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    • 4. 发明授权
    • Over-running clutch pulley with coating material
    • 过载离合器皮带轮与涂层材料
    • US07052420B2
    • 2006-05-30
    • US10381764
    • 2001-05-31
    • Randall KingMary-Jo Liston
    • Randall KingMary-Jo Liston
    • F16D41/20
    • F16H55/36F16D41/20
    • The over-running clutch pulley (10) includes a sheave member (20), a hub member (22) a clutch member (24), and a coating (26), which cooperate to rotationally engage an input device (12) and an output device (14). The sheave member (20) preferably includes a sheave input section (28) defining a sheave input surface (30) adapted to engage the input device (12), and a sheave clutch section (32) defining a sheave clutch surface (34). Similarly, the hub member (22) preferably includes a hub output section (36) defining a hub output surface (38) adapted to engage the output device (14), and a hub clutch section (40) defining a hub clutch surface (42). The coating (26) is disposed on the sheave input surface (30), the sheave clutch surface (34), the hub output surface (38), and the hub clutch surface (42), which protects against substantial corrosion and increases the wear resistance of these surfaces, while minimizing the cost of the over-running clutch pulley (10).
    • 超跑离合器滑轮(10)包括滑轮构件(20),轮毂构件(22),离合器构件(24)和涂层(26),其协作以旋转地接合输入装置(12)和 输出装置(14)。 滑轮构件(20)优选地包括滑轮输入部分(28),其限定适于接合输入装置(12)的滑轮输入表面(30)和限定滑轮离合器表面(34)的滑轮离合器部分(32)。 类似地,毂构件(22)优选地包括限定适于接合输出装置(14)的轮毂输出表面(38)的轮毂输出部分(36)和限定轮毂离合器表面(42)的轮毂离合器部分(40) )。 涂层(26)设置在滑轮输入表面(30),滑轮离合器表面(34),轮毂输出表面(38)和轮毂离合器表面(42)上,防止实质腐蚀并增加磨损 同时使过载离合器滑轮(10)的成本最小化。
    • 5. 发明授权
    • Over-running clutch pulley with clutch and bearing lubricant
    • 带离合器和轴承润滑剂的超行走离合器皮带轮
    • US06923303B2
    • 2005-08-02
    • US10381775
    • 2001-05-31
    • Mary-Jo ListonJohn MillerRandall King
    • Mary-Jo ListonJohn MillerRandall King
    • F16D41/06F16D41/20
    • F16D41/06
    • The over-running clutch pulley of a preferred embodiment of the invention includes a sheave member (20), a hub member (22) located substantially concentrically within the sheave member, a clutch member (24), a clutch lubricant (26) located near the clutch member, a bearing member (28) located between the sheave member and the hub member, and a bearing lubricant (30) located near the bearing member, which cooperate to rotationally engage an input device (12) and an output device (14). The sheave member preferably includes a sheave input section (32) adapted to engage the input device, and a sheave clutch section (34) defining a sheave clutch surface (36). Similarly, the hub member preferably includes a hub output section (38) adapted to engage the output device, and a hub clutch section (40) defining a hub clutch surface (42). The clutch lubricant (26) and the bearing lubricant (30) preferably include a base material selected from the group comprising ether, esther, and mineral oil.
    • 本发明的优选实施例的超行走离合器滑轮包括滑轮构件(20),大致同心地位于滑轮构件内的轮毂构件(22),离合器构件(24),离合器润滑剂(26) 离合器构件,位于滑轮构件和轮毂构件之间的轴承构件(28)和位于轴承构件附近的轴承润滑剂(30),其协作以旋转地接合输入装置(12)和输出装置(14) )。 滑轮构件优选地包括适于接合输入装置的滑轮输入部分(32)和限定滑轮离合器表面(36)的滑轮离合器部分(34)。 类似地,轮毂构件优选地包括适于接合输出装置的轮毂输出部分(38)和限定轮毂离合器表面(42)的轮毂离合器部分(40)。 离合器润滑剂(26)和轴承润滑剂(30)优选包括选自醚,石榴石和矿物油的基料。
    • 6. 发明授权
    • Polarization-independent optical sampling with extended wavelength range
    • 具有扩展波长范围的偏振无关光学采样
    • US06898000B2
    • 2005-05-24
    • US09935824
    • 2001-08-22
    • Roger L. JungermanRandall KingGregory Steven Lee
    • Roger L. JungermanRandall KingGregory Steven Lee
    • G01J11/00G02F1/37H04B10/00H04B10/22G02B27/28
    • G01J11/00
    • A nonpolarization-dependent method and apparatus for optical sampling of a user optical signal of a known frequency range (e.g., corresponding to 1550 nm wavelength) uses a probe signal in an unsplit form and applies a conversion {e.g., by sum frequency generation (SFG)} operation in a first stage to the probe signal and to a first polarization component of the user optical signal (e.g., ‘s’ component) to produce a first component of an output signal. In a second stage, a second polarization component of the user optical signal (e.g., ‘p’ component) is rotated by 90° to align with the first polarization component and then converted by mixing with the unsplit probe signal to produce a second component of an output signal. The first and second output component signals are both added and measured using a photomultiplier tube (PMT) or an avalanche diode.
    • 用于对已知频率范围(例如,对应于1550nm波长)的用户光学信号进行光学采样的非偏振相关方法和装置使用非分裂形式的探测信号并施加转换(例如,通过和频产生(SFG )}操作到探测信号和用户光信号的第一偏振分量(例如,'s'分量),以产生输出信号的第一分量。 在第二阶段中,将用户光信号(例如,“p”分量)的第二偏振分量旋转90°以与第一偏振分量对准,然后通过与非剖分探头信号混合而转换,以产生第 输出信号。 使用光电倍增管(PMT)或雪崩二极管来添加和测量第一和第二输出分量信号。
    • 7. 发明授权
    • Two belt over-running clutch pulley
    • 两个皮带超跑离合器皮带轮
    • US5827143A
    • 1998-10-27
    • US869199
    • 1997-06-04
    • Russell E. MonahanJonathan M. AdlerRandall KingScott A. Wojan
    • Russell E. MonahanJonathan M. AdlerRandall KingScott A. Wojan
    • F02B67/06F16D41/06F16H7/02F16H9/04F16H9/06F16H55/36F16H9/00
    • F16H9/04F02B67/06F16D41/06
    • A variable speed drive device for mounting to a rotatable shaft and being driven by first and second belts. The device includes a first pulley of a first diameter and a second pulley of a second diameter, each engaging one of the belts. The first pulley mounts directly to the shaft via a mounting hub extending laterally therefrom. The second pulley is positioned radially outward of the hub and a bearing is located between the two. Also located between the two is a clutch mechanism that engages when the second pulley tries to rotates faster than the first pulley. In this manner, the first pulley drives the shaft at a first speed when the first pulley is rotating faster than the second pulley and the second pulley drives the shaft at a second speed when the second pulley is trying to rotate faster than the first pulley.
    • 一种用于安装到可旋转轴并由第一和第二带驱动的变速驱动装置。 该装置包括第一直径的第一滑轮和第二直径的第二滑轮,每个啮合一个皮带。 第一滑轮通过从其横向延伸的安装毂直接安装到轴上。 第二滑轮位于轮毂的径向外侧,轴承位于两者之间。 位于两者之间的是离合器机构,当第二滑轮试图比第一滑轮更快地转动时,该离合器机构接合。 以这种方式,当第一滑轮比第二滑轮旋转得更快时,第一滑轮以第一速度驱动轴,并且当第二滑轮试图比第一滑轮更快地旋转时,第二滑轮以第二速度驱动轴。
    • 9. 发明授权
    • Solar monitor for solar device
    • 太阳能监控器太阳能设备
    • US08610425B2
    • 2013-12-17
    • US12799951
    • 2010-05-04
    • Roger L JungermanRandall King
    • Roger L JungermanRandall King
    • G01R1/20
    • G01R31/2605H02S50/10
    • A solar monitor measures electrical characteristics of a designated solar device within an array of solar devices that are coupled in series. The solar monitor includes a charge storage element and a charger coupled to the charge storage element to establish a positive voltage and/or a negative voltage on the charge storage element. A switch within the solar monitor is coupled in a shunt configuration with the designated solar device and with a subsequent device in the array. The switch selectively couples the charge storage element to the designated solar device to vary an operating current that flows between the designated solar device and the subsequent solar device. The solar monitor includes a current detector to measure the current of the designated solar device, and a voltage detector to measure the voltage of the designated solar device.
    • 太阳能监视器测量串联耦合的太阳能装置阵列内的指定太阳能装置的电特性。 太阳能监视器包括电荷存储元件和耦合到电荷存储元件的充电器,以在电荷存储元件上建立正电压和/或负电压。 太阳能监视器内的开关以分配配置与指定的太阳能装置耦合,并且具有阵列中的后续装置。 开关选择性地将电荷存储元件耦合到指定的太阳能装置以改变在指定的太阳能装置和随后的太阳能装置之间流动的工作电流。 太阳能监视器包括用于测量指定的太阳能装置的电流的电流检测器和用于测量指定的太阳能装置的电压的电压检测器。
    • 10. 发明申请
    • Solar monitor for solar device
    • 太阳能监控器太阳能设备
    • US20110273163A1
    • 2011-11-10
    • US12799951
    • 2010-05-04
    • Roger L. JungermanRandall King
    • Roger L. JungermanRandall King
    • G01R1/20
    • G01R31/2605H02S50/10
    • A solar monitor measures electrical characteristics of a designated solar device within an array of solar devices that are coupled in series. The solar monitor includes a charge storage element and a charger coupled to the charge storage element to establish a positive voltage and/or a negative voltage on the charge storage element. A switch within the solar monitor is coupled in a shunt configuration with the designated solar device and with a subsequent device in the array. The switch selectively couples the charge storage element to the designated solar device to vary an operating current that flows between the designated solar device and the subsequent solar device. The solar monitor includes a current detector to measure the current of the designated solar device, and a voltage detector to measure the voltage of the designated solar device.
    • 太阳能监视器测量串联耦合的太阳能装置阵列内的指定太阳能装置的电特性。 太阳能监视器包括电荷存储元件和耦合到电荷存储元件的充电器,以在电荷存储元件上建立正电压和/或负电压。 太阳能监视器内的开关以分配配置与指定的太阳能装置耦合,并且具有阵列中的后续装置。 开关选择性地将电荷存储元件耦合到指定的太阳能装置以改变在指定的太阳能装置和随后的太阳能装置之间流动的工作电流。 太阳能监视器包括用于测量指定的太阳能装置的电流的电流检测器和用于测量指定的太阳能装置的电压的电压检测器。