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    • 32. 发明授权
    • Method of alignment with the use of diffraction gratings and an
apparatus therefor
    • 使用衍射光栅对准的方法及其装置
    • US5000573A
    • 1991-03-19
    • US492259
    • 1990-03-12
    • Masanori SuzukiMakoto IkiAtsunobu Une
    • Masanori SuzukiMakoto IkiAtsunobu Une
    • G03F7/20G03F9/00
    • G03F7/70633G03F9/7023G03F9/7049
    • In a method of measuring/adjusting a relative displacement of objects using diffraction gratings, two monochromatic beams each having slightly different frequencies are synthesized to cause optical heterodyne interference so as to generate two beat signals. One of the beat signals is used as a reference signal. The other is used as a first interference beat signal generated by emitting the two monochromatic beams on a first diffraction grating arranged on a first object and by synthesizing two diffracted beams generated from the first diffraction grating by the above emission to cause optical heterodyne interference. A phase difference between the reference beat signal and the interference beat signal is then detected. Finally, the relative displacement is measured/adjusted in accordance with the phase difference.
    • 在使用衍射光栅测量/调整物体的相对位移的方法中,合成具有稍微不同频率的两个单色光束,以产生光学外差干扰,从而产生两个拍频信号。 其中一个拍频信号用作参考信号。 另一个用作通过在布置在第一物体上的第一衍射光栅上发射两个单色光束并通过合成由第一衍射光栅产生的两个衍射光束通过上述发射而产生光学外差干扰而产生的第一干扰节拍信号。 然后检测参考节拍信号和干扰拍频信号之间的相位差。 最后,根据相位差测量/调整相对位移。
    • 34. 发明授权
    • Gate turn-off thyristor
    • 门极关断晶闸管
    • US4710792A
    • 1987-12-01
    • US705118
    • 1985-02-22
    • Masanori Suzuki
    • Masanori Suzuki
    • H01L29/167H01L29/74H01L29/744
    • H01L29/167H01L29/74H01L29/744
    • A gate turn-off thyristor comprises a semiconductor wafer (8) structured by an N-base layer (8c), a P-base layer (8b) adjacent to one side of the N-base layer (8c), an N-emitter layer 8d adjacent to the other side of the N-base layer (8c), and a plurality of N-emitter regions (8a) formed on the outer surface of the P-base layer (8b) excluding a region serving as a gate region and further comprises a first electrode (9) on the outer surface of the P-emitter layer (8d), second electrodes (5) on the outer surfaces of the N-emitter regions (8a), a gate electrode (4) on the outer surface of the gate region and a lead-out point (7) for the gate electrode, and the above described gate turn-off thyristor is characterized in that the semiconductor wafer (8) includes a plurality of areas (3A and 3B) having different carrier life times and that the life time is the longest in the first area (3A) where the gate lead-out point (7) is positioned, while the life time is shorter in the area (3B) farther from the gate lead-out point (7).
    • 栅极截止晶闸管包括由N基层(8c)构成的半导体晶片(8),与N基层(8c)的一侧相邻的P基层(8b),N型发射极 邻接于N基层(8c)的另一侧的层8d和形成在P基层(8b)的外表面上的除了用作栅极区域的区域的多个N-发射极区域(8a) 并且还包括在所述P发射极层(8d)的外表面上的第一电极(9),在所述N-发射极区域(8a)的外表面上的第二电极(5),所述栅极电极 栅极区域的外表面和栅电极的引出点(7),上述栅极截止晶闸管的特征在于,半导体晶片(8)包括多个区域(3A和3B),其具有 不同的载体寿命时间,并且寿命在栅极引出点(7)所在的第一区域(3A)中是最长的,而在该区域(3B)中的寿命更短 呃从门的引出点(7)。
    • 35. 发明授权
    • Connector
    • 连接器
    • US08485842B2
    • 2013-07-16
    • US13489540
    • 2012-06-06
    • Takeshi OueMasanori Suzuki
    • Takeshi OueMasanori Suzuki
    • H01R13/72
    • H01R13/72A61B1/00124G02B23/26H01R13/5804
    • A connector includes an electric cable, an electric connecting portion that includes a case body in a rectangular shape and a circuit board, and has, on the circuit board, a line connecting portion electrically connected to a line of the electric cable, and a cable fixing portion to which the electric cable is fixed, a flat-type connector case that has a housing space housing the electric connecting portion and the electric cable, an opening in which the case body is integrally mounted, and an extension hole from which the electric cable is extended into the housing space, and is fixed to an intermediate portion of the electric cable, and a slide member that is slidably disposed in the housing space, and includes, on one surface side, a cable bending shape defining portion that defines a bending shape of the electric cable which is housed in the housing space.
    • 连接器包括电缆,电连接部分,其包括矩形的壳体和电路板,并且在电路板上具有电连接到电缆的线路的线路连接部分和电缆 固定电缆的固定部分,具有容纳电连接部分和电缆的容纳空间的平面型连接器壳体,壳体整体安装的开口,以及电气连接部分 电缆延伸到容纳空间中,并且固定到电缆的中间部分,以及滑动构件,其可滑动地设置在容纳空间中,并且在一个表面侧包括限定了电缆的电缆弯曲形状限定部分 容纳在容纳空间中的电缆的弯曲形状。
    • 36. 发明授权
    • Damper device
    • 减震装置
    • US08197347B2
    • 2012-06-12
    • US12535276
    • 2009-08-04
    • Tomohiro SaekiSatoshi NakagaitoYoshitaka InoshitaMasanori SuzukiHiroaki Suezaki
    • Tomohiro SaekiSatoshi NakagaitoYoshitaka InoshitaMasanori SuzukiHiroaki Suezaki
    • F16F15/129
    • F16F15/129
    • A damper device includes a first plate member rotated when the rotational force is inputted from an input side, a second plate member rotatable relative to the first plate member and outputting the rotational force to an output side when rotated in response to rotation of the first plate member, a damper portion for absorbing relative rotation between the first plate member and the second plate member, and a hysteresis portion for absorbing the relative rotation by a friction force. The hysteresis portion includes an intermediate member between the first plate member and the second plate member, and the intermediate member is pressed against one of the first plate member and the second plate member by the other one of the first plate member and the second plate member when the first plate member and the second plate member rotate relative to each other.
    • 阻尼器装置包括当从输入侧输入旋转力时旋转的第一板构件,可相对于第一板构件旋转的第二板构件,并且响应于第一板的旋转而旋转时将旋转力输出到输出侧 构件,用于吸收第一板构件和第二板构件之间的相对旋转的阻尼部,以及用于通过摩擦力吸收相对旋转的滞后部。 滞后部分包括在第一板构件和第二板构件之间的中间构件,并且中间构件通过第一板构件和第二板构件中的另一个压靠第一板构件和第二板构件中的一个 当第一板构件和第二板构件相对于彼此旋转时。
    • 38. 发明授权
    • Torque fluctuation absorbing apparatus
    • 扭矩波动吸收装置
    • US07766752B2
    • 2010-08-03
    • US11706216
    • 2007-02-15
    • Tomohiro SaekiSatoshi NakagaitoMakoto TakeuchiMasanori SuzukiMasaru Ebata
    • Tomohiro SaekiSatoshi NakagaitoMakoto TakeuchiMasanori SuzukiMasaru Ebata
    • F16D7/02
    • F16D7/025F16F15/129
    • A torque fluctuation absorbing apparatus provided between a driving source and a transmission and transmitting torque from the driving source to the transmission, the apparatus absorbing fluctuations in the torque and limiting a maximum value of the torque, the apparatus includes a flywheel, a supporting member, a first plate having a sliding surface, a second plate having a sliding surface, a disc spring supported by the supporting member and biasing one of the first and second plates towards the other one thereof, a friction material sandwiched tightly between the sliding surface of the first plate and the sliding surface of the second plate, a damper mechanism connected to the friction material and transmitting the torque from the driving source to an input shaft of the transmission, and a cover member demarcating the sliding surfaces of the first and second plates from an exterior of the torque fluctuation absorbing apparatus.
    • 一种扭矩波动吸收装置,其设置在驱动源和变速器之间,并且将扭矩从驱动源传递到变速器,该装置吸收扭矩的波动并限制扭矩的最大值,该装置包括飞轮,支撑构件, 具有滑动表面的第一板,具有滑动表面的第二板,由所述支撑构件支撑并将所述第一板和第二板中的一个朝向其另一个支撑的盘簧,紧密地夹在所述第一板的滑动表面之间的摩擦材料 第一板和第二板的滑动表面,阻尼机构,连接到摩擦材料并将来自驱动源的扭矩传递到变速器的输入轴;以及盖构件,其将第一和第二板的滑动表面从 转矩波动吸收装置的外部。
    • 40. 发明申请
    • Plasma Display Panel Manufacturing Method
    • 等离子显示屏制造方法
    • US20080132137A1
    • 2008-06-05
    • US10592706
    • 2006-05-12
    • Masanori Suzuki
    • Masanori Suzuki
    • H01J9/02
    • H01J9/385H01J9/241H01J2217/49264
    • A method for manufacturing a plasma display panel having a discharge space formed by arranging a pair of glass substrates oppositely and provided with a through opening (21) for evacuating the discharge space and introducing discharge gas at a corner of at least one glass substrate (6), characterized by comprising a step for providing the through opening (21) of the glass substrate (6) in the outer circumference of a sheet of substrate glass (30) being cut into two or more sheets of glass substrate (6), and a step for forming the structure of a plasma display panel on the substrate glass (30). Consequently, the substrate glass (30) is protected against cracking or damage, and a multiple-sheet manufacturing method can be realized with high yield.
    • 一种等离子体显示面板的制造方法,其特征在于,具有放电空间,该放电空间通过相对设置一对玻璃基板而形成,所述放电空间设置有用于抽出放电空间的通孔(21),并且在至少一个玻璃基板(6)的角部引入放电气体 ),其特征在于包括在被切割成两片或更多张玻璃基板(6)的基片玻璃(30)的外周中设置玻璃基板(6)的通孔(21)的步骤,以及 用于在基板玻璃(30)上形成等离子体显示面板的结构的步骤。 因此,保护​​基板玻璃(30)免受破裂或破坏,可以高产率地实现多片材制造方法。