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    • 1. 发明授权
    • Power tool with a torque transmitting mechanism
    • 带扭矩传动机构的电动工具
    • US08944180B2
    • 2015-02-03
    • US13333367
    • 2011-12-21
    • Hiroki IkutaTomohiro UkaiYuta MatsuuraYosuke Nishio
    • Hiroki IkutaTomohiro UkaiYuta MatsuuraYosuke Nishio
    • B25B21/00B25F5/00
    • B25B21/00B25F5/001
    • The power tool has a power transmitting mechanism. When a tool bit is not pressed against a workpiece, the power transmitting mechanism is held in a power transmission interrupted state, and when the tool bit is pressed against the workpiece, the power transmitting mechanism is held in a power transmission state in which the tool bit moves together with the driven-side member in an axial direction of the tool bit so that the driving-side member receives the torque from the driven-side member and the tool bit is driven. Tapered portions are provided between the driving-side member and the driven-side member and inclined with respect to the axial direction of the tool bit. When the driven-side member moves in the axial direction of the tool bit, frictional force is caused on the tapered portions and the torque of the driving-side member is transmitted to the driven-side member by the frictional force.
    • 电动工具具有动力传递机构。 当工具头没有被压在工件上时,动力传递机构保持在动力传递中断状态,并且当工具头被压靠在工件上时,动力传递机构保持在动力传递状态,其中工具 与从动侧构件一起沿着工具头的轴向移动,使得驱动侧构件从被驱动侧构件接受扭矩并且驱动工具头。 锥形部分设置在驱动侧构件和从动侧构件之间,并且相对于工具头的轴向倾斜。 当从动侧构件沿工具头的轴向移动时,在锥形部分上产生摩擦力,并且驱动侧构件的扭矩通过摩擦力传递到从动侧构件。
    • 2. 发明授权
    • Slide bearing for crankshaft of internal combustion engine
    • 内燃机曲轴滑动轴承
    • US08596871B2
    • 2013-12-03
    • US13166188
    • 2011-06-22
    • Takahito NakagawaTomohiro Ukai
    • Takahito NakagawaTomohiro Ukai
    • F16C33/10F16C9/02
    • F16C9/02F16C9/04F16C17/022F16C33/1065F16C2240/40F16C2240/44F16C2360/22
    • There is provided a slide bearing for a crankshaft of an internal combustion engine, having a pair of half bearings combined with each other to form the slide bearing, and a crush relief formed in each end portion region in a circumferential direction of an inner peripheral surface of each half bearing by reducing a bearing wall thickness over an entire width in an axial direction of the half bearing, wherein a relief depth RD which is a reduction amount of the bearing wall thickness of the crush relief is maximum at each end portion in the circumferential direction of the half bearing, and gradually decreases toward a center in the circumferential direction, and the relief depth RD is maximum in a center in an axial direction of the half bearing, and gradually decreases toward both end portions in the axial direction.
    • 提供了一种用于内燃机的曲轴的滑动轴承,其具有彼此组合以形成滑动轴承的一对半轴承,以及在内周面的圆周方向上的每个端部区域中形成的挤压 通过减小在半轴承的轴向方向上的整个宽度上的轴承壁厚度来减小每个半轴承,其中作为挤压浮雕的轴承壁厚度的减小量的浮雕深度RD在 半轴承的圆周方向,并且朝向圆周方向的中心逐渐减小,并且凸轮深度RD在半轴承的轴向的中心处最大,并且朝向轴向两端部逐渐减小。
    • 3. 发明申请
    • POWER TOOL
    • 电动工具
    • US20120160530A1
    • 2012-06-28
    • US13333367
    • 2011-12-21
    • Hiroki IKUTATomohiro UKAIYuta MATSUURAYosuke NISHIO
    • Hiroki IKUTATomohiro UKAIYuta MATSUURAYosuke NISHIO
    • B25F5/00
    • B25B21/00B25F5/001
    • The power tool has a power transmitting mechanism. When a tool bit is not pressed against a workpiece, the power transmitting mechanism is held in a power transmission interrupted state, and when the tool bit is pressed against the workpiece, the power transmitting mechanism is held in a power transmission state in which the tool bit moves together with the driven-side member in an axial direction of the tool bit so that the driving-side member receives the torque from the driven-side member and the tool bit is driven. Tapered portions are provided between the driving-side member and the driven-side member and inclined with respect to the axial direction of the tool bit. When the driven-side member moves in the axial direction of the tool bit, frictional force is caused on the tapered portions and the torque of the driving-side member is transmitted to the driven-side member by the frictional force.
    • 电动工具具有动力传递机构。 当工具头没有被压在工件上时,动力传递机构保持在动力传递中断状态,并且当工具头压在工件上时,动力传递机构保持在动力传递状态,其中工具 与从动侧构件一起沿着工具头的轴向移动,使得驱动侧构件从被驱动侧构件接受扭矩并且驱动工具头。 锥形部分设置在驱动侧构件和从动侧构件之间,并且相对于工具头的轴向倾斜。 当从动侧构件沿工具头的轴向移动时,在锥形部分上产生摩擦力,并且驱动侧构件的扭矩通过摩擦力传递到从动侧构件。
    • 5. 发明授权
    • Semiconductor switch circuit
    • 半导体开关电路
    • US07961031B2
    • 2011-06-14
    • US12776459
    • 2010-05-10
    • Hideyuki KiharaTomohiro UkaiKiyotaka Inagaki
    • Hideyuki KiharaTomohiro UkaiKiyotaka Inagaki
    • H03K17/687
    • H03K17/6874H03K2217/0018H03K2217/0036Y10T307/747
    • A semiconductor switch circuit is provided that enables current consumption to be reduced even in a conduction state. A semiconductor switch circuit 100 has P-type MOS transistors Q101 and Q102 for conduction that share a source and are connected in series between an input/output terminal 101 and input/output terminal 102, a P-type MOS transistor Q103 and N-type MOS transistor Q105 having drains connected to the gate of Q101, a P-type MOS transistor Q104 and N-type MOS transistor Q106 having drains connected to the gate of Q102, and a control terminal 103 connected to the gates of the transistors. Further semiconductor switch circuit 100 is configured with the sources and back gates of Q103 and Q104 connected to the sources of Q101 and Q102. Therefore, it is possible to switch the path between input/output terminal 101 and input/output terminal 102 between a conduction state and non-conduction state by means of voltage control by voltage value Vcont of a control signal applied to control terminal 103.
    • 提供一种半导体开关电路,即使在导通状态下也能够降低电流消耗。 半导体开关电路100具有用于导通的P型MOS晶体管Q101和Q102,其共享源极并串联连接在输入/输出端子101和输入/输出端子102之间,P型MOS晶体管Q103和N型 具有连接到Q101的栅极的漏极的MOS晶体管Q105,具有连接到Q102的栅极的漏极的P型MOS晶体管Q104和N型MOS晶体管Q106以及连接到晶体管的栅极的控制端子103。 进一步的半导体开关电路100被配置有与Q101和Q102的源极连接的Q103和Q104的源极和后门。 因此,可以通过施加到控制端子103的控制信号的电压值Vcont通过电压控制来将输入/输出端子101和输入/输出端子102之间的路径切换到导通状态和非导通状态之间。