感中,并且存储的电磁能量叠加在源电压上并在开关电路关闭时施加到放电灯,因此每半年重新点亮放电灯 周期。 这使得可以直接点燃灯电压近似于源电压的放电灯。
    • 99. 发明申请
    • MICROLENS ARRAY AND SCANNING EXPOSURE DEVICE USING SAME
    • 使用相同的微阵列和扫描曝光装置
    • US20140168622A1
    • 2014-06-19
    • US14236319
    • 2012-07-27
    • Michinobu MizumuraYoshio Watanabe
    • Michinobu MizumuraYoshio Watanabe
    • G02B3/00G03F9/00
    • G02B3/0056G03F7/70275G03F7/70308G03F9/70
    • This microlens array comprises hexagonal field diaphragms in inverted-image-forming positions, i.e., microlenses, a plurality of which are arranged in the direction perpendicular to a direction of scanning, and from which rows of microlenses are configured. Further, for three rows of microlenses, microlens rows are arranged with offset by (a length S) in a direction perpendicular to the direction of scanning such that triangular portions of the hexagonal field diaphragms overlap in the direction of scanning. Furthermore, microlens row groups, which are configured from three microlens rows, are arranged with offset in the direction perpendicular to the direction of scanning in increments of a minute amount of shifting F (for example, 2 μm). Thereby, this scanning exposure device using a microlens array is capable of preventing exposure ununiformity even in the direction perpendicular to the direction of scanning.
    • 该微透镜阵列包括反转图像形成位置中的六边形场隔膜,即微透镜,其中多个沿垂直于扫描方向的方向排列,并且从其构成微行列。 此外,对于三行微透镜,微透镜排沿垂直于扫描方向的方向偏移(长度S),使得六边形场隔膜的三角形部分在扫描方向上重叠。 此外,由三个微透镜列构成的微透镜行组以微小量的移动F(例如,2μm)的增量在垂直于扫描方向的方向上偏移地布置。 因此,使用微透镜阵列的该扫描曝光装置即使在与扫描方向垂直的方向上也能够防止曝光不均匀。