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    • 6. 发明授权
    • Soft-start circuit and power supply circuit including same
    • 软起动电路和电源电路包括相同
    • US08207715B2
    • 2012-06-26
    • US12640110
    • 2009-12-17
    • Takashi Gotoh
    • Takashi Gotoh
    • G05F1/10H02M7/10
    • 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。
    • 9. 发明授权
    • Method of fabricating a heat exchanger for an air conditioner
    • 制造空气调节换热器的方法
    • US5822854A
    • 1998-10-20
    • US659763
    • 1996-06-06
    • Kaoru IkejimaTakashi GotohTsuneo YumikuraMichimasa TakeshitaTakayuki Yoshida
    • Kaoru IkejimaTakashi GotohTsuneo YumikuraMichimasa TakeshitaTakayuki Yoshida
    • B23K1/00F28F1/12B23P15/26
    • B23K1/0012F28F1/122B23K2201/14Y10S165/50Y10S165/518Y10S165/906Y10T29/4938Y10T29/49393
    • A heat exchanger for an air conditioner includes a plurality of heat-transfer tubes arranged in parallel to each other at predetermined intervals, and heat-transfer fins formed by helically winding a plurality of fine wires around the plurality of heat-transfer tubes. Preferably, the heat-transfer tubes are divided into groups of two adjacent heat-transfer tubes (1a, 1b), (1b, 1c), (1c, 1d), . . . , and at least one fine wire fin is wound helically around the two adjacent heat-transfer tubes of each group so that the fine wire fin does not cross other portions of the fine wire fin as viewed along a direction perpendicular to a plane including the axes of the plurality of heat-transfer tubes. When fabricating the heat exchanger, at least either the outer circumferences of the heat-transfer tubes or the outer circumferences of the fine wires are coated with a metal film formed by plating, and then the heat-transfer tubes and the fine wires are interlaced to form a heat exchanging structure. Then, the heat exchanging structure is heated to the melting point of the metal film so that the metal film is melted and the heat-transfer tubes and the fine wires are bonded together by the molten metal film.
    • 空调机用热交换器包括以规定间隔彼此平行配置的多个热传输管,以及通过在多个传热管周围螺旋地卷绕多条细线而形成的传热翅片。 优选地,传热管分成两个相邻的传热管(1a,1b),(1b,1c),(1c,1d)。 。 。 并且至少一个细金属丝翅片围绕每组的两个相邻的传热管螺旋地缠绕,使得当沿着垂直于包括轴线的平面的方向观察时,细线翅片不会与细线翅片的其它部分交叉 的多个传热管。 在制造热交换器时,传热管的外周或细线的外周中的至少一方涂覆有通过电镀形成的金属膜,然后将传热管和细线交织成 形成热交换结构。 然后,将热交换结构加热到金属膜的熔点,使得金属膜熔化,并且传热管和细线通过熔融金属膜接合在一起。
    • 10. 发明授权
    • Heat exchanger and method of fabricating the heat exchanger
    • 热交换器和热交换器的制造方法
    • US5769157A
    • 1998-06-23
    • US417159
    • 1995-04-04
    • Kaoru IkejimaTakashi GotohTsuneo YumikuraMichimasa TakeshitaTakayuki Yoshida
    • Kaoru IkejimaTakashi GotohTsuneo YumikuraMichimasa TakeshitaTakayuki Yoshida
    • B23K1/00F28F1/12F28F1/32F28F1/36
    • B23K1/0012F28F1/122B23K2201/14Y10S165/50Y10S165/518Y10S165/906Y10T29/4938Y10T29/49393
    • A heat exchanger for an air conditioner comprises a plurality of heat-transfer tubes arranged in parallel to each other at predetermined intervals, and heat-transfer fins formed by helically winding a plurality of fine wires around the plurality of heat-transfer tubes. Preferably, the heat-transfer tubes are divided into groups of two adjacent heat-transfer tubes (1a, 1b), (1b, 1c), (1c, 1d), . . . , and at least one fine wire fin is wound helically around the two adjacent heat-transfer tubes of each group so that the fine wire fin does not cross other portions of the fine wire fin as viewed along a direction perpendicular to a plane including the axes of the plurality of heat-transfer tubes. When fabricating the heat exchanger, at least either the outer circumferences of the heat-transfer tubes or the outer circumferences of the fine wires are coated with a metal film formed by plating, and then the heat-transfer tubes and the fine wires are interlaced to form a heat exchanging structure. Then, the heat exchanging structure is heated to the melting point of the metal film so that the metal film is melted and the heat-transfer tubes and the fine wires are bonded together by the molten metal film.
    • 空调机用热交换器包括以规定间隔彼此平行配置的多个热传输管,以及通过在多个传热管周围螺旋地卷绕多根细线而形成的传热翅片。 优选地,传热管被分成两组相邻的传热管(1a,1b),(1b,1c),(1c,1d)。 。 。 并且至少一个细金属丝翅片围绕每组的两个相邻的传热管螺旋地缠绕,使得当沿着垂直于包括轴线的平面的方向观察时,细线翅片不会与细线翅片的其它部分交叉 的多个传热管。 在制造热交换器时,传热管的外周或细线的外周中的至少一方涂覆有通过电镀形成的金属膜,然后将传热管和细线交织成 形成热交换结构。 然后,将热交换结构加热到金属膜的熔点,使得金属膜熔化,并且传热管和细线通过熔融金属膜接合在一起。