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    • 1. 发明专利
    • System and mechanism for driving hydraulic turbine wheel
    • 用于驱动液压涡轮轮的系统和机构
    • JPS59136583A
    • 1984-08-06
    • JP935083
    • 1983-01-25
    • Manabu Ishikawa
    • ISHIKAWA ISAOISHIKAWA MANABU
    • F03G7/10F02B67/00
    • F02B67/00
    • PURPOSE:To save the resource of fuel by a method wherein a motorcar is run while stopping an engine operation by the circulating mechanism of a hydraulic turbine. CONSTITUTION:The engine 1 is started under a condition that a bypass cock 16 is opened while a manual valve 9 and a speed regulating valve 17 are being closed, the pressure of a high-pressure oil tank 7 is increased to a set pressure and the switch 14 of an electric safety valve 8 is cut to finish the preparation of running. When the speed regulating valve 17 is opened, high-pressure oil enters into and circulates through an oil motor 5 to rotate it by the pressure of the high-pressure oil tank 7 while the rotation of the oil motor 5 drives the rotary shaft of the motorcar and starts the running thereof.
    • 目的:通过在水轮机的循环机构停止发动机运转的同时运行汽车的方法来节省燃料的资源。 构成:在手动阀9和调速阀17关闭的同时,在旁通阀16打开的条件下启动发动机1,高压油箱7的压力升高到设定压力, 切断电动安全阀8的开关14,完成行驶准备。 当速度调节阀17打开时,高压油通过油马达5进入并循环通过高压油箱7的压力旋转,同时油马达5的旋转驱动旋转轴 汽车,开始运行。
    • 2. 发明专利
    • System and device for generating electric power by hydraulic turbine mechanism
    • 通过液压涡轮机构产生电力的系统和装置
    • JPS59136584A
    • 1984-08-06
    • JP935183
    • 1983-01-25
    • Manabu Ishikawa
    • ISHIKAWA ISAOISHIKAWA MANABU
    • F03G7/10F02B67/00
    • F02B67/00
    • PURPOSE:To save power energy by a method wherein a generator is rotated under a condition that a motor for the power is being stopped by the circulating mechanism of the hydraulic turbine. CONSTITUTION:A pump 2 is operated by the rotation of a motor 1 for starting and the circulation of oil is begun while the pressure of a high-pressure oil tank 4 is increased gradually in accordance with the circulation of the oil. When the pressure arrives at a given pressure, an electromagnetic clutch 11, provided in a high-pressure oil pump 7, is cut automatically and the preparation of the electric generation is finished. When a manual valve 8 is opened, an oil motor 3 begins to rotate to drive the generator 7 and the generation of electric power is begun. The oil, rotating the oil motor 3, is returned to the high-pressure oil pump 2.
    • 目的:通过在水轮机的循环机构停止动力马达的条件下使发电机转动的方法节约能源。 构成:泵2通过马达1的旋转而起动,并且随着油的循环逐渐增加高压油箱4的压力,油的循环开始。 当压力达到给定压力时,自动切割设置在高压油泵7中的电磁离合器11,并且完成发电的准备。 当手动阀8打开时,油马达3开始旋转以驱动发电机7并开始发电。 将油马达3旋转的油返回到高压油泵2。
    • 3. 发明专利
    • Driving mechanism for vehicle engine or motor
    • 用于汽车发动机或电机的驱动机构
    • JPS5967121A
    • 1984-04-16
    • JP17633382
    • 1982-10-08
    • Manabu Ishikawa
    • ISHIKAWA MANABU
    • F02B61/00B60K17/10B62D5/06B62D5/07
    • B62D5/06
    • PURPOSE:To increase driving force and make a small-sized engine by a method wherein the hydraulic pressure in a power pump for use in performing power steering operation is increased owing to rotation of an engine, a trochoid pump is driven by the hydraulic pressure so as to aid a propellor shaft in its rotation. CONSTITUTION:There is arranged a power steering high pressure pump to be driven through a belt type transmitting means owing to rotation of an engine, and the pump is connected to a trochoid pump 4 through a high pressure pipe 5 and a low pressure pipe 6. A pulley 7 is fixed to the rotary shaft of the trochoid pump 4 and the rotation of this pulley 7 is transmitted to a pulley 9 fixed to the drive pinion coupling of a differential ger carrier through a caterpiller type belt or the like. Thereby, the rotation of the propeller shaft 8 to be rotated by the engine is aided by the above contrivance and the driving force can be increased.
    • 目的:为了提高驱动力,通过发动机的转动使用于进行动力转向操作的动力泵中的液压压力增大的方法来制造小型发动机,则通过液压驱动次摆线泵 以帮助推进器轴旋转。 构成:通过发动机的旋转,配置有通过带式传动装置驱动的动力转向高压泵,并且泵通过高压管5和低压管6连接到次摆线泵4。 滑轮7固定在次摆线泵4的旋转轴上,并且该滑轮7的旋转被传递到通过毛毛皮带等固定到差动盖架的驱动小齿轮联轴器上的滑轮9。 由此,由发动机转动的传动轴8的旋转可以通过上述的设计进行辅助并且可以提高驱动力。
    • 5. 发明授权
    • Quartz-crystal devices exhibiting reduced crystal impedance
    • 具有降低晶体阻抗的石英晶体器件
    • US08541928B2
    • 2013-09-24
    • US13419074
    • 2012-03-13
    • Kenji ShimaoTakehiro TakahashiHiroyuki SasakiManabu IshikawaShinobu Yoshida
    • Kenji ShimaoTakehiro TakahashiHiroyuki SasakiManabu IshikawaShinobu Yoshida
    • H01L41/08
    • H03H9/1021H03H9/19
    • Quartz-crystal devices are disclosed, of which the CI value is reduced by adjusting the shortest distance between an edge of electrically conductive adhesive and an edge of the excitation electrode. The device has a quartz-crystal plate having long-edges and short-edges. Excitation electrodes are on first and second surfaces of the plate. Conductive pads are electrically connected to respective excitation electrodes and extend to the short-edge of the quartz-crystal plate. A package having a pair of external mounting terminals and respective connecting electrodes are situated on opposing sides of the mounting terminals for making electrical connections to the mounting terminals. An electrically conductive adhesive bonds the connecting terminals and respective conductive pads together, and the quartz-crystal plate onto the package. The shortest distance between an edge of the adhesive and an edge of the excitation electrode is 10%-15% the length of the quartz-crystal plate in the long-edge direction.
    • 公开了石英晶体器件,其中通过调节导电粘合剂的边缘和激发电极的边缘之间的最短距离来减小CI值。 该装置具有长边缘和短边缘的石英晶片。 激励电极在板的第一和第二表面上。 导电垫电连接到各个激励电极并延伸到石英晶片的短边。 具有一对外部安装端子和相应的连接电极的封装设置在安装端子的相对侧上,用于与安装端子电连接。 导电粘合剂将连接端子和相应的导电焊盘接合在一起,并将石英晶片连接到封装上。 粘合剂的边缘与激发电极的边缘之间的最短距离在长边方向上为石英晶体板的长度的10%-15%。
    • 9. 发明授权
    • Ultrasound treatment system
    • 超声治疗系统
    • US07780659B2
    • 2010-08-24
    • US10650759
    • 2003-08-29
    • Mitsumasa OkadaToshiya SugaiYoshitaka HondaManabu IshikawaTomohisa Sakurai
    • Mitsumasa OkadaToshiya SugaiYoshitaka HondaManabu IshikawaTomohisa Sakurai
    • A61B18/18
    • A61B17/320092A61B18/1482A61B2017/2929A61B2017/320072A61B2017/320084A61B2017/320088A61B2217/005A61B2217/007
    • An ultrasound treatment system in accordance with the present invention comprises an ultrasonic transducer, a handpiece, a probe, a sheath, a clamping member, an operation unit, an operating member, a suction base, and a perfusion base. The ultrasonic transducer generates ultrasonic vibrations. The handpiece has the ultrasonic transducer incorporated therein and serves as an operation unit. The probe is connected to the ultrasonic transducer, and serves as a vibration transmitting member for transmitting ultrasonic vibrations to a distal member realizing a stationary portion that is a treatment portion for treating a living tissue. The sheath serves as a protecting member for shielding the probe. The clamping member is opposed to the distal member at the distal end of the sheath, and realizes a movable portion that is another treatment portion for clamping a living tissue in cooperation with the distal member. The operation unit is manipulated for clamping a living tissue with the clamping member and distal member or freeing the living tissue therefrom.
    • 根据本发明的超声波处理系统包括超声换能器,手持件,探头,护套,夹紧构件,操作单元,操作构件,抽吸基座和灌注基座。 超声波换能器产生超声波振动。 手机具有并入其中的超声波换能器,并且用作操作单元。 探头连接到超声波换能器,并且用作用于将超声波振动传递到远端构件的振动传递构件,该远端构件实现作为用于治疗生物体组织的处理部分的静止部分。 护套用作用于屏蔽探针的保护构件。 夹持构件在护套的远端处与远端构件相对,并且实现作为与远侧构件协作夹持生物体组织的另一处理部的可动部。 操作单元被操纵用于夹紧具有夹紧构件和远端构件的活组织或从其中释放活组织。