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    • 1. 发明申请
    • CONTROL APPARATUS FOR AUTOMATIC TRANSMISSION
    • 自动变速器控制装置
    • US20090312131A1
    • 2009-12-17
    • US12481058
    • 2009-06-09
    • Osamu SATOAkio NonomuraHiromichi Akebono
    • Osamu SATOAkio NonomuraHiromichi Akebono
    • F16H59/38F16H59/72
    • F16H61/061F16H2061/0481
    • An automatic transmission includes: a frictional engagement element arranged to be switched from an engagement state to a disengagement state at a switching from a running range to a neutral range, and including: frictional plates; a first piston arranged to push the frictional plates; a second piston arranged to push the frictional plates; a first hydraulic chamber arranged to receive a hydraulic fluid for pushing the first piston; and a second hydraulic chamber arranged to receive a hydraulic fluid for pushing the second piston; a first discharge speed switching section arranged to switch only a discharge speed of the hydraulic fluid of the first hydraulic chamber; and a control unit configured to increase the discharge speed of the hydraulic fluid of the first hydraulic chamber during a predetermined time period by the first discharge speed switching section at the switching from the running range to the neutral range.
    • 自动变速器包括:摩擦接合元件,其布置成在从行驶范围切换到中立范围时从接合状态切换到分离状态,并且包括:摩擦板; 布置成推动摩擦板的第一活塞; 布置成推动摩擦板的第二活塞; 第一液压室,布置成接收用于推动第一活塞的液压流体; 以及第二液压室,其布置成接收用于推动所述第二活塞的液压流体; 第一排出速度切换部,其仅仅切换第一液压室的液压流体的排出速度; 以及控制单元,其被配置为在从所述行驶范围切换到中立范围时,通过所述第一排出速度切换部在预定时间段期间增加所述第一液压室的液压流体的排出速度。
    • 2. 发明申请
    • HYDRAULIC CONTROL DEVICE AND METHOD FOR AUTOMATIC TRANSMISSION
    • 液压控制装置及自动变速箱的方法
    • US20090306868A1
    • 2009-12-10
    • US12470251
    • 2009-05-21
    • Hiromichi AKEBONOOsamu SATOAkio NONOMURA
    • Hiromichi AKEBONOOsamu SATOAkio NONOMURA
    • F16H61/28G06F19/00G06F7/00F16H61/00F16H59/00
    • F16H61/061F16H2061/0488F16H2312/02
    • There is provided a hydraulic control device for controlling a hydraulic pressure supplied to a vehicle start-up engagement element in an automatic transmission when a shift lever is moved from a non-drive range position to a drive range position. The hydraulic control device has a target pressure setting section that sets, based on an input torque of the automatic transmission, a target value of hydraulic pressure supplied to the vehicle start-up engagement element at the completion of engagement of the vehicle start-up engagement element and corrects the target value periodically based on the transmission input torque until the completion of engagement of the vehicle start-up engagement element and a hydraulic pressure control section that controls the hydraulic pressure in such a manner that the hydraulic pressure supplied to the vehicle start-up engagement element reaches the corrected target value at the completion of engagement of the vehicle start-up engagement element.
    • 提供一种液压控制装置,用于当变速杆从非驱动范围位置移动到驱动范围位置时,控制供给到自动变速器中的车辆启动接合元件的液压。 液压控制装置具有目标压力设定部,其基于自动变速器的输入转矩,在车辆起动接合的接合完成时,设定供给到车辆起动接合元件的液压的目标值 元件,并且基于变速器输入扭矩周期性地修正目标值,直到车辆起动接合元件的接合完成为止,以及控制液压的液压控制部,使得供给车辆的液压开始 在车辆启动接合元件的接合完成时,接合元件达到校正的目标值。
    • 4. 发明申请
    • CONTROL SYSTEM FOR AUTOMATIC TRANSMISSION
    • 自动变速控制系统
    • US20090234547A1
    • 2009-09-17
    • US12400329
    • 2009-03-09
    • Takashige HINAMIOsamu SATO
    • Takashige HINAMIOsamu SATO
    • B60W10/10G06F17/00B60W30/18
    • F16H61/061F16H2061/0087F16H2061/0258Y10T477/60
    • A control system including a friction engagement element, a solenoid valve, an engagement pressure control valve and an electronic control unit, wherein a learning correction amount is divided into an initial learning amount that has no dependence upon an engagement pressure command value and a time-dependent deterioration amount that has dependence upon the engagement pressure command value, and wherein a time-dependent deterioration correction amount is determined according to the engagement pressure command value and a degree of progress of time-dependent deterioration that is indicated by a difference between a learning region correction amount and an initial learning amount which are obtained by a learning control in a learning region that is a limited input torque region, and a final engagement pressure command value is calculated as the learning correction amount by adding the initial learning amount at the time of correction to the time-dependent deterioration correction amount.
    • 一种包括摩擦接合元件,电磁阀,接合压力控制阀和电子控制单元的控制系统,其中学习校正量被分为初始学习量,其不依赖于接合压力指令值和时间 - 依赖于接合压力指令值的依赖劣化量,并且其中根据接合压力指令值和随时间变化的进行程度确定时间依赖性劣化校正量,该程度由学习 区域校正量和通过作为受限输入转矩区域的学习区域中的学习控制获得的初始学习量,并且通过将当前的初始学习量相加来计算最终接合压力指令值作为学习校正量 对时间依赖的劣化校正量进行校正 。
    • 7. 发明申请
    • PRINT APPARATUS
    • 打印设备
    • US20110222950A1
    • 2011-09-15
    • US13043947
    • 2011-03-09
    • Osamu SATO
    • Osamu SATO
    • B41J11/66
    • B41J11/0045B41J11/34B41J11/485
    • A print apparatus is supplied that feeds continuous paper with suppressing its swelling caused by perforations or crease. In the print apparatus, a platen is furnished opposite to a printing section; a medium support member is furnished capable of changing an interval from the platen and supports a record medium toward the platen; and a medium support auxiliary member is furnished on the opposite side to the platen in the medium support member, and when the medium support member is made to separate from the platen, the medium support auxiliary member is made to protrude from the medium support member.
    • 供给打印装置,其供给连续纸,抑制由穿孔或褶皱引起的溶胀。 在打印装置中,与打印部相对设置有压板; 中间支撑构件被配置为能够改变与压板的间隔并将记录介质支撑到压板; 并且介质支撑辅助构件设置在介质支撑构件中与压板相对的一侧上,并且当介质支撑构件与压板分离时,介质支撑辅助构件从介质支撑构件突出。
    • 8. 发明申请
    • VALVE TIMING ADJUSTING APPARATUS
    • 阀调时调整装置
    • US20090250028A1
    • 2009-10-08
    • US12409778
    • 2009-03-24
    • Toshiki FUJIYOSHIOsamu SATO
    • Toshiki FUJIYOSHIOsamu SATO
    • F01L1/34
    • F01L1/3442F01L2001/34466F01L2001/34483F01L2800/01F01L2800/03
    • A valve timing adjusting apparatus includes a housing, a vane rotor, a lock member, a resilient member, and a control unit. The housing includes a limitation groove, limitation stoppers, and a lock hole. When the lock member is received in the groove, the rotational phase is controlled within a predetermined range. When the lock member is fitted with the lock hole, the rotational phase is locked to a lock phase. The resilient member urges the lock member toward the limitation groove and the lock hole in the predetermined direction. The control unit controls a driving force that actuates the lock member in a direction opposite from the predetermined direction. The lock member has small and large diameter portions that are receivable in the lock hole.
    • 气门正时调节装置包括壳体,叶片转子,锁定构件,弹性构件和控制单元。 壳体包括限位槽,限位挡块和锁孔。 当锁定构件被容纳在凹槽中时,旋转相位被控制在预定范围内。 当锁定构件配有锁定孔时,旋转相锁定到锁定相位。 弹性构件沿预定方向将锁定构件推向限制槽和锁定孔。 控制单元控制沿与预定方向相反的方向致动锁定构件的驱动力。 锁定构件具有可容纳在锁定孔中的小直径部分。
    • 10. 发明申请
    • LIQUID DISCHARGE HEAD AND MANUFACTURING METHOD THEREOF
    • 液体排出头及其制造方法
    • US20070285469A1
    • 2007-12-13
    • US11756177
    • 2007-05-31
    • Osamu SATOToshiaki Hirosawa
    • Osamu SATOToshiaki Hirosawa
    • B41J2/05
    • B41J2/14024B41J2/14072B41J2/1603B41J2/1623B41J2/1632B41J2202/18B41J2202/19B41J2202/20
    • A liquid discharge head comprising a liquid discharge substrate in which a first liquid supply port being a penetration port for supplying a liquid is formed and is provided with a first electrode receiving electric energy for discharging the liquid on a surface thereof on one side, a supporting member which is opposed to the first electrode and a second liquid supply port being a penetration port for supplying the liquid is formed to communicate with the first liquid supply port, the supporting member provided with a second electrode for transmitting the electric energy to the first electrode on a surface opposed to the first electrode, and a conductive first intermediate member abutting with both of the first electrode and the second electrode to electrically connect the first electrode and the second electrode, wherein an abutting surface of the first intermediate member abutting with the first electrode is flattened.
    • 一种液体排出头,包括:液体排出基板,其中形成有作为用于供给液体的贯通口的第一液体供给口,并且在其一侧的表面上设置有用于排出液体的电能的第一电极, 与第一电极相对的构件和作为供给液体的贯通口的第二供液口形成为与第一液体供给口连通,支撑构件设置有用于将电能传递到第一电极的第二电极 在与所述第一电极相对的表面上,以及与所述第一电极和所述第二电极两者抵接的导电的第一中间部件,以电连接所述第一电极和所述第二电极,其中所述第一中间部件与所述第一电极 电极变平。