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    • 2. 发明授权
    • Prober and probe testing method for temperature-controlling object to be tested
    • 用于温度控制对象的探测和探测测试方法
    • US06992500B2
    • 2006-01-31
    • US10869932
    • 2004-06-18
    • Masahiko SugiyamaYoshinori Inoue
    • Masahiko SugiyamaYoshinori Inoue
    • G01R31/26
    • G01R31/2874G01R1/06705G01R31/2865G01R31/2891
    • A prober which tests an object to be tested under temperature control is provided. This prober includes a stage base, Z stage, X-Y stage having a frame structure, substrate fixing mechanism arranged on the X-Y stage, a probe card arranged to oppose the substrate fixing mechanism, and a probing stage fixed on the Z stage and arranged in the frame structure of the X-Y stage such that its axis coincides with an extension line vertically extending from the probe center of the probe card. The probing stage includes a probing elevating mechanism, and a temperature controller to heat and cool the object to be tested. The probing stage supports the substrate of the object to be tested from the bottom surface, and controls the temperature of the object to be tested.
    • 提供了一个在温度控制下测试待测物体的探测器。 该探测器包括台架基座,Z台架,具有框架结构的XY平台,布置在XY平台上的基板固定机构,布置成与基板固定机构相对的探针卡,以及固定在Z台上的探测台,并布置在 XY台的框架结构,使得其轴线与从探针卡的探针中心垂直延伸的延伸线重合。 探测阶段包括探测升降机构和温度控制器,以加热和冷却待测物体。 探测阶段从底面支撑被测物体的基底,并控制待测物体的温度。
    • 3. 发明授权
    • Prober and probe testing method for temperature-controlling object to be tested
    • 用于温度控制对象的探测和探测测试方法
    • US07332918B2
    • 2008-02-19
    • US11206003
    • 2005-08-18
    • Masahiko SugiyamaYoshinori Inoue
    • Masahiko SugiyamaYoshinori Inoue
    • G01R31/02
    • G01R31/2874G01R1/06705G01R31/2865G01R31/2891
    • A prober which tests an object to be tested under temperature control is provided. This prober includes a stage base, Z stage, X-Y stage having a frame structure, substrate fixing mechanism arranged on the X-Y stage, a probe card arranged to oppose the substrate fixing mechanism, and a probing stage fixed on the Z stage and arranged in the frame structure of the X-Y stage such that its axis coincides with an extension line vertically extending from the probe center of the probe card. The probing stage includes a probing elevating mechanism, and a temperature controller to heat and cool the object to be tested. The probing stage supports the substrate of the object to be tested from the bottom surface, and controls the temperature of the object to be tested.
    • 提供了一个在温度控制下测试待测物体的探测器。 该探测器包括台架基座,Z台架,具有框架结构的XY平台,布置在XY平台上的基板固定机构,布置成与基板固定机构相对的探针卡,以及固定在Z台上的探测台,并布置在 XY台的框架结构,使得其轴线与从探针卡的探针中心垂直延伸的延伸线重合。 探测阶段包括探测升降机构和温度控制器,以加热和冷却待测物体。 探测阶段从底面支撑被测物体的基底,并控制待测物体的温度。
    • 7. 发明授权
    • Sensor control apparatus and method
    • 传感器控制装置及方法
    • US07959778B2
    • 2011-06-14
    • US11518945
    • 2006-09-12
    • Hiroshi InagakiYoshinori Inoue
    • Hiroshi InagakiYoshinori Inoue
    • G01N27/406
    • G01N27/417
    • A sensor control apparatus comprising an air/fuel ratio sensor having a sensor cell with a pair of electrodes, a current source capable of supplying a predetermined current between the electrodes, a current control section that turns on/off the current source, a voltage detecting section that detects voltages generated between the electrodes at respective times when the current source is turned on and off, a differential voltage detecting section that detects a differential voltage between the voltages that are generated at the respective times when the current source is turned on and off, a first voltage comparing section that compares the differential voltage with a first threshold voltage, and a half-activated state determining section that determines that the sensor cell has reached a half-activated state when the differential voltage is lower than the first threshold voltage. A sensor control method is also provided.
    • 一种传感器控制装置,包括具有传感器单元和一对电极的空气/燃料比传感器,能够在电极之间提供预定电流的电流源,导通/截止电流源的电流控制部,电压检测 检测在电流源被导通和截止的各个时刻在电极之间产生的电压的差分电压检测部分,其检测在电流源被导通和关断的各个时刻产生的电压之间的差分电压; 将差分电压与第一阈值电压进行比较的第一电压比较部,以及当所述差分电压低于所述第一阈值电压时,判定所述传感器单元已经达到半激活状态的半激活状态判定部。 还提供了传感器控制方法。
    • 8. 发明授权
    • Compressor
    • 压缩机
    • US07856818B2
    • 2010-12-28
    • US11990247
    • 2007-05-31
    • Yoshinori InoueAkinobu KanaiOsamu NakayamaNaoki Koeda
    • Yoshinori InoueAkinobu KanaiOsamu NakayamaNaoki Koeda
    • F04B27/08F25B43/00
    • F04B27/109F04B39/0207F04B49/225F04B53/20F04B2027/1872F04C18/0215F04C18/3441F04C29/026
    • A compressor having a discharge chamber into which compressed refrigerant gas is discharged, a discharge passage connected to the discharge chamber, an oil separation device that centrifugally separate oil from the refrigerant gas, an oil reservoir chamber that communicates with a separation chamber through an oil passage and retains the oil separated from the refrigerant gas, and a filter provided between the separation chamber and the oil passage is disclosed. The oil reservoir chamber communicates with a low pressure zone in the compressor the pressure of which is lower than the pressure in the discharge chamber. The oil reservoir chamber thus supplies the separated oil to the low pressure zone. The oil separation device is arranged in the discharge passage in such a manner as to define the separation chamber. The oil separation device centrifugally separate the oil from the refrigerant gas by causing swirling of the refrigerant gas that has been sent to the separation chamber. The filter extends in a swirling direction of the refrigerant gas in the separation chamber.
    • 一种具有排出压缩的制冷剂气体的排出室的压缩机,与排出室连接的排出通路,将油与制冷剂气体离心分离的油分离装置,通过油路与分离室连通的储油室 并且保持与制冷剂气体分离的油,并且公开了设置在分离室和油路之间的过滤器。 储油室与压缩机中的压力低于排气室压力的低压区连通。 因此储油室将分离的油提供给低压区。 油分离装置以限定分离室的方式设置在排出通道中。 油分离装置通过使已经送到分离室的制冷剂气体旋转而将油与制冷剂气体离心分离。 过滤器在分离室中的制冷剂气体的旋转方向上延伸。
    • 10. 发明申请
    • VARIABLE DISPLACEMENT COMPRESSOR
    • 可变位移压缩机
    • US20090116971A1
    • 2009-05-07
    • US12264608
    • 2008-11-04
    • Taro OZEKIYoshinori InoueSuehiro FukazawaMasaya Sakamoto
    • Taro OZEKIYoshinori InoueSuehiro FukazawaMasaya Sakamoto
    • F04B1/29
    • F04B27/109F04B27/1036F04B27/1081F04B49/225F04B49/24
    • A variable displacement compressor includes a housing, a rotary shaft, a swash plate, a suction pressure region, a suction throttle valve, an oil reservoir, a lubricating oil passage, a gas flow passage, a communication passage, and a throttle mechanism. The suction-pressure region includes a suction chamber and a suction passage. The suction throttle valve is arranged in the suction passage and defines an upstream suction-pressure region and a downstream suction-pressure region. The lubricating oil passage connects the oil reservoir to the upstream suction-pressure region. The gas flow passage connects the crank chamber to the suction chamber. The communication passage connects the lubricating oil passage to at least one of the downstream suction-pressure region, the gas flow passage and the crank chamber. The throttle mechanism is provided in the lubricating oil passage between the oil reservoir and a position where the communication passage connects to the lubricating oil passage.
    • 可变排量压缩机包括壳体,旋转轴,斜盘,吸入压力区域,抽吸节流阀,储油器,润滑油通道,气体流路,连通通道和节流机构。 吸入压力区域包括吸入室和吸入通道。 抽吸节流阀布置在吸入通道中并且限定上游吸入压力区域和下游吸入压力区域。 润滑油通道将储油器连接到上游吸入压力区域。 气流通道将曲柄室连接到吸入室。 连通通道将润滑油通道连接到下游吸入压力区域,气体流动通道和曲柄室中的至少一个。 节气门机构设置在储油器与连通路与润滑油路连通的位置之间的润滑油通路中。