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    • 2. 发明授权
    • Motor driving apparatus
    • 电机驱动装置
    • US07764033B2
    • 2010-07-27
    • US11972371
    • 2008-01-10
    • Hiromu Yasuda
    • Hiromu Yasuda
    • H02K29/08
    • H02P6/16
    • A controller for a motor driving apparatus switches a direction of electricity flowing through a first coil according to a first lead angle signal obtained based on a first magnetic pole detecting signal and a second magnetic pole detecting signal. The controller switches a direction of electricity flowing through a second coil according to a second lead angle signal obtained based on the first magnetic pole detecting signal and the second magnetic pole detecting signal. Thus, a motor driving apparatus can be configured such that the angle of the rotation center of the rotor with respect to two magnetically sensitive poles can freely be selected.
    • 用于电机驱动装置的控制器根据基于第一磁极检测信号和第二磁极检测信号获得的第一引导角信号切换流过第一线圈的电流方向。 控制器根据基于第一磁极检测信号和第二磁极检测信号获得的第二引导角信号来切换流过第二线圈的电流。 因此,电动机驱动装置可以被构造为使得可以自由地选择转子相对于两个磁敏极的旋转中心的角度。
    • 4. 发明申请
    • DRIVE APPARATUS
    • 驱动装置
    • US20070296312A1
    • 2007-12-27
    • US11766842
    • 2007-06-22
    • Hiromu YASUDA
    • Hiromu YASUDA
    • H02K37/14H02K47/00H02K21/12H02K19/00
    • H02K37/20
    • A drive apparatus having a shortened axial dimension. First and second magnets are each formed into a semi-cylindrical shape and each provided with a magnetized pattern portion. A rotor yoke includes a shaft portion and a magnetic pole portion facing magnetized surfaces of the magnets. First and second stator yokes are each disposed to cooperate with the rotor yoke to sandwich therebetween a part of the first or second magnet where the magnetized pattern portion is formed. First and second coils each magnetize a part of the magnetic pole portion of the rotor yoke which faces the first or second stator yoke.
    • 具有缩短的轴向尺寸的驱动装置。 第一和第二磁体各自形成为半圆柱形,并且各自设置有磁化图案部分。 转子轭包括轴部和面对磁体的磁化面的磁极部。 第一和第二定子轭都设置成与转子轭配合,以夹在其间形成有磁化图形部分的第一或第二磁体的一部分。 第一和第二线圈各自磁化转子磁轭的面向第一或第二定子磁轭的磁极部分的一部分。
    • 5. 发明申请
    • LENS BARREL DRIVE APPARATUS
    • 镜头拉杆驱动装置
    • US20070253075A1
    • 2007-11-01
    • US11741075
    • 2007-04-27
    • Hiromu YASUDA
    • Hiromu YASUDA
    • G02B15/14
    • G02B7/02
    • A lens barrel drive apparatus which can be reduced in outside diameter to realize reduced diameter. A guide bar guides a lens along an optical axis. Hollow magnets are disposed on an outer peripheral side of the lens and have magnetized portions alternately magnetized to different poles in the circumferential direction. A cylindrical rotor is disposed rotatably with respect to the magnets, made of a soft magnetic material, and is comprised of magnetic pole portions opposed to the magnetized portions of the magnets. A coil energizes the magnetic pole portions of the rotor. A stator fixes the magnets and the coil. A conversion unit adapted to convert rotating movements of the rotor into forward and backward movements of the lens along the optical axis. The magnets have breaks formed along the optical axis, and the guide bar is disposed in the break of the magnets.
    • 可以减小外径的镜筒驱动装置,以实现减小的直径。 导杆沿着光轴引导透镜。 空心磁体设置在透镜的外周侧,并且具有在圆周方向上交替地磁化成不同极的磁化部分。 圆筒形转子相对于由磁性材料制成的磁体可旋转地设置,并且由与磁体的磁化部分相对的磁极部分组成。 线圈激励转子的磁极部分。 定子固定磁体和线圈。 转换单元,其适于将所述转子的旋转运动转换成所述透镜沿着所述光轴的向前和向后运动。 磁体具有沿着光轴形成的断裂,并且引导杆设置在磁体的断裂中。
    • 6. 发明授权
    • Air-conditioner system
    • 空调系统
    • US5065588A
    • 1991-11-19
    • US564608
    • 1990-08-09
    • Susumu NakayamaKensaku OguniHiromu YasudaRumi MinakataKazumoto UrataMasatoshi MuramatsuKenji TokusaTakao SenshuHirokiyo TeradaFumihiko Kitani
    • Susumu NakayamaKensaku OguniHiromu YasudaRumi MinakataKazumoto UrataMasatoshi MuramatsuKenji TokusaTakao SenshuHirokiyo TeradaFumihiko Kitani
    • F24F3/06F25B13/00F25B41/04
    • F25B41/04F24F3/065F25B13/00F25B2313/023F25B2313/025F25B2313/02741F25B2313/02743F25B2313/02791
    • An air-conditioner system having a compressor, a plurality of heat exchangers for heating or cooling the air in a room, a radiator for transferring heat energy of refrigerant outside of the room, a plurality of orifices, a manifold with a main port and a plurality of sub-ports, flow direction control multi-port valves directing the flow of the refrigerant from the compressor to the main port and not from the main port to the compressor when at least one of the heat-exchangers is heating the room. The refrigerant does not flow from the compressor to the radiator when at least one of the heat exchangers is heating and none of the heat exchangers is cooling. Also, it does not flow from the compressor to the main port but flows instead from the compressor to the radiator and from the main port to the compressor when none of the heat exchangers is heating and at least one of the heat exchangers is cooling. The system also employs a plurality of valve pairs each of which having a first valve and second valve such that the first valve opens (closes) when the second valve closes (opens). The first valves are arranged for providing flow of refrigerant to the inlet of the compressor from the heat exchangers and the second valves provide flow of refrigerant from the outlet port of the compressor to the respective heat exchanger first ports via the sub-ports of the manifold.
    • 一种具有压缩机,多个用于加热或冷却房间中的空气的热交换器的空调系统,用于将制冷剂外部的热能传递到室外的散热器,多个孔,具有主端口的歧管和 多个子端口,流动方向控制多端口阀,当至少一个热交换器加热房间时,将制冷剂从压缩机流向主端口,而不是从主端口流向压缩机。 当至少一个热交换器加热并且没有热交换器冷却时,制冷剂不会从压缩机流到散热器。 此外,当没有热交换器被加热并且至少一个热交换器被冷却时,其不从压缩机流向主端口,而是从压缩机流到散热器,并且从主端口流到压缩机。 该系统还采用多个阀对,每个阀对具有第一阀和第二阀,使得当第二阀关闭(打开)时第一阀打开(关闭)。 第一阀被布置成用于从热交换器向制冷剂的入口提供制冷剂流,并且第二阀提供制冷剂从压缩机的出口流到相应的热交换器第一端口,经由歧管的子端口 。
    • 8. 发明授权
    • Refrigerant flow control system for use with refrigerator
    • 制冷剂流量控制系统,用于冰箱
    • US4706469A
    • 1987-11-17
    • US16404
    • 1987-02-19
    • Kensaku OguniKyuhei IshibaneShigeaki KurodaHiromu YasudaTakashi SanoHironori Etou
    • Kensaku OguniKyuhei IshibaneShigeaki KurodaHiromu YasudaTakashi SanoHironori Etou
    • F24F11/02F25B13/00F25B29/00F25B41/06G05D23/24F25B41/04
    • F25B13/00F25B41/062F25B2600/21F25B2600/2513
    • A refrigerant flow control system associated with a refrigerant circulating circuit having a compressor, a condenser, an expansion valve and an evaporator, includes a branch pipe extending from a discharge pipe of the compressor and having on sealed free end. A first temperature sensor is disposed on the branch pipe near the sealed free end for detecting a condensation temperature of a refrigerant which is condensed in the branch pipe. A second temperature sensor is disposed on the discharge pipe of the compressor for detecting a temperature of the gaseous refrigerant discharged from the compressor. The signals representative of the condensation temperature and the temperature of the discharge gaseous refrigerant are inputted to a control device. The control device calculates a difference between the two detected temperatures, and a degree of superheat of the discharged gaseous refrigerant and transfers to the expansion valve a command signal representative of the calculation results, thereby controlling an opening of the expansion valve.
    • 与具有压缩机,冷凝器,膨胀阀和蒸发器的制冷剂循环回路相关联的制冷剂流量控制系统包括从压缩机的排出管延伸并具有密封的自由端的分支管。 第一温度传感器设置在密封的自由端附近的分支管上,用于检测在分支管中冷凝的制冷剂的冷凝温度。 第二温度传感器设置在压缩机的排出管上,用于检测从压缩机排出的气态制冷剂的温度。 表示冷凝温度和排出气体制冷剂的温度的信号被输入到控制装置。 控制装置计算两个检测温度之间的差异和排出的气体制冷剂的过热度,并将表示计算结果的膨胀阀的指令信号传递到膨胀阀,从而控制膨胀阀的打开。
    • 9. 发明授权
    • Heat pump type refrigeration system
    • 热泵式制冷系统
    • US4423603A
    • 1984-01-03
    • US382561
    • 1982-05-27
    • Kensaku OguniHiromu YasudaSigeaki Kuroda
    • Kensaku OguniHiromu YasudaSigeaki Kuroda
    • F25B9/00F25B13/00
    • F25B9/006F25B13/00
    • A heat pump type refrigeration system for air conditioners. The system has a heat pump type refrigeration circuit including a compressor the suction side and discharge side of which are switchably connected to an indoor heat exchanger and an outdoor heat exchanger through a four-way valve. The other sides of the heat exchangers are connected to each other through a first pressure reducer, gas-liquid separator and a second pressure reducer. A refrigerant tank is disposed in a pipe interconnecting the four-way valve and the indoor heat exchanger, in a heat exchanging relation to the pipe. The gas-liquid separator is connected at its upper portion to the refrigerant tank. The heat pump type refrigerant circuit confines a bi-component refrigerant consisting of two refrigerants of different boiling temperatures.
    • 一种用于空调的热泵式制冷系统。 该系统具有包括压缩机的热泵式制冷回路,吸入侧和排出侧通过四通阀可切换地连接到室内热交换器和室外热交换器。 热交换器的另一侧通过第一减压器,气液分离器和第二减压器相互连接。 制冷剂罐配置在与管道热交换的状态下将四通阀和室内热交换器互连的配管中。 气液分离器的上部与制冷剂罐连接。 热泵式制冷剂回路限制了由两种不同沸点的制冷剂组成的双组分制冷剂。