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    • 1. 发明申请
    • Passive compensation of focus tracking utilizing winding and capacitor
    • 使用绕组和电容器进行焦点跟踪的被动补偿
    • US20060164018A1
    • 2006-07-27
    • US10511933
    • 2003-04-15
    • Kevin WilliamsMichael Boyer
    • Kevin WilliamsMichael Boyer
    • H01J23/08
    • H04N3/26
    • A video display apparatus includes a cathode ray tube and a high voltage transformer. The high voltage transformer incorporates a high voltage winding for producing an anode voltage in the cathode ray tube. The high voltage winding has a tap which provides a focus voltage for the electron gun assembly of the cathode ray tube. The transformer also includes a primary winding which is included in a resonant circuit. A third winding has a second portion that is wound to be closely coupled to the portion of the high voltage winding not associated with the generation of focus voltage. The third winding is coupled between the primary winding and a capacitor to produce a current that controls a variation of a ratio between the focus voltage and the anode voltage as a function of variation in a beam current in the cathode ray tube.
    • 视频显示装置包括阴极射线管和高压变压器。 高压变压器包括用于在阴极射线管中产生阳极电压的高压绕组。 高压绕组具有为阴极射线管的电子枪组件提供焦点电压的抽头。 变压器还包括包含在谐振电路中的初级绕组。 第三绕组具有第二部分,该第二部分被卷绕以紧密耦合到与产生聚焦电压无关的高压绕组的部分。 第三绕组耦合在初级绕组和电容器之间以产生电流,该电流控制聚焦电压和阳极电压之间的比例随着阴极射线管中的束电流的变化而变化。
    • 8. 发明申请
    • SCANNING SYSTEM FOR LIDAR
    • 激光雷达扫描系统
    • US20100053715A1
    • 2010-03-04
    • US12447937
    • 2007-10-30
    • James O'NeillWilliam T. MooreKevin WilliamsRobert Bruce
    • James O'NeillWilliam T. MooreKevin WilliamsRobert Bruce
    • G02B26/12G02B26/10
    • G02B26/105G01S7/4817
    • The present invention relates to a scanning system optimized for lidar that includes a nodding mirror, a rotary electromagnetic drive, a rotary optical encoder, and control circuitry. The rotary electromagnetic drive includes a yoke incorporating a permanent magnet, and an arm having a coil at one end of the arm. The coil is enclosed within the yoke, and an opposite end of the arm is coupled to the nodding mirror, such that movement of the coil within the yoke in response to a current causes the nodding mirror to rotate. The rotary optical encoder produces an output signal in response to rotation of the nodding mirror, which serves as feedback to the control circuitry. The control circuitry adjusts the current provided to the rotary electromagnetic drive in response to the output signal, such that the nodding mirror rotates in a reference scan pattern.
    • 本发明涉及一种针对激光雷达优化的扫描系统,其包括点头镜,旋转电磁驱动器,旋转光学编码器和控制电路。 旋转电磁驱动器包括一个包含永磁体的磁轭和一个在臂的一端具有线圈的臂。 线圈被包围在轭内,并且臂的相对端联接到点头镜,使得响应于电流使线圈在轭内的运动导致点头镜旋转。 旋转光学编码器响应于点控反射镜的旋转而产生输出信号,其作为对控制电路的反馈。 控制电路响应于输出信号调节提供给旋转电磁驱动器的电流,使得点头镜以参考扫描图案旋转。
    • 9. 发明授权
    • Energy recoverable wheel motor
    • 能量回收轮电机
    • US07624830B1
    • 2009-12-01
    • US11478562
    • 2006-06-30
    • Kevin Williams
    • Kevin Williams
    • B60K6/00B60K8/00B60K1/00
    • B60K6/105B60K6/34B60K7/0007B60K2007/0038B60K2007/0061B60L2220/46Y02T10/6204Y02T10/92
    • A vehicle energy recovery system has an axle, a wheel affixed to the axle so as to rotate with a rotation of the axle, a flywheel assembly mounted in or adjacent to the wheel so as to be rotatable independently of the rotation of the axle, a stator positioned in proximity to the flywheel assembly, a brake disk affixed to the axle and extending radially outwardly therefrom, and an energy transfer system cooperative with the brake disk for transferring energy from the brake disk to the flywheel assembly. A pair of calipers are respectively mounted adjacent opposite sides of the brake disk. The energy transfer system can be an induction stator or rotor positioned adjacent to the brake disk.
    • 车辆能量回收系统具有轴,车轮固定在轴上以便随轴的旋转而旋转,安装在车轮中或与车轮相邻的飞轮组件可独立于轴的旋转而旋转, 定子靠近飞轮组件,固定到轴上并从其径向向外延伸的制动盘,以及与制动盘协作以将能量从制动盘传递到飞轮组件的能量传递系统。 一对卡钳分别安装在制动盘的相对侧。 能量传递系统可以是定位在与制动盘相邻的定子或转子上。
    • 10. 发明申请
    • FIBER OPTIC SENSOR FOR USE ON SUB-SEA PIPELINES
    • 用于海底管道的光纤传感器
    • US20090279583A1
    • 2009-11-12
    • US12306274
    • 2007-06-21
    • Roger HampsonKevin WilliamsAndrew P. Strong
    • Roger HampsonKevin WilliamsAndrew P. Strong
    • G01K3/00
    • G01K1/143F16L2101/30G01K1/14G01K11/32G01K11/3206G02B6/02171
    • A fiber optic sensor assembly for use on a sub-sea pipeline. The fiber optic sensor assembly is coupled to remotely located equipment by fiber optic cable(s) which extend outside of the pipeline. The fiber optic sensor assembly is affixed to a mounting point on the pipeline. The mounting point is a pipe section having an internal conduit and at least one layer that surrounds the internal conduit for protection and insulation of the internal conduit. A segment of the pipe section has a portion of such layer(s) removed or omitted to define an annular recess. When installed, the assembly has two semi-cylindrical halves that are positioned with the annular recess and coupled together to thereby surround and embrace the segment of the pipe section. The assembly houses a length of optical fiber that is coupled to at least one externally accessible fiber optic connector.
    • 用于海底管道的光纤传感器组件。 光纤传感器组件通过在管道外部延伸的光纤电缆耦合到远程设备。 光纤传感器组件固定在管道上的安装点上。 安装点是具有内部管道和至少一个围绕内部管道的层的管道部分,用于内部管道的保护和绝缘。 管段的一部分具有去除或省略这样的层的一部分以限定环形凹部。 当安装时,组件具有两个半圆柱形半部,其与环形凹部定位并联接在一起,从而围绕并包围管段的段。 组件包含耦合到至少一个外部可访问的光纤连接器的长度的光纤。