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    • 2. 发明申请
    • OPTICAL FIBER INSTALLATION TOOL HAVING A PASSIVE ILLUMINATION FEATURE
    • 光纤安装工具具有被动照明功能
    • US20130265794A1
    • 2013-10-10
    • US13803870
    • 2013-03-14
    • Kevin Brady FlattDavid Wayne Meek
    • Kevin Brady FlattDavid Wayne Meek
    • G02B6/46G02B6/00
    • G02B6/46G02B6/00G02B6/3802G02B6/3846
    • Disclosed is a passive illumination apparatus for improving the visibility of an optical fiber by projecting reflected light to passively illuminate an optical fiber for allowing the user improved visibility for inserting the optical fiber into an orifice. One embodiment of the concept uses a passive illumination apparatus having a pattern of one or more colors for reflectively transmitting chromatic light along with an optional contrast surface such as a gray or black stripe for providing a highly contrasting background for the user to view the optical fiber against. The ambient light is transmitted or directed from a reflective surface such as a concave curved region for passively illuminating the optical fiber. The passive illumination apparatus may be used on any suitable device such as a connector installation tool, a splicer, a stripper for an optical fiber coating or a cleaver as desired.
    • 公开了一种被动照明装置,用于通过投射反射光来提高光纤的可见度,以被动照亮光纤,以允许用户提高将光纤插入孔中的可见性。 该概念的一个实施例使用具有一种或多种颜色的图案的无源照明设备,用于反射地传输彩色光以及可选的对比度表面,例如灰色或黑色条纹,以提供用于观看光纤的高对比度背景 反对。 环境光从诸如凹曲面区域的反射表面传输或引导,以被动照明光纤。 无源照明装置可以用于任何合适的装置,例如连接器安装工具,捻接器,用于光纤涂层的剥离器或切割器。
    • 3. 发明授权
    • Maintenance management of a machine
    • 一台机器的维护管理
    • US07496475B2
    • 2009-02-24
    • US11606175
    • 2006-11-30
    • Brian Dara ByrneKevin BradyArthur Stack
    • Brian Dara ByrneKevin BradyArthur Stack
    • G06F11/30
    • G05B23/0235G05B23/0283G05B2219/32224G05B2219/32226Y02P90/14Y02P90/22
    • Methods of providing maintenance management of a machine are disclosed. In one embodiment, the method involves identifying a machine component failure that, if not repaired, will result in a functional failure of the machine. A criticality factor is assigned to the machine component failure based on at least a probability of occurrence of the functional failure and a consequence of the functional failure to a machine user. A maintenance task is generated to repair the machine component failure, and a triggering condition that activates the maintenance task is defined. The method further involves conducting a machine repair in response to a detection of the triggering condition, and maintaining a record that includes information relating to the conducted machine repair. The method of providing maintenance management is also modified based on at least the record.
    • 公开了提供机器维护管理的方法。 在一个实施例中,该方法涉及识别机器部件故障,如果不修理,将导致机器的功能故障。 至少基于功能故障的发生概率和机器用户的功能故障的结果,将关键因素分配给机器组件故障。 生成维护任务来修复机器组件故障,并定义激活维护任务的触发条件。 该方法还包括响应于触发条件的检测进行机器修复,并且维护包括与所进行的机器修理有关的信息的记录。 至少提供维护管理的方法也进行了修改。
    • 4. 发明授权
    • Long life piezoelectric drive and components
    • 长寿命压电驱动器和元件
    • US06867532B2
    • 2005-03-15
    • US10620366
    • 2003-07-17
    • Kevin BradyDmytro VyshnevskyiGyula HambergerBrendon Nunes
    • Kevin BradyDmytro VyshnevskyiGyula HambergerBrendon Nunes
    • H01L41/08H01L41/09H02N2/00H02N2/10H02N11/00
    • H02N2/103H02N2/002H02N2/0065H02N2/007H02N11/006
    • A piezoelectric drive, and the rotor and/or pushers thereof, have long life, e.g. at least about 6000 hours of actual operation. The piezoelectric drive also is highly accurate, and is relatively inexpensive to make. The rotor friction surface and/or pushers are made from a material having a low mechanical quality factor, yet with high strength and stability under the conditions encountered in the ultrasonic fields typical of piezoelectric drives. The material is preferably a semi-crystalline thermoplastic polymer (e.g. polyarylamide) with filler (e.g. glass particles or fiberglass), e.g. about 30-60% polymer and about 40-70% filler, and can easily make injection molded components or parts or components. A pair of drives may be connected together to form an instrument, for example rotating a shaft connected to a pointer of analog instrument either clockwise or counterclockwise. Analog instruments, such as thermometers, barometers, speedometers, altimeters, pH meters, anemometers, etc., or other precision devices may utilize the piezoelectric drive. Alternatively, the piezoelectric drive may drive other mechanical devices such as gears, encoding locks, servo systems, point of purchase devices, micro pumps, clocks, timers, etc.
    • 压电驱动器及其转子和/或推动器具有较长的使用寿命。 至少约6000小时的实际操作。 压电驱动器也是高度精确的,并且制造成本相对便宜。 转子摩擦表面和/或推进器由具有低机械品质因数的材料制成,但在压电驱动典型的超声场中遇到的条件下具有高强度和稳定性。 该材料优选为具有填料(例如玻璃颗粒或玻璃纤维)的半结晶热塑性聚合物(例如聚芳基酰胺),例如。 约30-60%的聚合物和约40-70%的填料,并且可以容易地制备注塑成型的部件或部件。 一对驱动器可以连接在一起以形成仪器,例如顺时针或逆时针旋转连接到模拟仪器的指针的轴。 诸如温度计,气压计,速度计,高度计,pH计,风速计等的模拟仪器或其他精密装置可以利用压电驱动。 或者,压电驱动器可以驱动其他机械装置,例如齿轮,编码锁,伺服系统,购买点装置,微型泵,时钟,定时器等。
    • 5. 发明授权
    • Method and apparatus for vector machine control
    • 矢量机控制的方法和装置
    • US4365300A
    • 1982-12-21
    • US182592
    • 1980-08-29
    • Lars JohansonPhil HaftFrank BonavitaGeorge FeldsteinSteve GreenbergKevin Brady
    • Lars JohansonPhil HaftFrank BonavitaGeorge FeldsteinSteve GreenbergKevin Brady
    • G05B19/4093G05B19/414G06F15/46B23P1/08
    • G05B19/4141G05B19/4093G05B19/40937G05B2219/33161G05B2219/33338G05B2219/35287G05B2219/35354G05B2219/37397G05B2219/45221G05B2219/50031Y02P90/265
    • A method and apparatus for vector machine control of a tool and a workpiece so as to perform desired electric discharge machine (EDM) operations on the workpiece in accordance with a polar coordinate frame of reference. The method for vector machine control calls for the processing of input data to derive vector magnitude data, vector angle data and Z-axis data. The tool is advanced in the direction of the Z-axis by a given amount to an offset position, and the tool is then successively advanced and withdrawn in the direction of a given vector angle (corresponding to the vector angle data) by a corresponding distance (corresponding to the vector magnitude data). The procedure may be repeated for successive vector angles and magnitudes, and may be further repeated at other offset positions in accordance with other vector angle and vector magnitude data. In the apparatus for vector machine control, the aforementioned operations are precisely controlled by a multi-processor system equipped with operator input capability, position and gap detection circuitry, and display circuitry. The gap detection circuitry is specially constructed to provide a normal servo control output (for continuous and gradual control of EDM), as well an immediate servo retrack signal (for immediate cutoff of EDM in the event of occurrence of a seriously improper gap condition).
    • 一种用于对工具和工件进行向量机控制的方法和装置,以便根据极坐标参考系对工件进行所需的放电加工(EDM)操作。 矢量机控制的方法要求输入数据的处理,以导出矢量幅数据,矢量角数据和Z轴数据。 该工具在Z轴方向前进一定量到偏移位置,然后将刀具沿给定矢量角度(对应于向量角度数据)的方向相继前进和撤回相应的距离 (对应于矢量幅度数据)。 可以针对连续的矢量角度和幅度重复该过程,并且可以根据其他矢量角度和矢量幅度数据在其它偏移位置处进一步重复该过程。 在用于向量机控制的装置中,上述操作由配有操作员输入能力,位置和间隙检测电路以及显示电路的多处理器系统精确地控制。 间隙检测电路是特别构造的,用于提供正常的伺服控制输出(用于EDM的连续和逐渐控制)以及立即伺服回溯信号(在出现严重不正确的间隙条件的情况下立即切断EDM)。
    • 7. 发明申请
    • Maintenance management of a machine
    • 机器的维护管理
    • US20080133178A1
    • 2008-06-05
    • US11606175
    • 2006-11-30
    • Brian Dara ByrneKevin BradyArthur Stack
    • Brian Dara ByrneKevin BradyArthur Stack
    • G06F15/00
    • G05B23/0235G05B23/0283G05B2219/32224G05B2219/32226Y02P90/14Y02P90/22
    • Methods of providing maintenance management of a machine are disclosed. In one embodiment, the method involves identifying a machine component failure that, if not repaired, will result in a functional failure of the machine. A criticality factor is assigned to the machine component failure based on at least a probability of occurrence of the functional failure and a consequence of the functional failure to a machine user. A maintenance task is generated to repair the machine component failure, and a triggering condition that activates the maintenance task is defined. The method further involves conducting a machine repair in response to a detection of the triggering condition, and maintaining a record that includes information relating to the conducted machine repair. The method of providing maintenance management is also modified based on at least the record.
    • 公开了提供机器维护管理的方法。 在一个实施例中,该方法涉及识别机器部件故障,如果不修理,将导致机器的功能故障。 至少基于功能故障的发生概率和机器用户的功能故障的结果,将关键因素分配给机器组件故障。 生成维护任务来修复机器组件故障,并定义激活维护任务的触发条件。 该方法还包括响应于触发条件的检测进行机器修复,并且维护包括与所进行的机器修理有关的信息的记录。 至少提供维护管理的方法也进行了修改。
    • 9. 发明授权
    • Mobile lifting device for the disabled
    • 移动式起重设备为残疾人士
    • US06182798B2
    • 2001-02-06
    • US08280430
    • 1994-07-26
    • Kevin BradyRobert O. CrowleyCesar W. Mujica
    • Kevin BradyRobert O. CrowleyCesar W. Mujica
    • B66B136
    • B66B9/0853Y10S187/901
    • A mobile lifting device includes a car having a gate and a docking plate mechanically interconnected at one end of the car. A low voltage DC control system includes an “up” circuit, a “down” circuit connected in parallel with the up circuit, and a sensor circuit in series with the up circuit and down circuit. The sensor circuit includes a plurality of series connected switches for automatically preventing operation of the lifting device if predetermined conditions are not met. The “up” circuit includes a switch positioned on a stage and connected to the control circuit by a coiled cable. A wand on the switch engages a knob on the side of the car when the car reaches the level of the stage, actuating the switch to stop the car. In the event of a power failure, a battery supplies power for opening a solenoid valve to lower the car. Three control panels are provided, one at each end of the car and one in the middle of the car. Each control panel includes a switch for causing the car to be raised or lowered and the switches are electrically interlocked to prevent simultaneous operation of relays for up and down motion. The control panel in the car can be disabled.
    • 移动提升装置包括具有在轿厢的一端机械相互连接的闸门和对接板的汽车。 低压直流控制系统包括“上”电路,与上升电路并联连接的“下”电路,以及与上升电路和下降电路串联的传感器电路。 传感器电路包括多个串联连接的开关,用于在不满足预定条件时自动防止提升装置的操作。 “上”电路包括位于台架上并通过线圈电缆连接到控制电路的开关。 当汽车到达舞台的水平面时,开关上的魔杖接合汽车侧面的旋钮,致动开关停止车辆。 在电源故障的情况下,电池供电以打开电磁阀来降低汽车。 提供三个控制面板,一个在汽车的两端,一个在汽车的中间。 每个控制面板包括用于使轿厢升高或降低的开关,并且开关电联动以防止用于上下运动的继电器的同时操作。 汽车中的控制面板可以停用。