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    • 2. 发明专利
    • Water treatment supply system
    • 水处理供水系统
    • JP2009221733A
    • 2009-10-01
    • JP2008066975
    • 2008-03-17
    • Miura Co LtdMiura Protech Ltd三浦工業株式会社株式会社三浦プロテック
    • HAMADA YUSUKE
    • E03B11/00B01D19/00B01D61/00C02F1/00C02F1/20C02F1/42G05D9/00
    • PROBLEM TO BE SOLVED: To provide a water treatment supply system allowing the supply of water without emptying a water supply tank of water use equipment even when a water treating apparatus is clogged to cause a failure to supply water downstream.
      SOLUTION: The water treatment supply system 10 comprises a water supply line 4, a deaerator 11, a water softener 12, a water level sensor 15 measuring the water level in the water supply tank 5, a first bypass line 16, a second bypass line 17, on-off valves 20, 21 and a control circuit 25. The control circuit 25 controls to open the on-off valve 20 of the first bypass line 16 to start first bypass water supply when the water level in the water supply tank 5 falls to a first bypass water supply start water level B1 based on the output of the water level sensor 15, and controls to open the on-off valve 21 of the second bypass line 17 to start second bypass water supply when the water level in the water supply tank 5 falls to a second bypass water supply start water level B2.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使当水处理设备被堵塞以导致下游供水失败时,提供允许供水而不排空供水设备的供水箱的水处理供应系统。 解决方案:水处理供应系统10包括供水管线4,脱气器11,软水器12,测量供水箱5中的水位的水位传感器15,第一旁通管线16, 第二旁路管线17,开关阀20,21和控制电路25.控制电路25控制第一旁路管线16的开关阀20,以在水中的水位开始第一旁路供水 供水箱5基于水位传感器15的输出而落到第一旁路供水启动水位B1,并且当水被打开时,控制打开第二旁路管线17的开关阀21以启动第二旁路供水 供水箱5中的水位下降到第二旁通供水开始水位B2。 版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Cooling device and electronic equipment having the same
    • 冷却装置和具有该装置的电子设备
    • JP2005190091A
    • 2005-07-14
    • JP2003429465
    • 2003-12-25
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • MATSUDA TOSHIHIKONIWATSUKINO YASUSHIKOGA SHINYA
    • F25D1/00F25B41/00F25B49/00F28D15/00F28F27/00G05D9/00G05D23/00G06F1/20H01L23/473H05K7/20
    • G06F1/206F28D15/00F28F2265/10G06F1/203G06F2200/201
    • PROBLEM TO BE SOLVED: To provide a cooling device avoiding the overheating state of a heat generating matter caused by deterioration in cooling capability by detecting the shortage of the liquid quantity of the coolant of the cooling device, and electronic equipment mounted with the cooling device. SOLUTION: The cooling device for a computer device is configured by arranging a cooler 4 and a heat radiator 5 and a pump 6 and a reserve tank 7 for storing a coolant in a closed cyclic path for circulating the coolant, and making the pump 6 circulate the coolant by the set number of rotations, and making the cooler 4 take heat from a CPU 2 by using the coolant, and making the heat radiator 5 radiate the taken heat. The cooling device is provided with a determination means for determining that operation should be continued when the number of rotation of the pump 6 is not more than the set number of rotations, and for determining that the liquid quantity of the coolant is insufficient when the number of rotations of the pump 6 exceeds the set number of rotations. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种冷却装置,其通过检测冷却装置的冷却剂的液体量的不足而避免由冷却能力的劣化引起的发热体的过热状态,以及安装有冷却装置的电子设备 冷却装置。 解决方案:用于计算机设备的冷却装置通过布置冷却器4和散热器5以及用于将冷却剂存储在用于使冷却剂循环的封闭循环路径中的泵6和储备罐7,并且使 泵6通过设定的转数使冷却剂循环,并且使冷却器4通过使用冷却剂从CPU 2进行加热,并且使散热器5散热。 冷却装置设置有确定装置,用于当泵6的旋转数不大于设定转数时确定应继续进行操作,并且为了确定冷却剂的液体量在数量 泵6的转速超过设定的转数。 版权所有(C)2005,JPO&NCIPI
    • 5. 发明专利
    • INTERMITTENT POWDER LEVEL OR LIQUID LEVEL CONTROLLER
    • JP2002182750A
    • 2002-06-26
    • JP2000383578
    • 2000-12-18
    • MITSUBISHI CHEM CORP
    • KOKUBU TAKASHITANAKA MASATO
    • G05D9/00
    • PROBLEM TO BE SOLVED: To perform the intermittent control of a powder level in a polyester polymerization reaction tank by using an intermittent power level meter. SOLUTION: The controller has a change quantity operation part 22 operating the volume change quantity of a reactant in the reaction tank from the previous measuring value of the intermittent powder level meter 17 to this measuring value, a first manipulated variable operation part 23 operating a first manipulated variable for a rotary valve from the change quantity and lapse time, a deviation operation part 24 operating deviation from the target value of this measuring value, a second manipulated variable operation part 25 operating a second manipulated variable for the rotary valve from deviation and follow-up time and a revolution operation part 25 controlling the revolution of the rotary valve based on the first and second manipulated variables. Satisfactory intermittent control is realized by using the measuring value of the intermittent power level meter 17.