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    • 1. 发明授权
    • Electric current detection circuit
    • 电流检测电路
    • US09007051B2
    • 2015-04-14
    • US13568500
    • 2012-08-07
    • Takeshi HattoriKazunori OzawaFukuo IshikawaNobutomo Takagi
    • Takeshi HattoriKazunori OzawaFukuo IshikawaNobutomo Takagi
    • G01R19/00G01R19/165G01R19/25
    • G01R19/16571G01R19/2513
    • An electric current detection circuit for detecting an electric current flowing to a load includes a voltage generation circuit, a plurality of comparators, and a reference voltage shift circuit. The voltage generation circuit includes a plurality of resistors coupled in series and generates different voltages by dividing a reference voltage with the resistors. The comparators determine a current level of the electric current flowing to the load using the voltages generated by the voltage generation circuit as threshold values. The reference voltage shift circuit shifts the reference voltage. The electric current flowing to the load is detected based on the current level determined by the plurality of comparators before shifting the reference voltage and the current level determined by the plurality of comparators after shifting the reference voltage.
    • 用于检测流向负载的电流的电流检测电路包括电压产生电路,多个比较器和参考电压移位电路。 电压产生电路包括串联耦合的多个电阻器,通过将参考电压与电阻器分开来产生不同的电压。 比较器使用由电压产生电路产生的电压作为阈值来确定流向负载的电流的当前电平。 参考电压移位电路移动参考电压。 在移动参考电压之前,基于由多个比较器确定的电流水平来检测流入负载的电流,然后移位参考电压和由多个比较器确定的电流电平。
    • 2. 发明授权
    • Load control circuit
    • 负载控制电路
    • US08653740B2
    • 2014-02-18
    • US12913313
    • 2010-10-27
    • Takeshi HattoriShigekazu SugimotoNobutomo Takagi
    • Takeshi HattoriShigekazu SugimotoNobutomo Takagi
    • H05B37/02
    • H05B39/047H02M3/156H03K7/08Y02B20/144
    • A switch device controls a voltage applied to a load element according to an electric power supply from a power source. A driver circuit controls activation and deactivation of the switch device. A circuit portion sets a duty ratio and output the duty ratio to the driver circuit for causing the driver circuit to activate the switch device according to the duty ratio to control a voltage applied to the load element. The circuit portion sets the duty ratio according to a duty ratio characteristic curve. In the duty ratio characteristic curve, the duty ratio decreases gradually with increase in a voltage of the power source, and decrease in the duty ratio with increase in the voltage of the power source becomes small gradually.
    • 开关装置根据来自电源的电力供应来控制施加到负载元件的电压。 驱动器电路控制开关器件的激活和去激活。 电路部分设置占空比并将占空比输出到驱动电路,以使驱动电路根据占空比激活开关装置,以控制施加到负载元件的电压。 电路部根据占空比特性曲线设定占空比。 在占空比特性曲线中,占空比随着电源电压的增加而逐渐减小,随着电源电压的上升而占空比的降低逐渐变小。
    • 5. 发明申请
    • METHOD FOR PRODUCING ELECTRODE CATALYST, AND ELECTRODE CATALYST
    • 生产电极催化剂的方法和电极催化剂
    • US20120028792A1
    • 2012-02-02
    • US13258969
    • 2010-03-23
    • Takeshi HattoriYutaka ItoHajime Maki
    • Takeshi HattoriYutaka ItoHajime Maki
    • B01J21/18
    • H01M4/8657H01M4/9016H01M2008/1095
    • A method for producing an electrode catalyst, comprising a step of calcining a precursor of the electrode catalyst under conditions under which a second material defined below can change into a carbonaceous material, the precursor having been obtained by hydrothermally reacting a mixture containing a first material defined below and the second material defined below in the presence of supercritical or subcritical water, or the precursor having been obtained by mixing a reaction product having been obtained by hydrothermally reacting a first material defined below in the presence of supercritical or subcritical water and the second material defined below, wherein the first material is defined to be a metal compound composed of one or more metal elements selected from the group consisting of the elements of Group 4A and the elements of Group 5A and one or more non-metal elements selected from the group consisting of hydrogen, nitrogen, chlorine, carbon, boron, sulfur, and oxygen, andthe second material is defined to be a precursor of a carbonaceous material.
    • 一种电极催化剂的制造方法,其特征在于,在下述规定的第二材料可以变化为碳质材料的条件下煅烧所述电极催化剂的前体的步骤,所述前体是通过将含有第一材料的混合物进行水热反应而得到的 在超临界或亚临界水的存在下定义的第二材料,或者前体是通过混合通过在超临界或亚临界水的存在下将下面定义的第一材料水热反应获得的反应产物和第二材料 其中第一材料被定义为由一种或多种金属元素组成的金属化合物,所述金属元素选自由4A族元素和5A族元素组成的组以及一种或多种选自下组的非金属元素 由氢,氮,氯,碳,硼,硫和氧组成, 第二材料被定义为碳质材料的前体。
    • 10. 发明授权
    • Wireless control system for a travelling toy using a single transmitting
and receiving channel
    • 使用单个发送和接收通道的旅行玩具的无线控制系统
    • US4080602A
    • 1978-03-21
    • US657603
    • 1976-02-12
    • Takeshi HattoriZenichi Ishimoto
    • Takeshi HattoriZenichi Ishimoto
    • A63H30/04H04B7/00
    • A63H30/04
    • This invention is concerned with a remote control trans-receiver system in which a transmitter having a single channel is used for transmitting information to a remote receiver adapted to receive the information for controlling the movements of a toy vehicle. The single transmitting channel includes means to provide modulated information onto a carrier wave for controlling the forward, rightward and leftward movements of the toy vehicle, and a switching device for preventing the transmission to the receiver of any modulating information to permit stopping of the forward movement of the vehicle and to enable, when desired, reverse movement of the toy vehicle. The receiver detects the modulated information, when present, for effecting forward, rightward or leftward movement of the toy vehicle. The receiver further includes a switching device which responds to the absence of a modulating signal on the carrier to stop and then reverse the direction of travel of the toy vehicle.
    • 本发明涉及一种遥控转接收机系统,其中具有单个信道的发射机用于将信息发送到适于接收用于控制玩具车辆的运动的信息的远程接收机。 单个发送信道包括将调制信息提供到载波上用于控制玩具车辆的向前,向右和向左移动的装置,以及用于防止向接收机传输任何调制信息以允许向前移动停止的开关装置 并且当需要时能够使玩具车辆的反向移动。 当存在时,接收机检测调制信息,以实现玩具车辆的向前,向右或向左移动。 接收器还包括开关装置,其响应载体上的调制信号的不存在而停止并随后反转玩具车辆的行进方向。