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    • 1. 发明申请
    • REACTOR METHOD OF MANUFACTURE FOR SAME
    • 反应器制造方法
    • US20130008890A1
    • 2013-01-10
    • US13636099
    • 2011-03-17
    • Junichi EsakiYoshitomo KajinamiHiroyuki KatoYasuhiro Matsumoto
    • Junichi EsakiYoshitomo KajinamiHiroyuki KatoYasuhiro Matsumoto
    • H05B6/22H01F41/00
    • H01F27/255H01F1/26H01F27/323H01F41/0246H01F41/122H01F2017/048Y10T29/4902
    • [Problem] When a core is configured by injection-molding a mixture including a soft magnetic powder and a thermoplastic resin and a reactor is manufactured by integrating a coil in a state where the coil is embedded in the inner portion of core, positional misalignment or deformation of coil at the time of molding the core can be effectively prevented, and the core can be favorably molded using an injection molding method.[Solution Means] A reactor 15 is manufactured through a step A of encasing a coil 10 configured by winding a wire in a state where an insulating layer is interposed between the wires with an electrically insulating resin to mold an encased coil body 24, and a step of molding a core 16 by injection-molding a mixture including a soft magnetic powder and a thermoplastic resin in a state where the encased coil body 24 is enclosed. In addition, the injection molding of the core 16 is performed so as to be divided into a step in which a primary molded body 16-1 having a container shape alone is molded and a step in which a secondary molded body 16-2 is molded in a state where the encased coil body 24 is set along with the primary molded body 16-1.
    • [问题]当通过注射成型包含软磁性粉末和热塑性树脂的混合物来构造芯体时,通过在线圈嵌入在芯部内部的状态下集成线圈来制造反应器,位置偏移或 可以有效地防止成型芯部时的线圈变形,并且可以使用注射成型方法有利地模制芯部。 [解决方案]通过步骤A制造电抗器15,该步骤A包围线圈10,该线圈10通过在电绝缘树脂之间插入绝缘层的状态下缠绕导线而构成,以模制封装的线圈体24,并且 在封装有线圈体24的状态下通过注射成型包含软磁性粉末和热塑性树脂的混合物来成型芯16的步骤。 此外,进行芯部16的注射成型,以被分成如下步骤:其中仅成型具有容器形状的一次成型体16-1和其中模制二次成型体16-2的步骤 在被封装的线圈体24与一次成型体16-1一起设置的状态下。
    • 2. 发明授权
    • Method of manufacture for encased coil body
    • 封装线圈体的制造方法
    • US08834765B2
    • 2014-09-16
    • US13636101
    • 2011-03-17
    • Junichi EsakiHiroyuki KatoYasuhiro Matsumoto
    • Junichi EsakiHiroyuki KatoYasuhiro Matsumoto
    • B29C45/14
    • H01F41/0246H01F27/255H01F27/323H01F41/122H01F2017/048Y10T29/49073
    • [Problem] To provide a method of manufacture for an encased coil body, which is capable of easily manufacturing an encased coil body which is configured so as to be encased in a state where a coil is enclosed within an electrically insulating resin and is also capable of favorably preventing the coil from positional misalignment or deformation at the time of the manufacture.[Means for Solution] The method includes injection-molding a resin covering layer which encases the coil 10 with a thermoplastic resin, in which the injection-molding is carried out such that the injection-molding step is divided into a primary molding step and a secondary molding step, in which the primary molding step includes contacting a primary molding die to an inner circumferential surface of the coil 10 and molding a primary molded body 22-1 which includes an outer circumferential covering portion 46 in a state where the coil 10 is constrained so as to be positioned in a radial direction, and the secondary molding step includes, after the primary molding step, setting the primary molded body 22-1 along with the coil 10 to a secondary molding die and molding a secondary molded body which includes an inner circumferential covering portion.
    • 本发明提供一种封装线圈体的制造方法,其能够容易地制造被包围的线圈体,该线圈体被构造成在线圈封闭在电绝缘树脂内的状态下被包围,并且还能够 有利地防止线圈在制造时的位置不对准或变形。 [解决方案]该方法包括用热塑性树脂注射包封线圈10的树脂覆盖层,其中进行注射成型,使得注射成型步骤被分成初级模塑步骤和 二次模塑步骤,其中初级模塑步骤包括使初级模具模具与线圈10的内圆周表面接触,并且在线圈10是状态下模制包括外圆周覆盖部分46的一次模制体22-1 被限制为沿径向定位,并且二次成型步骤在初次模制步骤之后包括将一次成型体22-1与线圈10一起设置到二次模制模具并且模制二次模制体,该二次模制体包括 内圆周覆盖部分。
    • 3. 发明申请
    • METHOD OF MANUFACTURE FOR ENCASED COIL BODY AND ENCASED COIL BODY
    • 制造线圈体和加固线圈体的方法
    • US20130002383A1
    • 2013-01-03
    • US13636101
    • 2011-03-17
    • Junichi EsakiHiroyuki KatoYasuhiro Matsumoto
    • Junichi EsakiHiroyuki KatoYasuhiro Matsumoto
    • H01F41/00H01F27/02
    • H01F41/0246H01F27/255H01F27/323H01F41/122H01F2017/048Y10T29/49073
    • [Problem] To provide a method of manufacture for an encased coil body, which is capable of easily manufacturing an encased coil body which is configured so as to be encased in a state where a coil is enclosed within an electrically insulating resin and is also capable of favorably preventing the coil from positional misalignment or deformation at the time of the manufacture,[Means for Solution] The method includes injection-molding a resin covering layer which encases the coil 10 with a thermoplastic resin, in which the injection-molding is carried out such that the injection-molding step is divided into a primary molding step and a secondary molding step, in which the primary molding step includes contacting a primary molding die to an inner circumferential surface of the coil 10 and molding a primary molded body 22-1 which includes an outer circumferential covering portion 46 in a state where the coil 10 is constrained so as to be positioned in a radial direction, and the secondary molding step includes, after the primary molding step, setting the primary molded body 22-1 along with the coil 10 to a secondary molding die and molding a secondary molded body which includes an inner circumferential covering portion.
    • 本发明提供一种封装线圈体的制造方法,其能够容易地制造被包围的线圈体,该线圈体被构造成在线圈封闭在电绝缘树脂内的状态下被包围,并且还能够 有利地防止线圈在制造时发生位置的不对准或变形。[解决方案]该方法包括将带有线圈10的树脂覆盖层注塑成型的热塑性树脂,其中进行注射成型 使得注射成型步骤被分成初级模塑步骤和二次模塑步骤,其中初级模塑步骤包括将初级模塑模具与线圈10的内圆周表面接触并模制一次模制体22- 1,其包括在线圈10被限制为沿径向定位的状态下的外周覆盖部分46,并且次级 成形工序包括:在一次成型工序之后,将一次成形体22-1与线圈10一起设置在二次成型模具上,并且对包含内周覆盖部分的二次成形体进行成形。
    • 5. 发明授权
    • Blood pressure monitor
    • 血压监测仪
    • US09226668B2
    • 2016-01-05
    • US12741320
    • 2008-11-05
    • Tomohiro KukitaYukiko MitsunamiKenji AritomeHiroyuki KatoYoshihide Onishi
    • Tomohiro KukitaYukiko MitsunamiKenji AritomeHiroyuki KatoYoshihide Onishi
    • A61B5/02A61B5/022
    • A61B5/02233A61B2560/0261
    • A blood pressure monitor includes a cuff to be wound around a living body of a subject, a measuring unit for measuring blood pressure with said cuff wound around the living body of said subject, a detecting unit for detecting an inclination angle of said cuff, a specifying unit for specifying a current inclination level among a plurality of predetermined inclination levels upon measurement by said measuring unit, based on a result of detection by said detecting unit, a memory for storing therein the inclination level specified by said specifying unit, in association with blood pressure data measured by said measuring unit, and a notifying unit for providing notification of at least one past inclination level of the plurality of inclination levels stored in said memory and said current inclination level, in association with each other.
    • 血压监视器包括被卷绕在被检体的生物体上的袖带,用于测量血压的测量单元,所述袖带缠绕在所述被检体的生物体上,检测单元,用于检测所述袖带的倾斜角, 指定单元,用于基于所述检测单元的检测结果,在由所述测量单元测量的多个预定倾斜度中指定当前倾斜度;存储器,用于在其中存储由所述指定单元指定的倾斜度,与 由所述测量单元测量的血压数据,以及通知单元,用于相互关联地提供存储在所述存储器中的多个倾斜度和所述当前倾斜度的至少一个过去倾斜度的通知。
    • 7. 发明授权
    • Image processing apparatus detecting quadrilateral region from picked-up image
    • 从拾取图像检测四边形区域的图像处理装置
    • US08744170B2
    • 2014-06-03
    • US13563908
    • 2012-08-01
    • Hiroyuki KatoJun MurakiHiroshi ShimizuHiroyuki HoshinoErina Ichikawa
    • Hiroyuki KatoJun MurakiHiroshi ShimizuHiroyuki HoshinoErina Ichikawa
    • G06K9/00G06K9/40H04N5/235
    • G06T7/75G06T2207/10152
    • An image processing apparatus includes an obtaining section, a detection section, a first identification section and a second identification section. The obtaining section obtains image data of a first picked-up image and a second picked-up image picked up by an image pickup section. The detection section detects a brightness change region where brightness changes at predetermined time intervals in the first picked-up image on the basis of the obtained image data of the first picked-up image. The first identification section performs straight line detection processing on the obtained image data of the second picked-up image to detect a straight line, so as to identify a candidate straight line in a corresponding region corresponding to the brightness change region. The second identification section identifies a quadrilateral region including the candidate straight line as an extraction candidate region in the second picked-up image.
    • 图像处理装置包括获取部,检测部,第一识别部和第二识别部。 获取部分获取由图像拾取部拾取的第一拍摄图像和第二拍摄图像的图像数据。 检测部根据所获得的第一拍摄图像的图像数据,检测第一拍摄图像中的亮度以规定的时间间隔变化的亮度变化区域。 第一识别部分对获得的第二拍摄图像的图像数据进行直线检测处理以检测直线,以便识别与亮度变化区域对应的对应区域中的候选直线。 第二识别部分识别包括候选直线的四边形区域作为第二拍摄图像中的提取候选区域。
    • 8. 发明申请
    • HEATING COOKING DEVICE
    • 加热烹饪设备
    • US20140144906A1
    • 2014-05-29
    • US14236438
    • 2012-07-26
    • Toshiyuki GotoHiroyuki Kato
    • Toshiyuki GotoHiroyuki Kato
    • H05B6/64
    • H05B6/642H05B6/6458H05B2206/043
    • In a heating cooking device, a machine chamber is provided adjacent to a heating chamber for housing a food product. An air supply port is provided in a partition wall that separates the heating chamber and the machine chamber. An air supply fan is provided in the machine chamber, for supplying air to the heating chamber through the air supply port. An air supply damper is provided in the machine chamber, for opening and closing the air supply port. A control unit drives the air supply fan and brings the air supply damper into an open state during high-frequency heating of the food product. The control unit brings the air supply damper into a closed state simultaneously with completion of high-frequency heating of the food product or immediately before or immediately after the completion.
    • 在加热烹饪装置中,机器室邻近于用于容纳食品的加热室设置。 在隔离加热室和机械室的分隔壁上设置供气口。 在机器室内设置供气风扇,用于通过供气口向加热室供给空气。 空气供给阻尼器设置在机器室中,用于打开和关闭供气口。 在食品的高频加热期间,控制单元驱动送风风扇并使空气供应阻尼器处于打开状态。 控制单元在完成食品的高频加热或紧挨完成之前或紧随其后的同时使供气阻尼器进入关闭状态。
    • 10. 发明授权
    • Valve timing control device of internal combustion engine
    • 内燃机气门正时控制装置
    • US08677965B2
    • 2014-03-25
    • US13080239
    • 2011-04-05
    • Hiroyuki KatoSeiji TsurutaKotaro WatanabeYoshinori Ichinosawa
    • Hiroyuki KatoSeiji TsurutaKotaro WatanabeYoshinori Ichinosawa
    • F01L9/00
    • F02D13/0219F01L1/3442F01L2001/3443F01L2001/34433F01L2001/34453F01L2001/34459F01L2001/34469F02D2013/0292Y02T10/18
    • A valve timing control device comprises a drive rotation member driven by a crankshaft of an internal combustion engine; a driven rotation member fixed to a camshaft that actuates engine valves to open and close, the drive rotation member and driven rotation member being coaxially arranged to make a relative rotation therebetween; a phase varying mechanism that rotates the driven rotation member relative to the drive rotation member within a given angle, the phase varying mechanism being able to cause the driven rotation member to take the most-retarded phase position, the most-advanced phase position and a middle phase position defined between the most-retarded phase position and the most-advanced phase position; and a position keeping mechanism that is able to keep the driven rotation member at least the most-retarded phase position and the middle phase position at the time of starting the engine, and is able to select one of the most-retarded phase position and the middle phase position in accordance with an operation condition of the engine.
    • 气门正时控制装置包括由内燃机的曲轴驱动的驱动旋转构件; 固定在凸轮轴上的从动旋转构件,其驱动发动机气门打开和关闭,所述驱动旋转构件和从动旋转构件同轴布置以在其间进行相对旋转; 相变机构,其使从动旋转构件相对于驱动旋转构件在给定角度内旋转,所述相变机构能够使从动旋转构件采取最延迟的相位位置,最前进的相位位置和 在最相位位置和最高级相位之间定义的中间位置; 以及位置保持机构,其能够将从动旋转构件保持在起动发动机时的至少最延迟的相位位置和中间相位置,并且能够选择最延迟的相位位置和 根据发动机的运转状态的中间位置。