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    • 3. 发明申请
    • DATA MODIFICATION FOR DEVICE COMMUNICATION CHANNEL PACKETS
    • 数据修改用于设备通信信道分组
    • US20130054850A1
    • 2013-02-28
    • US13220326
    • 2011-08-29
    • Stephen Co
    • Stephen Co
    • G06F13/42H04J3/22H04J3/16
    • H04L12/4633
    • Techniques are disclosed relating to modifying packet data to be sent across a communication link and/or bus. Data may be modified in accordance with one or more data processing algorithms, and according to the capabilities of a destination device to receive such modified data. Lossless compression algorithms may be used on data in order to achieve a higher effective bandwidth over a particular bus or link. Encryption algorithms may be used, as well as data format conversion algorithms. One or more processing elements of a communication channel controller or other structure within a computing device may be used to modify packet data, which may be in PCI-Express format in some embodiments. A packet prefix or header may be used to store an indication of what algorithm(s) has been used to modify packet data so that a destination device can process packets accordingly.
    • 公开了关于修改要通过通信链路和/或总线发送的分组数据的技术。 可以根据一个或多个数据处理算法,以及根据目的地设备接收这样的修改数据的能力来修改数据。 可以在数据上使用无损压缩算法,以便在特定总线或链路上实现更高的有效带宽。 可以使用加密算法,以及数据格式转换算法。 计算设备内的通信信道控制器或其他结构的一个或多个处理元件可用于修改在一些实施例中可以是PCI-Express格式的分组数据。 分组前缀或报头可以用于存储已经使用什么算法来修改分组数据的指示,使得目的地设备可以相应地处理分组。
    • 6. 发明授权
    • Server pool for clustered system
    • 群集系统的服务器池
    • US06412079B1
    • 2002-06-25
    • US09169838
    • 1998-10-09
    • Paul EdmondsYi ZhangChang XuPriyen DoshiStephen CoMichael P. TelAndy Chan
    • Paul EdmondsYi ZhangChang XuPriyen DoshiStephen CoMichael P. TelAndy Chan
    • H02H305
    • H04L12/2898G06F11/2007H04L12/2856H04L29/06H04L67/1002H04L67/1034H04L2029/06054
    • A computer system includes a plurality of interdependent processors for operating a common set of applications. Each interdependent processor executes an independent operating system image without sharing file system state information. Each interdependent processor has a network access card with a first network connection and a second network connection. The computer system includes a first active backplane coupled to each first network connection of each processor; a second active backplane coupled to each second network connection of each processor, the second active backplane operating in lieu of the first active backplane in case of a fail-over; and one or more directors coupled to the first and second active backplanes, each of the one or more directors load-balancing requests directed at a plurality of servers.
    • 计算机系统包括用于操作公共应用集合的多个相互依赖的处理器。 每个相互依赖的处理器执行独立的操作系统映像,而不共享文件系统状态信息。 每个相互依赖的处理器具有具有第一网络连接和第二网络连接的网络访问卡。 计算机系统包括耦合到每个处理器的每个第一网络连接的第一有源底板; 耦合到每个处理器的每个第二网络连接的第二有源背板,在故障转移的情况下第二主动背板代替第一有源背板操作; 以及耦合到所述第一和第二活动背板的一个或多个导向器,所述一个或多个导向器中的每一个导向到多个服务器的负载平衡请求。
    • 7. 发明授权
    • Portable electroscope type dosimeter
    • 便携式电子式剂量计
    • US3459940A
    • 1969-08-05
    • US52691965
    • 1965-11-30
    • STEPHEN & CO LTD R A
    • BRYER ROBERT GEORGE
    • H01J47/04G01T1/16
    • H01J47/04
    • 1,124,786. Electroscope dosimeters. R.A. STEPHEN & CO. Ltd. Dec. 1 1965 [Dec. 1, 1964], No. 48867/64. Heading G1Q. A radiation dosimeter, of the kind comprising a moving fibre electroscope 3 charged by the radiation to be measured, is enclosed in a housing in which a lens 5 focuses an image of the moving element on to a graticule 6, and a viewing lens 12 for reading the instrument is detachably mounted on or in the housing. For this purpose the housing has two fiducial surfaces, one defining an axis perpendicular to the graticule and one defining a plane to which this axis is perpendicular. In the assembled dosimeter, these surfaces are directly or indirectly engaged by corresponding surfaces of the viewing lens mount and such engagement ensures that the viewing lens will occupy the appropriate position in relation to the graticule. In Fig. the fiducial surfaces of the dosimeter housing are (a) the cylindrical inner surface of the cup-shaped insert 9 secured to the tubular outer shell 1 of the housing and (b) a surface of a groove 14 in this cylindrical surface. The corresponding surfaces of the lens mount 13 are (a) its cylindrical outer surface below the flange 11 and (b) a surface of a groove in this cylindrical surface. Surfaces (a) are in direct engagement, the lens mount being a sliding fit in the insert 9; surfaces (b) are in indirect contact, both grooves engaging a spring clip 15 whose presence ensures that corresponding surfaces of the two grooves are in alignment, with the viewing lens at the correct distance from the graticule. The clip may either be a loose fit in the grooves, serving merely as a location guide :for a temporarily attached viewing lens; or a tighter fit so that the lens will not be inadvertently disturbed if left attached to the instrument. In Figs. 2 and 3 (not shown) the spring and groove. locating system is dispensed with. In Fig. 2, the equivalent pair of fiducial surfaces are the plane end of the housing and the adjacent plane face of a flange, corresponding to flange 11 of Fig. 1, on the lens mount. These surfaces both engage a washer of appropriate thickness which is located between them. In Fig. 3, the lens mount is a cupshaped member which fits over the end of the housing and in this case the fiducial surfaces defining the distance between the viewing lens and the graticule are the adjacent end surfaces of the rim of this cup-shaped member and a collar on the outside of the instrument housing. In the Fig. 2 form, the telescopic engagement between the lens mount and the housing of Fig. 1 is replaced by a screw-threaded engagement.
    • 8. 发明授权
    • Data modification for device communication channel packets
    • 数据修改设备通信通道数据包
    • US08832331B2
    • 2014-09-09
    • US13220326
    • 2011-08-29
    • Stephen Co
    • Stephen Co
    • G06F3/00G06F13/00G06F13/38
    • H04L12/4633
    • Techniques are disclosed relating to modifying packet data to be sent across a communication link and/or bus. Data may be modified in accordance with one or more data processing algorithms, and according to the capabilities of a destination device to receive such modified data. Lossless compression algorithms may be used on data in order to achieve a higher effective bandwidth over a particular bus or link. Encryption algorithms may be used, as well as data format conversion algorithms. One or more processing elements of a communication channel controller or other structure within a computing device may be used to modify packet data, which may be in PCI-Express format in some embodiments. A packet prefix or header may be used to store an indication of what algorithm(s) has been used to modify packet data so that a destination device can process packets accordingly.
    • 公开了关于修改要通过通信链路和/或总线发送的分组数据的技术。 可以根据一个或多个数据处理算法,以及根据目的地设备接收这样的修改数据的能力来修改数据。 可以在数据上使用无损压缩算法,以便在特定总线或链路上实现更高的有效带宽。 可以使用加密算法,以及数据格式转换算法。 计算设备内的通信信道控制器或其他结构的一个或多个处理元件可用于修改在一些实施例中可以是PCI-Express格式的分组数据。 分组前缀或报头可以用于存储已经使用什么算法来修改分组数据的指示,使得目的地设备可以相应地处理分组。
    • 9. 发明授权
    • Fault tolerant bus for clustered system
    • 集群系统的容错总线
    • US06397345B1
    • 2002-05-28
    • US09169361
    • 1998-10-09
    • Paul EdmondsYi ZhangChang XuPriyen DoshiStephen CoMichael P. TelAndy Chan
    • Paul EdmondsYi ZhangChang XuPriyen DoshiStephen CoMichael P. TelAndy Chan
    • H02H305
    • G06F11/2007G06F11/2005G06F11/2053G06F2201/85H04B1/74
    • A computer system includes a plurality of interdependent processors. Each interdependent processor executes an independent operating system image without sharing file system state information, and each interdependent processor further has a network access card with a first network connection and a second network connection. The computer system has a first active backplane coupled to each first network connection of each processor; a second active backplane coupled to each second network connection of each processor, the second active backplane operating in lieu of the first active backplane in case of a fail-over; and one or more peripherals connected to each of the first and second active backplanes and responsive to data requests transmitted over the first and second active backplanes.
    • 计算机系统包括多个相互依赖的处理器。 每个相互依赖的处理器在不共享文件系统状态信息的情况下执行独立的操作系统映像,并且每个相互依赖的处理器还具有具有第一网络连接和第二网络连接的网络访问卡。 计算机系统具有耦合到每个处理器的每个第一网络连接的第一有源底板; 耦合到每个处理器的每个第二网络连接的第二有源背板,在故障转移的情况下第二主动背板代替第一有源背板操作; 以及连接到第一和第二活动背板中的每一个的一个或多个外围设备,并响应于在第一和第二活动背板上传输的数据请求。