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    • 2. 发明授权
    • Initialization system for recovering bits and group of bits from a communications channel
    • 用于从通信信道恢复比特和比特组的初始化系统
    • US06611217B2
    • 2003-08-26
    • US10150337
    • 2002-05-17
    • Brian BuchananJohn MarshallChristopher G. Riedle
    • Brian BuchananJohn MarshallChristopher G. Riedle
    • H03M900
    • G11C7/1084G11C7/1078G11C2207/2254H03M9/00H04J3/047H04L7/0337H04L7/046
    • A system normally converts a parallel data word to a single serial data stream to use a high speed serial link. The parallel data word is partitioned into N sub-sets or nibbles and each nibble is then serialized and transmitted over N serial links using high speed differential drivers. Each of the N serialized nibbles are received in a differential receiver. The serialized nibbles are then coverted back into N parallel nibbles and the N parallel nibbles are then assembled back to the original parallel data word. To increase reliability, the received data is coupled to a tapped delay element having M stages of delay. A training sequence and algorithm are used to determine which of the taps of the delay element are a desired delay distance away from data transitions. These taps are then used to sample the incoming signals to reconstruct the parallel data word.
    • 系统通常将并行数据字转换为单个串行数据流以使用高速串行链路。 并行数据字被分割为N个子集或半字节,然后每个半字节被串行化并通过使用高速差分驱动器的N个串行链路传输。 N个串行化的半字节中的每一个都被接收在差分接收器中。 然后将串行化的半字节复盖为N个并行半字节,然后将N个并行半字节组装回原始并行数据字。 为了提高可靠性,接收的数据被耦合到具有M级延迟的抽头延迟元件。 使用训练序列和算法来确定延迟元件的抽头中的哪一个是远离数据转换的期望的延迟距离。 然后使用这些抽头对输入信号进行采样以重建并行数据字。
    • 3. 发明授权
    • Data alignment compensator
    • 数据对准补偿器
    • US06970435B1
    • 2005-11-29
    • US09330743
    • 1999-06-11
    • Brian BuchananJohn MarshallChristopher G. Riedle
    • Brian BuchananJohn MarshallChristopher G. Riedle
    • H04B7/005H04L1/20H04L12/26
    • H04L1/205
    • An apparatus and method that correct skew associated with data receive from different transmission links. A known training pattern is sent through the transmission links. The training pattern is recovered and forwarded through delay registers/selecter logic to a memory buffer. A programmed controller accesses the memory and searches for the training pattern. If the training pattern is found for each transmission link, the offsets between the transmission links are determined and are used by the delay registers/selecter logic to adjust the position of the pattern so that the patterns from each link is linearly aligned within the memory buffer.
    • 纠正与来自不同传输链路的数据接收相关的偏差的装置和方法。 通过传输链路发送已知的训练模式。 训练模式被恢复并通过延迟寄存器/选择器逻辑转发到存储器缓冲器。 编程控制器访问存储器并搜索训练模式。 如果针对每个传输链路找到训练模式,则确定传输链路之间的偏移量并由延迟寄存器/选择器逻辑使用以调整模式的位置,使得来自每个链路的模式在存储器缓冲器内线性对准 。
    • 8. 发明申请
    • Network Security System Having a Device Profiler Communicatively Coupled to a Traffic Monitor
    • 具有通信耦合到流量监视器的设备分析器的网络安全系统
    • US20070143852A1
    • 2007-06-21
    • US11676051
    • 2007-02-16
    • Timothy KeaniniMartin QuirogaBrian BuchananJohn Flowers
    • Timothy KeaniniMartin QuirogaBrian BuchananJohn Flowers
    • G06F11/00
    • H04L63/1416H04L63/1425H04L63/1433
    • A system and method for providing distributed security of a network. Several device profilers are placed at different locations of a network to assess vulnerabilities from different perspectives. The device profiler identifies the hosts on the network, and characteristics such as operating system and applications running on the hosts. The device profiler traverses a vulnerability tree having nodes representative of characteristics of the hosts, each node having an associated set of potential vulnerabilities. Verification rules can verify the potential vulnerabilities. A centralized correlation server, at a centrally accessible location in the network, stores the determined vulnerabilities of the network and associates the determined vulnerabilities with attack signatures. Traffic monitors access the attack signatures and monitor network traffic for attacks against the determined vulnerabilities.
    • 一种用于提供网络的分布式安全性的系统和方法。 一些设备剖析器放置在网络的不同位置,以从不同的角度评估漏洞。 设备剖析器识别网络上的主机,以及主机上运行的操作系统和应用程序等特性。 设备剖析器遍历具有代表主机特征的节点的漏洞树,每个节点具有相关的一组潜在漏洞。 验证规则可以验证潜在的漏洞。 在网络中央可访问的位置处的集中式相关服务器存储所确定的网络的漏洞,并将确定的漏洞与攻击签名相关联。 流量监视器访问攻击签名并监视网络流量以针对确定的漏洞进行攻击。
    • 9. 发明授权
    • Control assembly for a work machine
    • 工作机械的控制组件
    • US6095944A
    • 2000-08-01
    • US124313
    • 1998-07-29
    • Brian BuchananTom SticklesGene Zeuck
    • Brian BuchananTom SticklesGene Zeuck
    • B60K26/02B60K28/00B60T11/10E02F9/20E02F9/24B60K41/26B60K41/28
    • E02F9/24B60T11/103B60W10/04B60W10/18B60W30/18E02F9/2004B60W2300/17B60W2540/16B60W2710/18Y10T477/647Y10T477/649Y10T74/20213
    • A control assembly for a work machine is disclosed which includes a movement actuator positionable between a drive position and a neutral position, wherein (i) the work machine is driven by the engine when the movement actuator is positioned in the drive position, (ii) the work machine is prevented from being driven by the engine when the movement actuator is positioned in the neutral position, and (iii) the movement actuator is spring biased into the neutral position. The control assembly also includes a movement actuator retaining device, wherein (i) the movement actuator retaining device includes a retaining actuator positionable between a "reduced friction" state and an "enhanced friction" state, (ii) the movement actuator is maintained in the drive position when the retaining actuator is positioned in the "enhanced friction" state, and (iii) the movement actuator is allowed to move from the drive position to the neutral position due to the spring bias when the retaining actuator is moved from the "enhanced friction" state to the "reduced friction" state. An adjustment assembly for returning the movement actuator to the neutral position and a control switch for enabling and disabling a starter of the work machine are also provided.
    • 公开了一种用于作业机械的控制组件,其包括可在驱动位置和中间位置之间定位的运动致动器,其中(i)当运动致动器位于驱动位置时,工作机械由发动机驱动,(ii) 当运动致动器位于中立位置时,工作机器被发动机驱动,并且(iii)运动致动器被弹簧偏压到中立位置。 控制组件还包括运动致动器保持装置,其中(i)运动致动器保持装置包括可定位在“减小摩擦”状态和“增强摩擦”状态之间的保持致动器,(ii)运动致动器保持在 当保持致动器位于“增强的摩擦”状态时,驱动位置,以及(iii)当保持致动器从“增强型”移动时,移动致动器由于弹簧偏压而允许从驱动位置移动到中立位置 摩擦“状态到”减少摩擦“状态。 还提供了用于将运动致动器返回到中立位置的调节组件和用于启用和禁用作业机器的起动器的控制开关。