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    • 74. 发明申请
    • REFRIGERATING CYCLE DEVICE
    • 制冷循环装置
    • US20110197607A1
    • 2011-08-18
    • US13124252
    • 2009-03-10
    • Kosuke TanakaYutaka Aoyama
    • Kosuke TanakaYutaka Aoyama
    • F25D17/06F25D17/02
    • F24F11/008B60H1/3211F24F11/46F24F11/77F24F11/83F25B13/00F25B2313/0233F25B2313/02741F25B2313/0293F25B2313/0294F25B2313/0314F25B2500/18F25B2600/2513F25B2700/15G05D7/0635Y02B30/746
    • A refrigerating cycle device that can reduce power consumption while cooling capacity or heating capacity is maintained is obtained. Operation control means that controls at least one of an operation capacity of a compressor, an air amount of an outdoor blower, an air amount of an indoor blower, and a throttle opening degree of throttle means so that a deviation between a target value and a sucked air temperature or blowoff air temperature becomes small and power detecting means that detects power consumption of the refrigerating cycle device are provided, and the operation control means acquires an operation manipulation amount with which the power consumption of the refrigerating cycle device becomes the minimum for at least one operation manipulation amount of the operation capacity of the compressor, the air amount of the outdoor blower, the air amount of the indoor blower, and the throttle opening degree of the throttle means and controls at least one of operation capacity of a compressor, the air amount of the outdoor blower, the air amount of the indoor blower, and the throttle opening degree of the throttle means in accordance with the operation manipulation amount.
    • 可以获得能够在保持冷却能力或加热能力的同时降低功耗的制冷循环装置。 操作控制装置控制压缩机的操作能力,室外鼓风机的空气量,室内鼓风机的空气量和节气门开度的至少一个,使得目标值和 吸入空气温度或吹出空气温度变小,并且提供检测制冷循环装置的功率消耗的功率检测装置,并且操作控制装置获取冷冻循环装置的功率消耗成为最小的操作操作量 压缩机的操作能力,室外鼓风机的空气量,室内鼓风机的空气量以及节流装置的节气门开度的操作操作量的至少一个操作量控制压缩机的操作能力, 室外鼓风机的空气量,室内鼓风机的空气量和节流阀的节气门开度 意味着根据操作操作量。
    • 77. 发明授权
    • Air conditioner automatically controlling operation based on supply
voltage or supply frequency
    • 空调根据电源电压或电源频率自动控制运行
    • US6065298A
    • 2000-05-23
    • US99348
    • 1998-06-18
    • Satoru Fujimoto
    • Satoru Fujimoto
    • F24F11/02F24F11/00F25B13/00F25B49/02H02P27/06F25B1/00
    • F24F11/008F25B49/025F25B13/00F25B2313/0292F25B2313/0293F25B2313/0294F25B2600/021F25B2600/025F25B2700/151Y02B30/741
    • An air conditioner includes: a current detection unit for detecting a current value of alternating current power supplied from an alternating current power source; an indoor fan motor for exchanging heat of refrigerant for indoor heat; an outdoor fan motor for exchanging the heat of the refrigerant for outdoor heat; a compressor connected to an indoor heat exchanger and an outdoor heat exchanger where heat exchanging is carried out by the indoor fan motor and the outdoor fan motor respectively, for compressing the refrigerant; a refrigerant decompression unit connected to the indoor and outdoor heat exchangers for decompressing the refrigerant; a drive control unit receiving the alternating current power from the alternating current power source for controlling drive of the compressor; a voltage detection unit for detecting a voltage value supplied from the alternating current power source to the drive control unit; and a microcomputer receiving the current value detected by the current detection unit and the voltage value detected by the voltage detection unit for correcting a control level of the current value based on the voltage value and for controlling any one of or at least two of the drive control unit, the refrigerant decompression unit, and the indoor and outdoor fan motors by the control level of the current value.
    • 空调器包括:电流检测单元,用于检测从交流电源提供的交流电的电流值; 用于室内热交换制冷剂的室内风扇马达; 用于交换用于室外热的制冷剂的热量的室外风扇马达; 连接到室内热交换器的压缩机和分别由室内风扇电动机和室外风扇电动机进行热交换的室外热交换器,用于压缩制冷剂; 连接到室内和室外热交换器以用于减压制冷剂的制冷剂减压单元; 驱动控制单元,接收来自所述交流电源的交流电力,以控制所述压缩机的驱动; 电压检测单元,用于检测从交流电源向驱动控制单元提供的电压值; 以及微型计算机,接收由电流检测单元检测的电流值和由电压检测单元检测的电压值,用于基于电压值校正电流值的控制电平,并且用于控制驱动中的任何一个或至少两个 控制单元,制冷剂减压单元,以及室内外风扇电机的电流值的控制水平。
    • 79. 发明授权
    • Apparatus for controlling an air conditioner
    • 用于控制空调的装置
    • US6053002A
    • 2000-04-25
    • US234635
    • 1999-01-21
    • Satoshi MatsumotoKouichi MatsumotoTomonori IsobeHiroshi YoshidaManabu IshiharaYuki TakatsuEiji Kawabe
    • Satoshi MatsumotoKouichi MatsumotoTomonori IsobeHiroshi YoshidaManabu IshiharaYuki TakatsuEiji Kawabe
    • F24F11/00F25B49/02
    • F24F11/008F25B2600/021F25B49/025Y02B30/741
    • There is provided a controlling apparatus for an air conditioner, which comprises: an inverter circuit for feeding as an output a pseudo-sine wave from a switching signal obtained by comparison between a modulated wave and a carrier wave; a refrigeration cycle device which has a compressor driven by the pseudo-sine wave from the inverter circuit so that the modulated wave is adjusted according to a load of an air conditioner; and a correction device for correcting an amplitude of the modulated wave into a smaller one at a predetermined time when a rated voltage of the power source from the inverter circuit is larger than a rated voltage by a first predetermined value, and correcting the modulated wave into a larger one at a predetermined time when a rated voltage of the power source from the inverter circuit is smaller than the rated voltage by a second predetermined value. The predetermined time is elongated as the difference between the aforementioned power source voltage and the rated voltage becomes larger, so that shutdown of the compressor is restricted at the voltage variation of the power source.
    • 提供了一种用于空调的控制装置,包括:逆变器电路,用于从通过调制波和载波之间的比较获得的开关信号馈送伪正弦波作为输出; 制冷循环装置,其具有由来自逆变器电路的伪正弦波驱动的压缩机,使得调制波根据空调的负载进行调节; 以及校正装置,用于当来自逆变器电路的电源的额定电压大于额定电压第一预定值时,在预定时间将调制波的幅度校正为较小的校正装置,并将调制波校正为 当来自逆变器电路的电源的额定电压小于额定电压第二预定值时,在预定时间较大的一个。 随着上述电源电压和额定电压之间的差异变大,预定时间延长,使得在电源的电压变化下压缩机的关闭受到限制。
    • 80. 发明授权
    • Air conditioner control method and apparatus of the same
    • 空调控制方法及装置相同
    • US6012294A
    • 2000-01-11
    • US210476
    • 1998-12-14
    • Takashi Utsumi
    • Takashi Utsumi
    • F24F11/02F25B13/00F25B41/04F25B47/02F25B47/00
    • F25B47/022F25B13/00F25B41/04F24F11/008F24F2011/0087
    • In a heat pump type air conditioner, a refrigerant ejection port of a compressor in a refrigerating cycle thereof is connected to a refrigerant inflow port of an outdoor heat exchanger via a bypass pipe with a shut-off valve, and temperature sensors detect the temperatures of the refrigerant inflow and runoff port sides of an outdoor heat exchanger. In a heating operation mode, when the temperature of the refrigerant inflow or runoff port side reaches a certain value or lower that requires defrosting, the shut-off valve of the bypass pipe is "opened" to start defrosting using the hot gas bypass defrosting method. The temperature of the refrigerant runoff port side is detected every specified time so that if the temperature change rate is less than or equal to a predetermined value, the shut-off valve is "closed" and the four-way valve in the refrigerating cycle is switched to the cooling operation mode side in order to switch to the reverse defrosting method that allows a hot gas to flow in the reverse direction from said compressor to said outdoor heat exchanger, thereby enabling the outdoor heat exchanger to be defrosted promptly.
    • 在热泵式空调机中,其制冷循环中的压缩机的制冷剂排出口通过具有截止阀的旁通管与室外热交换器的制冷剂流入口连接,温度传感器检测温度 室外热交换器的制冷剂流入口和流出口侧。 在制热运转模式中,当制冷剂流入或流出口侧的温度达到要求除霜的一定值以下时,利用热气旁路除霜方法将旁通管的截止阀“打开”开始除霜 。 每隔规定时间检测制冷剂流出口侧的温度,如果温度变化率小于或等于规定值,则截止阀为“闭合”,制冷循环中的四通阀为 切换到冷却运转模式侧,以便切换到允许热气体从所述压缩机向所述室外热交换器反向流动的反向除霜方法,从而能够及时解冻室外热交换器。