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    • 2. 发明授权
    • Serial attached SCSI and serial ATA wide port tunnelling through a fibre channel connection
    • 串行连接SCSI和串行ATA宽端口通过光纤通道连接隧道
    • US08516154B2
    • 2013-08-20
    • US13195642
    • 2011-08-01
    • Louie Arthur DickensTimothy A. JohnsonCraig Anthony KleinDaniel James Winarski
    • Louie Arthur DickensTimothy A. JohnsonCraig Anthony KleinDaniel James Winarski
    • G06F15/16
    • H04L12/4633
    • Network traffic encoded in a first protocol is transmitted across a first communications link, wherein the first protocol allows a first plurality of simultaneous logical connections. The transmitted network traffic is received at a first interface between the first communications link and a second communications link. The received network traffic is encapsulated within frames at the first interface, wherein the frames are generated in accordance with a second protocol, and wherein the second protocol does not allow any plurality of simultaneous logical connections that are allowed by the first protocol. The frames are transmitted from the first interface to a second interface across the second communications link. The frames are received and then unencapsulated network traffic is generated from the frames at the second interface, wherein the second interface is between the second communications link and a third communications link. The unencapsulated network traffic is routed to a selected logical connection of a second plurality of simultaneous logical connections across the third communications link, wherein transmission across the third communications link is in the first protocol.
    • 在第一通信链路中传送以第一协议编码的网络业务,其中第一协议允许第一多个同时的逻辑连接。 所发送的网络流量在第一通信链路和第二通信链路之间的第一接口处被接收。 所接收的网络流量被封装在第一接口的帧内,其中根据第二协议生成帧,并且其中第二协议不允许由第一协议允许的任何多个同时的逻辑连接。 帧通过第二通信链路从第一接口发送到第二接口。 接收帧,然后从第二接口的帧生成未封装的网络业务,其中第二接口位于第二通信链路和第三通信链路之间。 未封装的网络流量被路由到跨越第三通信链路的第二多个并行逻辑连接的选定逻辑连接,其中穿过第三通信链路的传输处于第一协议中。
    • 4. 发明授权
    • Serial attached SCSI and serial ATA wide port tunnelling through a fibre channel connection
    • 串行连接SCSI和串行ATA宽端口通过光纤通道连接隧道
    • US08019895B2
    • 2011-09-13
    • US12054855
    • 2008-03-25
    • Louie Arthur DickensTimothy A. JohnsonCraig Anthony KleinDaniel James Winarski
    • Louie Arthur DickensTimothy A. JohnsonCraig Anthony KleinDaniel James Winarski
    • G06F15/16
    • H04L12/4633
    • Network traffic encoded in a first protocol is transmitted across a first communications link, wherein the first protocol allows a first plurality of simultaneous logical connections. The transmitted network traffic is received at a first interface between the first communications link and a second communications link. The received network traffic is encapsulated within frames at the first interface, wherein the frames are generated in accordance with a second protocol, and wherein the second protocol does not allow any plurality of simultaneous logical connections that are allowed by the first protocol. The frames are transmitted from the first interface to a second interface across the second communications link. The frames are received and then unencapsulated network traffic is generated from the frames at the second interface, wherein the second interface is between the second communications link and a third communications link. The unencapsulated network traffic is routed to a selected logical connection of a second plurality of simultaneous logical connections across the third communications link, wherein transmission across the third communications link is in the first protocol.
    • 在第一通信链路中传送以第一协议编码的网络业务,其中第一协议允许第一多个同时的逻辑连接。 所发送的网络流量在第一通信链路和第二通信链路之间的第一接口处被接收。 所接收的网络流量被封装在第一接口的帧内,其中根据第二协议生成帧,并且其中第二协议不允许由第一协议允许的任何多个同时的逻辑连接。 帧通过第二通信链路从第一接口发送到第二接口。 接收帧,然后从第二接口的帧生成未封装的网络业务,其中第二接口位于第二通信链路和第三通信链路之间。 未封装的网络流量被路由到跨越第三通信链路的第二多个并行逻辑连接的选定逻辑连接,其中穿过第三通信链路的传输处于第一协议中。
    • 8. 发明授权
    • Multi-layered media aberration compensation apparatus, method, and system
    • 多层介质像差补偿装置,方法和系统
    • US07826329B2
    • 2010-11-02
    • US11242987
    • 2005-10-04
    • Nils HausteinCraig Anthony KleinDaniel James Winarski
    • Nils HausteinCraig Anthony KleinDaniel James Winarski
    • G11B7/135
    • G11B7/13925G11B7/1369G11B7/1378G11B2007/0013
    • An apparatus, system, and method are disclosed for aberration compensation. In one embodiment, a first compensation lens used in conjunction with a second compensation lens to produce a conical beam used to read from, or write to, an optical medium. An Nth order compensation equation is used to optimize aberration errors associated with accessing the optical medium. The present invention may include a displaceable focus lens positioned relative to an optical medium. The focus lens may be displaced when the conical beam's focal length is adjusted. A displacement equation is presented to determine the preferred placement of the focus lens. By compensating for aberration, read/write errors may be reduced while accessing optical media thus increasing system robustness and facilitating the use of additional layers on optical media.
    • 公开了用于像差补偿的装置,系统和方法。 在一个实施例中,第一补偿透镜与第二补偿透镜一起使用以产生用于从光学介质读取或写入光学介质的锥形束。 使用N阶补偿方程来优化与访问光学介质相关联的像差。 本发明可以包括相对于光学介质定位的位移聚焦透镜。 当锥形束的焦距被调整时,聚焦透镜可以被移位。 呈现位移方程以确定聚焦透镜的优选放置。 通过补偿像差,可以在访问光学介质的同时减少读/写错误,从而提高系统的鲁棒性并促进在光学介质上使用附加层。