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    • 1. 发明申请
    • APPARATUS FOR SECURING DISPLAY OBJECTS TO POSTS
    • 用于安全显示对象的设备
    • US20110240824A1
    • 2011-10-06
    • US12752539
    • 2010-04-01
    • Nathon Jon Wade
    • Nathon Jon Wade
    • G09F17/00E04H12/32
    • G09F17/00G09F2017/005
    • An apparatus for securing a display object to a post, having an inner member having a body, the body defining an opening sized and shaped to receive the post therein, the body having an outer portion, an adjustable securing mechanism provided in the opening for securing the inner member to the post, an outer member having an inner portion sized and shaped to engage with the outer portion of the inner member such that the outer member can rotate about the post, and at least one display support member on the outer member for securing the display object to the outer member.
    • 一种用于将显示对象固定到柱上的装置,具有内部构件,其具有主体,所述主体限定了尺寸和形状以在其中容纳所述柱的开口,所述主体具有外部部分,设置在所述开口中用于固定的可调节固定机构 所述内部构件到所述柱,外部构件,其具有尺寸和形状的内部部分,所述内部部分的尺寸和形状与所述内部构件的外部部分接合,使得所述外部构件可围绕所述柱旋转;以及至少一个显示支撑构件, 将显示对象固定到外部构件。
    • 2. 发明授权
    • Recursive partitioning of networks
    • 网络递归划分
    • US06631421B1
    • 2003-10-07
    • US09323965
    • 1999-06-02
    • Guy L. Steele, Jr.Steven K. HellerDaniel CassidayJon Wade
    • Guy L. Steele, Jr.Steven K. HellerDaniel CassidayJon Wade
    • G06F15173
    • H04Q3/66H04L41/0893H04L45/46H04Q3/0062
    • Methods and systems consistent with the present invention provide a family of networks ranging from 2 nodes to 16 nodes that can be partitioned in an unconstrained manner. That is, where the number of nodes in one of these networks is N, subnetwork can contain any number of nodes from 1 to N−1 as long as the total number of nodes in both subnetworks equals N. Furthermore, each subnetwork can be partitioned repeatedly until reaching the atomic level (i.e., when the subnetwork contains a single node). In accordance with methods and systems consistent with the present invention, when a network is partitioned, each subnetwork has various desirable properties. For example, the maximum path length between any two nodes in each subnetwork nodes is 3, and each to subnetwork has a set of deadlock-free routings.
    • 与本发明一致的方法和系统提供范围从2个节点到16个节点的网络系列,可以以无约束的方式进行分区。 也就是说,在这些网络中的一个节点的数量为N的情况下,只要两个子网络中的节点总数等于N,则子网络可以包含从1到N-1的任何数量的节点。此外,每个子网络可以被分区 反复直到达到原子级(即,当子网包含单个节点时)。 根据与本发明一致的方法和系统,当网络被分割时,每个子网络具有各种期望的特性。 例如,每个子网节点中任何两个节点之间的最大路径长度为3,每个子网络具有一组无死锁路由。
    • 3. 发明申请
    • Deformable combustion chamber-based internal combustion engine and generator
    • 可变形燃烧室内燃机和发电机
    • US20060156999A1
    • 2006-07-20
    • US11289059
    • 2005-11-29
    • Jon WadeRobert Zak
    • Jon WadeRobert Zak
    • F02B63/00
    • F01B19/02F01B1/12F02B75/36H02K7/1876
    • A reciprocating internal combustion engine is based on Homogenous Charge Compression Ignition (HCCI) that occurs in a deformable, resonant combustion chamber and that is coupled mechanically to efficient, resonant, electro-mechanical transducers acting as motors and generators. The mechanical coupling also implements fuel/air intake valves and exhaust valves. Embedded sensors allow an electronic control system to start the engine and thereafter to maintain operational configuration of the moving components in response to the effects of imperfect mechanical fabrication and/or assembly and dynamic changes in mechanical properties of the materials with run-time temperature and engine life.
    • 往复式内燃机基于均质充量压缩点火(HCCI),其发生在可变形的共振燃烧室中,并且机械耦合到用作电动机和发电机的有效的共振的机电换能器。 机械联轴器还实现了燃油/进气阀和排气阀。 嵌入式传感器允许电子控制系统启动发动机,此后可以响应于不完美的机械制造和/或组装以及具有运行时温度和发动机的材料的机械性能的动态变化的影响来维持运动部件的运行配置 生活。
    • 4. 发明授权
    • Network topologies
    • 改进的网络拓扑
    • US06584073B1
    • 2003-06-24
    • US09323963
    • 1999-06-02
    • Guy L. Steele, Jr.Steven K. HellerJon Wade
    • Guy L. Steele, Jr.Steven K. HellerJon Wade
    • H04L1224
    • G06F15/17343
    • In accordance with methods and systems consistent with the present invention, a number of improved network topologies are provided that have been selected to improve network performance based on various performance characteristics. The topologies are also selected to facilitate network reconfiguration, including adding nodes and removing, nodes. As a result, the network topologies in accordance with methods and systems consistent with the present invention do not follow a rigid, predefined pattern; rather, these topologies have been selected for network performance purposes as well as reconfiguration purposes.
    • 根据与本发明一致的方法和系统,提供了许多改进的网络拓扑,其已被选择以基于各种性能特征来改善网络性能。 还选择拓扑以便于网络重新配置,包括添加节点和删除节点。 结果,根据与本发明一致的方法和系统的网络拓扑不遵循刚性的预定义模式; 相反,这些拓扑已被选择用于网络性能目的以及重新配置目的。
    • 6. 发明授权
    • Network reconfiguration
    • 网络重新配置
    • US06603742B1
    • 2003-08-05
    • US09323962
    • 1999-06-02
    • Guy L. Steele, Jr.Steven K. HellerDaniel CassidayJon Wade
    • Guy L. Steele, Jr.Steven K. HellerDaniel CassidayJon Wade
    • H04L1228
    • G06F15/17343
    • In accordance with methods and systems consistent with the present invention, an improved technique for reconfiguring networks is provided. By using this technique, a network administrator can reconfigure their network while it remains operational. As a result, users can continue to utilize the network during reconfiguration. Additionally, in accordance with methods and systems consistent with the present invention, a number of network topologies are provided that are designed to facilitate reconfiguration. When using one of these topologies, the network can be reconfigured with a minimal amount of recabling, thus reducing the amount of time required for reconfiguration.
    • 根据与本发明一致的方法和系统,提供了一种用于重新配置网络的改进技术。 通过使用这种技术,网络管理员可以在其网络运行时重新配置网络。 因此,用户可以在重新配置期间继续利用网络。 另外,根据与本发明一致的方法和系统,提供了多个网络拓扑,其被设计为便于重新配置。 当使用这些拓扑中的一种时,可以以最小量的重新配置重新配置网络,从而减少重新配置所需的时间。