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    • 5. 发明授权
    • Air conditioner
    • 冷气机
    • US06725681B2
    • 2004-04-27
    • US10304624
    • 2002-11-26
    • Taku AdaniyaMasahiro KawaguchiShoichi IeokaYasuharu OdachiKazuhiko MinamiTomoharu Arai
    • Taku AdaniyaMasahiro KawaguchiShoichi IeokaYasuharu OdachiKazuhiko MinamiTomoharu Arai
    • F25B100
    • B60H1/3208B60H1/3225
    • An air conditioner for air conditioning the interior of a compartment includes a compressor and an electric motor. The compressor compresses refrigerant gas and changes the displacement. The electric motor drives the compressor. A motor controller rotates the motor at a constant reference speed. A detection device detects information related to the thermal load on the air conditioner. A current sensor detects the value of current supplied to the electric motor. A controller controls the compressor based on the detected thermal load information and the detected current value. The controller computes a target torque of the compressor based on the thermal load information. In accordance with the computed target torque, the controller computes a target current value to be supplied to the electric motor. The controller further controls the displacement of the compressor such that the detected current value matches the target current value.
    • 用于空调室内的空调包括压缩机和电动马达。 压缩机压缩制冷剂气体并改变位移。 电动机驱动压缩机。 电机控制器以恒定的参考速度旋转电机。 检测装置检测与空调的热负荷有关的信息。 电流传感器检测提供给电动机的电流值。 控制器基于检测到的热负载信息和检测到的电流值来控制压缩机。 控制器基于热负载信息计算压缩机的目标转矩。 根据计算出的目标转矩,控制器计算要提供给电动机的目标电流值。 控制器还控制压缩机的位移,使得检测到的电流值与目标电流值匹配。
    • 8. 发明授权
    • Scroll compressors
    • 涡旋式压缩机
    • US06712589B2
    • 2004-03-30
    • US10123602
    • 2002-04-15
    • Tatsushi MoriMasao IguchiMasahiro KawaguchiYasuharu OdachiHirohito Hayashi
    • Tatsushi MoriMasao IguchiMasahiro KawaguchiYasuharu OdachiHirohito Hayashi
    • F04B1700
    • F04C18/023F01C17/063
    • Scroll compressors (1) may include a housing (2, 3) having an inlet port (3a) and an outlet port (3b). A drive scroll (10) may be rotatably disposed within the housing and may have a rotational axis. A driven scroll (20) may be rotatably disposed within the housing and may have a rotational axis. The driven scroll rotational axis preferably is offset to the drive scroll rotational axis. Further, at least one compression chamber (30) is preferably defined between the drive scroll and the driven scroll. A first bearing (14) may rotatably support the drive scroll in a cantilever manner and a second bearing (24, 115) may rotatably support the driven scroll in a cantilever manner. A transmission (31, 131, 231 and 331) or other device may be provided to rotate the drive scroll in synchronism with the driven scroll.
    • 涡旋压缩机(1)可以包括具有入口(3a)和出口(3b)的壳体(2,3)。 驱动涡旋件(10)可以可旋转地设置在壳体内并且可以具有旋转轴线。 从动涡旋件(20)可以可旋转地设置在壳体内并且可以具有旋转轴线。 从动涡旋旋转轴线优选地偏移到驱动涡旋盘旋转轴线。 此外,优选地,在驱动涡旋件和从动涡旋件之间限定至少一个压缩室(30)。 第一轴承(14)可以以悬臂的方式可旋转地支撑驱动涡卷,而第二轴承(24,115)可以以悬臂的方式可旋转地支撑从动涡旋。 可以提供变速器(31,131,231和331)或其它装置以与驱动涡旋件同步地旋转驱动涡卷。
    • 10. 发明授权
    • Electric compressor
    • 电动压缩机
    • US06532858B2
    • 2003-03-18
    • US09766744
    • 2001-01-22
    • Toshiro FujiiKazuo MurakamiYasuharu OdachiYoshiyuki Nakane
    • Toshiro FujiiKazuo MurakamiYasuharu OdachiYoshiyuki Nakane
    • F01B300
    • F04B27/0895H02K7/14
    • An electric compressor includes a rotary shaft that is driven by an electric motor. The motor generates driving torque. Pistons compress gas in accordance with rotation of the rotary shaft. During one turn of the rotary shaft, the times when the net load torque generated by the pistons is minimum and the times when the driving torque of the motor is minimum occur at substantially the same rotation angles of the rotary shaft. Also, during one turn of the rotary shaft, the times when the net load torque is maximum and the times when the driving torque of the motor is maximum occur at substantially the same rotation angles of the rotary shaft. The driving torque is always greater than the net load torque. Therefore, the motor need not be large to generate sufficient torque.
    • 电动压缩机包括由电动机驱动的旋转轴。 电机产生驱动力矩。 活塞根据旋转轴的旋转压缩气体。 在旋转轴的一圈内,由活塞产生的净负荷扭矩最小,电动机的驱动转矩最小的时间发生在旋转轴的大致相同的旋转角度。 此外,在旋转轴的一圈中,净负载转矩最大的时间和电动机的驱动转矩的最大时间在旋转轴的大致相同的旋转角度处发生。 驱动扭矩总是大于净负载转矩。 因此,马达不需要大到产生足够的扭矩。