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    • 3. 发明授权
    • Lock-up control apparatus for automatic transmission
    • 自动变速器锁定控制装置
    • US08498791B2
    • 2013-07-30
    • US12954676
    • 2010-11-26
    • Akio MutoMasaaki TakamatsuYasuhiro Ijichi
    • Akio MutoMasaaki TakamatsuYasuhiro Ijichi
    • B60W10/02
    • F16H61/14F16H59/20F16H61/143F16H2061/145Y10T477/6203Y10T477/70
    • A lock-up control apparatus includes a kick-down instruction detector configured to detect a kick-down shift transmission instruction during application of a lock-up clutch. A first lock-up control amount changer is configured to change the lock-up control amount when the kick-down shift transmission instruction is detected. An intermediate gear speed determinator is configured to determine whether the kick-down shift transmission instruction includes an intermediate gear speed shift transmission instruction to an intermediate shift transmission gear speed. A second lock-up control amount changer is configured to change the lock-up control amount when the kick-down shift transmission instruction includes the intermediate gear speed shift transmission instruction. A target gear speed shift transmission instruction detector is configured to detect a target gear speed shift transmission instruction. The third lock-up control amount changer is configured to change the lock-up control amount when the target gear speed shift transmission instruction is detected.
    • 一种锁定控制装置,包括一个被配置成在施加锁止离合器期间检测降档换档传动指令的起跳指令检测器。 第一锁定控制量变更器被配置为当检测到降档移动发送指令时改变锁定控制量。 中间齿轮速度确定器被配置为确定减速变速传动指令是否包括中间档位变速传动指令到中间变速传动档位速度。 另外,第二锁止控制量变更器构成为,当起动换档变速指示包含中间档位变速传递指令时,改变锁止控制量。 目标齿轮变速传动指令检测器被配置为检测目标齿轮速度换档发送指令。 第三锁止控制量变更器被配置为当检测到目标档位变速传动指令时改变锁定控制量。
    • 5. 发明申请
    • Dispensing and injection system for radiopharmaceuticals
    • 放射性药物分配和注射系统
    • US20050203329A1
    • 2005-09-15
    • US11044176
    • 2005-01-28
    • Akio MutoChi-Min Hu
    • Akio MutoChi-Min Hu
    • A61J3/00A61K51/00A61M36/14
    • A61M5/1407A61M5/007A61M2209/08
    • Disclosed is a dispensing and injection system for radiopharmaceuticals, wherein a dosage calibrator is arranged inside a radiation-shielded hermetic chamber for detecting the radioactivity of radiopharmaceuticals contained in a vial. At least one saline water cartridge is arranged inside the casing and includes an internal passage, radiopharmaceuticals discharge end, a radiopharmaceuticals injection end, a and saline water reservoir outlet end. The saline water cartridge forms a saline water reservoir. A movable dispensing and injection mechanism controls radiopharmaceuticals dispensing operation of a syringe and controls movement of the syringe between a radiopharmaceuticals dispensing position and an injection position. When the movable dispensing and injection mechanism moves the syringe to the radiopharmaceuticals dispensing position, the syringe withdraws a predetermined amount of radiopharmaceuticals from the vial. When moved to the injection position, the syringe injects the withdrawn radiopharmaceuticals into the radiopharmaceuticals injection end of the saline water cartridge. After the radiopharmaceuticals is injected into a patient, the saline water stored in the saline water reservoir of the saline water cartridge is withdrawn for effecting flushing process.
    • 公开了用于放射性药物的分配和注射系统,其中剂量校准器布置在辐射屏蔽密封室内部,用于检测容纳在小瓶中的放射性药物的放射性。 至少一个盐水盒被布置在壳体内部,并且包括内部通道,放射性药物排出端,放射性药物注射端和盐水储存器出口端。 盐水盒形成盐水水箱。 可移动分配和注射机构控制放射性药物分配注射器的操作并控制注射器在放射性药物分配位置和注射位置之间的运动。 当可移动分配和注射机构将注射器移动到放射性药物分配位置时,注射器从小瓶中取出预定量的放射性药物。 当移动到注射位置时,注射器将排出的放射性药剂注入盐水盒的放射性药物注射端。 将放射性药物注射到患者体内后,取出储存在盐水盒的盐水储存器中的盐水进行冲洗处理。
    • 7. 发明申请
    • CONTROL DEVICE FOR AUTOMATIC TRANSMISSION FOR VEHICLE
    • 用于车辆自动变速器的控制装置
    • US20080182714A1
    • 2008-07-31
    • US12020277
    • 2008-01-25
    • Yoshiharu SAITOUAkio Muto
    • Yoshiharu SAITOUAkio Muto
    • F16H61/14F16H59/18
    • F16H61/143F16H59/20F16H59/24F16H59/44F16H2061/145Y10T477/6352Y10T477/63525Y10T477/693
    • A control device for an automatic transmission for a vehicle including a torque converter interposed between an output shaft of an engine and an input shaft of the automatic transmission, the torque converter having a lock-up clutch for mechanically connecting the output shaft and the input shaft in a direct manner, and a lock-up clutch engagement control unit for engaging the lock-up clutch by a predetermined engagement force in a predetermined operational region determined by a throttle angle and a vehicle speed. The control device further includes a shift map having a slip region for the lock-up clutch set in relation to a plurality of shift characteristics preliminarily set according to vehicle speeds, the slip region being defined by a downshift line and a slip start line deviated from the downshift line by a predetermined range of throttle angle toward lower throttle angles. When the throttle angle falls within the slip region before kickdown, the slip control of the lock-up clutch is performed by the lock-up clutch engagement control unit.
    • 一种用于车辆的自动变速器的控制装置,包括置于发动机的输出轴和自动变速器的输入轴之间的变矩器,所述变矩器具有用于将输出轴和输入轴机械连接的锁止离合器 以及锁止离合器接合控制单元,用于在由节气门角度和车速确定的预定操作区域中以预定的接合力接合锁止离合器。 该控制装置还包括一个换档图,其具有相对于根据车速预先设定的多个换档特性而设定的锁止离合器的滑动区域,滑移区域由降档线和滑移起始线限定 减速线以预定的节流角范围朝向较低的节气门角度降低。 当降档之前的节气门角落在滑动区域内时,锁止离合器的滑动控制由锁止离合器接合控制单元进行。
    • 8. 发明授权
    • Control device for automatic transmission for vehicle
    • 车辆自动变速箱控制装置
    • US07988595B2
    • 2011-08-02
    • US12020277
    • 2008-01-25
    • Yoshiharu SaitouAkio Muto
    • Yoshiharu SaitouAkio Muto
    • F16H61/58
    • F16H61/143F16H59/20F16H59/24F16H59/44F16H2061/145Y10T477/6352Y10T477/63525Y10T477/693
    • A control device for an automatic transmission for a vehicle including a torque converter interposed between an output shaft of an engine and an input shaft of the automatic transmission, the torque converter having a lock-up clutch for mechanically connecting the output shaft and the input shaft in a direct manner, and a lock-up clutch engagement control unit for engaging the lock-up clutch by a predetermined engagement force in a predetermined operational region determined by a throttle angle and a vehicle speed. The control device further includes a shift map having a slip region for the lock-up clutch set in relation to a plurality of shift characteristics preliminarily set according to vehicle speeds, the slip region being defined by a downshift line and a slip start line deviated from the downshift line by a predetermined range of throttle angle toward lower throttle angles. When the throttle angle falls within the slip region before kickdown, the slip control of the lock-up clutch is performed by the lock-up clutch engagement control unit.
    • 一种用于车辆的自动变速器的控制装置,包括置于发动机的输出轴和自动变速器的输入轴之间的变矩器,所述变矩器具有用于将输出轴和输入轴机械连接的锁止离合器 以及锁止离合器接合控制单元,用于在由节气门角度和车速确定的预定操作区域中以预定的接合力接合锁止离合器。 控制装置还包括一个换档图,其具有相对于根据车速预先设定的多个换档特性的锁止离合器组的滑动区域,滑移区域由降档线和滑移起始线限定 减速线以预定的节流角范围朝向较低的节气门角度降低。 当降档之前的节气门角落在滑动区域内时,锁止离合器的滑动控制由锁止离合器接合控制单元进行。
    • 10. 发明申请
    • Disposable saline water cartridge module for radiopharmaceuticals dispensing and injection system
    • 放射性药物分配和注射系统的一次性盐水盒模块
    • US20050203330A1
    • 2005-09-15
    • US11044196
    • 2005-01-28
    • Akio MutoChi-Min Hu
    • Akio MutoChi-Min Hu
    • A61K51/00A61M36/04A61M36/14
    • G21F5/015A61M5/007A61M2205/12G21F5/06G21G1/0005
    • A saline water cartridge for radiopharmaceuticals injection includes a casing in which a primary passage extends from an outlet of a saline water reservoir to a radiopharmaceuticals inlet port of the cartridge and a secondary passage extends from an opening defined in the primary passage to a radiopharmaceuticals outlet port where a patient injection device is connected to supply the radiopharmaceuticals to the patient. A first one-way membrane valve is arranged in the opening of the primary passage to allow the radiopharmaceuticals injected into the primary passage from a radiopharmaceuticals carrying syringe to flow to the outlet port, while preventing reverse flow. A second one-way membrane valve is arranged in the outlet of the saline water reservoir to allow saline water to replenish into the primary passage while preventing reverse flow.
    • 用于放射性药物注射的盐水盒包括壳体,其中初级通道从盐水储存器的出口延伸到药筒的放射性药物入口端口,并且次级通道从限定在第一通道中的开口延伸到放射性药物出口 其中连接患者注射装置以将放射性药物供应给患者。 第一单向膜阀设置在主通道的开口中,以允许从携带注射器的放射性药物注入到初级通道中的放射性药物流到出口,同时防止反向流动。 第二个单向膜阀设置在盐水容器的出口处,以允许盐水补充到主通道中,同时防止反向流动。