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    • 1. 发明授权
    • Paper sheet processing device
    • 纸张处理装置
    • US09315355B2
    • 2016-04-19
    • US14234520
    • 2011-07-26
    • Hirokazu AojiSho MizunoYasuhiro NakataHiroshi Mizutani
    • Hirokazu AojiSho MizunoYasuhiro NakataHiroshi Mizutani
    • B65H31/24B65H31/22G07D11/00G07F19/00B65H1/26B65H31/10
    • B65H31/24B65H1/266B65H31/10B65H31/22B65H2402/32B65H2402/64B65H2404/611B65H2405/324B65H2405/3311B65H2405/361G07D11/0006G07D11/0081G07F19/20
    • Device with: banknote processing unit (10); banknote storage unit (30) having a plurality of banknote storage parts (32) for separating and storing paper sheets; transport mechanism for bidirectionally transporting the paper sheets via a connection mechanism (45) connected between the banknote processing unit (10) and banknote storage unit (30); and a unit guide mechanism (50) that guides the banknote storage unit (30) in order to be stored in a drawer from a housing (102) and a storage space. The unit guide mechanism (50) has: first sliding mechanism (52) which is positioned on the housing (102) and storage body (31), and guides the storage body (31) from the storage space in a horizontal direction to store the storage body (31) in the drawer and the storage space; guide parts which are inside the housing (102), positioned along the connection mechanism (45) in the horizontal direction; and linked guide mechanisms (53) positioned on top of the banknote storage parts (32), and have guided parts that are guided by the guide parts.
    • 装置:纸币处理单元(10); 具有用于分离和储存纸张的多个纸币储存部分(32)的纸币存储单元(30) 用于通过连接在纸币处理单元(10)和纸币存储单元(30)之间的连接机构(45)来双向传送纸张的输送机构; 以及引导纸币存储单元(30)以便从壳体(102)和存储空间存储在抽屉中的单元引导机构(50)。 单元引导机构(50)具有:第一滑动机构(52),其位于壳体(102)和存储体(31)上,并且在水平方向上将存储体(31)从存储空间引导到存储体 存储体(31)和存储空间; 位于壳体(102)内的引导部分,沿着连接机构(45)沿水平方向定位; 以及位于纸币收纳部(32)的上方的连结引导机构(53),具有被引导部引导的引导部。
    • 3. 发明授权
    • Paper sheet storing apparatus
    • 纸张存放装置
    • US07850165B2
    • 2010-12-14
    • US12141945
    • 2008-06-19
    • Akihiro NaguraYasuhiro Nakata
    • Akihiro NaguraYasuhiro Nakata
    • B65H29/38
    • B65H31/18B65H31/22B65H31/26B65H2301/4223B65H2404/1114B65H2511/21B65H2513/40B65H2553/612B65H2701/1912G07D11/0081B65H2220/02B65H2220/11
    • A paper sheet storing apparatus is configured to collect and accumulate multiple different types of paper sheets in different sizes. The paper sheet storing apparatus has: a paper sheet cartridge configured to have a feeder provided on a side wall thereof for externally feeding paper sheets and arranged to accumulate and keep the paper sheets therein; and a stack guide member configured to introduce the paper sheets, which are fed by the feeder into the paper sheet cartridge, downward in the paper sheet cartridge and to press down surface of an uppermost paper sheet located on a top of the paper sheets accumulated and kept in the paper sheet cartridge. The stack guide member is structured in a specific shape to enable the surface of the uppermost paper sheet to be pressed downward in a vertical direction, with regard to all the multiple different types of paper sheets. This arrangement effectively reduces the potential for paper jams and relevant troubles and ensures stable accumulation of paper sheets.
    • 纸张存储装置被配置为收集和累积不同尺寸的多种不同类型的纸张。 纸张存放装置具有:纸张盒,其被配置为具有设置在其侧壁上的进给器用于外部进给纸张并被布置成在其中积聚和保持纸张; 以及堆叠引导构件,其构造成将由所述供给器供给到所述纸张盒中的纸张向下引入所述纸张盒中,并且压缩位于所述纸张的顶部上的最上面的纸张的表面, 保存在纸张盒中。 相对于所有多种不同类型的纸张,堆叠引导构件被构造成特定形状,以使得最上面的纸张的表面能够沿垂直方向向下压。 这种布置有效地降低了卡纸和相关故障的可能性并且确保了纸张的稳定堆积。
    • 4. 发明授权
    • Damping intermediate pillar and damping structure using the same
    • 阻尼中柱和阻尼结构使用相同
    • US07076926B2
    • 2006-07-18
    • US10213201
    • 2002-08-06
    • Kazuhiko KasaiHiroshi NakamuraYasuhiro NakataTakashi Shirai
    • Kazuhiko KasaiHiroshi NakamuraYasuhiro NakataTakashi Shirai
    • E04H9/02E04B1/98
    • E04H9/02E04B2001/2415E04B2001/2442E04B2001/2445E04B2001/2448
    • A damping intermediate pillar, which can exhibit a sufficient resistance against the horizontal force of a strong earthquake by reinforcing the joins between the damping intermediate pillar and the upper and lower beams, is disclosed. A damping intermediate pillar 14, used for a building or a structure configured of pillars 1 and beams 3, is divided into upper and lower damping intermediate pillar portions 14a, 14b of H shape steel, and includes a plurality of inner steel plates 7b fixed on the damping intermediate pillar portion 14b and a plurality of outer steel plates 7a fixed on the other damping intermediate pillar portion 14a. The inner and outer steel plates are arranged alternately in a single or a plurality of layers, between which a viscoelastic member 15 is held to make up a viscoelastic damper 17. The coupling end surfaces of the intermediate pillar portions 14a, 14b directed vertically are fixed on the upper and lower floor beams 3a, 3b. Further, one or both sides of each of the damping intermediate pillar portions 14a, 14b (i.e. the coupling members 13a, 13b) and the upper and lower floor beams 3a, 3b are coupled to each other by knee braces 19.
    • 公开了一种阻尼中间柱,其通过加强阻尼中间柱和上梁和下梁之间的接合而能够表现出抵抗强烈地震的水平力的足够阻力。 用于建筑物或由支柱1和梁3构成的结构的阻尼中间柱14被分成H形钢的上下阻尼中间柱部分14a,14b,并且包括多个内钢板7 b固定在阻尼中间柱部分14b上,多个外部钢板7a固定在另一个阻尼中间柱部分14a上。 内钢板和外钢板交替地布置成一个或多个层,在其间保持粘弹性构件15以构成粘弹性阻尼器17。 垂直定向的中间柱部分14a,14b的连接端面固定在上下地板梁3a,3b上。 此外,每个阻尼中间柱部分14a,14b(即,联接构件13a,13b)和上部和下部地板梁3a,3b的一侧或两侧通过膝盖支架彼此联接 19。
    • 6. 发明授权
    • Switching power supply device
    • 开关电源装置
    • US08339809B2
    • 2012-12-25
    • US12721963
    • 2010-03-11
    • Yasuhiro Nakata
    • Yasuhiro Nakata
    • H02M3/335
    • H02M3/3385H02M1/36
    • A switching power supply device includes a transformer, a switching unit which is connected with a primary winding of the transformer and configured to switch a current flowing to the primary winding, a start unit configured to start the switching unit, a voltage drop unit configured to lower output voltage from a secondary winding of the transform, and a current control unit configured to control an amount of a current flowing in the start unit when the switching unit is in an off state by lowering output voltage by the voltage drop unit.
    • 开关电源装置包括变压器,开关单元,其与变压器的初级绕组连接并且被配置为切换流过初级绕组的电流;起动单元,被配置为启动开关单元;电压降单元,被配置为 所述变流器的次级绕组的输出电压较低;以及电流控制单元,被配置为通过降低所述电压降单元的输出电压来控制在所述开关单元处于断开状态时流过所述启动单元的电流量。
    • 9. 发明申请
    • Chip inductor and method for manufacturing the same
    • 片式电感及其制造方法
    • US20070069844A1
    • 2007-03-29
    • US10556700
    • 2004-11-17
    • Hayami KudoMasahiko KawaguchiYasuhiro Nakata
    • Hayami KudoMasahiko KawaguchiYasuhiro Nakata
    • H01F27/02
    • H01F17/0013H01F41/041H01F2017/002
    • A chip inductor in which excellent Q characteristic is realized while advantages in its small size and low profile are ensured, as well as a method for manufacturing the same, is provided. A chip inductor 1 is constructed by alternately laminating plural conductor patterns 31, 32, 33, and 34 and plural insulating layers 35, 36, 37, and 38 on and above a ceramic substrate 2, and connecting these plural conductor patterns 31, 32, 33, and 34 to each other in series in the lamination direction thereof so as to constitute a coil 30. Specifically, the number of turns of the lowermost-layer conductor pattern 31 disposed immediately on the ceramic substrate 2 is specified to be larger than the numbers of turns of the other plural conductor patterns 32, 33, and 34, and the numbers of turns of the other plural conductor patterns 32, 33, and 34 are specified to be substantially equal to each other. Preferably, the number of turns of the conductor pattern 31 is specified to be about 1.5 times the numbers of turns of the other plural conductor patterns 32, 33, and 34.
    • 提供确保了其小尺寸和低外形优点的优异Q特性的片式电感器及其制造方法。 芯片电感器1是通过在陶瓷基板2上和之上交替层叠多个导体图案31,32,33,34以及多个绝缘层35,36,37,38并将这些多个导体图案31,32,32,38连接起来而构成的。 33和34彼此在层叠方向上串联以构成线圈30.具体地说,紧接在陶瓷基板2上设置的最下层导体图案31的匝数被规定为大于 其他多个导体图案32,33,34的匝数和其他多个导体图案32,33,34的匝数被规定为大致相等。 优选地,导体图案31的匝数被规定为其他多个导体图案32,33和34的匝数的约1.5倍。