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    • 31. 发明申请
    • Switching Circuit Implementing Variable String Matching
    • 开关电路实现变量串匹配
    • US20080212581A1
    • 2008-09-04
    • US12028668
    • 2008-02-08
    • Michael J. MillerVladan Djakovic
    • Michael J. MillerVladan Djakovic
    • H04L12/56
    • H04L45/7453H04L49/355H04L69/12H04L69/22
    • A content matching engine (CME) uses a content addressable memory (CAM) array that stores a plurality of strings in separate entries. The strings define one or more rules to be matched. The strings of each rule are linked, thereby providing a required order. The strings of each rule can be linked by per-entry counters associated with each string, or by a state machine. The strings in the CAM array are compared with a packet, which is shifted one symbol at a time (because the strings can start on any boundary). When the CAM detects a match, the CAM skips over the string that resulted in the match, thereby preventing erroneous matches. The CAM allows parallel matching to be performed for multiple rules. If the contents of a packet match all of the strings of a rule, in order, then the CME asserts a match/index signal that identifies the matched rule.
    • 内容匹配引擎(CME)使用在单独条目中存储多个字符串的内容可寻址存储器(CAM)阵列。 字符串定义要匹配的一个或多个规则。 链接每个规则的字符串,从而提供所需的顺序。 每个规则的字符串可以通过与每个字符串关联的每个入口计数器或状态机链接。 CAM阵列中的字符串与一个数据包进行比较,该数据包一次移位一个符号(因为字符串可以从任何边界开始)。 当CAM检测到匹配时,CAM将跳过导致匹配的字符串,从而防止错误匹配。 CAM允许对多个规则执行并行匹配。 如果分组的内容与规则的所有字符串匹配,则依次CME断言标识匹配规则的匹配/索引信号。
    • 32. 发明授权
    • Fast collision detection for a hashed content addressable memory (CAM) using a random access memory
    • 使用随机存取存储器的散列内容可寻址存储器(CAM)的快速碰撞检测
    • US07290084B2
    • 2007-10-30
    • US10980858
    • 2004-11-02
    • Michael J. MillerDavid A. Honig
    • Michael J. MillerDavid A. Honig
    • G06F12/00
    • G11C15/00
    • A hardware hashing circuit is configured to perform a hashing function on a received character string, thereby creating a hashed output value and a collision resolution value. A content addressable memory (CAM) receives the hashed output value, and in response, provides an index value and activates a hit signal if the hashed output value matches an entry of the CAM. A random access memory (RAM) receives the index value from the CAM. The RAM stores a collision resolution value and information associated with the character string in an entry associated with the index value. The RAM provides this information and collision resolution value in response to the index value. Logic circuitry indicates a collision if the hit signal is activated and the collision resolution value provided by the hardware hashing circuit does not match the collision resolution value provided by the RAM.
    • 硬件散列电路被配置为对所接收的字符串执行散列函数,从而创建散列输出值和冲突解析值。 内容可寻址存储器(CAM)接收散列输出值,并且作为响应,提供索引值并且如果散列输出值与CAM的条目匹配则激活命中信号。 随机存取存储器(RAM)从CAM接收索引值。 RAM在与索引值相关联的条目中存储碰撞解析值和与该字符串相关联的信息。 RAM根据索引值提供此信息和冲突解决值。 逻辑电路指示如果命中信号被激活并且由硬件散列电路提供的冲突解析值与由RAM提供的冲突分辨率值不匹配的冲突。
    • 35. 发明授权
    • Slip type casing hanger with integral high pressure isolation plate
    • 带有整体高压隔离板的滑动式套管吊架
    • US06644401B1
    • 2003-11-11
    • US10050721
    • 2001-10-26
    • Michael J. Miller
    • Michael J. Miller
    • E21B3304
    • E21B33/0422
    • The invention relates to a slip type casing hanger assembly, having a hanger body with an annulus, a casing head disposed around casing for supporting and transferring weight of the casing string to the casing head. The slip type casing hanger assembly further includes (a) an adjustable isolation plate for sealing the annulus, further including a lower plate landing on a load shoulder, an upper plate adjoining the annulus, and a spacer separating the lower plate from the upper plates; (b) a plurality of fasteners for securing the spacer to the upper plate and the lower plate; (c) at least two slip segments, each comprising a plurality of teeth for engaging and suspend the casing string, with each slip segment having a top step and bottom step for engaging the hanger body; (d) at least one alignment ring for aligning the slip segments, and (e) locking apparatus for securing the isolation plate against the load shoulder.
    • 本发明涉及一种滑动型套管悬挂架组件,其具有带有环形空间的衣架主体,壳体头围绕壳体设置,用于支撑并将套管柱的重量转移到套管头部。 滑动型套管悬挂器组件还包括(a)用于密封环空的可调隔离板,还包括在承载台肩上的下板台面,与所述环带相邻的上板,以及将所述下板与所述上板分隔开的间隔件; (b)多个紧固件,用于将间隔件固定到上板和下板; (c)至少两个滑动部分,每个滑动部分包括用于接合和悬挂套管柱的多个齿,每个滑动部分具有用于接合衣架主体的顶部步骤和底部步骤; (d)至少一个用于对准滑动部分的对准环,和(e)用于将隔离板固定在负载肩上的锁定装置。
    • 40. 发明授权
    • Process for producing KS molybdenum
    • 生产KS钼的工艺
    • US5734960A
    • 1998-03-31
    • US297476
    • 1994-08-29
    • Thomas J. PatricianMichael J. MillerJames N. ChristiniMichael J. CheresnowskyVernon L. Carr, Jr.
    • Thomas J. PatricianMichael J. MillerJames N. ChristiniMichael J. CheresnowskyVernon L. Carr, Jr.
    • C22C1/04B22F1/00B22F3/12B22F9/22
    • C22C1/045
    • A process for producing potassium and silicon doped molybdenum (KS molybdenum). The process involves mixing an aqueous ammonium molybdate solution and a dilute aqueous potassium silicate solution. The molybdate solution has a pH and a specific gravity sufficient to promote formation of diammonium molybdate crystals in the mixture. Preferably, the pH is about 8.8-11.0 and the specific gravity is about 1.20-1.32. The amount of potassium silicate and the amount of potassium silicate solution are selected to provide predetermined amounts of potassium and silicon in the mixture, preferably about 800-1300 ppm potassium and about 500-1100 ppm silicon, both amounts based on the amount of molybdenum. The mixture is heated to aid dissolution of the potassium silicate and ammonium molybdate in said mixture and to produce a homogeneous solution of ammonium molybdate, potassium, and silicon. The ammonium dimolybdate doped with potassium and silicon is then crystallized out of solution and calcined, for example in an atmosphere of dissociated ammonia, to produce molybdenum dioxide doped with potassium and silicon. The doped molybdenum dioxide is reduced, for example in a flowing hydrogen atmosphere, to produce a doped molybdenum powder, which then may be pressed and sintered to full density.
    • 一种生产钾和硅掺杂钼(KS钼)的方法。 该方法包括混合钼酸铵水溶液和稀的硅酸钾水溶液。 钼酸盐溶液具有足以促进混合物中钼酸铵晶体形成的pH和比重。 优选地,pH为约8.8-11.0,比重为约1.20-1.32。 选择硅酸钾的量和硅酸钾溶液的量以在混合物中提供预定量的钾和硅,优选约800-1300ppm钾和约500-1100ppm硅,两者都基于钼的量。 将混合物加热以帮助硅酸钾和钼酸铵在所述混合物中的溶解,并产生钼酸铵,钾和硅的均匀溶液。 然后将掺杂有钾和硅的二钼酸铵从溶液中结晶出来并煅烧,例如在解离的氨气氛中,生成掺有钾和硅的二氧化钼。 掺杂的二氧化钼例如在流动的氢气氛中被还原,以产生掺杂的钼粉末,然后可将其压制并烧结至全密度。