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    • 24. 发明申请
    • APPARATUS FOR CONCENTRATING A SOLUTION
    • 集中解决方案的设备
    • US20110186490A1
    • 2011-08-04
    • US12997074
    • 2009-06-11
    • Kazuo MatsuuraIchiko AzumaFusatsugu Abe
    • Kazuo MatsuuraIchiko AzumaFusatsugu Abe
    • B01D17/00
    • B01D1/18B01D1/16B01D1/20
    • An apparatus for concentrating solution includes a plurality of nozzles (1) to spray solution into minute particle mist, a gas supplier (2) to transfer gas-mist mixture containing mist by supplying carrier gas to mist sprayed from the nozzle (1), and a separator (3) to separate a component with a low boiling point from a component with a high boiling point by supplying gas-mist mixture transferred using the gas supplier (2). The gas supplier (2) defines a plurality of apertures (9) to supply carrier gas to the plurality of nozzles (1). In this apparatus for concentrating solution, the plurality of nozzles (1) are spraying mist into carrier gas supplied from the apertures (9).
    • 用于浓缩溶液的装置包括:多个喷嘴(1),用于将溶液喷射到微小颗粒雾中;气体供应器(2),用于通过向喷嘴(1)喷射的雾状物供给载气来转移含有雾的气雾混合物;以及 通过提供使用气体供给器(2)传送的气雾混合物,将具有低沸点的组分与高沸点组分分离的分离器(3)。 气体供应器(2)限定多个孔(9)以将载气供应到多个喷嘴(1)。 在这种集中溶液装置中,多个喷嘴(1)将喷雾喷雾到从孔(9)供应的载气中。
    • 26. 发明授权
    • Ultrasonic solution separating method and ultrasonic separating apparatus used in this method
    • 超声波分离方法和超声波分离装置用于该方法
    • US07766994B2
    • 2010-08-03
    • US11794377
    • 2005-12-29
    • Kazuo Matsuura
    • Kazuo Matsuura
    • B01D51/08
    • B01D17/04B01D1/0017B01D3/002B01D3/006B01D5/006B05B17/0615
    • An ultrasonic solution separating method wherein a solution is ultrasonically vibrated and atomized into mist in a carrier gas in an ultrasonic atomizing chamber (4) and the carrier gas including atomized mist is transferred to a collecting part (5) and in the collecting part (5) the mist component comprising solution atomized into mist is separated from the carrier gas. In the ultrasonic solution separating method, in the collecting part (5), mist component is separated from the carrier gas in an adsorbing step of causing mist component to be adsorbed onto an adsorbing agent (15) by bringing the carrier gas including mist component into contact with the adsorbing agent (15) and a separating step of separating mist component adsorbed onto the adsorbing agent (15) in the adsorbing step from the adsorbing agent (15), and mist component is separated from the carrier gas with the pressure of the separating step being made lower than the pressure of adsorbing step.
    • 一种超声波溶液分离方法,其中在超声波雾化室(4)中将溶液超声波振动并雾化成载气,将包含雾化雾的载气转移到收集部(5)和收集部(5) )将雾化成雾状的雾成分与载气分离。 在超声波溶液分离方法中,在集尘部(5)中,通过使包含雾成分的载气进入到吸附剂(15)的吸附工序中,将雾成分与载气分离, 与吸附剂(15)接触,并且在吸附步骤中将吸附剂吸附在吸附剂(15)上的雾成分从吸附剂(15)分离,并将雾成分与载气分离, 使分离步骤低于吸附步骤的压力。
    • 28. 发明申请
    • Radar Device
    • 雷达装置
    • US20080062038A1
    • 2008-03-13
    • US11840680
    • 2007-08-17
    • Shiro OuchiTadashi IsonoKazuo MatsuuraYoshiyuki Sasada
    • Shiro OuchiTadashi IsonoKazuo MatsuuraYoshiyuki Sasada
    • G01S13/00
    • G01S7/032G01S13/931G01S2007/027H05K7/20436H05K7/20854
    • In a radar device, in order to make it simple to attach a connector to a housing and connect a control circuit board to an antenna module, to make it possible to automate assembly, and to achieve downsizing and weight reduction, the radar device comprises a resin housing having upper and lower opening portions, and a control circuit board attached to the resin housing, a metal front cover and a metal rear cover are arranged so as to close the upper and lower opening portions of the resin housing, an opening portion is formed in the metal front cover, and an antenna module is arranged in the opening portion so as to be firmly attached, whereby the radar device can be assembled from one side, it is possible to improve efficiency of assembling work and it is possible to achieve downsizing and cost reduction of the radar device.
    • 在雷达装置中,为了简单地将连接器连接到外壳并将控制电路板连接到天线模块,使得能够自动组装,并且实现小型化和减轻重量,雷达装置包括 具有上开口部和下开口部的树脂壳体和安装在树脂壳体上的控制电路基板,金属前盖和金属后盖配置成封闭树脂壳体的上下开口部,开口部为 形成在金属前盖中,并且天线模块布置在开口部分中以牢固地附接,从而可以从一侧组装雷达装置,可以提高组装作业的效率,并且可以实现 雷达装置的精简和降低成本。
    • 30. 发明授权
    • Intelligent cruise control device
    • 智能巡航控制装置
    • US06360158B1
    • 2002-03-19
    • US08923414
    • 1997-09-04
    • Kazuhiko HanawaMitsuru NakamuraKazuo MatsuuraSatoru Kuragaki
    • Kazuhiko HanawaMitsuru NakamuraKazuo MatsuuraSatoru Kuragaki
    • B60K3104
    • B60W30/16B60K31/0008
    • The present invention provides an intelligent cruise control device installed in a host vehicle and used for performing follow-up cruise control to follow up a moving target located in front of the host vehicle by supplying an operating signal to an auto cruise control device which is used for carrying out auto cruise control to adjust the speed of the host vehicle by carrying out an operation indicated by the operating signal generated by the operating part in accordance with an operation type such as acceleration and deceleration specified by the driver so that the host vehicle is running at the adjusted speed. The intelligent cruise control device further comprises: a storage means for storing information on the operating signal for each operation type such as acceleration and deceleration; an operation determining means for determining the type of an operation required by the host vehicle to follow up a moving target located in front of the host vehicle from information on the speed of the host vehicle and information on the range between the host vehicle and the moving target; and a signal generating means for reading out information on an operating signal for the type of an operation determined by the operation determining means from the storage means and for generating the operating signal in accordance with the information on the operating signal read out from the storage means.
    • 本发明提供了一种安装在主车辆中的智能巡航控制装置,其用于执行后续巡航控制,以通过向使用的自动巡航控制装置提供操作信号来跟随位于主车辆前方的移动目标 进行自动巡航控制,通过根据由驾驶员指定的加速和减速的操作类型执行由操作部产生的操作信号所指示的操作来调节本车辆的速度,使得主车辆 以调整速度运行。 智能巡航控制装置还包括:存储装置,用于存储关于加速和减速的各种操作类型的操作信号的信息; 操作确定装置,用于根据关于本车辆的速度的信息确定本车辆所需的操作的类型,以及关于主车辆与移动的车辆之间的距离的信息 目标; 信号发生装置,用于从存储装置读出由操作确定装置确定的操作类型的操作信号的信息,并根据关于从存储装置读出的操作信号的信息产生操作信号 。