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    • 65. 发明授权
    • Over-current protection device
    • 过电流保护装置
    • US07317604B2
    • 2008-01-08
    • US11282716
    • 2005-11-21
    • Takahiro KudoJunzo TanakaKimitada Ishikawa
    • Takahiro KudoJunzo TanakaKimitada Ishikawa
    • H02H3/08H02H9/02H02H9/00H02H9/08
    • H02H3/08G01R15/205H02H1/0007H02H1/06
    • An over-current protection device is constituted of a current detection unit for detecting a current from a power-supply source to a load having a magnetism detection element with a magnetic impedance (MI) effect, an AC-current supply device for supplying an AC current to the detection element, a bias-current supply device for supplying a bias current to a bias coil, a peak detection device for detecting a peak of impedance of the magnetism detection element as a variation of voltage, and a switch corresponding to a phase for selecting an output of the peak detection device. In the current detection unit, a holding device for holding a switch output and an amplifier are disposed in common for detecting the current in each phase, thereby expanding a current detectable range and reducing power consumption and cost.
    • 过电流保护装置由电流检测单元构成,电流检测单元用于检测从电源到具有磁阻抗(MI)效应的磁检测元件的负载的电流; AC电流供给装置, 检测元件的电流,用于向偏置线圈供给偏置电流的偏置电流供给装置,用于检测磁检测元件的阻抗峰值作为电压变化的峰值检测装置,以及对应于相位的开关 用于选择峰值检测装置的输出。 在电流检测单元中,用于保持开关输出的保持装置和放大器被共同设置,用于检测每相中的电流,从而扩大电流可检测范围并降低功耗和成本。
    • 68. 发明授权
    • Hybrid switch using a one-shot firing pulse
    • 混合开关采用单触发脉冲
    • US5528443A
    • 1996-06-18
    • US348931
    • 1994-11-25
    • Kazusue ItogaJunzo Tanaka
    • Kazusue ItogaJunzo Tanaka
    • H01H47/00H01H9/54H03K17/00
    • H01H9/542H01H2009/545
    • Semiconductor switching elements (inverse-parallel connected thyristors) of each main circuit element unit are connected in parallel to a main contact of an electromagnetic contactor. An operation input voltage signal applied to an electromagnetic coil of the electromagnetic contactor is detected by an input-voltage detecting circuit of a control section. When the electromagnetic contactor is closed and opened, a one-shot-pulse generating unit outputs a one-shot pulse based on an output of the input-voltage detecting circuit and a signal indicating an opening/closing state of an auxiliary normally-closed contact of the electromagnetic contactor. The semiconductor switching elements are made on only for a short time by a firing circuit based on the one-shot pulse, to turn on and off a load current.
    • 每个主电路元件单元的半导体开关元件(逆并联连接的晶闸管)并联连接到电磁接触器的主触点。 施加到电磁接触器的电磁线圈的操作输入电压信号由控制部分的输入电压检测电路检测。 当电磁接触器闭合并打开时,单触发脉冲发生单元基于输入电压检测电路的输出输出单触发脉冲,并输出指示辅助常闭触点的打开/关闭状态的信号 的电磁接触器。 半导体开关元件仅通过基于单次脉冲的点火电路在短时间内形成,以接通和断开负载电流。
    • 69. 发明授权
    • Cooking appliance of the hot air circulating type
    • 烹饪器具的热风循环型
    • US4337384A
    • 1982-06-29
    • US173905
    • 1980-07-30
    • Junzo TanakaToshio Kai
    • Junzo TanakaToshio Kai
    • F24C15/32H05B6/68H05B6/80
    • H05B6/6482F24C15/325H05B6/6411H05B6/645
    • The invention is related to improvements in a cooking appliance equipped with both a microwave heating means and a hot air circulation heating means. By controlling the rotational speed of an air circulating fan or the power of heater means according to the kind of food to be cooked, the cooking time is shortened and the quality of cooked food is improved. The hot air discharging section of such an oven includes a perforated plate so as to prevent leakage of microwaves from the heating chamber, and an air baffle means is provided strategically in the hot air discharging section to ensure a uniform distribution of temperature within the heating chamber. The invention also includes an improved relative position of the air inlets, a double-deck tray and the air baffle means which functions to prevent a substantive dehydration of food which is a drawback of a conventional hot air circulation heating system.
    • 本发明涉及配备有微波加热装置和热空气循环加热装置的烹饪器具的改进。 通过根据要烹饪的食物的种类控制空气循环风扇的转速或加热器装置的功率,烹饪时间缩短并且烹饪食物的质量得到改善。 这种烘箱的热空气排出部分包括多孔板,以防止微波从加热室​​泄漏,并且在热空气排放部分中策略性地设置空气挡板装置,以确保加热室内的温度均匀分布 。 本发明还包括改进的空气入口的相对位置,双层塔板和空气挡板装置,其功能是防止食物的实质性脱水,这是常规热空气循环加热系统的缺点。