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    • 53. 发明申请
    • LINK INFERENCE IN LARGE NETWORKS BASED ON INCOMPLETE DATA
    • 基于不完整数据的大型网络中的链接干扰
    • WO2008016861A2
    • 2008-02-07
    • PCT/US2007/074679
    • 2007-07-29
    • BALASUBRAMANIAM, RajeshSHAW, James Mark
    • BALASUBRAMANIAM, RajeshSHAW, James Mark
    • H04L45/14H04L12/4641H04L45/02H04L45/48
    • A network is partitioned into a set of independent partitions, and the topology of each partition is determined, then merged to form a topology of the entire network. Preferably, the partitioning is hierarchical, wherein the network is partitioned to form individual VLAN partitions, and each of the VLAN partitions is further partitioned based on the nodes that are simply connected to each port of one or more selected root switches within the VLAN partition. Simple connections to each port are efficiently determined based on an aggregate address forwarding table associated with each node. Ancillary information, such as spanning tree or CDP data, may be used to facilitate efficient partitioning and/or to validate inferences that are made with incomplete information.
    • 将网络划分为一组独立分区,确定每个分区的拓扑,然后合并形成整个网络的拓扑。 优选地,分区是分级的,其中网络被分割以形成单独的VLAN分区,并且基于简单地连接到VLAN分区内的一个或多个所选根交换机的每个端口的节点来进一步分割每个VLAN分区。 基于与每个节点相关联的聚合地址转发表,有效地确定到每个端口的简单连接。 诸如生成树或CDP数据的辅助信息可以用于促进有效分割和/或验证由不完整信息进行的推断。
    • 54. 发明申请
    • MASONRY WALL SYSTEM
    • MASONRY墙壁系统
    • WO2006121356A3
    • 2006-12-21
    • PCT/NZ2006000110
    • 2006-05-12
    • FLETCHER BUILDING HOLDINGS LTDMALONE JAMES MARK
    • MALONE JAMES MARK
    • E04C1/00E04C1/39
    • E04B2/14
    • A masonry wall system includes a plurality of blocks. Each block has two external side walls and is adapted for use adjacent to further said blocks such that the side walls form at least one wall surface of a wall structure (40) constructed from the blocks. A plurality of the blocks include a tongue (8) projecting from a sidewall thereof. The blocks can be arranged such that a plurality of the tongues (8) combine to form a plurality of furring ridges (42) on the wall structure having a required spacing therebetween. In a preferred embodiment the spacing between the furring ridges (42) is greater than the length of the longest of the blocks used. A method of assembling a masonry wall is also disclosed.
    • 砖石墙系统包括多个块。 每个块具有两个外侧壁,并且适于与另外的所述块相邻地使用,使得侧壁形成由块构成的壁结构(40)的至少一个壁表面。 多个块包括从其侧壁突出的舌部(8)。 块可以布置成使得多个舌部(8)组合以在壁结构上形成在其间具有所需间隔的多个皱纹脊(42)。 在一个优选实施例中,螺旋脊(42)之间的间距大于所使用块最长的长度。 还公开了一种组装砖石墙的方法。
    • 55. 发明申请
    • MASONRY WALL SYSTEM
    • 砌体墙系统
    • WO2006121356A2
    • 2006-11-16
    • PCT/NZ2006/000110
    • 2006-05-12
    • FLETCHER BUILDING HOLDINGS LIMITEDMALONE, James, Mark
    • MALONE, James, Mark
    • E04B2/14
    • A masonry wall system includes a plurality of blocks. Each block has two external side walls and is adapted for use adjacent to further said blocks such that the side walls form at least one wall surface of a wall structure (40) constructed from the blocks. A plurality of the blocks include a tongue (8) projecting from a sidewall thereof. The blocks can be arranged such that a plurality of the tongues (8) combine to form a plurality of furring ridges (42) on the wall structure having a required spacing therebetween. In a preferred embodiment the spacing between the furring ridges (42) is greater than the length of the longest of the blocks used. A method of assembling a masonry wall is also disclosed.
    • 砖砌墙体系统包括多个砌块。 每个砌块具有两个外部侧壁并且适于与另外的所述砌块相邻地使用,使得侧壁形成由砌块构成的壁结构(40)的至少一个壁表面。 多个块包括从其侧壁突出的舌状物(8)。 这些块可以布置成使得多个舌片(8)结合以在壁结构上形成多个在其间具有所需间隔的水纹脊(42)。 在一个优选实施例中,水纹脊(42)之间的间隔大于所用块中最长块的长度。 还披露了组装砌石墙的方法。
    • 57. 发明申请
    • PROCESS AND INK FOR MAKING ELECTRONIC DEVICES
    • 制造电子设备的工艺和墨水
    • WO2004026977A1
    • 2004-04-01
    • PCT/GB2003/003697
    • 2003-08-22
    • AVECIA LIMITEDHOPPER, Alan, JohnJAMES, Mark, Robert
    • HOPPER, Alan, JohnJAMES, Mark, Robert
    • C09D11/10
    • C09D11/36C09D11/101H05K3/0076H05K3/061H05K2203/013Y10T428/24917
    • A process for making an electronic device comprising a dielectric substrate laminated with an electrically conductive metal or alloy which comprises applying a non­-aqueous etch-resistant ink by ink jet printing to selected areas of the metal or alloy, exposing the etch-resistant ink to actinic radiation and/or particle beam radiation to effect polymerisation, removing exposed metal or alloy by a chemical etching process and then removing the polymerised etch-resistant ink by alkali wherein the etch-resistant ink is substantially solvent free and comprises the components: A) 30 to 90 parts acrylate functional monomers free from acid groups comprising mono or higher functionality wherein 5 - 95% by weight is one or more mono­functional monomers; B) 1 to 30 parts acrylate functional monomer containing one or more acid groups; C) 0 to 20 parts polymer or prepolymer; D) 0 to 20 parts radical initiator; E) 0 to 5 parts colorant; F) 0 to 5 parts surfactant; and wherein the ink has a viscosity of not greater than 30 cPs (mPa.s) at 40°C and all parts are by weight.
    • 一种用于制造电子器件的方法,该电子器件包括层叠有导电金属或合金的电介质基底,其包括通过喷墨印刷将非水性耐蚀刻油墨施加到金属或合金的选定区域,将耐蚀刻油墨暴露于 光化辐射和/或粒子束辐射以进行聚合,通过化学蚀刻方法去除暴露的金属或合金,然后通过碱除去聚合的耐蚀刻油墨,其中耐蚀刻油墨基本上无溶剂并且包含组分:A) 30至90份不含包含单官能或更高官能度的酸基的丙烯酸酯官能单体,其中5-95重量%是一种或多种单官能单体; B)1至30份含有一个或多个酸基的丙烯酸酯官能单体; C)0至20份聚合物或预聚物; D)0〜20份自由基引发剂; E)0-5份着色剂; F)0-5份表面活性剂; 并且其中所述油墨在40℃下的粘度不大于30cPs(mPa.s),并且所有份数均为重量份。