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    • 4. 发明申请
    • POWER AMPLIFIER
    • 功率放大器
    • US20090027130A1
    • 2009-01-29
    • US11947831
    • 2007-11-30
    • Kazuya YamamotoSatoshi SuzukiTomoyuki AsadaTakayuki MatsuzukaTeruyuki Shimura
    • Kazuya YamamotoSatoshi SuzukiTomoyuki AsadaTakayuki MatsuzukaTeruyuki Shimura
    • H03F3/68H03F1/14
    • H03F1/0277H03F1/0261H03F1/30H03F3/195H03F2200/411H03F2200/451
    • A power amplifier according to the present invention is operated by switching a main power amplifier and a subsidiary power amplifier. The idle current of the subsidiary power amplifier is smaller than the idle current of the main power amplifier. Each of the main power amplifier and the subsidiary power amplifier has a former amplification element for amplifying RF signals, a latter amplification element for amplifying output signals from the former amplification element, a former bias circuit for driving the former amplification elements, and a latter bias circuit for driving the latter amplification elements, respectively. The interval between the latter amplification element of the main power amplifier and the latter amplification element of the subsidiary power amplifier is not more than 100 μm. The interval between the latter amplification element of the main power amplifier and the latter bias circuit of the subsidiary power amplifier is not less than 200 μm.
    • 根据本发明的功率放大器通过切换主功率放大器和辅助功率放大器来操作。 辅助功率放大器的空闲电流小于主功率放大器的空闲电流。 每个主功率放大器和辅助功率放大器具有用于放大RF信号的前置放大元件,用于放大来自前一放大元件的输出信号的后一放大元件,用于驱动前一放大元件的前一偏置电路,以及后一偏置 电路分别用于驱动后面的放大元件。 主功率放大器的后一放大元件与辅助功率放大器的后一放大元件之间的间隔不大于100um。 主功率放大器的后一个放大元件与辅助功率放大器的后一个偏置电路之间的间隔不小于200μm。
    • 6. 发明授权
    • Power amplifier
    • 功率放大器
    • US07605648B2
    • 2009-10-20
    • US11947831
    • 2007-11-30
    • Kazuya YamamotoSatoshi SuzukiTomoyuki AsadaTakayuki MatsuzukaTeruyuki Shimura
    • Kazuya YamamotoSatoshi SuzukiTomoyuki AsadaTakayuki MatsuzukaTeruyuki Shimura
    • H03F1/14
    • H03F1/0277H03F1/0261H03F1/30H03F3/195H03F2200/411H03F2200/451
    • A power amplifier according to the present invention is operated by switching a main power amplifier and a subsidiary power amplifier. The idle current of the subsidiary power amplifier is smaller than the idle current of the main power amplifier. Each of the main power amplifier and the subsidiary power amplifier has a former amplification element for amplifying RF signals, a latter amplification element for amplifying output signals from the former amplification element, a former bias circuit for driving the former amplification elements, and a latter bias circuit for driving the latter amplification elements, respectively. The interval between the latter amplification element of the main power amplifier and the latter amplification element of the subsidiary power amplifier is not more than 100 μm. The interval between the latter amplification element of the main power amplifier and the latter bias circuit of the subsidiary power amplifier is not less than 200 μm.
    • 根据本发明的功率放大器通过切换主功率放大器和辅助功率放大器来操作。 辅助功率放大器的空闲电流小于主功率放大器的空闲电流。 每个主功率放大器和辅助功率放大器具有用于放大RF信号的前置放大元件,用于放大来自前一放大元件的输出信号的后一放大元件,用于驱动前一放大元件的前一偏置电路,以及后一偏置 电路分别用于驱动后面的放大元件。 主功率放大器的后一放大元件与辅助功率放大器的后一放大元件之间的间隔不大于100um。 主功率放大器的后一个放大元件与辅助功率放大器的后一个偏置电路之间的间隔不小于200μm。
    • 10. 发明授权
    • Image formation apparatus
    • 图像形成装置
    • US09007605B2
    • 2015-04-14
    • US13473804
    • 2012-05-17
    • Kazuya Yamamoto
    • Kazuya Yamamoto
    • G06F3/12H04N1/00G06F15/00
    • H04N1/00952H04N1/00236H04N1/00896H04N2201/0094
    • An image formation apparatus includes an image reading control unit and a print control unit. The print control unit includes: a first communication control unit connected to the image reading control unit; and a power supply control unit configured to control power supply to the image reading control unit. The image reading control unit includes: a second communication control unit connected to the first communication control unit. When completing a process to transition to a power save mode in accordance with an instruction from the print control unit, the image reading control unit cuts off the communications through the second communication control unit. After sending the image reading control unit the instruction to transition to the power save mode, the print control unit detects the cutoff of the communications and then cuts off the power supply to the image reading control unit through the power supply control unit.
    • 图像形成装置包括图像读取控制单元和打印控制单元。 打印控制单元包括:连接到图像读取控制单元的第一通信控制单元; 以及电源控制单元,被配置为控制对所述图像读取控制单元的电力供应。 图像读取控制单元包括:连接到第一通信控制单元的第二通信控制单元。 当完成根据来自打印控制单元的指令转换到省电模式的处理时,图像读取控制单元通过第二通信控制单元切断通信。 在将图像读取控制单元发送到转换到省电模式的指令之后,打印控制单元检测通信的截止,然后通过电源控制单元切断对图像读取控制单元的电源。