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    • 3. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US09020388B2
    • 2015-04-28
    • US14039838
    • 2013-09-27
    • Isao FukuchiAtsushi FukuiMasanori TsurukoAkihiro Kobayashi
    • Isao FukuchiAtsushi FukuiMasanori TsurukoAkihiro Kobayashi
    • G03G21/00G03G21/16
    • G03G21/0011G03G21/169G03G2215/0141G03G2221/0042
    • An image forming apparatus includes a first process unit and a second process unit. The first process unit includes: a first photosensitive member configured to carry a first developer image to be transferred onto a transfer medium; and a blade member configured to scrape substances attached to a surface of the first photosensitive member off the surface of the first photosensitive member. The second process unit includes: a second photosensitive member configured to carry a second developer image to be transferred onto the transfer medium having the first developer image transferred thereon; and a holding member configured to remove substances attached to a surface of the second photosensitive member from the surface of the second photosensitive member, temporarily hold the substances and return the substances to the surface of the second photosensitive member.
    • 图像形成装置包括第一处理单元和第二处理单元。 第一处理单元包括:第一感光构件,被配置为承载要转印到转印介质上的第一显影剂图像; 以及叶片构件,其被配置为从第一感光构件的表面刮除附着到第一感光构件的表面的物质。 第二处理单元包括:第二感光构件,被配置为携带要转印到其上转印有第一显影剂图像的转印介质上的第二显影剂图像; 以及保持构件,其构造成从第二感光构件的表面去除附着到第二感光构件的表面的物质,暂时保持物质并将物质返回到第二感光构件的表面。
    • 7. 发明授权
    • Electronic equipment system, electronic equipment, and optional apparatus
    • 电子设备系统,电子设备和可选设备
    • US08570557B2
    • 2013-10-29
    • US12398211
    • 2009-03-05
    • Akihiro Kobayashi
    • Akihiro Kobayashi
    • G06F3/00
    • B41J29/38H04N1/32561H04N1/32593H04N2201/0082
    • In a case where a select communication with an apparatus main body is performed, an option side controller selected by a select signal determines whether a command-save-bit is true or not. In a case where the command-save-bit is not true, the option side controller executes a processing in accordance with the command signal. In a case where the command-save-bit is true, the option side controller stores contents of the command signal into a memory. In a case where the simultaneous communication with the apparatus main body is performed, all of the option side controllers read the command signal from the memory and executes a processing in accordance with the command signal.
    • 在执行与设备主体的选择通信的情况下,由选择信号选择的选项侧控制器确定命令保存位是否为真。 在命令保存位不为真的情况下,选项侧控制器根据命令信号执行处理。 在命令保存位为真的情况下,选项侧控制器将命令信号的内容存储到存储器中。 在与设备主体进行同时通信的情况下,所有选项侧控制器从存储器读取命令信号,并根据命令信号执行处理。
    • 8. 发明授权
    • Gas sensor control device and nitrogen oxide concentration detection method
    • 气体传感器控制装置和氮氧化物浓度检测方法
    • US08394248B2
    • 2013-03-12
    • US12340333
    • 2008-12-19
    • Akihiro KobayashiTakayuki SumiYasuhiro IshiguroSatoru Abe
    • Akihiro KobayashiTakayuki SumiYasuhiro IshiguroSatoru Abe
    • G01N27/419
    • G01N27/4074
    • There is provided a control device for a gas sensor. The gas sensor is formed with first and second oxygen pumping cells to define first and second measurement chambers. Under the control of the sensor control device, the first and second oxygen pumping cells effect oxygen pumping actions against the first and second measurement chambers, respectively. The sensor control device is configured to detect currents through the first and second oxygen pumping cells, calculate a correction coefficient by comparison of a detection value of the first oxygen pumping cell current at a known oxygen concentration period with a previously stored reference value, correct the first oxygen pumping cell current by the correction coefficient and determine the concentration of nitrogen oxide in the gas under measurement based on the corrected first oxygen pumping cell current and the detected second oxygen pumping cell current.
    • 提供了一种用于气体传感器的控制装置。 气体传感器形成有第一和第二氧气泵浦单元,以限定第一和第二测量室。 在传感器控制装置的控制下,第一和第二氧气泵送电池分别对第一和第二测量室产生氧气抽吸作用。 传感器控制装置被配置为检测通过第一和第二氧气泵浦单元的电流,通过将已知氧浓度周期的第一氧气泵浦电池的电流的检测值与先前存储的参考值进行比较来计算校正系数, 基于校正的第一氧气泵浦电池电流和检测到的第二氧气泵浦电池电流,确定第一氧气泵浦电池的电流的校正系数并确定被测气体中的氮氧化物的浓度。
    • 9. 发明申请
    • SENSOR CONTROL APPARATUS AND SENSOR CONTROL SYSTEM
    • 传感器控制装置和传感器控制系统
    • US20090229343A1
    • 2009-09-17
    • US12402012
    • 2009-03-11
    • Yasuhiro IshiguroAkihiro KobayashiSatoru AbeHiroshi Inagaki
    • Yasuhiro IshiguroAkihiro KobayashiSatoru AbeHiroshi Inagaki
    • G01N7/00
    • G01N27/4065G01N1/2252
    • In a sensor control apparatus (2), a GND1 terminal for signal-system circuits and a GND2 terminal for a power-system circuit are separately provided in an external circuit terminal section (31). The ground for the drive circuit of the power system and the ground for the drive circuits of the signal system are disposed independently of each other on a circuit board (20). Further, a first electrical path for connecting the circuit board (20) and an engine control unit is provided independently of a second electrical path for connecting the circuit board (20) and a battery. Therefore, even when a heater control circuit (28) is turned ON, the influence of heater current on an Ip1 cell/Vs cell control circuit (26), an Ip2 cell control circuit (27), and a CAN (Controller Area Network) circuit (29) can be suppressed. Further, since the ground for the sensor-system circuit and the ground for the CAN circuit (29) are rendered common, the layout of the ground wring can be simplified.
    • 在传感器控制装置(2)中,用于信号系统电路的GND1端子和用于电力系统电路的GND2端子分别设置在外部电路端子部(31)中。 用于电力系统的驱动电路和信号系统的驱动电路的地的接地在电路板(20)上彼此独立地设置。 此外,独立于用于连接电路板(20)和电池的第二电路设置用于连接电路板(20)和发动机控制单元的第一电路。 因此,即使加热器控制电路(28)接通,加热器电流对Ip1单元/ Vs单元控制电路(26),Ip2单元控制电路(27)和CAN(控制器局域网络) 可以抑制电路(29)。 此外,由于用于传感器系统电路的接地和CAN电路(29)的接地是共同的,因此可以简化接地线的布局。