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    • 11. 发明授权
    • Device for practicing golf swing
    • 练习高尔夫挥杆的装置
    • US4118033A
    • 1978-10-03
    • US768372
    • 1977-02-14
    • Toshiyuki Miyamoto
    • Toshiyuki Miyamoto
    • A63B15/00A63B59/00A63B69/36
    • A63B15/00A63B2060/0081
    • A golf-swing-practicing device comprising a flexible shaft having a weight attached to one end of the shaft, the shaft being composed of a composite core member having a plurality of strands twisted around the core, and each of the strands being formed of a plurality of steel wires twisted together. The composite core member includes a flexible core element formed of fibers and a non-flexible core element such as iron arranged in axial end-to-end alignment with each other. The shaft and the weight assembly are provided with a covering of synthetic resin, synthetic rubber or synthetic leather. Through repeated practice, whether indoors or out-of-doors, with use of the device the user can empirically master the various techniques for hitting long shots with a maximum power at impact for hitting the ball with proper timing, and for eliminating wild shots.
    • 一种高尔夫挥杆练习装置,包括具有附接到所述轴的一端的重物的柔性轴,所述轴由复合芯构件组成,所述复合芯构件具有缠绕在所述芯周围的多个股线,并且每个股线由 多条钢丝绞合在一起。 复合芯部件包括由纤维形成的柔性芯部元件和彼此轴向端对齐配置的非柔性芯元件(例如铁)。 轴和重量组件设有合成树脂,合成橡胶或合成皮革的覆盖物。 通过反复练习,无论是在室内还是室外,使用设备,用户可以经验性地掌握各种技术,以适当的时机击球的最大功率击球长射,并消除野蛮射击。
    • 13. 发明授权
    • Optical fiber drawing apparatus
    • 光纤拉丝装置
    • US08613209B2
    • 2013-12-24
    • US11720390
    • 2005-11-22
    • Toshiyuki MiyamotoNorio FukuharaKeiichi SakamotoTakao Kaneko
    • Toshiyuki MiyamotoNorio FukuharaKeiichi SakamotoTakao Kaneko
    • C03B37/07C03B37/01C03B37/025F27B1/26
    • C03C25/12C03B37/0253C03B2205/40C03B2205/44C03B2205/72
    • In an optical fiber drawing device of the present invention, as an operational parameters corresponding to the real drawing speed in the duration from the moment of starting the operation of the optical fiber drawing device till the moment of reaching the target drawing speed are extracted from operational parameters stored in a operational parameter storage unit and applied to the optical fiber drawing device. The operational parameters include a base preform feeding speed, a target variation of real drawing speed, a gain multiplied by the speed element related with the variation of the real drawing speed, an operation cycle, a drawing furnace temperature, a coating resin pressure to coat the optical fiber, and flow of cooling gaseous helium, etc. The optical fiber drawing device of the present invention capable of a stable drawing control that does not generate hunting or overshoot or the like, while reducing the start-up fiber length (or speed increasing time) in the unsteady state (transient state) operation of the optical fiber drawing device.
    • 在本发明的光纤拉制装置中,从开始光纤拉丝装置的运转时刻到到达目标拉伸速度的时刻的持续时间内的实际拉拔速度对应的运转参数从运转中提取出来 参数存储在操作参数存储单元中并应用于光纤绘图装置。 操作参数包括基底预成型件进给速度,实际拉伸速度的目标变化,与实际拉伸速度的变化相关的速度要素的增益,操作周期,拉伸炉温度,涂覆树脂压力 光纤和冷却气体氦气等。本发明的光纤拉伸装置能够在不产生振荡或过冲等的情况下进行稳定的拉丝控制,同时降低启动光纤长度(或速度) 增加时间)在光纤拉丝装置的非稳态(瞬态)操作中。
    • 14. 发明授权
    • Game machine, game machine control method, information recording medium, and program
    • 游戏机,游戏机控制方法,信息记录介质和程序
    • US08128497B2
    • 2012-03-06
    • US11575650
    • 2005-09-12
    • Toshiyuki Miyamoto
    • Toshiyuki Miyamoto
    • A63F9/24G06F17/00
    • A63F13/54A63F13/00A63F2300/6081A63F2300/6615A63F2300/6638H04S7/30
    • To output sounds generated by multiple objects disposed in a virtual space in as easy a manner as possible while giving live feelings, a storage unit (202) of a game machine (201) stores information on objects of a first type and a second type which move in the virtual space. A basic sound acquiring unit (203) acquires basic sound information corresponding to the total number of the objects. An imitation sound acquiring unit (204) acquires imitation sound information imitating a sound generated by an object of the first type from its position in the virtual space. A mixing output unit (205) mixes and outputs the basic sound information and the imitation sound information. An input receiving unit (206) receives an instruction input from the user. In a case where the instruction input satisfies a predetermined extinction condition, a deleting unit (207) deletes any of objects of the first type from the storage unit (202) if there is no object of the second type stored in the storage unit (202), and deletes any of objects of the second type from the storage unit (202) if there is.
    • 为了以尽可能简单的方式输出设置在虚拟空间中的多个对象产生的声音,同时产生现场感觉,游戏机(201)的存储单元(202)存储关于第一类型和第二类型的对象的信息, 在虚拟空间中移动。 基本声音获取单元(203)获取与对象总数相对应的基本声音信息。 模仿声音获取单元(204)从虚拟空间中的位置获取模仿由第一类型的对象产生的声音的模仿声音信息。 混合输出单元(205)混合并输出基本声音信息和仿制声音信息。 输入接收单元(206)接收来自用户的指令输入。 在指示输入满足预定的消光条件的情况下,如果不存储在存储单元(202)中的第二类型的对象,则删除单元(207)从存储单元(202)中删除第一类型的任何对象 ),并且如果存在,则从存储单元(202)中删除第二类型的任何对象。
    • 15. 发明申请
    • Optical Fiber Drawing Apparatus
    • 光纤拉丝装置
    • US20080016917A1
    • 2008-01-24
    • US11720390
    • 2005-11-22
    • Toshiyuki MiyamotoNorio FukuharaKeiichi SakamotoTakao Kaneko
    • Toshiyuki MiyamotoNorio FukuharaKeiichi SakamotoTakao Kaneko
    • C03B37/027G02B6/00G02B6/44
    • C03C25/12C03B37/0253C03B2205/40C03B2205/44C03B2205/72
    • In an optical fiber drawing device of the present invention, as an operational parameters corresponding to the real drawing speed in the duration from the moment of starting the operation of the optical fiber drawing device till the moment of reaching the target drawing speed are extracted from operational parameters stored in a operational parameter storage unit and applied to the optical fiber drawing device. The operational parameters include a base preform feeding speed, a target variation of real drawing speed, a gain multiplied by the speed element related with the variation of the real drawing speed, an operation cycle, a drawing furnace temperature, a coating resin pressure to coat the optical fiber, and flow of cooling gaseous helium, etc. The optical fiber drawing device of the present invention capable of a stable drawing control that does not generate hunting or overshoot or the like, while reducing the start-up fiber length (or speed increasing time) in the unsteady state (transient state) operation of the optical fiber drawing device.
    • 在本发明的光纤拉制装置中,从开始光纤拉丝装置的运转时刻到到达目标拉伸速度的时刻的持续时间内的实际拉拔速度对应的运转参数从运转中提取出来 参数存储在操作参数存储单元中并应用于光纤绘图装置。 操作参数包括基底预成型件进给速度,实际拉伸速度的目标变化,与实际拉伸速度的变化相关的速度要素的增益,操作周期,拉伸炉温度,涂覆树脂压力 光纤和冷却气体氦气等。本发明的光纤拉伸装置能够在不产生振荡或过冲等的情况下进行稳定的拉丝控制,同时降低启动光纤长度(或速度) 增加时间)在光纤拉丝装置的非稳态(瞬态)操作中。
    • 16. 发明授权
    • Ion generator
    • 离子发生器
    • US07706121B2
    • 2010-04-27
    • US12177214
    • 2008-07-22
    • Shinji KatoToshiyuki Miyamoto
    • Shinji KatoToshiyuki Miyamoto
    • H01T23/00
    • H01T23/00
    • In an ion generator, a high-voltage electrode with a contact portion is disposed on a first main surface of an insulating substrate and is connected to a wire electrode, and a ground electrode covered with an insulating film is disposed on a second main surface of the insulating substrate. The ground electrode is electrically connected to a contact portion on the first main surface via a through hole. By disposing the high-voltage electrode and the ground electrode on different surfaces, the occurrence of an undesirable leakage current flowing from the high-voltage electrode to the ground electrode is prevented.
    • 在离子发生器中,具有接触部分的高电压电极设置在绝缘基板的第一主表面上并连接到线电极,并且覆盖有绝缘膜的接地电极设置在第二主表面上 绝缘基板。 接地电极经由通孔电连接到第一主表面上的接触部分。 通过将高电压电极和接地电极设置在不同的表面上,防止了从高压电极流向接地电极的不期望的漏电流的发生。
    • 18. 发明授权
    • Optical transmission system
    • 光传输系统
    • US07330302B2
    • 2008-02-12
    • US10607380
    • 2003-06-27
    • Toshiyuki MiyamotoMasayuki ShigematsuMasayuki Nishimura
    • Toshiyuki MiyamotoMasayuki ShigematsuMasayuki Nishimura
    • H01S3/00
    • H04B10/2525H04B10/2916H04B2210/003
    • This invention provides an optical transmission system which allows to perform high-quality transmission of each of a plurality of signal channels multiplexed. In the optical transmission system, signal light in which a plurality of signal channels with an optical frequency spacing of 400 GHz or more but 12.5 THz or less is transmitted from an optical transmitter to a Raman amplifier through an optical fiber transmission line. In the Raman amplifier, pumping light from a pumping light source unit is supplied to an optical fiber through an optical coupler. The multiplexed signal light inputted to the Raman amplifier arrives at the optical fiber through an optical isolator and optical coupler, and Raman-amplified by the optical fiber. The Raman-amplified multiplexed signal light is outputted from the Raman amplifier through an optical coupler and optical isolator.
    • 本发明提供一种光传输系统,其允许多路复用的多个信号信道中的每一个的高质量传输。 在光传输系统中,其中通过光纤传输线路将光频率为400GHz以上且12.5THz以下的多个信号信道从光发射机发射到拉曼放大器的信号光。 在拉曼放大器中,来自泵浦光源单元的泵浦光通过光耦合器提供给光纤。 输入到拉曼放大器的复用信号光通过光隔离器和光耦合器到达光纤,并由光纤拉曼放大。 拉曼放大的复用信号光通过光耦合器和光隔离器从拉曼放大器输出。
    • 20. 发明申请
    • Analog optical transmission system
    • 模拟光传输系统
    • US20060045534A1
    • 2006-03-02
    • US11211097
    • 2005-08-25
    • Toshiyuki MiyamotoTetsufumi TsuzakiTatsuhiko Shitomi
    • Toshiyuki MiyamotoTetsufumi TsuzakiTatsuhiko Shitomi
    • H04B10/12
    • H04B10/25253
    • The present invention relates to an analog optical transmission system having a construction for expanding an analog transmittable distance. The analog optical transmission system includes: a light transmitter outputting analog optical signals such as image signals modulated in accordance with electrical signals multiplexed on a frequency domain; a transmission line including a SMF of 20 km or less in the total length; and a light receiver. A dispersion compensating fiber compensating for the chromatic dispersion of the transmission line is arranged on the transmission line, and the dispersion compensating fiber satisfies one of the first condition that the chromatic dispersion is set at −250 ps/nm/km or less and a length is set at 1.1 km or less, and the condition that the chromatic dispersion is set at −330 ps/nm/km or less and a length is set at 1.2 km or less. Optical suppressing devices reducing the MPI noise are arranged at the end portion of the dispersion compensating fiber.
    • 本发明涉及具有扩展模拟可传送距离的结构的模拟光传输系统。 模拟光传输系统包括:光发射机,输出模拟光信号,例如根据在频域上复用的电信号调制的图像信号; 包括总长度为20公里以下的SMF的传输线; 和光接收器。 补偿传输线色散的色散补偿光纤布置在传输线上,色散补偿光纤满足色散设置在-250ps / nm / km或更小的第一条件和长度 设定为1.1km以下,色散设定为-330ps / nm / km以下,长度设定为1.2km以下的条件。 降低MPI噪声的光抑制装置布置在色散补偿光纤的端部。