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    • 3. 发明申请
    • DIAGONAL FAN
    • DIAGONAL风扇
    • US20130323096A1
    • 2013-12-05
    • US14000603
    • 2012-03-20
    • Martin MuellerArno KarwathHarald SchmidTobias MaierGerald HoggMichael SchmitzBjorn Winter
    • Martin MuellerArno KarwathHarald SchmidTobias MaierGerald HoggMichael SchmitzBjorn Winter
    • F04D29/58
    • F04D29/5806F04D25/082H02K7/14H02K9/06
    • A diagonal ventilating fan (30) has a fan housing (36) and a fan wheel (80), rotatable around a rotation axis, that has associated with it an electric motor (73) to drive it, the fan wheel (80) extending in the direction of the rotation axis between an air inlet side and an air outlet side of the diagonal ventilating fan (30) and serving, as it rotates, to convey air in a main delivery direction from the air inlet side to the air outlet side. The fan wheel (80) has a preferred rotation direction so that, during operation, its blades (82) each have a front side and a back side, and a negative-pressure zone (110) occurs, during operation, adjacent each respective back side of a blade (82). An auxiliary cooling air blower (76) connects to the respective zones (110) to provide an improved flow of cooling air for the electric motor (73).
    • 对角通风扇(30)具有风扇壳体(36)和可围绕旋转轴线旋转的风扇叶轮(80),其具有与其相关联的电动机(73)以驱动它,风扇叶轮(80)延伸 在对角通风扇(30)的空气入口侧和空气出口侧之间的旋转轴线的方向上,并沿其旋转运动,将空气沿主输送方向从空气入口侧输送到空气出口侧 。 风扇叶轮80具有优选的旋转方向,使得在操作期间,其叶片(82)各自具有前侧和后侧以及负压区(110),在操作期间邻近每个相应的后部 叶片(82)的一侧。 辅助冷却风机(76)连接到各个区域(110),以提供用于电动机(73)的改进的冷却空气流。
    • 4. 发明授权
    • Mixed flow fan
    • 混流风扇
    • US08974199B2
    • 2015-03-10
    • US13294106
    • 2011-11-10
    • Harald SchmidTobias MaierMartin MuellerMatthias Weiss
    • Harald SchmidTobias MaierMartin MuellerMatthias Weiss
    • F04D25/06F04D25/08F04D29/66G01M1/32
    • F04D25/064F04D29/662G01M1/32
    • A mixed-flow fan features a housing (42); an impeller (43) journaled rotatably with respect to the housing, and equipped with fan blades (54); a generally cylindrical air conduit (50) defined between the fan housing and the impeller, the fan blades extending into the air conduit in order, during operation, to transport air; an external-rotor motor (75) having an internal stator (100) and an external rotor (81) which includes a tubular ferromagnetic yoke (63) partly embedded in material of the impeller. A cup-shaped yoke (72) fits into a central cavity (68) of the tubular yoke (63) and accommodates a permanent magnet arrangement (66) which interacts with the stator. The tubular yoke (63) and the cup-shaped yoke (72) together serve as a magnetic return path for the external-rotor motor. The structure minimizes damage during final assembly, and simplifies insertion of balancing weights.
    • 混流风扇具有壳体(42); 叶轮(43),其相对于所述壳体可旋转地轴颈,并配备有风扇叶片(54); 限定在所述风扇壳体和所述叶轮之间的大致圆柱形的空气导管(50),所述风扇叶片在运行期间依次延伸到所述空气管道中以运输空气; 具有内部定子(100)和外部转子(81)的外部转子电动机(75),其包括部分地嵌入叶轮的材料的管状铁磁轭(63)。 杯形轭(72)装配到管状轭(63)的中心腔(68)中并且容纳与定子相互作用的永磁体装置(66)。 管状轭(63)和杯形轭(72)一起用作外转子马达的磁返回路径。 该结构使最终组装期间的损坏最小化,并简化了平衡重物的插入。
    • 5. 发明申请
    • ELECTRONICALLY COMMUTATED ASYNCHRONOUS MOTOR
    • 电子式异步电动机
    • US20080284364A1
    • 2008-11-20
    • US12112130
    • 2008-04-30
    • Harald Schmid
    • Harald Schmid
    • H02P21/14
    • G01K7/36
    • An electronically commutated asynchronous motor (12) features a stator (202), a short-circuit rotor (204), a controller (FOR 20) for field-oriented regulation of the motor (12), a sensor magnet (274) in thermally conductive connection with the short-circuit rotor (204), a rotor position sensor (14A; 18; 18′) arranged at a predetermined distance (d) from the sensor magnet (274) to generate an output signal (HALL, U, U1, U2) that is dependent upon the spatial orientation of the sensor magnet (274), and a temperature evaluation apparatus (CALC_T 44) configured to ascertain, during operation, from the sensor output signal (HALL, U, U1, U2), a temperature value (T) that characterizes a temperature (T_SM, T_S) in the motor (12).
    • 电子换向异步电动机(12)具有定子(202),短路转子(204),用于电动机(12)的场定向调节的控制器(FOR 20),热传导磁体 与所述短路转子(204)的导电连接,与所述传感器磁体(274)以预定距离(d)布置的转子位置传感器(14A; 18; 18'),以产生输出信号(HALL,U, U1,U2),其依赖于传感器磁体(274)的空间取向;以及温度评估装置(CALC_T 44),其被配置为在操作期间从传感器输出信号(HALL,U,U 1, U 2),表征电动机(12)中的温度(T_SM,T_S)的温度值(T)。
    • 9. 发明授权
    • Arrangement with a contact element
    • 与接触元件的布置
    • US07500857B2
    • 2009-03-10
    • US10599627
    • 2005-03-26
    • Harald SchmidHermann RappeneckerWilhelm WeisserRalf-Michael SanderAlexander Hahn
    • Harald SchmidHermann RappeneckerWilhelm WeisserRalf-Michael SanderAlexander Hahn
    • H01R12/00
    • H01R12/58
    • A circuit board (20) is equipped with at least one conductor path (22) and a contact element (44). The latter is adapted to mechanically engage and electrically contact an electrical conductor (66). In the region of a conductor path (22), the circuit board (20) has passthrough orifices (24, 26, 28, 30, 32). The contact element (44) has a base part (46) and feet (34, 36, 38, 40, 42) which press-fit into the orifices (24 to 32) of the circuit board (20). The contact element (44) has a contact tongue (54) that is resiliently articulated on the base part (46) and clamps the electrical conductor (66). This makes possible a secure connection from the electrical conductor (66) to the circuit board (20), e.g. for connecting a device having a large current demand.
    • 电路板(20)配备有至少一个导体路径(22)和接触元件(44)。 后者适于与电导体(66)机械接合和电接触。 在导体路径(22)的区域中,电路板(20)具有通孔(24,26,28,30,32)。 接触元件(44)具有压配合到电路板(20)的孔口(24至32)中的基部(46)和脚(34,36,38,40,42)。 接触元件(44)具有在基部(46)上弹性铰接并夹持电导体(66)的接触舌片(54)。 这使得可能从电导体(66)到电路板(20)的安全连接,例如。 用于连接具有大电流需求的装置。