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    • 71. 发明授权
    • General purpose engine with axial gap type motor/generator
    • 具有轴向间隙型电动机/发电机的通用发动机
    • US08222753B2
    • 2012-07-17
    • US12379463
    • 2009-02-23
    • Kenichi YoshidaToshiyuki Suzuki
    • Kenichi YoshidaToshiyuki Suzuki
    • H02K7/18H02K1/22H02K21/12
    • H02K9/06F02B63/04F02B63/042H02K3/47H02K7/1815H02K11/048H02K21/24
    • A general purpose engine is provided with an engine main body, a rotary shaft, and an axial gap type motor/generator. The rotary shaft is rotated by a driving force of the engine main body. The rotary shaft includes a first shaft part disposed on one side portion of the engine main body and a second shaft part disposed on another side portion of the engine main body. The axial gap type motor/generator is attached integrally to the second shaft part. The axial gap type motor/generator is provided with a power generating rotor that rotates integrally with said rotary shaft, and a stator that is attached to the engine main body. The stator is disposed on a side closer to the engine main body than the power generating rotor and at a remove from the power generating rotor.
    • 通用发动机设置有发动机主体,旋转轴和轴向间隙型电动机/发电机。 旋转轴由发动机主体的驱动力旋转。 旋转轴包括设置在发动机主体的一侧部的第一轴部和设置在发动机主体的另一侧部的第二轴部。 轴向间隙型马达/发电机与第二轴部一体地安装。 轴向间隙型马达/发电机具有与所述旋转轴一体地旋转的发电转子和附接到发动机主体的定子。 定子配置在比发电用转子更靠近发动机主体的一侧并与发电转子相脱离。
    • 72. 发明申请
    • COMMUNICATION TERMINAL AND COMMUNICATION CONTROL METHOD
    • 通信终端和通信控制方法
    • US20120129465A1
    • 2012-05-24
    • US13382081
    • 2010-06-30
    • Toshiyuki SuzukiMitsuru Murata
    • Toshiyuki SuzukiMitsuru Murata
    • H04B17/00
    • H04W52/0241H04W76/28Y02D70/144
    • A communication terminal (10) including a first communication unit (11) and a second communication unit (12) with a shorter communication distance than the first communication unit (11) includes a presence status detection unit (13) that detects that a distance from a personal computer (50) has changed from a state possible to communicate to a state not possible to communicate for the second communication unit (12), and a communication status control unit (14) that causes a standby interval in intermittent reception performed by the first communication unit (11) to become shorter when a change of the second communication unit (12) from the state possible to communicate to the state not possible to communicate is detected by the presence status detection unit (13). This enables more detailed and accurate tracking of the connection status of the first communication unit (11), which can advance the timing to bring the first communication unit (11) to transition to a disconnection state or a standby state, allowing reduction of power consumption in the first communication unit (11).
    • 包括具有比第一通信单元(11)更短的通信距离的第一通信单元(11)和第二通信单元(12)的通信终端(10)包括存在状态检测单元(13),其检测距离 个人计算机(50)已经从可能的状态变为通信状态,而不能进行第二通信单元(12)的通信的状态;以及通信状态控制单元(14),其使由间歇接收执行的待机间隔 当存在状态检测单元(13)检测到第二通信单元(12)从可能通信状态改变到不可能通信的状态时变短的第一通信单元(11)。 这使得能够更详细和准确地跟踪第一通信单元(11)的连接状态,这可以提前使第一通信单元(11)转变到断开状态或待机状态的定时,从而降低功耗 在第一通信单元(11)中。
    • 77. 发明申请
    • SENSOR CONTROL APPARATUS
    • 传感器控制装置
    • US20080196480A1
    • 2008-08-21
    • US12035206
    • 2008-02-21
    • Tomoo KAWASEEiichi KurokawaToshiyuki SuzukiYohei Kawaki
    • Tomoo KAWASEEiichi KurokawaToshiyuki SuzukiYohei Kawaki
    • G01N7/00
    • G01N27/4065
    • A sensor control apparatus includes an applied voltage control circuit connected to the positive terminal of a sensor element. The applied voltage control circuit includes a reference power supply and a noninverting amplifier circuit connected to the reference power supply. An AC power supply circuit, a buffer and a current measurement resistance are connected in series to the negative terminal of the sensor element with the current measurement resistance disposed between the AC power supply circuit and the sensor element. One terminal of the current measurement resistance, which is on the side opposite to the sensor element, is held at a reference voltage (center voltage of an AC voltage generated from the AC power supply circuit). Voltage at an intermediate point between the current measurement resistance and the sensor element is inputted via a low-pass filter to the noninverting amplifier circuit of the applied voltage control circuit.
    • 传感器控制装置包括连接到传感器元件的正极端子的施加的电压控制电路。 所施加的电压控制电路包括参考电源和连接到参考电源的同相放大器电路。 交流电源电路,缓冲器和电流测量电阻与传感器元件的负极端子串联连接,电流测量电阻设置在交流电源电路和传感器元件之间。 在与传感器元件相反的一侧的电流测量电阻的一个端子被保持在参考电压(由AC电源电路产生的AC电压的中心电压)。 通过低通滤波器将电流测量电阻与传感器元件之间的中间点处的电压输入到所施加的电压控制电路的同相放大器电路。