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    • 33. 发明专利
    • Motor current detecting device and air conditioner
    • 电动机电流检测装置和空调器
    • JP2009124907A
    • 2009-06-04
    • JP2007298474
    • 2007-11-16
    • Daikin Ind Ltdダイキン工業株式会社
    • HASHIMOTO MASAFUMISHIMATANI KEISUKEMAEDA HIROHITOYAGI TATSUIKEDA MOTONOBU
    • H02P6/16
    • H02M5/42F25B49/022F25B49/025F25B2600/021F25B2700/00F25B2700/15F25B2700/151H02M2001/0009H02P27/06H02P2205/01
    • PROBLEM TO BE SOLVED: To provide a motor current detecting device capable of obtaining a precise motor current, and to provide an air conditioner having the same. SOLUTION: The motor current detecting device 9 includes a GND wire 93, a momentary current detecting unit 95, an average current detecting unit 96, and a calculating unit 99. A motor current Im and a drive current Id flow through the GND wire 93 into a second fan motor 81 and into a second motor driver 82 that drives the second fan motor 81, respectively. The momentary current detecting unit 95 detects the momentary value of the sum of the motor current Im and the drive current Id that flow through the GND wire 93. The average current detecting unit 96 detects the average of the sum of the motor current Im and the drive current Id that flow through the GND wire 93. The calculating unit 99 calculates the motor current Im based on detection results from the momentary current detecting unit 95 and the average current detecting unit 96. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够获得精确的电动机电流的电动机电流检测装置,并提供具有该电动机电流的空调。 电动机电流检测装置9包括GND线93,瞬时电流检测单元95,平均电流检测单元96和计算单元99.电动机电流Im和驱动电流Id流过GND 电线93分成第二风扇马达81和分别驱动第二风扇马达81的第二马达驱动器82。 瞬时电流检测单元95检测电流电流Im和流过GND线93的驱动电流Id之和的瞬时值。平均电流检测单元96检测电机电流Im和 驱动电流Id流过GND线93.计算单元99基于来自瞬时电流检测单元95和平均电流检测单元96的检测结果来计算电动机电流Im。(C)2009,JPO&INPIT
    • 35. 发明公开
    • AIR CONDITIONER
    • 冷气机
    • EP3279590A1
    • 2018-02-07
    • EP16772728.8
    • 2016-03-28
    • Daikin Industries, Ltd.
    • HONDA, MasahiroKAMITANI, Shigeki
    • F25B49/02F24F11/02F24F11/04F24F11/053F25B13/00
    • F24F11/36F24F11/52F24F11/74F24F11/76F24F11/77F24F11/89F24F2110/10F24F2110/50F24F2140/00F25B13/00F25B49/005F25B49/02F25B2313/0233F25B2313/0293F25B2313/0314F25B2500/222F25B2700/00F25B2700/2104
    • An air-conditioning apparatus provided with a ceiling-mounted indoor unit that uses a refrigerant having a greater specific gravity when gasified than air, wherein the reliability of refrigerant leakage detection is improved. An indoor machine (40A, 40B) is at least one indoor unit in which an intake port and a blow-out port are formed, the indoor unit having an indoor fan (43) for drawing indoor air in from the intake port and blowing conditioned air out from the blow-out port, an intake temperature sensor (46), an indoor-side refrigerant circuit (11 a, 11 b) for circulating a refrigerant having a greater specific gravity when gasified than air and producing conditioned air from the indoor air, and a refrigerant temperature sensor (47a, 47b, 47c) for detecting the temperature of the refrigerant in the indoor-side refrigerant circuit (11 a, 11 b). A control device (30) drives the indoor fan (43) in accordance with an operation mode and/or a detection value of the refrigerant temperature sensor (47a, 47b, 47c), and detects refrigerant leakage through the use of the refrigerant gas sensor (45).
    • 本发明提供一种空调装置,该空调装置具备天花板安装型的室内单元,该天花板安装型室内单元使用比空气气化时的比重大的制冷剂,从而提高制冷剂泄漏检测的可靠性。 室内机40A,40B是形成有进气口和吹出口的至少一个室内单元,该室内单元具有室内风扇43,该室内风扇43将室内空气从进气口吸入, 从吹出口吹出空气,吸入温度传感器46,使气化比空气的比重大的制冷剂循环的室内侧制冷剂回路11a,11b,从室内制冷空气 以及检测室内侧制冷剂回路(11a,11b)内的制冷剂的温度的制冷剂温度传感器(47a,47b,47c)。 控制装置30根据制冷剂温度传感器47a,47b,47c的动作模式和/或检测值驱动室内风扇43,使用制冷剂气体传感器检测制冷剂泄漏 (45)。
    • 40. 发明申请
    • REFRIGERATOR AND METHOD FOR CONTROLLING THE SAME
    • 制冷机及其控制方法
    • US20150226475A1
    • 2015-08-13
    • US14509284
    • 2014-10-08
    • LG Electronics Inc.
    • Byoungsuk ChoiJinseok HuHeesun Kim
    • F25D29/00F25B49/02
    • F25B49/02F25B2500/05F25B2600/01F25B2700/00F25D29/00F25D2600/02F25D2700/02F25D2700/12F25D2700/14
    • A refrigerator and a method for controlling the same are disclosed. A refrigerator includes a timer for measuring an interval of one hour after power is supplied to the refrigerator, a door opening/closing sensor for sensing opening and closing of a door, a storage unit for storing information whether door is opened in a sector defined as one hour by the timer and at least 7 sector units each having 24 consecutive sectors, and a control unit for predicting a refrigerator use pattern in 24 sectors by overlapping 7 sector units, performing a normal operation mode to maintain a storage compartment at a first desired temperature in a sector in which door opening is predicted, and performing a power-saving operation mode to maintain the storage compartment at a second desired temperature higher than the first desired temperature in a sector in which door opening is not predicted.
    • 公开了一种冰箱及其控制方法。 冰箱包括:计时器,用于测量向冰箱供电后1小时的间隔;门开/关传感器,用于感测门的打开和关闭;存储单元,用于存储门被定义为 一个小时由定时器和每个具有24个连续扇区的至少7个扇区单元,以及控制单元,用于通过重叠7个扇区单元来预测24个扇区中的冰箱使用模式,执行正常操作模式以将存储室维持在第一期望 预测门打开的扇区中的温度,并且执行省电操作模式以在不预测门打开的扇区中将储藏室维持在高于第一期望温度的第二期望温度。