会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Nozzle setting jig
    • 喷嘴设置夹具
    • US6102384A
    • 2000-08-15
    • US307828
    • 1999-05-07
    • Charles W. Simmons
    • Charles W. Simmons
    • B23K37/053B25B1/20
    • B23K37/0536
    • A nozzle setting jig useful for aligning and holding a nozzle in proper orientation in an upwardly positioned opening in a sidewall of a pipe or round vessel for welding the nozzle thereto. The jig is useful for use with standard nozzles which nozzles include a short cylindrical section with a flange attached to one end while the other end is contoured cut to coincide with the curvature of a sidewall of a pipe or vessel to which the nozzle will be attached. The nozzle setting jig includes a nozzle flange mounting plate with two length adjustably legs which are self centering and which are adaptable for use with numerous size nozzles. The jig allows a welder to set the proper depth of the nozzle within the opening in the pipe or vessel while also aligning the heavy nozzle both laterally and archingly in relation to the longitudinal axis of the pipe or vessel to which the nozzle will be attached.
    • 一种喷嘴设置夹具,用于将管嘴或圆形容器的侧壁中的向上定位的开口中的喷嘴对准并保持在适当的方向,用于将喷嘴焊接到其上。 夹具可用于标准喷嘴,该喷嘴包括具有附接到一端的凸缘的短圆柱形部分,而另一端被轮廓切割以与喷嘴将附接到的管或容器的侧壁的曲率重合 。 喷嘴设置夹具包括具有两个长度可调节腿的喷嘴法兰安装板,其具有自定心并且可适用于多个尺寸的喷嘴。 夹具允许焊工将喷嘴的适当深度设置在管或容器的开口内,同时还使重喷嘴相对于喷嘴将附接到的管或容器的纵向轴线侧向和拱形地对准。
    • 3. 发明授权
    • Positionable gas injection nozzle assembly for an underwater pelletizing system
    • 一种用于水下造粒系统的可定位气体喷嘴组件
    • US08007701B2
    • 2011-08-30
    • US12457442
    • 2009-06-10
    • Robert G. MannCharles W. SimmonsRobert A. Ryan
    • Robert G. MannCharles W. SimmonsRobert A. Ryan
    • B29B9/06
    • B29B9/06B29B9/065B29B9/16
    • A positionable gas nozzle assembly having a nozzle tube for injecting and directing pressurized air or other inert gas into a pellet slurry so as to increase the velocity of the slurry from a pelletizer to and through a dryer. The variably positionable nozzle tube can be inserted, retracted and/or intermediately positioned either manually or using an automated control system. The automated control system preferably includes a pneumatic cylinder movably engaged with a carriage that is fixedly coupled to the nozzle tube. The pneumatic cylinder contains a piston that is magnetically coupled with the carriage such that movement of the piston in response to the injection of pressurized air into the cylinder also moves the carriage and the nozzle tube to obtain the variable positions.
    • 一种可定位的气体喷嘴组件,其具有用于将加压空气或其它惰性气体注入并引导到颗粒浆料中的喷嘴管,以便将浆料从造粒机的速度增加到并通过干燥器。 可变定位的喷嘴管可以手动地插入,缩回和/或中间定位或使用自动化控制系统。 自动控制系统优选地包括气动缸,该气缸与固定地联接到喷嘴管的托架可移动地接合。 气动缸包括与滑架磁耦合的活塞,使得响应于将加压空气注入气缸中的活塞的运动也使滑架和喷嘴管移动以获得可变位置。
    • 6. 发明授权
    • Repeatable runout cancellation in sectored servo disk drive positioning system
    • 分段伺服驱动器定位系统中可重复跳动消除
    • US06310742B1
    • 2001-10-30
    • US09603809
    • 2000-06-26
    • Ara W. NazarianCharles W. SimmonsThao P. TrieuRichard K. Wong
    • Ara W. NazarianCharles W. SimmonsThao P. TrieuRichard K. Wong
    • G11B5596
    • G11B5/59688G11B5/59627
    • A method in a magnetic storage disk drive for independently learning and thereafter canceling repeatable runout that is written to the servo fields of each servo track during the servo writing process. The method does not require a servo writer because the disk drive may independently detect the runout without spinning out of control in response to such runout by operating its servo control loop in a low bandwidth mode so that it is less responsive to the higher frequency components of the runout, and by removing the effect of the DC component of the runout or selected harmonics on each revolution. The method takes several revolutions to “learn” the servo wedges of a current track by initializing a wedge runout value for each servo wedge and an average uncorrected runout value and then successively developing an interim wedge runout estimate for each servo wedge by adding a fractional portion &lgr; of a raw position error signal to a fractional portion (1−&lgr;) of the wedge runout value, computing a corrected position error signal by subtracting the interim wedge runout estimate from the raw position error signal, and computing a new wedge runout value by subtracting the average uncorrected runout value from the interim wedge runout estimate and, subsequent to each revolution, updating the average uncorrected runout value.
    • 一种磁存储盘驱动器中的方法,用于在伺服写入过程期间独立学习并随后取消写入每个伺服磁道的伺服磁场的可重复跳动。 该方法不需要伺服写入器,因为磁盘驱动器可以通过在低带宽模式下操作其伺服控制环路来响应于这种跳动独立地检测跳动而不脱离控制,使得其对较高频率分量的响应较小 跳动,并且通过消除每次旋转的跳动或选定谐波的直流分量的影响。该方法需要几圈以通过初始化每个伺服楔的楔形跳动值来“学习”当前轨道的伺服楔,并且 平均未校正的跳动值,然后通过将原始位置误差信号的小数部分羔羊添加到楔形跳动值的小数部分(1-lambd)来连续地开发每个伺服楔的临时楔形跳动估计,计算校正的位置误差信号 通过从原始位置误差信号中减去临时楔形跳动估计,并通过减去平均值来计算新的楔形跳动值 从临时楔形跳动估计中摆出的跳动值,并且在每次旋转之后,更新平均未校正的跳动值。
    • 7. 发明授权
    • Digital facility simulator with CODEC emulation
    • 具有CODEC仿真的数字设备模拟器
    • US06195414B1
    • 2001-02-27
    • US09058759
    • 1998-04-11
    • Charles W. SimmonsGary EllerbuschSteven Rumsby
    • Charles W. SimmonsGary EllerbuschSteven Rumsby
    • H04M124
    • H04L43/50H04M3/002H04M3/005H04M3/323H04M11/06
    • Apparatus (100) and accompanying methods for accurately simulating a digital facility, including impairments, in a public switched telephone network (PSTN). The invention is particularly suited for precisely emulating, as part of that facility, a line card within a channel bank including a hardware coder-decoder (CODEC) circuit contained therein, but without using an actual CODEC. Specifically, to properly emulate a digital facility, including such a line card, impairments, which need to be emulated, arise not only from the network facility itself but also from the line card. The former include robbed bit signaling (RBS), digital trunk loss and network delay. The latter include intermodulation distortion (IMD), analog loss and echo. To achieve very precise emulation, the simulator implements IMD and network impairments digitally but with the former impairment being processed at much higher, i.e., oversampled, (illustratively 32 kHz) sample rate relative to the sample rate for the latter impairments (e.g., at a standard network sample rate of 8 kHz).
    • 用于在公共交换电话网(PSTN)中精确模拟数字设施(包括损伤)的装置(100)和相关方法。 本发明特别适用于作为该设施的一部分来精确仿真包括其中包含硬件编码器 - 解码器(CODEC)电路但不使用实际编解码器的信道组内的线路卡。 具体来说,为了适当地模拟包括这种线卡的数字设备,需要仿真的损伤不仅来自网络设备本身,而且来自线卡。 前者包括抢占位信令(RBS),数字中继线丢失和网络延迟。 后者包括互调失真(IMD),模拟损耗和回波。 为了实现非常精确的仿真,模拟器以数字方式实现IMD和网络损伤,但前者的损害要比相对于后者的损伤的采样率高得多(即过采样的(示例性的32 kHz)采样率)进行处理(例如, 标准网络采样率为8 kHz)。
    • 8. 发明授权
    • Repeatable runout cancellation in sectored servo disk drive positioning
system
    • 分段伺服驱动器定位系统中可重复跳动消除
    • US6141175A
    • 2000-10-31
    • US946805
    • 1997-10-08
    • Ara W. NazarianCharles W. SimmonsThao P. TrieuRichard K. Wong
    • Ara W. NazarianCharles W. SimmonsThao P. TrieuRichard K. Wong
    • G11B5/596
    • G11B5/59688G11B5/59627
    • A method in a magnetic storage disk drive for independently learning and thereafter canceling repeatable runout that is written to the servo fields of each servo track during the servo writing process. The method does not require a servo writer because the disk drive may independently detect the runout without spinning out of control in response to such runout by operating its servo control loop in a low bandwidth mode so that it is less responsive to the higher frequency components of the runout, and by removing the effect of the DC component of the runout or selected harmonics on each revolution.The method takes several revolutions to "learn" the servo wedges of a current track by initializing a wedge runout value for each servo wedge and an average uncorrected runout value and then successively developing an interim wedge runout estimate for each servo wedge by adding a fractional portion .lambda. of a raw position error signal to a fractional portion (1-.lambda.) of the wedge runout value, computing a corrected position error signal by subtracting the interim wedge runout estimate from the raw position error signal, and computing a new wedge runout value by subtracting the average uncorrected runout value from the interim wedge runout estimate and, subsequent to each revolution, updating the average uncorrected runout value.
    • 一种磁存储盘驱动器中的方法,用于在伺服写入过程期间独立学习并且随后取消写入每个伺服磁道的伺服磁场的可重复跳动。 该方法不需要伺服写入器,因为磁盘驱动器可以通过在低带宽模式下操作其伺服控制环路来响应于这种跳动独立地检测跳动而不脱离控制,使得其对较高频率分量的响应较小 跳动,并通过消除每次旋转的跳动或选定谐波的直流分量的影响。 该方法通过初始化每个伺服楔的楔形跳动值和平均未校正的跳动值来“学习”当前轨道的伺服楔,然后通过添加小数部分来连续地显示每个伺服楔的临时楔形跳动估计 原始位置误差信号的λ到楔形跳动值的小数部分(1-lambda),通过从原始位置误差信号中减去临时楔形跳动估计值来计算校正的位置误差信号,并且通过 从临时楔形跳动估计中减去平均未校正的跳动值,并且在每次旋转之后,更新平均未校正的跳动值。