Method and systems for capture and replay of remote presentation protocol data
    3.
    发明申请
    Method and systems for capture and replay of remote presentation protocol data 审中-公开
    用于捕获和重放远程呈现协议数据的方法和系统

    公开(公告)号:US20060161671A1

    公开(公告)日:2006-07-20

    申请号:US11036486

    申请日:2005-01-14

    IPC分类号: G06F15/16

    CPC分类号: H04L67/2819

    摘要: A recorder intercepts a protocol data stream comprising a plurality of packets, sent from a first device to a second device, the protocol data stream representing display data. The recorder copies at least one packet of the protocol data stream. The recorder creates a recording of the protocol data stream using the at least one copied packet. A protocol engine reads the at least one copied packet from the recording of the protocol data stream. The protocol engine uses information associated with the at least one copied packet to regenerate the display data represented by the protocol data stream.

    摘要翻译: 记录器拦截包括从第一设备发送到第二设备的多个分组的协议数据流,表示显示数据的协议数据流。 记录器复制至少一个协议数据流的数据包。 记录器使用至少一个复制的分组创建协议数据流的记录。 协议引擎从协议数据流的记录中读取至少一个复制的分组。 协议引擎使用与至少一个复制分组相关联的信息来重新生成由协议数据流表示的显示数据。

    Process of preparing a potassium stannate-stannic oxide sol tin
electroplating solution
    7.
    发明授权
    Process of preparing a potassium stannate-stannic oxide sol tin electroplating solution 失效
    制备锡酸锡 - 锡锡氧化物溶胶锡电镀溶液的工艺

    公开(公告)号:UST102501I4

    公开(公告)日:1982-12-07

    申请号:US322378

    申请日:1981-11-17

    申请人: Richard Croft

    发明人: Richard Croft

    摘要: A process for the production of a stannic oxide sol-potassium stannate tin plating solution is disclosed comprising the steps of:anodically dissolving stannous tin in a potassium electrolyte such as potassium hydroxide to form potassium stannite in a first electrolytic cell including an anode compartment and a cathode compartment;simultaneously preventing the potassium stannite from migrating from the anode compartment to the cathode compartment by interposing therebetween a permselective ion exchange membrane (e.g., an anionic permselective membrane);oxidizing said potassium stannite to form a potassium stannate-containing solution by suitable means such as by contacting an oxygen-containing gas with the potassium stannite in a scrubbing tower;electrodialytically transferring potassium cations of said potassium stannate-containing solution from an anode compartment of a second electrolytic cell to a cathode compartment of said second electrolytic cell while simultaneously preventing migration of tin anions from said anode compartment to the cathode compartment by maintaining a cation permselective dialytic membrane between the anode and the cathode; andrecovering a stannic oxide sol-potassium stannate solution from the anode compartment of said second electrolytic cell.