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    • 1. 发明授权
    • Cable routing clamp and method of application
    • 电缆布线夹和应用方法
    • US06443403B1
    • 2002-09-03
    • US09659660
    • 2000-09-11
    • Barry O. PageKevin L. NelsonVictor D. Potter
    • Barry O. PageKevin L. NelsonVictor D. Potter
    • F16B1500
    • F16L3/1233H02G3/32Y10T24/1498
    • A routing clamp for routing a bundle of elongated members along a mounting surface having an aperture therein. The clamp includes a bundling portion for bundling the elongated members, the bundling portion having a first end and a second end, a first receiving portion extending from the first end of the bundling portion, the first receiving portion including a first receiving aperture therethrough, a second receiving portion extending from the second end of the bundling portion, the second receiving portion including a second receiving aperture therethrough alignable with the first receiving aperture, a rivet portion extending generally perpendicularly from the second receiving portion, the rivet portion being configured to be received in the mounting surface aperture and retained therein such that the second receiving portion is generally flush with the mounting surface, the rivet portion including a rivet aperture aligned with the second receiving aperture, and a retention portion including a resiliently deformable resistance member, the clamp being mountable along the mounting surface by inserting the retention portion through the alignable first, second and rivet apertures, the deformable resistance member compressibly deforming as it travels through the apertures before resiliently expanding upon exiting the rivet aperture.
    • 用于沿着其中具有孔的安装表面布置一束细长构件的布线夹具。 夹具包括用于捆扎细长构件的捆扎部分,捆扎部分具有第一端和第二端,从捆扎部分的第一端延伸的第一接收部分,第一接收部分包括穿过其的第一接收孔, 所述第二接收部分从所述捆扎部分的第二端延伸,所述第二接收部分包括穿过所述第一接收孔对准的第二接收孔,大致垂直于所述第二接收部分延伸的铆钉部分,所述铆钉部分被配置为被接收 在所述安装表面孔中并保持在其中,使得所述第二接收部分大体上与所述安装表面齐平,所述铆钉部分包括与所述第二接收孔对准的铆钉孔,以及包括可弹性变形的阻挡构件的保持部, 通过安装在安装面上 通过可对准的第一,第二和铆钉孔消除保持部分,可变形的阻力构件在离开铆钉孔时弹性膨胀之前可穿过孔径时可压缩地变形。
    • 6. 发明授权
    • Sealing assembly
    • 密封组件
    • US07871079B2
    • 2011-01-18
    • US11931959
    • 2007-10-31
    • Joseph Allen DukesKevin L NelsonRhonda Johnson
    • Joseph Allen DukesKevin L NelsonRhonda Johnson
    • F16L17/06F16J3/00H01B7/29
    • H02G3/22Y10T16/063
    • A sealing assembly having a flexible sleeve and a means for sealing a top portion of the sleeve around a plurality of cables, such as by a hook and loop type fastener attached at the top portion of the sleeve. The sleeve is configured to receive at least one cable therethrough and a bottom portion of the sleeve is configured to be secured to a surface. The sleeve can also be electrically conductive such that the sleeve dissipates static electricity from the cable to the surface. The sealing assembly can also have a grommet positioned adjacent the bottom portion of the sleeve. The grommet has a first wall having a plurality of apertures for connecting the grommet to a surface and a second wall that extends substantially perpendicular to the first wall and is configured to extend through an aperture in the surface. The second wall is flexible to protect the cable from sharp edges associated with the aperture in the surface.
    • 具有柔性套筒的密封组件和用于密封套筒的顶部围绕多个电缆的装置,例如通过附接在套筒顶部的钩环式紧固件。 套筒构造成容纳穿过其中的至少一个电缆,并且套筒的底部部分被配置成固定到表面。 套筒也可以是导电的,使得套管将静电从电缆释放到表面。 密封组件还可以具有邻近套筒的底部定位的护环。 索环具有第一壁,其具有用于将索环连接到表面的多个孔和基本上垂直于第一壁延伸的第二壁,并且构造成延伸穿过表面中的孔。 第二壁是柔性的,以保护电缆免受与表面中的孔相关联的尖锐边缘。
    • 7. 发明授权
    • Modular bend radius control fixture
    • 模块化弯曲半径控制夹具
    • US06586680B1
    • 2003-07-01
    • US09585416
    • 2000-06-02
    • Kevin L. Nelson
    • Kevin L. Nelson
    • H02G308
    • G02B6/4478G02B6/4459H02G3/045
    • A reconfigurable modular bend radius control fixture system allows for customization of bend module sections to achieve a variety of configurations with only a minimal number of different parts. The system includes at least one main section having a curved surface with a predetermined radius that provides a first bend radius control surface and side walls, at least one straight side plate section removably mountable to the side walls of the main section, the side plate section having a side wall that extends beyond the curved surface when mounted, and at least one bend radius control side plate removably mountable to the side walls of the main section. The bend radius control side plate section forms a second bend radius control surface. These sections can be mounted in various configurations to form a bend radius control fixture that can be mounted to a mount member of a cable management system, such as a ladder rack. The fixture is particularly suited for assisting management of sensitive cabling, such as fiber optic cabling or category 5 and 6 cabling.
    • 可重构模块化弯曲半径控制夹具系统允许定制弯曲模块部分,以实现仅具有最少数量的不同部件的各种配置。 该系统包括具有预定半径的弯曲表面的至少一个主要部分,其提供第一弯曲半径控制表面和侧壁,至少一个可拆卸地安装到主要部分的侧壁的直边板部分,侧板部分 具有在安装时延伸超过弯曲表面的侧壁,以及至少一个可拆卸地安装到主要部分侧壁的弯曲半径控制侧板。 弯曲半径控制侧板部形成第二弯曲半径控制面。 这些部分可以以各种构造安装以形成弯曲半径控制夹具,其可安装到诸如梯架的电缆管理系统的安装构件。 该灯具特别适用于协助灵敏布线的管理,如光纤布线或5类和6类布线。
    • 8. 发明授权
    • Circuit for overriding the cripple mode so that the relay remains latched
    • 用于覆盖跛行模式的电路,以使继电器保持锁定
    • US5418679A
    • 1995-05-23
    • US43329
    • 1993-04-06
    • Burke J. CraneGarth S. JonesKevin L. Nelson
    • Burke J. CraneGarth S. JonesKevin L. Nelson
    • H01R13/703H02H3/12H02J13/00H02P7/00
    • H02J13/0079H02H3/12H02J13/0058H01H2300/03H01R13/7038Y02B70/3241Y02B90/224Y02B90/226Y04S20/14Y04S20/16Y04S20/227
    • A plug presence sensor comprises an LED and a light sensor in the form of a photo-transistor which senses presence of a plug in a receptacle. The sensor is monitored by a microcontroller to control latching of a relay. The microcontroller de-energizes the relay, so that no power is present at the receptacle, when no plug is inserted. When the plug is inserted, then the microcontroller causes the relay to be energized to provide power to the receptacle. The microcontroller is preprogrammed to communicate with a remote master controller. In the event that a loss of communication occurs between the microcontroller and the master controller, the microcontroller automatically de-energizes the relay so that no power is present at the receptacle. A communication error output signal is connected to an override circuit including a capacitor which differentiates an edge of the communication error signal to inject a pulse onto the plug presence sensor signal which simulates removal and reinsertion of the plug. As such, the override circuit fools the microcontroller into thinking that a plug was removed and then inserted so that the relay remains energized to power the outlet receptacle.
    • 插头存在传感器包括LED和光电晶体管形式的光传感器,其感测插头在插座中的存在。 传感器由微控制器监控以控制继电器的锁存。 微控制器使继电器断电,当插头没有插头时,插座上没有电源。 当插头插入时,微控制器使继电器通电以向插座供电。 微控制器被预编程以与远程主控制器进行通信。 在微控制器和主控制器之间发生通信损失的情况下,微控制器自动断开继电器的电源,使得插座上没有电源。 通信错误输出信号连接到包括电容器的超控电路,该电容器区分通信误差信号的边沿以将脉冲注入到模拟插头的去除和重新插入的插头存在传感器信号上。 因此,超控电路愚弄微控制器,认为插头被移除然后被插入,使得继电器保持通电以为插座提供动力。