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    • 1. 发明授权
    • Hydraulic controlling apparatus for automatic transmission for vehicle
    • 用于车辆自动变速器的液压控制装置
    • US07611434B2
    • 2009-11-03
    • US11553717
    • 2006-10-27
    • Hiroshi FukushimaNaoki KatoKenichi Tsuchida
    • Hiroshi FukushimaNaoki KatoKenichi Tsuchida
    • F16H31/00
    • F16H61/12F16H3/663F16H61/686F16H2061/1232F16H2061/1236F16H2061/1264F16H2200/0052F16H2200/2007F16H2200/2023F16H2200/2043Y10S477/906Y10T477/691
    • The fail-safe gear step switching valve (120) can be switched to the first position to establish the low-speed side fail-safe gear step (third speed-change gear step) or the second position to establish the high-speed side fail-safe gear step (fifth speed-change gear step). Upon the failure state of the solenoid valve device (SLC1, SLC2), the fail-safe gear step switching valve is held at the second position by the line hydraulic pressure (PL1). Two kinds of the fail-safe gear steps i.e., the third speed-change gear step and the fifth speed-change gear step can be established depending on the vehicle state just before the failure occurrence of the fail-safe gear step switching valve. Even if the D→N operation of the shift lever (72) is performed during the vehicle running in the fifth speed-change gear step, the fail-safe gear step switching valve remains at the second position to establish the fifth speed-change gear step even upon the shifting operation of the shift lever to the “D” position again.
    • 可以将故障保护齿轮级切换阀(120)切换到第一位置,以建立低速侧故障安全齿轮级(第三变速档)或第二位置,以建立高速侧故障 - 安全档位(第五档变速档)。 在电磁阀装置(SLC1,SLC2)的故障状态下,通过线路液压(PL1)将故障保护齿轮级切换阀保持在第二位置。 可以根据在故障保护齿轮级切换阀的故障发生之前的车辆状态来建立两种故障保护齿轮级,即第三变速档和第五变速档。 即使在第五变速档中的车辆行驶期间执行变速杆(72)的D-> N动作,则故障保护齿轮级切换阀保持在第二位置,以建立第五变速 即使在变速杆再次向“D”位置的换档操作时也是如此。
    • 2. 发明授权
    • Hydraulic control apparatus for vehicular fluid-actuated power transmitting device provided with lock-up clutch
    • 具有锁止离合器的车用流体动力传动装置的液压控制装置
    • US07617676B2
    • 2009-11-17
    • US11673754
    • 2007-02-12
    • Hiroshi FukushimaNaoki KatoKenichi Tsuchida
    • Hiroshi FukushimaNaoki KatoKenichi Tsuchida
    • F16D39/00
    • F16H59/72F16H61/143Y10T74/19149Y10T137/6552
    • A hydraulic control apparatus for a vehicular fluid-actuated power transmitting device provided with a lock-up clutch and an oil cooler, the lock-up clutch being operable between an engaged state and a released state according to a difference between pressures of a working fluid in an engaging fluid chamber and a releasing fluid chamber, the oil cooler being connected to a fluid passage communicating with the engaging and releasing fluid chambers, and operable to cool the working fluid, the hydraulic control apparatus including an oil cooler by-pass valve operable to permit the working fluid to by-pass the oil cooler, and a low-temperature by-pass device operable to open the oil cooler by-pass valve, for permitting the working fluid to by-passes the oil cooler, when a temperature of the working fluid is lower than a predetermined lower limit.
    • 一种用于具有锁止离合器和油冷却器的车辆流体致动动力传递装置的液压控制装置,所述锁止离合器可根据工作流体的压力之间的差异在接合状态和释放状态之间操作 在接合流体室和释放流体室中,油冷却器连接到与接合和释放流体室连通的流体通道,并且可操作以冷却工作流体,液压控制装置包括油冷却器旁通阀可操作 以允许工作流体绕过油冷却器,以及可操作以打开油冷却器旁通阀的低温旁通装置,用于允许工作流体绕过油冷却器,当温度为 工作流体低于预定的下限。
    • 4. 发明申请
    • HYDRAULIC CONTROLLING APPARATUS FOR AUTOMATIC TRANSMISSION FOR VEHICLE
    • 用于车辆自动变速器的液压控制装置
    • US20070117678A1
    • 2007-05-24
    • US11553717
    • 2006-10-27
    • Hiroshi FukushimaNaoki KatoKenichi Tsuchida
    • Hiroshi FukushimaNaoki KatoKenichi Tsuchida
    • F16H61/00
    • F16H61/12F16H3/663F16H61/686F16H2061/1232F16H2061/1236F16H2061/1264F16H2200/0052F16H2200/2007F16H2200/2023F16H2200/2043Y10S477/906Y10T477/691
    • The fail-safe gear step switching valve (120) can be switched to the first position to establish the low-speed side fail-safe gear step (third speed-change gear step) or the second position to establish the high-speed side fail-safe gear step (fifth speed-change gear step). Upon the failure state of the solenoid valve device (SLC1, SLC2), the fail-safe gear step switching valve is held at the second position by the line hydraulic pressure (PL1). Two kinds of the fail-safe gear steps i.e., the third speed-change gear step and the fifth speed-change gear step can be established depending on the vehicle state just before the failure occurrence of the fail-safe gear step switching valve. Even if the D→N operation of the shift lever (72) is performed during the vehicle running in the fifth speed-change gear step, the fail-safe gear step switching valve remains at the second position to establish the fifth speed-change gear step even upon the shifting operation of the shift lever to the “D” position again.
    • 可以将故障保护齿轮级切换阀(120)切换到第一位置,以建立低速侧故障安全齿轮级(第三变速档)或第二位置,以建立高速侧故障 - 安全档位(第五档变速档)。 在电磁阀装置(SLC1,SLC2)的故障状态下,故障安全齿轮级切换阀通过线路液压(P L1> L1)保持在第二位置。 可以根据在故障保护齿轮级切换阀的故障发生之前的车辆状态来建立两种故障保护齿轮级,即第三变速齿轮级和第五变速档。 即使在第五变速档中的车辆行驶期间执行变速杆(72)的D-> N动作,则故障保护齿轮级切换阀保持在第二位置,以建立第五变速 即使在变速杆再次向“D”位置的换档操作时也是如此。
    • 5. 发明申请
    • DIE CLAMPING DEVICE FOR INJECTION MOLDING MACHINE
    • 注塑成型机用夹紧装置
    • US20130129858A1
    • 2013-05-23
    • US13812973
    • 2011-10-26
    • Saburo FujitaNaoki Kato
    • Saburo FujitaNaoki Kato
    • B29C45/03
    • B29C45/03B29C45/1761B29C45/64
    • Breakage of the actuator moving the movable platen in the clamping device of an injection moulder is prevented. The clamping device includes a movable platen shifting device increasing and decreasing a horizontal distance between the movable platen (3) and the fixed platen (2). It includes an actuator (41), a clevis pin connecting the actuator (41) and the movable platen (3), a clevis pin holding part holding a central axis of the clevis pin perpendicular to a moving direction of the movable platen (3), and a clevis pin connecting part that connects the actuator (41) and the clevis in. The clevis pin connecting part is a supporting structure rotating with the clevis pin. The clevis pin connecting part is supported by the movable platen (3). The clevis pin, the clevis pin connecting part, and the front end of the actuator are aligned in a straight line.
    • 防止致动器在注塑机的夹紧装置中移动可动压板的破损。 夹紧装置包括可移动的压板移动装置,其增加和减小可动压板(3)和固定压板(2)之间的水平距离。 其包括致动器(41),连接致动器(41)和可动压板(3)的U形夹销,保持与可动压板(3)的移动方向垂直的U形夹销的中心轴线的U形夹销保持部分, ,以及连接致动器(41)和U形夹的U形夹销连接部。U形夹销连接部是与U形夹销一起旋转的支撑结构。 U形夹销连接部分由可动压板(3)支撑。 U形夹销,U形夹销连接部分和执行机构的前端以直线对齐。
    • 6. 发明授权
    • Mold clamping device
    • 模具夹紧装置
    • US08366438B2
    • 2013-02-05
    • US12741848
    • 2008-04-09
    • Naoki KatoToshihiko Kariya
    • Naoki KatoToshihiko Kariya
    • B29C45/64
    • B22D17/26B22D17/266B29C45/1747B29C45/6728
    • In a mold clamping device including a fixed platen, a movable platen, a plurality of tie bars, and mold clamping half nuts, a pair of additional half members which is restricted in the axial direction of the tie bar and moves in an opening/closing direction of the half nuts relative to the mold clamping half nuts is further provided, and when the mold clamping half nuts are closed and mated with the screw or the ring groove of the tie bar, the additional half members are closed to hold the tie bar so that play at mated parts is removed or cancelled by fixation.
    • 在包括固定压板,可移动压板,多个连接杆和模具夹紧半螺母的模具夹紧装置中,一对附加的半部件在连接杆的轴向方向上被限制并且在打开/关闭 还提供了半螺母相对于模具夹紧半螺母的方向,并且当夹紧半螺母被关闭并且与连接杆的螺钉或环槽相配合时,附加的半部件被关闭以保持连接杆 以便通过固定来消除或取消配合部位的游戏。
    • 7. 发明授权
    • Piston apparatus of automatic transmission
    • 活塞式自动变速器
    • US08297426B2
    • 2012-10-30
    • US12588539
    • 2009-10-19
    • Shintaro GotoHirofumi MorishitaNaoki Kato
    • Shintaro GotoHirofumi MorishitaNaoki Kato
    • F16D25/0638F16D25/12
    • F16D25/0638F16D2048/0212F16H3/663F16H57/08F16H61/686F16H63/3026F16H2003/445F16H2200/0052F16H2200/2007F16H2200/2023
    • In an embodiment of the present invention, a piston apparatus of an automatic transmission includes a piston member capable of moving in the axial direction of the rotation shaft, and a hydraulic chamber, and has been configured so that the piston member moves in the axial direction due to pressure in the hydraulic chamber. The piston member includes a cylinder part that extends in the axial direction and to which pressure in the hydraulic chamber is transmitted, a pressing part that extends in the radial direction and presses against a friction engaging element of the automatic transmission, and a connecting part that connects the cylinder part and the pressing part and, with respect to the axial direction, is offset from the pressing part in a direction of separation from the friction engaging element. Also, the axial direction offset amount of the connecting part from the pressing part of the piston member has been set larger than the stroke amount of the piston member.
    • 在本发明的一个实施例中,一种自动变速器的活塞装置包括能够沿着旋转轴的轴向移动的活塞构件和液压室,并且构造成使得活塞构件沿轴向移动 由于液压室中的压力。 活塞构件包括沿轴向延伸并且液压室中的压力被传递的缸部,沿径向延伸并压靠自动变速器的摩擦接合元件的按压部,以及连接部, 连接气缸部分和按压部分,并且相对于轴向方向在与摩擦接合元件分离的方向上偏离按压部分。 而且,来自活塞部件的按压部的连接部的轴向偏移量被设定为大于活塞部件的行程量。
    • 9. 发明授权
    • Integrated circuit device and signal transmission system
    • 集成电路设备和信号传输系统
    • US07757022B2
    • 2010-07-13
    • US11630387
    • 2004-08-04
    • Naoki KatoYasuhiko Sasaki
    • Naoki KatoYasuhiko Sasaki
    • G06F13/12G06F13/38
    • G06F13/385G06F13/4018
    • Some interface signals are selected from among signals of a plurality of different parallel interfaces, then being multiplexed onto a serial connection. A transmitter of a signal transmission system includes an interface-signal selector IFS, and a transfer programmer TP for issuing a control signal to instruct the selection from among the parallel interfaces. The transfer programmer TP implements the multiplexing of the selected interface signals in such a manner that the specification of the parallel interfaces is satisfied. Also, the transfer programmer TP changes, as occasion requires, the control signal to instruct which interfaces to select. This change allows the interface signals to be multiplexed onto the serial connection while dynamically changing the interface signals to be multiplexed.
    • 从多个不同的并行接口的信号中选择一些接口信号,然后被复用到串行连接上。 信号传输系统的发射机包括接口信号选择器IFS和用于发出控制信号以从并行接口指示选择的传输编程器TP。 传输编程器TP以满足并行接口的规范的方式实现所选接口信号的复用。 此外,转移编程器TP根据需要改变控制信号以指示哪些接口被选择。 该变化允许接口信号被多路复用到串行连接上,同时动态地改变要被复用的接口信号。
    • 10. 发明授权
    • Microprocessor, network system and communication method
    • 微处理器,网络系统及通讯方式
    • US07602779B2
    • 2009-10-13
    • US11211573
    • 2005-08-26
    • Naoki KatoFumio Arakawa
    • Naoki KatoFumio Arakawa
    • H04L12/28H04L12/56
    • H04L69/12
    • A first object of the present invention is to reduce interrupt to a CPU which occurs when microprocessors that are connected by a network receive a packet from the network to efficiently operate the processors. A second object of the present invention is to provide a microprocessor and a communication method, which make it possible to reply a quick response to the microprocessor at the transmitting side. Each of the microprocessors includes the CPU and a communication module. The communication module includes a register that stores information which is managed by the microprocessor. The communication module compares information at a given bit position within the packet which is inputted through the network with information retained in the register, and determines whether a process corresponding to the packet reception is conducted by the CPU, or not, according to the comparison result.
    • 本发明的第一个目的是减少当由网络连接的微处理器从网络接收分组以有效地操作处理器时发生的CPU的中断。 本发明的第二个目的是提供一种微处理器和通信方法,其使得可以在发送侧对微处理器进行快速响应。 每个微处理器包括CPU和通信模块。 通信模块包括存储由微处理器管理的信息的寄存器。 通信模块将通过网络输入的分组中的给定比特位置处的信息与保存在该寄存器中的信息进行比较,并根据比较结果确定是否由CPU进行与分组接收对应的处理 。