会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • METHOD OF CUTTING WORKPIECE WITH WIRE SAW, AND WIRE SAW
    • 用线锯切割工件的方法和电线
    • US20120298090A1
    • 2012-11-29
    • US13576738
    • 2010-02-08
    • Jun OhyaTatsumi HamasakiHiroyuki YoshimuraMasaru Fukuman
    • Jun OhyaTatsumi HamasakiHiroyuki YoshimuraMasaru Fukuman
    • B28D5/04
    • B28D5/045B23D57/0069B24B27/0633
    • The present invention provides a method of cutting a workpiece efficiently with high accuracy by utilizing tension adjusters to approximate tension in a wire in a wire saw to a predetermined target tension while effectively reducing only tension in a winder-side wire. The method comprises a forward-driven cutting step of cutting a workpiece while moving a wire forward, a first switching step of reversing a driving direction of the wire, a backward-driven cutting step of cutting the workpiece while moving the wire backward, and a second switching step of reversing a driving direction of the wire and returning to the forward-driven cutting step, the steps being repeated in this order. In both switching steps, only tension in a winder-side wire is reduced by tension manipulators. A reduction in target wire tension therefor is performed after completion of deceleration of the wire in each switching step.
    • 本发明提供了一种通过利用张力调节器来有效地切割工件的方法,以使线锯中的线材的张力近似到预定的目标张力,同时有效地仅减小缠绕器线材中的张力。 该方法包括:向前驱动切割步骤,在向前移动线的同时切割工件;反转线的驱动方向的第一切换步骤;向后移动切割工件的向后驱动切割步骤;以及 第二切换步骤,其使线的驱动方向反转并返回到前进驱动的切割步骤,按顺序重复该步骤。 在两个切换步骤中,仅通过张力操纵器减小卷绕机侧线中的张力。 在每个切换步骤中线材的减速完成之后,执行目标线张力的降低。
    • 3. 发明授权
    • Intermediate isolator type fiber amplifier and fiber transmission system
    • 中间隔离器型光纤放大器和光纤传输系统
    • US5914808A
    • 1999-06-22
    • US701987
    • 1996-08-23
    • Masahiro MitsudaJun OhyaTomoaki Uno
    • Masahiro MitsudaJun OhyaTomoaki Uno
    • G02F1/35H01S3/06H01S3/067H01S3/10H01S3/00
    • H01S3/06758
    • The fiber amplifier of this invention includes: a first rare earth element doped fiber; a second rare earth element doped fiber; and a pump light source for generating pump light for exciting the first rare earth element doped fiber and the second rare earth element doped fiber, the fiber amplifier receiving analog signal light and amplifying the analog signal light, wherein the fiber amplifier further includes a directional transmitter disposed between the first rare earth element doped fiber and the second rare earth element doped fiber, and a transmittance of the directional transmitter for at least light having the same wavelength as the signal light propagating from the first rare earth element doped fiber to the second rare earth element doped fiber is larger than a transmittance of the directional transmitter for the light propagating from the second rare earth element doped fiber to the first rare earth element doped fiber.
    • 本发明的光纤放大器包括:第一稀土元素掺杂光纤; 第二稀土元素掺杂光纤; 以及泵浦光源,用于产生用于激发第一稀土元素掺杂光纤和第二稀土元素掺杂光纤的泵浦光,所述光纤放大器接收模拟信号光并放大模拟信号光,其中光纤放大器还包括定向发射器 设置在第一稀土元素掺杂光纤和第二稀土元素掺杂光纤之间,并且定向发射器的透射率至少为与从第一稀土元素掺杂光纤传播到第二稀土元素掺杂光纤的信号光具有相同波长的光 对于从第二稀土元素掺杂光纤向第一稀土元素掺杂光纤传播的光,定向发送器的透射率大于地球元素掺杂光纤。
    • 6. 发明授权
    • Optical transmission system and optical transmitter and optical receiver used therefor
    • 光传输系统和光发射机和光接收机
    • US06335814B1
    • 2002-01-01
    • US09136934
    • 1998-08-20
    • Masaru FuseJun Ohya
    • Masaru FuseJun Ohya
    • H04B1004
    • H04B10/676H04B10/505H04B10/5051H04B10/5053H04B10/69
    • An angle modulating portion 1 converts an inputted electrical signal into a predetermined angle-modulated signal. An optical modulating portion 2 converts the angle-modulated signal outputted from the angle modulating portion 1 into an optical-modulated signal and sends the optical-modulated signal to an optical waveguide portion 3. An interference portion 6 separates the optical-modulated signal transmitted through the optical waveguide portion 3 into two optical signals having predetermined difference in propagation delay and then combines the optical signals. An optical/electrical converting portion 4 subjects the combined optical signal to homodyne detection, to acquire a demodulated signal of the original electrical signal and output the electrical signal. That is, the interference portion 6 and the optical/electrical converting portion 4 constitute a delayed detection system of an optical signal, so that the delayed detection system performs conversion processing of an optical signal into an electrical signal and angle demodulation processing simultaneously. In this way, a signal with a wide-band and a high-frequency can be acquired by demodulation without electrical part for wide-bands and high-frequencies.
    • 角度调制部分1将输入的电信号转换成预定的角度调制信号。 光调制部分2将从角度调制部分1输出的角度调制信号转换为光调制信号,并将光调制信号发送到光波导部分3.干涉部分6将传输的光调制信号 光波导部分3变成具有预定传播延迟差的两个光信号,然后组合光信号。 光/电转换部分4使组合的光信号进行零差检测,以获取原始电信号的解调信号并输出​​电信号。 也就是说,干涉部6和光电转换部4构成光信号的延迟检测系统,使得延迟检测系统同时执行光信号的转换处理为电信号和角度解调处理。 以这种方式,可以通过解调而获得具有宽带和高频的信号,而不需要用于宽带和高频的电气部分。
    • 10. 发明授权
    • Method of cutting workpiece with wire saw, and wire saw
    • 用线锯和线锯切割工件的方法
    • US08991381B2
    • 2015-03-31
    • US13576738
    • 2010-02-08
    • Jun OhyaTatsumi HamasakiHiroyuki YoshimuraMasaru Fukuman
    • Jun OhyaTatsumi HamasakiHiroyuki YoshimuraMasaru Fukuman
    • B28D5/04B23D57/00B24B27/06
    • B28D5/045B23D57/0069B24B27/0633
    • The present invention provides a method of cutting a workpiece efficiently with high accuracy by utilizing tension adjusters to approximate tension in a wire in a wire saw to a predetermined target tension while effectively reducing only tension in a winder-side wire. The method comprises a forward-driven cutting step of cutting a workpiece while moving a wire forward, a first switching step of reversing a driving direction of the wire, a backward-driven cutting step of cutting the workpiece while moving the wire backward, and a second switching step of reversing a driving direction of the wire and returning to the forward-driven cutting step, the steps being repeated in this order. In both switching steps, only tension in a winder-side wire is reduced by tension manipulators. A reduction in target wire tension therefor is performed after completion of deceleration of the wire in each switching step.
    • 本发明提供了一种通过利用张力调节器来有效地切割工件的方法,以使线锯中的线材的张力近似到预定的目标张力,同时有效地仅减小缠绕器线材中的张力。 该方法包括:向前驱动切割步骤,在向前移动线的同时切割工件;反转线的驱动方向的第一切换步骤;向后移动切割工件的向后驱动切割步骤;以及 第二切换步骤,其使线的驱动方向反转并返回到前进驱动的切割步骤,按顺序重复该步骤。 在两个切换步骤中,仅通过张力操纵器减小卷绕机侧线中的张力。 在每个切换步骤中线材的减速完成之后,执行目标线张力的降低。