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    • 3. 发明授权
    • Testing device and testing method of semiconductor devices
    • 半导体器件的测试装置和测试方法
    • US08395400B2
    • 2013-03-12
    • US12606609
    • 2009-10-27
    • Hideaki Nakamura
    • Hideaki Nakamura
    • G01R31/10
    • G01R31/2874
    • A testing device of semiconductor devices includes a temperature detector detecting temperatures of semiconductor devices, and a temperature control unit controlling the temperatures of the semiconductor devices based on a detected temperature, in which the temperature control unit includes thermal heads cooling or heating the semiconductor devices, solution pipes through which solutions set to different temperatures flow, and a channel switching part switching whether or not to make the solution flow through the thermal head, and when a test is conducted, the solution flown through the thermal head is switched according to heating amount of the semiconductor device.
    • 半导体器件的测试装置包括温度检测器,其检测半导体器件的温度,以及温度控制单元,其基于检测到的温度来控制半导体器件的温度,其中温度控制单元包括热敏头冷却或加热半导体器件, 溶液设置为不同温度的溶液管流动,以及切换是否使溶液流过热敏头的通道切换部分,并且当进行测试时,流过热敏头的溶液根据加热量 的半导体器件。
    • 4. 发明申请
    • MOTOR SPEED CONTROL CIRCUIT
    • 电机速度控制电路
    • US20120181966A1
    • 2012-07-19
    • US13349313
    • 2012-01-12
    • Hideaki NakamuraToshiyuki Imai
    • Hideaki NakamuraToshiyuki Imai
    • H02P7/00
    • H02P23/22
    • A motor speed control circuit includes: a first determining circuit configured to determine whether a rotation speed of a motor is higher than a set first rotation speed based on a speed signal corresponding to the rotation speed; a second determining circuit configured to determine whether the rotation speed is higher than a set second rotation speed, which is higher than the first rotation speed, based on the speed signal; and a drive signal output circuit configured to output to a drive circuit configured to drive the motor a drive signal for increasing the rotation speed when the rotation speed is lower than the first rotation speed and decreasing the rotation speed when the rotation speed is higher than the second rotation speed, based on determination results of the first and second determining circuits.
    • 电动机速度控制电路包括:第一确定电路,被配置为基于与所述转速相对应的速度信号来确定电动机的转速是否高于设定的第一转速; 第二确定电路,被配置为基于所述速度信号来确定所述转速是否高于高于所述第一转速的设定的第二转速; 以及驱动信号输出电路,被配置为输出到驱动电路,所述驱动电路被配置为当所述转速低于所述第一转速时驱动所述电动机用于增加转速的驱动信号,并且当所述转速高于所述第一转速时降低所述转速 第二转速,基于第一和第二确定电路的确定结果。
    • 8. 发明申请
    • Valve timing control apparatus of internal combustion engine
    • 内燃机气门正时控制装置
    • US20070101962A1
    • 2007-05-10
    • US11590880
    • 2006-11-01
    • Tomoya TsukadaSeiji SugaHideaki Nakamura
    • Tomoya TsukadaSeiji SugaHideaki Nakamura
    • F01L1/34
    • F01L1/3442F01L1/34409F01L2001/34426F01L2001/34453
    • A valve timing control apparatus is adapted to an exhaust valve side of an internal combustion engine. A vane member is arranged to rotate with a camshaft relative to a timing sprocket member. The vane member is rotated at low speed engine operation dominantly by a camshaft-torque actuation mechanism and at high speed engine operation dominantly by a hydraulic actuation mechanism. The camshaft-torque actuation mechanism is actuated by an alternating torque of the camshaft, whereas the hydraulic actuation mechanism is actuated by a fluid pump. The vane member includes a first vane arranged to operate in the camshaft-torque actuation mechanism and a second vane arranged to operate in the hydraulic actuation mechanism. The first vane has a shorter radial length and a smaller pressure-receiving area than the second vane.
    • 气门正时控制装置适用于内燃机的排气门侧。 叶片构件布置成与凸轮轴相对于正时链轮构件一起旋转。 叶片构件通过凸轮轴 - 扭矩致动机构主要以低速发动机运转而以高速发动机运转主要由液压致动机构转动。 凸轮轴扭矩致动机构由凸轮轴的交替扭矩致动,而液压致动机构由流体泵致动。 叶片构件包括布置成在凸轮轴 - 扭矩致动机构中操作的第一叶片和布置成在液压致动机构中操作的第二叶片。 第一叶片具有比第二叶片更短的径向长度和更小的压力接收面积。