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    • 1. 发明授权
    • Object discharge mechanism
    • 物体排放机制
    • US5755551A
    • 1998-05-26
    • US699987
    • 1996-08-20
    • Yutaka SaekiHiroki SawadaIchiro IwasakaKenichi Yamashita
    • Yutaka SaekiHiroki SawadaIchiro IwasakaKenichi Yamashita
    • B65G1/137B65G47/08B65G59/06B65G56/09
    • B65G59/068
    • An object discharge mechanism for discharging a bottommost object from a stack of objects includes a bottom platform on which the bottommost object of the stack of objects rests. The platform has a longitudinal slot running along the object discharge direction. The upper portion of a belt, stretched between two vertically mounted pulleys, runs through the longitudinal slot parallel to the upper surface of the bottom platform. Discharge projections are mounted periodically on an outer surface of the belt. The discharge projections push objects across the bottom platform in the object discharge direction when the belt is rotated. The object discharge mechanism also includes a lifting member for lifting all objects above the bottommost object in the stack of objects. The lifting member reduces the frictional force created by the weight of the stack of objects on the bottommost object during discharge of the bottommost object.
    • 用于从物体堆放出最下面的物体的物体排出机构包括底部平台,物体堆叠的最下面的物体停靠在底部平台上。 平台具有沿物体排出方向延伸的纵向槽。 在两个垂直安装的滑轮之间延伸的带的上部穿过平行于底部平台的上表面的纵向狭槽。 放电突起周期性地安装在带的外表面上。 当皮带旋转时,排出突起在物体排放方向上推动物体穿过底部平台。 物体排放机构还包括用于提升物体堆叠中最底部物体上方的所有物体的提升构件。 提升构件在最下面的物体排放期间降低由最下面的物体上的物体堆的重量产生的摩擦力。
    • 2. 发明授权
    • Object selecting system
    • 对象选择系统
    • US5755552A
    • 1998-05-26
    • US699964
    • 1996-08-20
    • Ichiro IwasakaKenichi Yamashita
    • Ichiro IwasakaKenichi Yamashita
    • B65G1/137B65G43/08B65G47/10B65G47/70B65G1/02
    • B65G1/1376
    • An assortment of objects is dispensed from a plurality of object holders onto a conveyor for loading into a container at an end of the conveyor. The objects are dispensed onto discrete sections of the conveyor with like objects occupying like sections. Since like objects are grouped together on the conveyor, damage due to any impact between objects is reduced because, when objects impact objects of the same class, less damage occurs than when disparate objects impact each other. Discrete sections with heavier objects are located upstream of discrete sections with lighter objects. When the lighter and heavier objects are discharged from the conveyor into the container, the lighter objects are loaded on top of the heavier objects, thereby reducing any damage which occurs through impact. Gaps on the conveyor between different groups of objects reduces the likelihood of impacts on the conveyor.
    • 各种物体从多个物体保持器分配到输送机上,用于装载到输送机端部的容器中。 物体被分配到输送机的离散部分上,其中相同的物体占据类似的部分。 由于相同的物体在传送带上分组在一起,因物体之间的任何碰撞造成的损坏减少,因为当物体撞击同一类物体时,会产生较少的损伤,而不同的物体会相互影响。 具有较重物体的离散部分位于具有较轻物体的分立部分的上游。 当较轻和较重的物体从输送机排放到容器中时,较轻的物体被装载在较重的物体的顶部,从而减少通过冲击发生的任何损坏。 传送带上不同物体组之间的间隙会降低传送带碰撞的可能性。
    • 4. 发明授权
    • Elevator system having wireless transmitting/receiving units
    • 具有无线发送/接收单元的电梯系统
    • US06446761B1
    • 2002-09-10
    • US09721678
    • 2000-11-27
    • Nobuhisa MotoyamaHiromi InabaAtsushi KawabataYoshinori OhkuraKenichi Yamashita
    • Nobuhisa MotoyamaHiromi InabaAtsushi KawabataYoshinori OhkuraKenichi Yamashita
    • B66B134
    • B66B1/3415B66B1/34B66B3/00
    • In order to make it possible to transmit and receive information between terminals and to reduce the number of wires used for an elevator in a building in an elevator system by transmitting and receiving information through wireless transmission even if a very weak radio wave having a narrow communicable range is used, an elevator control unit, a car terminal and floor terminals are individually provided with short distance wireless transmitting/receiving units having a communicable range of nearly a 2-floor distance (5 to 6 m) using very weak radio waves. The radio waves are received and transmitted between the wireless transmitting/receiving units located within the communicable range to transmit information by a relaying method of sequentially transferring information from terminal to terminal until it reaches a final destination.
    • 为了使得可以在终端之间发送和接收信息,并且通过通过无线传输发送和接收信息来减少用于电梯系统中的建筑物中的电梯的电线数量,即使具有窄通信的非常弱的无线电波 使用非常弱的无线电波,电梯控制单元,汽车终端和地板终端分别设置有具有接近2层距离(5至6m)的可通信范围的短距离无线发送/接收单元。 在位于可通信范围内的无线发射/接收单元之间接收和发送无线电波,以便通过从终端到终端顺序地传送信息直至到达最终目的地的中继方法来发送信息。