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    • 1. 发明授权
    • Rotary weight filler
    • 旋转重量填料
    • US06857453B2
    • 2005-02-22
    • US10717262
    • 2003-11-19
    • Yukinobu NishinoTatsuhiro NakadaAkihiko KakimotoYutaka Shimizu
    • Yukinobu NishinoTatsuhiro NakadaAkihiko KakimotoYutaka Shimizu
    • B65B3/28B67C3/20G01G17/06B65B1/04
    • B67C3/202G01G17/06
    • A plurality of vessel receptacles and load cells are mounted along the outer periphery of a revolving body at an equal circumferential spacing. A filling device is disposed above each of the vessel receptacles. In a first operational mode for filling the receptacles, the tare of each vessel which is supplied onto one of the vessel receptacles is measured and such data is fed to a controller which determines and stores a mean value of measured tares. Subsequently, the operation is switched to a second operational mode for a filling operation. In the second operational mode, no measurement of the tare is made, and the mean value is regarded as representing the tare of supplied vessels for purposes of a filling operation. After a given time interval or after a given number of vessels have been filled, the operation is again switched to the first operational mode where the mean value is again measured. If the new mean value is different from the previous mean value, the stored mean value is rewritten. By using the stored value, the filling operation is initiated at an earlier time than when the tare is measured.
    • 沿着旋转体的外周以相等的周向间隔安装多个容器容器和称重传感器。 填充装置设置在每个容器容器的上方。 在用于填充容器的第一操作模式中,测量供应到其中一个容器容器上的每个容器的皮重,并且将这样的数据馈送到控制器,该控制器确定并存储测量的皮重的平均值。 随后,将操作切换到用于填充操作的第二操作模式。 在第二种操作模式中,不进行皮重的测量,并且将平均值视为表示用于填充操作的供应容器的皮重。 在给定的时间间隔之后或在给定数量的容器被填充之后,操作再次切换到再次测量平均值的第一操作模式。 如果新的平均值与先前的平均值不同,则存储的平均值被重写。 通过使用存储的值,填充操作在比测量皮重时更早的时间开始。
    • 2. 发明授权
    • Weight filler for filling a vessel having a neck including a flange
    • 用于填充具有包括凸缘的颈部的容器的重量填料
    • US06399901B1
    • 2002-06-04
    • US09558402
    • 2000-04-25
    • Yukinobu NishinoTatsuhiro NakadaToshiaki Naka
    • Yukinobu NishinoTatsuhiro NakadaToshiaki Naka
    • B65B104
    • B65B3/28B67C3/202B67C3/242
    • A weight filler 6 is provided which allows a bottle 16 to be conveyed while gripping its neck 16a. Load cell 58 is mounted around the outer periphery of a revolving body 54 in order to detect a vertical load. A horizontal rod or load applicator 64 projects radially outward from the load cell 58. A gripper 50 which grips the bottle 16 under the resilience of tension springs 82 is mounted on the free end 64a of the rod 64. As the bottle 16 is urged into the gripper 50 in a direction opposite from the direction in which, the rod 64 projects, the gripper 50 is once opened against the tension springs 82 and then closed to grip the neck 16a of the bottle 16. A filling nozzle 52 is disposed above the bottle 16 which is gripped by the gripper 50, and fills the bottle 16 with liquid. During the filling operation, the load cell 58 detects a load applied, thus allowing a filling of a given amount in accordance with the detection.
    • 提供了一种重量填料6,其允许在夹持颈部16a的同时输送瓶子16。 称重传感器58围绕旋转体54的外周安装,以便检测垂直载荷。 水平杆或负载施加器64从称重传感器58径向向外突出。在拉杆弹簧82的弹性下将瓶子16夹紧的夹持器50安装在杆64的自由端64a上。随着瓶16被推入 夹持器50在与杆64突出的方向相反的方向上夹持器50一旦打开在张紧弹簧82上,然后闭合以夹持瓶子16的颈部16a。填充喷嘴52设置在 由夹持器50夹住的瓶子16,并且用液体填充瓶子16。 在填充操作期间,测力传感器58检测施加的载荷,从而允许根据检测填充给定量。
    • 3. 发明授权
    • Conveying and processing system for resin bottles
    • 树脂瓶输送加工系统
    • US06283177B1
    • 2001-09-04
    • US09535406
    • 2000-03-27
    • Toshiaki NakaYukinobu NishinoTatsuhiro Nakada
    • Toshiaki NakaYukinobu NishinoTatsuhiro Nakada
    • B65B4342
    • B67C7/0053B65G47/847B65G2201/0244B67C2007/006B67C2007/0066
    • A resin bottle 16 has an opening at its top end in which a thread 16a is formed, and also has a neck including a cylindrical portion 16b and a flange 16c which are disposed below the opening. An intermediate wheel 8 is disposed between a filler 6 which fills the resin bottle 16 and a capper 10 which caps the filled bottle 16. The intermediate wheel 8 is provided with a plurality of circumferentially spaced grippers 22 each gripping the cylindrical portion 16b of the resin bottle 16, and rotatively conveys the bottle while it is suspended by gripping the neck of the resin bottle. A support 32 is disposed above each gripper 22 for abutment against the opening of the resin bottle 16, whereby in the event the bottom of the bottle 16 is swung radially outward, the opening which is located above the cylindrical portion 16b that is gripped by the gripper 22 is urged by the support 32 from the radial inside, thus allowing the bottle to be maintained in its upright position.
    • 树脂瓶16在其顶端具有开口,其中形成有线16a,并且还具有包括设置在开口下方的圆筒部16b和凸缘16c的颈部。 中间轮8设置在填充树脂瓶16的填料6和盖住填充瓶16的封盖10之间。中间轮8设置有多个周向间隔开的夹持器22,每个夹持器22夹持树脂的圆柱形部分16b 瓶16,并且通过握住树脂瓶的颈部而悬挂的瓶子可旋转地输送瓶子。 支撑件32设置在每个夹持器22上方,以抵靠树脂瓶16的开口,从而在瓶16的底部径向向外摆动的情况下,位于圆筒部分16b上方的开口 夹持器22由支撑件32从径向内部推动,从而允许瓶子保持在其直立位置。
    • 4. 发明申请
    • COMMUNICATION DATA TRANSMISSION EQUIPMENT, A COMMUNICATION DATA TRANSMISSION SYSTEM, A COMMUNICATION DATA TRANSMISSION METHOD AND A COMMUNICATION DATA TRANSMISSION PROGRAM
    • 通信数据传输设备,通信数据传输系统,通信数据传输方法和通信数据传输程序
    • US20120230671A1
    • 2012-09-13
    • US13497422
    • 2010-09-21
    • Tatsuhiro NakadaYohei Hasegawa
    • Tatsuhiro NakadaYohei Hasegawa
    • H04B10/08H04B10/12
    • H04L47/365H04B10/0793H04J14/02H04L1/1825H04L1/187H04L1/203H04L2001/0097
    • Even in a network system including a transmission line of which dominant cause of delay is a transmission line delay, controlling communication speed of the network system as a whole efficiently and suppressing the delay is made possible.A communication data transmission equipment which performs sending and receiving of data with opposite transmission equipment connected via a long-distance optical fiber circuit, includes a data sending and receiving unit which, after sending a connection establishment request to the opposite transmission equipment, sends data before arrival of an acknowledgement reply, a circuit state monitoring unit which estimates data loss occurrence probability from data loss occurrence state in sending and receiving of data with the opposite transmission equipment or acquires data loss occurrence probability which the opposite transmission equipment estimated and a unit performing controls which, until the data loss occurrence probability exceeds a predetermined value, do not restrict a data size per each sending of data, and in case the data loss occurrence probability exceeds the predetermined value, reduce the data size per each sending of data according to an increase of the data loss occurrence probability.
    • 即使在包括延迟的主要原因是传输线延迟的传输线的网络系统中,也可以有效地控制网络系统的通信速度并抑制延迟。 一种通过长距离光纤电路连接的相对传输设备执行数据发送和接收的通信数据传输设备,包括数据发送和接收单元,在向相对的传输设备发送连接建立请求之后,发送数据之前 确认回复的到来,电路状态监视单元,其用相对的发送设备发送和接收数据时的数据丢失发生状态来估计数据丢失发生概率,或者获取相反的传输设备估计的数据丢失发生概率,以及执行控制的单元 其中,直到数据丢失发生概率超过预定值时,不限制每次发送数据的数据大小,并且在数据丢失发生概率超过预定值的情况下,根据每个数据发送数据减少数据大小 数据丢失增加发生 nce概率
    • 5. 发明申请
    • Resilient packet ring (RPR) network system, RPR node device, redundancy method for the same, program and computer-readable medium
    • 弹性分组环(RPR)网络系统,RPR节点设备,相同的冗余方法,程序和计算机可读介质
    • US20080118244A1
    • 2008-05-22
    • US11984044
    • 2007-11-13
    • Tatsuhiro Nakada
    • Tatsuhiro Nakada
    • H04B10/20H04J14/00
    • H04J3/14H04L12/66
    • An RPR network system provides redundancy to the RPR function, at occurrence of failure in an RPR node device, to communicate with RPR node devices other than the failed device on an RPR ring and redundancy to an ethernet (registered trademark) port function to communicate a MAC frame via ports. The system includes a plurality of node devices connected on a link to each other in which two adjacent RPR node devices, i.e., first and second node devices, cooperatively operate as one virtual RPR node device. The first node device is set as a master device to communicate as the virtual RPR node device with other RPR node devices and the second node device is set as a slave device not to communicate as the virtual RPR node device with other RPR node devices, the master and slave devices being replaceable by each other. Either one of ports belonging respectively to the master and slave devices is capable of outputting data therefrom.
    • RPR网络系统在RPR节点设备发生故障时,为RPR功能提供冗余,与RPR环上的故障设备以外的RPR节点设备进行通信,并通过以太网(注册商标)端口功能进行通信 通过端口的MAC帧。 该系统包括连接在彼此的链路上的多个节点设备,其中两个相邻的RPR节点设备,即第一和第二节点设备协作地作为一个虚拟RPR节点设备进行操作。 第一节点设备被设置为作为虚拟RPR节点设备与其他RPR节点设备通信的主设备,并且第二节点设备被设置为从属设备不与其他RPR节点设备作为虚拟RPR节点设备进行通信, 主设备和从设备可以互相替换。 分别属于主设备和从设备的端口之一能够从其输出数据。
    • 8. 发明授权
    • Communication data transmission equipment, a communication data transmission system, a communication data transmission method and a communication data transmission program
    • 通信数据传输设备,通信数据传输系统,通信数据传输方法和通信数据传输程序
    • US08761605B2
    • 2014-06-24
    • US13497422
    • 2010-09-21
    • Tatsuhiro NakadaYohei Hasegawa
    • Tatsuhiro NakadaYohei Hasegawa
    • H04B17/00H04B10/00
    • H04L47/365H04B10/0793H04J14/02H04L1/1825H04L1/187H04L1/203H04L2001/0097
    • Even in a network system including a transmission line of which dominant cause of delay is a transmission line delay, controlling communication speed of the network system as a whole efficiently and suppressing the delay is made possible.A communication data transmission equipment which performs sending and receiving of data with opposite transmission equipment connected via a long-distance optical fiber circuit, includes a data sending and receiving unit which, after sending a connection establishment request to the opposite transmission equipment, sends data before arrival of an acknowledgement reply, a circuit state monitoring unit which estimates data loss occurrence probability from data loss occurrence state in sending and receiving of data with the opposite transmission equipment or acquires data loss occurrence probability which the opposite transmission equipment estimated and a unit performing controls which, until the data loss occurrence probability exceeds a predetermined value, do not restrict a data size per each sending of data, and in case the data loss occurrence probability exceeds the predetermined value, reduce the data size per each sending of data according to an increase of the data loss occurrence probability.
    • 即使在包括延迟的主要原因是传输线延迟的传输线的网络系统中,也可以有效地控制网络系统的通信速度并抑制延迟。 一种通过长距离光纤电路连接的相对传输设备执行数据发送和接收的通信数据传输设备,包括数据发送和接收单元,在向相对的传输设备发送连接建立请求之后,发送数据之前 确认回复的到来,电路状态监视单元,其用相对的发送设备发送和接收数据时的数据丢失发生状态来估计数据丢失发生概率,或者获取相反的传输设备估计的数据丢失发生概率,以及执行控制的单元 在数据丢失发生概率超过预定值的情况下,不限制每次发送数据的数据大小,并且在数据丢失发生概率超过预定值的情况下,根据每个发送数据减少数据大小 数据丢失增加发生 nce概率
    • 9. 发明申请
    • Article conveying device
    • 物品输送装置
    • US20080223691A1
    • 2008-09-18
    • US12070506
    • 2008-02-19
    • Tokuo NishiKoji KayaTatsuhiro NakadaHideki NishikawaTakashi Shimomura
    • Tokuo NishiKoji KayaTatsuhiro NakadaHideki NishikawaTakashi Shimomura
    • B65G47/86
    • B65G47/847B65G29/00B65G2201/0247
    • An upstream side wheel Ha including grippers B which do not perform opening and closing operations for themselves, and a downstream side wheel Hb including grippers A each having an opening and closing mechanism are included, and in a delivery position in which both the wheels are adjacent to each other, a plastic bottle 1 is delivered from the gripper B to the gripper A. Here, if the upstream side wheel or the downstream side wheel abnormally stops, control means controls retreating means C provided at the downstream side wheel to switch the grippers A to a retreat state from a use state to make an opening degree of a first and second grip members 23 and 24 of each of the grippers A larger than an opening degree of both the grip members in the use state. Thereby, interference of the plastic bottles gripped by the upstream side grippers and the first and second grip members can be prevented. Even if one of the wheels abnormally stops, the other wheel can be continuously operated without increasing the equipment in size.
    • 包括不对其自身进行打开和关闭操作的夹持器B的上游侧轮Ha和包括具有打开和关闭机构的夹持器A的下游侧轮Hb,并且在两个车轮相邻的送出位置 相反,塑料瓶1从夹具B被输送到夹具A.这里,如果上游侧轮或下游侧轮异常停止,则控制装置控制设置在下游侧轮的后退装置C,以将夹具 从使用状态到退回状态,以使每个夹持器A的第一和第二夹持构件23和24的开度大于使用状态下两个夹持构件的开度。 由此,可以防止由上游侧夹持器和第一和第二夹持构件夹持的塑料瓶的干扰。 即使其中一个车轮异常停止,另一个车轮可以连续运行,而不会增加设备的大小。