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    • 33. 发明授权
    • Cleaning device, image forming apparatus including the same and cleaning method
    • 清洁装置,包括其的成像装置和清洁方法
    • US08340547B2
    • 2012-12-25
    • US13032147
    • 2011-02-22
    • Takuya KobayashiShigeru MorimotoHideyuki Ohtani
    • Takuya KobayashiShigeru MorimotoHideyuki Ohtani
    • G03G15/16G03G21/00
    • G03G21/007G03G15/161G03G21/105G03G2221/1618
    • A cleaning device includes a cleaning member that comes into contact with a developer carrier, which carries developer, in a direction crossing a moving direction of the developer carrier and cleans the developer carrier by removing the developer from the developer carrier, a recovery section that is provided with a recovery port formed inside of end portions of the developer carrier in the direction crossing the moving direction of the developer carrier and recovers the developer, which is removed by the cleaning member, through the recovery port, and a guide member that guides the developer to the recovery port, one end of the guide member being positioned outside an end portion of the cleaning member and the end portion of the developer carrier, and the other end of the guide member being positioned inside the cleaning member in the direction crossing the moving direction of the developer carrier.
    • 清洁装置包括清洁构件,该清洁构件与显影剂载体接触,该显影剂载体在与显影剂载体的移动方向相交的方向上携带显影剂,并通过从显影剂载体上除去显影剂来清洁显影剂载体, 设置有在与显影剂载体的移动方向交叉的方向上形成在显影剂载体的端部内部的回收口,并且通过该回收口回收由清洁构件除去的显影剂,以及引导构件, 显影剂返回到回收口,引导构件的一端位于清洁构件的端部外侧和显影剂载体的端部之间,并且引导构件的另一端沿着与该清洁构件的方向交叉的方向定位在清洁构件的内部 显影剂载体的移动方向。
    • 34. 发明申请
    • POLAR MODULATOR
    • 极性调制器
    • US20120106402A1
    • 2012-05-03
    • US13382029
    • 2010-06-17
    • Shigeru MorimotoKaoru IshidaMaki Nakamura
    • Shigeru MorimotoKaoru IshidaMaki Nakamura
    • H04L27/04H04L27/34H04B7/005
    • H03F3/24H03C5/00H03F1/0266H03F3/189H04B1/04
    • A polar modulator of the present invention includes: a first function block which generates an amplitude signal and a phase signal; a second function block which adjusts the signal delay between the amplitude signal and the phase signal; a third function block which allows the low frequency component of the amplitude signal to pass therethrough; a fourth function block which modulates the phase of the phase signal; a fifth function block which outputs a modulation voltage, based on the amplitude signal; a sixth function block which modulates the amplitude of the phase signal, based on the modulation voltage; a seventh function block which measures the temperature of at least one function block; and an eighth function block which calculates a compensation amount for the signal delay, based on the measured temperature. The second function block adjusts the signal delay, based on the compensation amount.
    • 本发明的极性调制器包括:产生振幅信号和相位信号的第一功能块; 第二功能块,调整幅度信号和相位信号之间的信号延迟; 允许振幅信号的低频分量通过的第三功能块; 第四功能块,其对相位信号的相位进行调制; 第五功能块,其基于所述振幅信号输出调制电压; 第六功能块,其基于所述调制电压来调制所述相位信号的幅度; 测量至少一个功能块的温度的第七功能块; 以及基于测量的温度计算信号延迟的补偿量的第八功能块。 第二功能块根据补偿量调整信号延迟。
    • 36. 发明申请
    • POLAR MODULATION TRANSMISSION APPARATUS
    • 极地调制传动装置
    • US20080160934A1
    • 2008-07-03
    • US11963916
    • 2007-12-24
    • Maki NakamuraShigeru Morimoto
    • Maki NakamuraShigeru Morimoto
    • H04B1/02
    • H04B1/0483H03C5/00H03F1/02H03F1/0227H03F1/025H03F3/189H03F3/24H03F3/245H04B1/0475H04B2001/045H04L27/361H04W52/52
    • A polar modulation transmission apparatus is disclosed, which reduces the circuit scale by removing isolators and which reduces the heat loss of a power amplifier. In this apparatus, current detecting section 130 detects current value Icc of current flowing from power supply voltage section 120 to power amplifier 180, and power control section 140 outputs control signal S31 to power apply section 150 based on power control signal S30 to be inputted and current value Icc. Power apply section 150 forms amplitude modulation signal S13 by multiplying baseband amplitude modulation signal S11 by control signal S31, and regulator 160 supplies to power amplifier 180 power supply voltage S22 converted into power supply voltage S21 by amplitude modulation signal S13. Power amplifier 180 obtains RF transmission signal S15 by amplifying the power of phase modulation high-frequency signal S14 as the power supply of power supply voltage S22.
    • 公开了一种极化调制传输装置,其通过去除隔离器来减小电路规模,并减少功率放大器的热损失。 在该装置中,电流检测部130检测从电源电压部120流向功率放大器180的电流的电流值Icc,功率控制部140基于功率控制信号S30将控制信号S31输出到功率施加部150, 输入和当前值Icc。 功率施加部分150通过将基带幅度调制信号S11与控制信号S31相乘来形成振幅调制信号S13,并且调节器160通过幅度调制信号S13向功率放大器180提供转换成电源电压S 21的功率放大器180的电源电压 功率放大器180通过放大作为电源电压S22的电源的相位调制高频信号S14的功率来获得RF发送信号S15。
    • 37. 发明授权
    • Hydraulic continuously variable transmission for use on vehicle
    • 液压无级变速器用于车辆
    • US06250077B1
    • 2001-06-26
    • US09071242
    • 1998-05-01
    • Takashi IinoAkihito OkudaShigeru Morimoto
    • Takashi IinoAkihito OkudaShigeru Morimoto
    • F16D3108
    • F16H61/46F16H47/04F16H61/462F16H2037/0866
    • A hydraulic continuously variable transmission for use on a vehicle comprises a hydraulic variable pump, which is driven by an engine, and a hydraulic variable motor, which is driven by oil discharged from the hydraulic variable pump to drive wheels. In addition, this transmission includes shift position detecting means, which detects a shift position, and vehicle stop detecting means, which detects whether the vehicle is in halt. In this transmission, when the vehicle stop detecting means detects that the vehicle is in halt and the shift position detecting means detects that the shift position is in a forward or rearward drive position, the discharge capacity of the hydraulic variable motor is set to a maximum, and the discharge capacity of the hydraulic variable pump is controlled to a predetermined capacity (first predetermined capacity) in correspondence with the shift position. Thereby, the vehicle is prevented from relapse phenomenon, i.e., being dragged in the direction opposite to the direction set with the shift lever when the vehicle is stopped on a slope.
    • 用于车辆的液压无级变速器包括由发动机驱动的液压可变泵和由从液压可变泵排出到驱动轮的油驱动的液压可变电动机。 此外,该变速器包括检测换档位置的换档位置检测单元,以及车辆停止检测单元,其检测车辆是否停止。 在该变速器中,当车辆停止检测单元检测到车辆停止并且变速位置检测单元检测到变速位置处于向前或向后的驱动位置时,液压可变电动机的排出能力被设定为最大 ,并且与变速位置对应地将液压可变泵的排出容量控制在预定容量(第一预定容量)。 因此,当车辆停在斜坡上时,防止车辆复位现象,即在与变速杆设定的方向相反的方向上被拖动。