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    • 31. 发明授权
    • Engine equipped with air-intake device for personal watercraft and personal watercraft
    • 发动机装备有用于个人船只和个人船只的进气装置
    • US07392779B2
    • 2008-07-01
    • US11728039
    • 2007-03-23
    • Keiji TakahashiAtsufumi Ozaki
    • Keiji TakahashiAtsufumi Ozaki
    • F02M35/10
    • F02P13/00F02M35/02F02M35/112F02M35/167
    • An engine equipped with an air-intake device for a personal watercraft, includes a cylinder head cover attached to an upper surface of a cylinder head, a plug cap with ignition coil configured to protrude upward from an upper surface of the cylinder head cover; and an air box for the air-intake device that is disposed above the cylinder head cover and is provided on a lower surface thereof with an air inlet that opens to be opposite to the upper surface of the cylinder head cover. The air box is disposed in such a manner that the lower surface of the air box is opposite to the upper surface of the cylinder head cover and a gap is formed between the lower surface of the air box and the upper surface of the cylinder head cover so as to form an air flow in the vicinity of the plug cap with ignition coil that is directed to the air inlet of the air box.
    • 配备有用于个人船舶的进气装置的发动机包括附接到气缸盖的上表面的气缸盖罩,具有点火线圈的插头盖,其配置成从气缸盖罩的上表面向上突出; 以及用于进气装置的空气箱,其设置在气缸盖罩的上方,并且在其下表面上设置有与气缸盖罩的上表面相对开口的空气入口。 风箱以这样的方式设置,使得气箱的下表面与气缸盖罩的上表面相对,并且在气箱的下表面和气缸盖罩的上表面之间形成间隙 以便在引导到空气箱的空气入口的点火线圈在塞帽附近形成空气流。
    • 32. 发明授权
    • Personal watercraft
    • 个人船只
    • US07367856B2
    • 2008-05-06
    • US11807772
    • 2007-05-29
    • Keiji TakahashiToshio ArakiAtsufumi Ozaki
    • Keiji TakahashiToshio ArakiAtsufumi Ozaki
    • B63B35/73
    • B63B35/731B63H21/14
    • A personal watercraft with a supercharging device and an intercooler is disclosed. The personal watercraft may include an engine, a water jet pump, a propeller shaft to transmit an output power of the engine to the water jet pump, and a bearing case configured to support a front portion of the propeller shaft. The personal watercraft may further include a supercharging device configured to pressurize air taken in from outside and supplied to the engine, an intercooler configured to cool the air pressurized and compressed by the supercharging device, and a pump room which is formed on a bottom surface of a rear end portion of the body and is configured to accommodate the water jet pump therein. The intercooler may be positioned forward of the pump room and behind the engine and may be mounted to an upper surface of the bearing case.
    • 公开了具有增压装置和中间冷却器的个人船舶。 个人船舶可以包括发动机,喷水泵,将发动机的输出功率传递给喷水泵的传动轴,以及构造成支撑传动轴的前部的轴承箱。 个人船舶可以进一步包括增压装置,其构造成对从外部吸入的空气进行加压并供给到发动机,中间冷却器,其被配置为冷却由增压装置加压和压缩的空气;以及泵室,其形成在 主体的后端部分,并且构造成容纳其中的喷水泵。 中间冷却器可以位于泵室的前方并且位于发动机之后并且可以安装到轴承箱的上表面。
    • 34. 发明授权
    • Vehicle generator regulating apparatus
    • 车辆发电机调节装置
    • US07180271B2
    • 2007-02-20
    • US11113194
    • 2005-04-25
    • Keiji TakahashiHirokazu Toyoda
    • Keiji TakahashiHirokazu Toyoda
    • H02P9/00H02P9/10
    • H02J7/163H02J7/245H02P9/305Y02T10/92
    • The vehicle generator regulating apparatus includes a switching device operating to allow a field current to flow into a field coil of the vehicle generator from a vehicle battery when applied with a voltage signal, a drive circuit applying the voltage signal to the switching device when supplied with a control signal, and a control circuit supplying the control signal to the drive circuit when the output voltage is detected to be not above a predetermined voltage. The drive circuit includes a charge pump circuit stepping up a DC voltage supplied from the battery to generate the voltage signal by repeatedly performing a cycle of charging and discharging multiple capacitors in synchronization with an oscillation signal from an oscillator circuit. The drive circuit is configured to lower the frequency of the oscillation signal when the vehicle generator is in a low power output state.
    • 车辆发电机调节装置包括开关装置,其在施加电压信号时工作以允许励磁电流从车辆电池流入车辆发电机的励磁线圈;驱动电路,当施加电压信号时,将其提供给开关装置 控制信号以及当检测到输出电压不高于预定电压时将控制信号提供给驱动电路的控制电路。 驱动电路包括电荷泵电路,其加强从电池提供的直流电压,以通过与来自振荡器电路的振荡信号同步地重复执行对多个电容器充电和放电的周期来产生电压信号。 驱动电路被配置为当车辆发电机处于低功率输出状态时降低振荡信号的频率。
    • 36. 发明申请
    • Vehicle generator regulating apparatus
    • 车辆发电机调节装置
    • US20050237687A1
    • 2005-10-27
    • US11113194
    • 2005-04-25
    • Keiji TakahashiHirokazu Toyoda
    • Keiji TakahashiHirokazu Toyoda
    • H02J7/16H02J7/24H02P9/30H03K17/06H02H3/24
    • H02J7/163H02J7/245H02P9/305Y02T10/92
    • The vehicle generator regulating apparatus includes a switching device operating to allow a field current to flow into a field coil of the vehicle generator from a vehicle battery when applied with a voltage signal, a drive circuit applying the voltage signal to the switching device when supplied with a control signal, and a control circuit supplying the control signal to the drive circuit when the output voltage is detected to be not above a predetermined voltage. The drive circuit includes a charge pump circuit stepping up a DC voltage supplied from the battery to generate the voltage signal by repeatedly performing a cycle of charging and discharging multiple capacitors in synchronization with an oscillation signal from an oscillator circuit. The drive circuit is configured to lower the frequency of the oscillation signal when the vehicle generator is in a low power output state.
    • 车辆发电机调节装置包括开关装置,其在施加电压信号时工作以允许励磁电流从车辆电池流入车辆发电机的励磁线圈;驱动电路,当被提供时将电压信号施加到开关装置 控制信号以及当检测到输出电压不高于预定电压时将控制信号提供给驱动电路的控制电路。 驱动电路包括电荷泵电路,其加强从电池提供的直流电压,以通过与来自振荡器电路的振荡信号同步地重复执行对多个电容器充电和放电的周期来产生电压信号。 驱动电路被配置为当车辆发电机处于低功率输出状态时降低振荡信号的频率。
    • 39. 发明授权
    • Resin ferrule for use in optical fiber connector and molding die therefor
    • US06607306B2
    • 2003-08-19
    • US09811671
    • 2001-03-20
    • Katsumi OzekiKeiji TakahashiHiroyuki KobayashiNorio Shinoki
    • Katsumi OzekiKeiji TakahashiHiroyuki KobayashiNorio Shinoki
    • G02B638
    • G02B6/3865
    • According to one aspect of the present invention, a resin ferrule, for use in an optical fiber connector, is provided including: a capillary 1 having an axial part 2; and a flange 13 protruding from the axial part 2; the ferrule having an optical fiber insertion hole 3 axially passing through the capillary 1. The capillary 1 and the flange 13 are integrated into a monolithic structure with thermoplastic resin. The capillary 1 has a planar-shaped front end surface 11, and a front end part 10 extending towards the front end surface 11, in a convergent fashion where the front end part 10 has the outer diameter of the radial cross-section thereof reduced along the axial direction thereof towards the front end surface 11 with the cross-section kept concentric. According to another aspect of the present invention, a die is provided for molding a resin ferrule, for use in an optical fiber connector, as defined above. The die has portions defining: a first cavity 21 for forming the capillary 1; a second cavity 22 for forming the flange 13; a core pin 25 for forming the optical fiber insertion hole 3; an internal hole pin 31 for forming the front end part 10 of the capillary 1; and a third cavity 23 for engaging with the internal hole pin 31. The internal hole pin 31 has a recess part 33 for forming the front end part 10 of the capillary 1, the recess part 33 being formed on an end surface of the internal hole pin 31 on the side facing the first cavity 21. The third cavity 23 has an internal circumferential surface 24, having a coating film 30, made of aluminum and titanium nitride, formed thereon. The internal hole pin 31 is engaged with the third cavity 23 by having the coating film 30 positioned therebetween. According to a further aspect of the present invention, the die has only a ring gate 40 as a gate, the ring gate 40 being disposed on an end surface 22a of the second cavity 22 on the side corresponding to the insertion opening 7 of the optical fiber insertion hole 3. With this arrangement, an excellent resin ferrule and a molding die therefor are obtained having advantages in that the ferrule is equipped with a highly increased precision, that the material and working costs of the ferrule are greatly reduced, that the ferrule has an outer diameter of high precision and is enabled to be mass produced stably, and that an optical fiber is kept free from any damage during its insertion into the ferrule.