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    • 41. 发明申请
    • ELECTRONIC COMPONENT MOUNTING APPARATUS AND VISCOUS MATERIAL TRIAL COATER
    • 电子元件安装设备和VISCOUS材料试验机
    • US20110030201A1
    • 2011-02-10
    • US12936752
    • 2009-03-30
    • Yuzuru InabaOsamu OkudaYuji TanakaTetsutaro Hachimura
    • Yuzuru InabaOsamu OkudaYuji TanakaTetsutaro Hachimura
    • B23P19/00B05C13/00
    • H05K13/0465Y10T29/49828Y10T29/5137Y10T29/5313Y10T29/53178Y10T29/53183Y10T29/53187
    • It is an object to provide an electronic component mounting apparatus suitable for diverting a single unit to a unit for different operation and a viscous material trial coater that is used in the electronic component mounting apparatus and that enables replacement of a working unit with a working unit of a different type with superior operability.In an electronic component mounting apparatus that is used in an electronic component mounting line for producing a mounted substrate by mounting electronic components on a substrate and that subjects the substrate to predetermined operation, a working unit attachment section 30 is provided within a range of movement of a working head, such as a loading head and a paste coating head, wherein a nozzle stocker 9 and a paste trial coating unit 10 can be removably attached as a working unit for performing specific additional operation appropriate for working function of the working head. The nozzle stoker 9 and the paste trial coating unit 10 are attached to the working unit attachment section 30 according to the type of working head.
    • 本发明的目的是提供一种适于将单个单元转移到用于不同操作的单元的电子部件安装装置和用于电子部件安装装置中的粘性材料试验涂布机,并且能够利用工作单元更换工作单元 具有优异的可操作性的不同类型。 在将电子部件安装在基板上并使基板进行规定的动作的电子部件安装线中使用的电子部件安装装置中,将工作部件安装部30设置在 诸如装载头和糊涂头的工作头,其中喷嘴贮存器9和糊涂试验单元10可移除地附接作为工作单元,用于执行适合于工作头的作业功能的特定附加操作。 根据工作头的种类,将喷嘴加热器9和糊料试
      涂单元10安装在作业单元安装部30上。
    • 42. 发明授权
    • Air-conditioning system and method of installing energy recovery apparatus
    • 空调系统及安装能量回收装置的方法
    • US07818973B2
    • 2010-10-26
    • US11900477
    • 2007-09-11
    • Yuji TanakaYukihiro FujitaEiji KoyamaKouich Satou
    • Yuji TanakaYukihiro FujitaEiji KoyamaKouich Satou
    • F25D17/02F25D17/00F25B27/00
    • F24F12/00F24F3/06F24F11/83Y02E10/28Y02E60/17Y10S165/902
    • There is provided an energy recovery apparatus capable of recovering a hydraulic energy in a regenerative air-conditioning system including a pressure sustaining valve and capable of coping with a discharge change caused by variation in air-conditioning load, the air-conditioning system being capable of carrying out normal operation even in a case where the energy recovery apparatus fails. The energy recovery apparatus is configured so as to feed water from a water tank to air-conditioning loads such as a heat source or a fan coil at a higher place through a feed pipe line by a pump and to lead the water passed through the air-conditioning loads into the water tank via a return pipe line including the pressure sustaining valve, a branch pipe line is disposed so as to branch into the water tank from the return pipe line in upstream of the pressure sustaining valve, and the energy recovery apparatus is connected in to the branch pipe line.
    • 提供一种能够回收包括压力维持阀的再生空调系统中的液压能量并能够应对由空调负荷变化引起的排出变化的能量回收装置,该空调系统能够 即使在能量回收装置发生故障的情况下也进行正常动作。 能量回收装置被配置为通过泵将来自水箱的水通过供给管线从水供给到较高处的诸如热源或风扇盘管的空调负载,并引导通过空气的水 通过包括压力维持阀的返回管路将负载转移到水箱中,分支管线设置成从压力维持阀上游的回流管路分支到水箱中,能量回收装置 连接到分支管路。
    • 48. 发明申请
    • Air-conditioning system and method of installing energy recovery apparatus
    • 空调系统及安装能量回收装置的方法
    • US20080022699A1
    • 2008-01-31
    • US11900477
    • 2007-09-11
    • Yuji TanakaYukihiro FujitaEiji KoyamaKouich Satou
    • Yuji TanakaYukihiro FujitaEiji KoyamaKouich Satou
    • F25D31/00
    • F24F12/00F24F3/06F24F11/83Y02E10/28Y02E60/17Y10S165/902
    • There is provided an energy recovery apparatus capable of recovering a hydraulic energy in a regenerative air-conditioning system including a pressure sustaining valve and capable of coping with a discharge change caused by variation in air-conditioning load, the air-conditioning system being capable of carrying out normal operation even in a case where the energy recovery apparatus fails. The energy recovery apparatus is configured so as to feed water from a water tank to air-conditioning loads such as a heat source or a fan coil at a higher place through a feed pipe line by a pump and to lead the water passed through the air-conditioning loads into the water tank via a return pipe line including the pressure sustaining valve, a branch pipe line is disposed so as to branch into the water tank from the return pipe line in upstream of the pressure sustaining valve, and the energy recovery apparatus is connected in to the branch pipe line.
    • 提供一种能够回收包括压力维持阀的再生空调系统中的液压能量并能够应对由空调负荷变化引起的排放变化的能量回收装置,该空调系统能够 即使在能量回收装置发生故障的情况下也进行正常动作。 能量回收装置被配置为通过泵将来自水箱的水通过供给管线从水供给到较高处的诸如热源或风扇盘管的空调负载,并引导通过空气的水 通过包括压力维持阀的返回管路将负载转移到水箱中,分支管线设置成从压力维持阀上游的回流管路分支到水箱中,能量回收装置 连接到分支管路。