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    • 3. 发明授权
    • Apparatus for conveying products
    • 用于输送产品的装置
    • US08342315B2
    • 2013-01-01
    • US12736615
    • 2009-04-01
    • Cyrille FuellemannDaniel Schwarz
    • Cyrille FuellemannDaniel Schwarz
    • B65G47/24
    • B65B35/18B65B35/26B65B57/14B65G23/30B65G47/842
    • An apparatus for conveying products to a destination has a revolving conveyor chain embodied by entraining elements revolving along a first continuous track and have a certain chain pitch. A revolving conveying device is disposed with grippers arranged at a distance therebetween on the conveying device revolving around a second continuous track. A first zone of the first and second continuous track transfers products from the first continuous track on the conveyor chain to the second continuous track via the grippers. A second zone of the second continuous track delivers products from the grippers at the destination. A third zone of the first and second continuous track returns products not needed at the destination from the grippers on the second continuous track to the conveyor chain on the first continuous track. A distance traveled by the conveyor chain on the first continuous track from a transfer point of the products in the first zone to a return point in the third zone and a distance traveled by the grippers on the second continuous track from the transfer point of the products in the first zone to the return point in the third zone are chosen such that a phase shift amounting to a fraction of the chain pitch occurs between the conveyor chain and the gripper between the return point and the transfer point.
    • 用于将产品输送到目的地的设备具有旋转输送链,其具体包括沿着第一连续轨道旋转的元件并具有特定的链间距。 旋转输送装置设置成在输送装置上围绕第二连续轨道旋转地设置有一定距离的夹持器。 第一和第二连续轨道的第一区域将产品从输送链上的第一连续轨道经由夹持器传送到第二连续轨迹。 第二连续轨道的第二区域从目的地的夹具输送产品。 第一和第二连续轨道的第三区域将目的地不需要的产物从第二连续轨道上的夹持器返回到第一连续轨道上的输送链。 第一连续轨道上的输送链从第一区域中的产品的转移点到第三区域中的返回点的距离以及由产品的转移点在第二连续轨道上行进的距离的距离 选择第一区域到第三区域中的返回点,使得在输送链和返回点和转移点之间的夹持器之间产生相当于链节距的一部分的相移。
    • 5. 发明申请
    • Energy efficient synthesis of boranes
    • 能量高效合成硼烷
    • US20070189950A1
    • 2007-08-16
    • US11704494
    • 2007-02-08
    • David ThornWilliam TumasDaniel SchwarzAnthony Burrell
    • David ThornWilliam TumasDaniel SchwarzAnthony Burrell
    • C01B35/14C01B35/06
    • C01B6/15C01B6/19C01B35/061
    • The reaction of halo-boron compounds (B—X compounds, compounds having one or more boron-halogen bonds) with silanes provides boranes (B—H compounds, compounds having one or more B—H bonds) and halosilanes. Inorganic hydrides, such as surface-bound silane hydrides (Si—H) react with B—X compounds to form B—H compounds and surface-bound halosilanes. The surface bound halosilanes are converted back to surface-bound silanes electrochemically. Halo-boron compounds react with stannanes (tin compounds having a Sn—H bond) to form boranes and halostannanes (tin compounds having a Sn—X bond). The halostannanes are converted back to stannanes electrochemically or by the thermolysis of Sn-formate compounds. When the halo-boron compound is BCl3, the B—H compound is B2H6, and where the reducing potential is provided electrochemically or by the thermolysis of formate.
    • 卤代硼化合物(B-X化合物,具有一个或多个硼 - 卤键的化合物)与硅烷的反应提供硼烷(B-H化合物,具有一个或多个B-H键的化合物)和卤代硅烷。 无机氢化物,例如表面结合的硅烷氢化物(Si-H)与B-X化合物反应以形成B-H化合物和表面结合的卤代硅烷。 表面结合的卤代硅烷在电化学上转化回表面结合的硅烷。 卤代硼化合物与锡烷(具有Sn-H键的锡化合物)反应形成硼烷和卤代烷(具有Sn-X键的锡化合物)。 卤代烷腈通过电化学方法或通过Sn-甲酸酯化合物的热解转化回锡烷。 当卤代硼化合物为BCl 3时,BH化合物是B 2 H 6 N,并且其中还原电位是电化学或由 甲酸盐的热解。
    • 8. 发明申请
    • APPARATUS FOR CONVEYING PRODUCTS
    • 输送产品的装置
    • US20110042180A1
    • 2011-02-24
    • US12736615
    • 2009-04-01
    • Cyrille FuellemannDaniel Schwarz
    • Cyrille FuellemannDaniel Schwarz
    • B65G43/08
    • B65B35/18B65B35/26B65B57/14B65G23/30B65G47/842
    • An apparatus for conveying products to a destination has a revolving conveyor chain embodied by entraining elements revolving along a first continuous track and have a certain chain pitch. A revolving conveying device is disposed with grippers arranged at a distance therebetween on the conveying device revolving around a second continuous track. A first zone of the first and second continuous track transfers products from the first continuous track on the conveyor chain to the second continuous track via the grippers. A second zone of the second continuous track delivers products from the grippers at the destination. A third zone of the first and second continuous track returns products not needed at the destination from the grippers on the second continuous track to the conveyor chain on the first continuous track. A distance traveled by the conveyor chain on the first continuous track from a transfer point of the products in the first zone to a return point in the third zone and a distance traveled by the grippers on the second continuous track from the transfer point of the products in the first zone to the return point in the third zone are chosen such that a phase shift amounting to a fraction of the chain pitch occurs between the conveyor chain and the gripper between the return point and the transfer point.
    • 用于将产品输送到目的地的设备具有旋转输送链,其具体包括沿着第一连续轨道旋转的元件并具有特定的链间距。 旋转输送装置设置成在输送装置上围绕第二连续轨道旋转地设置有一定距离的夹持器。 第一和第二连续轨道的第一区域将产品从输送链上的第一连续轨道经由夹持器传送到第二连续轨迹。 第二连续轨道的第二区域从目的地的夹具输送产品。 第一和第二连续轨道的第三区域将目的地不需要的产物从第二连续轨道上的夹持器返回到第一连续轨道上的输送链。 第一连续轨道上的输送链从第一区域中的产品的转移点到第三区域中的返回点的距离以及由产品的转移点在第二连续轨道上行进的距离的距离 选择第一区域到第三区域中的返回点,使得在输送链和返回点和转移点之间的夹持器之间产生相当于链节距的一部分的相移。
    • 9. 发明申请
    • System And Method For Stirring Suspended Solids In A Liquid Media
    • 在液体介质中搅拌悬浮固体的系统和方法
    • US20070223305A1
    • 2007-09-27
    • US11694409
    • 2007-03-30
    • Daniel SchwarzPaul HansenFrederick Dimpfel
    • Daniel SchwarzPaul HansenFrederick Dimpfel
    • B01F13/08
    • C12M27/02B01F13/0818B01F2215/0037B01L9/523B01L2300/0829C12M23/48C12M23/50
    • An improved system and method for stirring suspended solids in a liquid media to enhance sample growth and improve sample detection results. The system and method employs a sample vessel holder which adapted to receive at least one sample vessel which contains the solids and liquid media and a stirrer, such as a ferrous metal filled stirrer, and maintain the sample vessel in a position such that the longitudinal axis of the sample vessel extends at an angle substantially less than 90 degrees with respect to the horizontal, such as within the range of about 15 degrees to about 25 degrees with respect to the horizontal. The system and method further employs a magnet driver, adapted to move a magnet, such as a rare earth magnet, proximate to an outer surface of the sample vessel to permit the magnet to impose a magnetic influence on the stirrer to move the stirrer in the sample vessel. Specifically, the magnet driver is adapted to move and, specifically, rotate the magnet such that the magnetic influence moves the stirrer along a side wall of the sample vessel. The magnet driver is further adapted to move the magnet away from said outer surface of the sample vessel to allow gravity to move the stirrer toward the bottom of the sample vessel. This technique therefore provides a more gentle and controlled stirring of the suspended solution.
    • 用于搅拌液体介质中的悬浮固体以改善样品生长并改进样品检测结果的改进的系统和方法。 该系统和方法采用样品容器保持器,其适于容纳至少一个包含固体和液体介质的样品容器和诸如装有黑色金属的搅拌器的搅拌器,并将样品容器保持在使得纵向轴线 样品容器相对于水平面以相对于水平方向大致小于90度的角度延伸,例如相对于水平面在约15度至约25度的范围内。 该系统和方法还采用磁铁驱动器,其适于移动诸如稀土磁体的磁体,靠近样品容器的外表面,以允许磁体对搅拌器施加磁力影响以将搅拌器移动到 样品容器 具体地说,磁铁驱动器适于移动并且具体地使磁体旋转,使得磁力影响沿着样品容器的侧壁移动搅拌器。 磁体驱动器还适于将磁体从样品容器的外表面移开,以允许重力将搅拌器移动到样品容器的底部。 因此,该技术提供了更缓和和控制的悬浮液的搅拌。
    • 10. 发明申请
    • Method and apparatus for buffering bi-directional open drain signal lines
    • 用于缓冲双向开漏信号线的方法和装置
    • US20060267632A1
    • 2006-11-30
    • US11128424
    • 2005-05-13
    • Daniel Schwarz
    • Daniel Schwarz
    • H03K19/0175
    • H03K19/01759
    • A buffer system includes a logic adjusting circuit for translating a first logic level of a first component to a second logic level of a second component. The first and second logic level values are substantially different, and the buffer system has no directional control signal. A method of interfacing at least two components with different logic voltage requirements on a single bus without a separate directional control signal includes initializing a buffering circuit, activating the buffering circuit, transferring data through the buffering circuit, and deactivating the buffering circuit. A method of implementing a bidirectional interface between at least two devices interfaced on a bus includes providing a plurality of logic components interconnected to transfer data through the bus, and transferring data through the bus from a first device to a second device. The direction of data transfer is determined without a separate directional control signal.
    • 缓冲器系统包括用于将第一组件的第一逻辑电平转换为第二组件的第二逻辑电平的逻辑调整电路。 第一和第二逻辑电平值基本上不同,并且缓冲器系统没有方向控制信号。 在单个总线上连接具有不同逻辑电压要求的至少两个组件的方法,而没有单独的方向控制信号的方法包括初始化缓冲电路,激活缓冲电路,通过缓冲电路传送数据,以及停用缓冲电路。 实现在总线上接口的至少两个设备之间的双向接口的方法包括:提供多个逻辑组件,互连以通过总线传送数据,以及通过总线将数据从第一设备传送到第二设备。 在没有单独的方向控制信号的情况下确定数据传送的方向。