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    • 1. 发明授权
    • Print job management device, print job management method and recording medium
    • 打印作业管理装置,打印作业管理方法和记录介质
    • US07916329B2
    • 2011-03-29
    • US11654066
    • 2007-01-16
    • Koji IizukaAkio Murata
    • Koji IizukaAkio Murata
    • G06F15/00G06F15/16
    • G06F3/1288G06F3/1204G06F3/121G06F3/1229G06F3/1234G06F3/1255G06F3/1259
    • A print job management device includes: a print job receiver, operable to receive a print job including print setting information on a setting of a printing operation to be executed by a printing device from a print job preparing device for preparing the print job; an acquirer, operable to acquire device status information on a status of the printing device from the printing device; and a print job issuer, operable to determine, based on the print setting information and the device status information, whether the printing operation can be performed by the printing device, the print job issuer issuing the print job to the printing device when the print job issuer determines that the printing operation cannot be performed by the printing device and the device status information indicates a predetermined status regarding a feed path and a printing medium of the printing device.
    • 打印作业管理装置包括:打印作业接收器,用于从用于准备打印作业的打印作业准备装置接收包括打印设备执行的打印操作的设置的打印设置信息的打印作业; 收货方,用于从所述打印装置获取关于所述打印装置的状态的装置状态信息; 以及打印作业发行者,其可操作以基于所述打印设置信息和所述设备状态信息来确定所述打印作业是否可以由所述打印装置执行所述打印操作,所述打印作业发行者在所述打印作业 发行者确定打印装置不能执行打印操作,并且装置状态信息指示关于打印装置的进给路径和打印介质的预定状态。
    • 2. 发明授权
    • Semiconductor device manufacturing method
    • 半导体器件制造方法
    • US07166504B2
    • 2007-01-23
    • US10854162
    • 2004-05-27
    • Koji Iizuka
    • Koji Iizuka
    • H01L21/8249H01L21/4763
    • H01L28/20H01L23/5228H01L27/0629H01L2924/0002H01L2924/00
    • A semiconductor device manufacturing method is provided which is capable of suppressing variation of the resistance value of resistive interconnection and preventing variation of transistor performance. A gate electrode and a resistive interconnection are formed on a substrate and impurity ions are implanted into the surface of the substrate to form source/drain regions (diffusion layers: 1A, 1B) on both sides of the gate electrode. Also, impurity ions are implanted to control the resistance value of the resistive interconnection. Next, a sidewall film is formed to cover the resistive interconnection. Then a heat treatment is performed to activate the source/drain regions (diffusion layers: 1A, 1B).
    • 提供一种半导体器件制造方法,其能够抑制电阻互连的电阻值的变化并防止晶体管性能的变化。 在衬底上形成栅电极和电阻互连,并且将杂质离子注入到衬底的表面中,以在栅电极的两侧形成源/漏区(扩散层:1A,1B)。 此外,注入杂质离子以控制电阻互连的电阻值。 接下来,形成侧壁膜以覆盖电阻互连。 然后进行热处理以激活源极/漏极区域(扩散层:1A,1B)。
    • 3. 发明授权
    • Electromagnetic clutch
    • 电磁离合器
    • US07845479B2
    • 2010-12-07
    • US12098675
    • 2008-04-07
    • Tomiaki OchiaiKoji IizukaMasayuki Sayama
    • Tomiaki OchiaiKoji IizukaMasayuki Sayama
    • F16D27/115
    • F16D27/115F16D13/04F16D27/004
    • An electromagnetic clutch is provided with: a clutch hub which is connected to a shaft member (one of a pair of rotation members); a clutch housing which is connected to a hollow shaft (the other of a pair of rotation members); a rotor which is connected to the clutch housing; a main clutch (clutch member) which is disposed between the clutch hub and the clutch housing; and an electromagnet which operates the main clutch. An end surface of the clutch housing and an end surface of a core of the electromagnet are disposed to be opposed to each other with the rotor interposed therebetween in an axial direction.The end of the rotor in a side of the clutch housing is formed with an extension portion which extends to the clutch housing in the axial direction. An outer periphery of the clutch housing is connected to the extension portion through a connection portion. The connection portion is disposed outside the main clutch in a radial direction.
    • 电磁离合器设置有:离合器毂,其连接到轴构件(一对旋转构件中的一个); 连接到中空轴(一对旋转构件中的另一个)的离合器壳体; 连接到离合器壳体的转子; 主离合器(离合器构件),其设置在离合器毂和离合器壳体之间; 以及操作主离合器的电磁体。 离合器壳体的端面和电磁体的芯部的端面设置成彼此相对,转子在轴向方向插入其间。 转子在离合器壳体一侧的端部形成有沿轴向延伸到离合器壳体的延伸部分。 离合器壳体的外周通过连接部分连接到延伸部分。 连接部沿径向设置在主离合器的外侧。
    • 8. 发明申请
    • ELECTROMAGNETIC CLUTCH
    • 电磁离合器
    • US20080251344A1
    • 2008-10-16
    • US12098675
    • 2008-04-07
    • Tomiaki OchiaiKoji IizukaMasayuki Sayama
    • Tomiaki OchiaiKoji IizukaMasayuki Sayama
    • F16D27/04
    • F16D27/115F16D13/04F16D27/004
    • An electromagnetic clutch is provided with: a clutch hub which is connected to a shaft member (one of a pair of rotation members); a clutch housing which is connected to a hollow shaft (the other of a pair of rotation members); a rotor which is connected to the clutch housing; a main clutch (clutch member) which is disposed between the clutch hub and the clutch housing; and an electromagnet which operates the main clutch. An end surface of the clutch housing and an end surface of a core of the electromagnet are disposed to be opposed to each other with the rotor interposed therebetween in an axial direction.The end of the rotor in a side of the clutch housing is formed with an extension portion which extends to the clutch housing in the axial direction. An outer periphery of the clutch housing is connected to the extension portion through a connection portion. The connection portion is disposed outside the main clutch in a radial direction.
    • 电磁离合器设置有:离合器毂,其连接到轴构件(一对旋转构件中的一个); 连接到中空轴(一对旋转构件中的另一个)的离合器壳体; 连接到离合器壳体的转子; 主离合器(离合器构件),其设置在离合器毂和离合器壳体之间; 以及操作主离合器的电磁体。 离合器壳体的端面和电磁体的芯部的端面设置成彼此相对,转子在轴向方向插入其间。 转子在离合器壳体一侧的端部形成有沿轴向延伸到离合器壳体的延伸部分。 离合器壳体的外周通过连接部分连接到延伸部分。 连接部沿径向设置在主离合器的外侧。