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    • 22. 发明申请
    • SOFT-START CIRCUIT AND POWER SUPPLY CIRCUIT INCLUDING SAME
    • 软启动电路和电源电路,包括它们
    • US20100156382A1
    • 2010-06-24
    • US12640110
    • 2009-12-17
    • Takashi Gotoh
    • Takashi Gotoh
    • G05F3/08
    • G05F3/08H02M1/36Y10S323/901
    • A soft-start circuit to generate and output a soft-start voltage having a specified gradient. The soft-start circuit includes a slope voltage generator circuit to generate and output multiple slope voltages having different specified gradients, including a steepest slope voltage whose gradient is steepest among the gradients of the multiple slope voltages and a mildest slope voltage whose gradient is mildest thereamong, at least one voltage conversion circuit to receive the slope voltages and output a voltage whose gradient is milder than the gradient of the steepest slope voltage, and a selection circuit to receive at least one specified reference voltage and the voltage generated by the voltage conversion circuit, compare the voltage by the voltage conversion circuit with the specified reference voltage, and output either the voltage or the specified reference voltage as the soft-start voltage in accordance with a comparison result generated by the selection circuit.
    • 软启动电路,用于产生并输出具有指定梯度的软启动电压。 软启动电路包括斜坡电压发生器电路,用于产生和输出具有不同指定梯度的多个斜坡电压,包括其斜率在多个斜坡电压的梯度中最倾斜的最陡坡电压,以及梯度最小的最温和斜坡电压 至少一个电压转换电路,用于接收斜坡电压并输出其斜度比最陡坡电压的梯度温和的电压;以及选择电路,用于接收至少一个指定的参考电压和由电压转换电路产生的电压 将电压转换电路的电压与指定的参考电压进行比较,并根据选择电路产生的比较结果输出电压或指定的参考电压作为软启动电压。
    • 23. 发明授权
    • Elevator control panel device
    • 电梯控制面板装置
    • US06484850B1
    • 2002-11-26
    • US09389747
    • 1999-09-07
    • Kiyoshi KobayashiTakashi Gotoh
    • Kiyoshi KobayashiTakashi Gotoh
    • B66B700
    • B66B11/002B66B13/303
    • An elevator control panel device, including an elevator control panel disposed in a doorjamb forming an entrance to the elevator in a building, a panel door rotatably pivoted via a hinge at a hinge side of the panel door and providing access to the control panel, an automatic closing mechanism configured to force the panel door in the closing direction so as automatically to close the panel door when the panel door is open, and at least one lock provided for locking the panel door at an opposite side of the panel door opposite to the hinge side of the panel door, a first member mounted on the panel door, and a second member mounted on the doorjamb, the first member being configured to engage the second member in a locked state automatically upon closing of the panel door.
    • 一种电梯控制面板装置,包括设置在门框内的升降机控制面板,其形成建筑物内的电梯的入口,经由铰链在所述面板门的铰链侧可旋转地枢转并提供对所述控制面板的通路的面板门, 自动关闭机构,其被配置为当面板门打开时自动关闭面板门,并且至少一个锁定用于将面板门锁定在面板门的相对侧的相反侧 所述面板门的铰链侧,安装在所述面板门上的第一构件和安装在所述门框上的第二构件,所述第一构件被构造成在所述面板门关闭时自动地将所述第二构件接合在锁定状态。
    • 25. 发明授权
    • Air conditioner and heat exchanger used therefor
    • 空调和热交换器用于此
    • US5706887A
    • 1998-01-13
    • US758084
    • 1996-11-27
    • Michimasa TakeshitaTakayuki YoshidaYoshiaki TanimuraHitoshi IijimaTakashi GotohTsuneo Yumikura
    • Michimasa TakeshitaTakayuki YoshidaYoshiaki TanimuraHitoshi IijimaTakashi GotohTsuneo Yumikura
    • F24F1/00F28F1/12F28F1/32F28F1/36
    • F28F1/122F24F1/0007F24F2001/0048Y10S165/31Y10S165/471Y10S165/498Y10S165/518
    • A heat exchanger mounted in an air condition is constructed such that at least one row of heat conduction pipe groups are arranged across an air passage. Each heat conduction pipe group is constructed such that a plurality of heat conduction pipes 22 are arranged in parallel with each other and a fine wire 23 made of a metallic material having excellent heat conductivity is spirally wound around each adjacent heat conduction pipe 22. Thus, the performance of the heat exchanger can be improved without the air conditioner being designed with larger dimensions. In addition, the heat exchanger includes a plurality of heat conduction pipes 39 arranged in the form of at least one row with a constant distance between adjacent pipes, and a plurality of twisted wires 40. The twisted wires 40 are arranged so as to alternately come in contact with one side and opposite side of each heat conduction pipe 39 extending at a right angle relative to the row direction of each heat conduction pipe 39, and moreover, alternately come in contact with one side and opposite other side of each heat conduction pipe 39 extending in the longitudinal direction. With this construction, high heat conductivity can be realized, and an occurrence of clogging with dew droplets can be prevented while maintaining a heat transfer surface area.
    • 安装在空气状态的热交换器被构造成使得至少一排导热管组跨越空气通道布置。 每个导热管组被构造成使得多个导热管22彼此平行地布置,并且由具有优良导热性的金属材料制成的细线23螺旋地卷绕在每个相邻的导热管22周围。因此, 无需设计具有更大尺寸的空调器,可以提高热交换器的性能。 此外,热交换器包括多个导管39,其布置成相邻管之间具有恒定距离的至少一排的形式,以及多个绞合线40.绞合线40被布置成交替地到达 与每个导热管39的相对于每个导热管39的行方向成直角延伸的一个侧面和相对侧接触,并且与每个导热管39的一侧相对的另一侧交替接触 39沿纵向延伸。 通过这种结构,可以实现高导热性,并且可以在保持传热表面积的同时防止发生具有露滴的堵塞。