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    • 2. 发明授权
    • Electric drive control device, electric drive control method, and program of same
    • 电驱动控制装置,电驱动控制方法及其程序
    • US07084591B2
    • 2006-08-01
    • US11109618
    • 2005-04-20
    • Yasuhiko KobayashiMasami Ishikawa
    • Yasuhiko KobayashiMasami Ishikawa
    • H02K21/00
    • H02P21/06
    • An electric drive control device is provided with an electric machine having an asymmetrical salient pole, a current detecting portion, a phase converting device that converts the detected current into an axis current, and a current controlling device which generates a voltage command value based on the axis current and a current command value of the axis current. The current controlling device generates the voltage command value in response to the detected current and an offset angle of the center of a magnetic flux density distribution occurring at the salient pole, with respect to the center of an opening angle of the salient pole. In this case, the current controlling device generates a voltage command value corresponding to the detected current and the offset angle so the electrical characteristics are the same as when an electric machine having a symmetrical salient pole is used.
    • 一种电驱动控制装置,具备:具有非对称凸极的电机,电流检测部,将检测出的电流转换为轴电流的相位转换装置;以及电流控制装置,其基于 轴电流和轴电流的电流指令值。 电流控制装置响应于检测到的电流产生电压指令值,并且相对于凸极的打开角的中心在突极处出现磁通密度分布的中心的偏移角。 在这种情况下,电流控制装置产生与检测电流和偏移角对应的电压指令值,所以电特性与使用具有对称凸极的电机相同。
    • 4. 发明授权
    • Axial gap rotating electrical machine
    • 轴向间隙旋转电机
    • US07187098B2
    • 2007-03-06
    • US11065176
    • 2005-02-24
    • Masahiro HasebeMasami IshikawaAkira Mizuno
    • Masahiro HasebeMasami IshikawaAkira Mizuno
    • H02K21/12
    • H02K21/24H02K1/2793
    • An axial gap rotating electrical machine is provided with permanent magnets and cores in a rotor. The permanent magnets are oriented such that magnetization surfaces face in the circumferential direction of the rotor. The cores are arranged alternately with the permanent magnets in the circumferential direction of the rotor. The amount of magnetic flux on the outside in the radial direction of the rotor is made greater than the amount of magnetic flux on the inside in the radial direction of the rotor. As a result, the magnetic flux density at the rotor cores can be made substantially constant in the radial direction of the rotor and torque output with respect to the size of the permanent magnets is improved by preventing magnetic saturation of the cores.
    • 轴向间隙旋转电机在转子中设置永磁体和铁心。 永磁体被定向为使得磁化表面在转子的圆周方向上面对。 芯与转子的圆周方向上的永久磁铁交替排列。 使转子的径向外侧的磁通量大于转子径向内侧的磁通量。 结果,转子芯的磁通密度可以在转子的径向方向上基本上恒定,并且通过防止磁芯的磁饱和来改善相对于永磁体的尺寸的扭矩输出。
    • 5. 发明申请
    • Electric drive control device, electric drive control method, and program of same
    • 电驱动控制装置,电驱动控制方法及其程序
    • US20050253540A1
    • 2005-11-17
    • US11109618
    • 2005-04-20
    • Yasuhiko KobayashiMasami Ishikawa
    • Yasuhiko KobayashiMasami Ishikawa
    • H02P21/00H02P7/06H02P21/06H02P27/04
    • H02P21/06
    • An electric drive control device is provided with an electric machine having an asymmetrical salient pole, a current detecting portion, a phase converting device that converts the detected current into an axis current, and a current controlling device which generates a voltage command value based on the axis current and a current command value of the axis current. The current controlling device generates the voltage command value in response to the detected current and an offset angle of the center of a magnetic flux density distribution occurring at the salient pole, with respect to the center of an opening angle of the salient pole. In this case, the current controlling device generates a voltage command value corresponding to the detected current and the offset angle so the electrical characteristics are the same as when an electric machine having a symmetrical salient pole is used.
    • 一种电驱动控制装置,具备:具有非对称凸极的电机,电流检测部,将检测出的电流转换为轴电流的相位转换装置;以及电流控制装置,其基于 轴电流和轴电流的电流指令值。 电流控制装置响应于检测到的电流产生电压指令值,并且相对于凸极的打开角的中心在突极处出现磁通密度分布的中心的偏移角。 在这种情况下,电流控制装置产生与检测电流和偏移角对应的电压指令值,所以电特性与使用具有对称凸极的电机相同。
    • 9. 发明授权
    • Via-filling process
    • 通过灌装过程
    • US06518182B1
    • 2003-02-11
    • US09709331
    • 2000-11-13
    • Masami IshikawaHideki HagiwaraRyoichi Kimizuka
    • Masami IshikawaHideki HagiwaraRyoichi Kimizuka
    • H01L2144
    • C25D3/38C23C18/38H05K3/423H05K2201/09563
    • A process of performing via-filling efficiently and by a simple procedure is disclosed. The via-filling process comprises providing a substrate having blind via-holes, making the substrate electrically conductive, and plating the substrate in an acid copper plating bath which comprises the following components (A) to (E): (A) copper sulfate at a concentration of 100-300 g/L, (B) copper sulfate at a concentration of 30-150 g/L, (C) a first component (polymer component) such as polyethylene glycol, polypropylene glycol, and Pluronic surfactants, at a concentration of 10-1000 mg/L, (D) a second component (carrier component) such as sodium sulfoalkyl sulfonates and bis-sulfo organic compounds at a concentration of 0.1-20 mg/L, and (E) a third component (leveler component) such as polyalkylene imines, 1-hydroxyethyl-2-alkyl imidazoline chlorides, auramine and its derivatives at a concentration of 0.05-10 mg/L.
    • 公开了一种通过简单的过程有效地执行通孔填充的过程。 通孔填充方法包括提供具有盲孔的基板,使基板导电,并在酸性镀铜浴中镀覆基底,该酸性镀铜浴包含以下组分(A)至(E):(A)硫酸铜 浓度为100-300g / L,(B)浓度为30-150g / L的硫酸铜,(C)第一组分(聚合物组分)如聚乙二醇,聚丙二醇和Pluronic表面活性剂, 浓度为10-1000mg / L,(D)浓度为0.1-20mg / L的第二组分(载体组分)如磺基磺基磺酸钠和双磺基有机化合物,和(E)第三组分 组分)如聚亚烷基亚胺,1-羟基乙基-2-烷基咪唑啉氯化物,浓度为0.05-10mg / L的芳族胺及其衍生物。