Abstract:
A modular communications plug is disclosed having a simplified design that allows for more efficient termination of a cable into the plug. The plug includes modular components that are applicable to different applications.
Abstract:
A tool (100) for testing the termination of optical connectors (156) has a housing, a cradle (112) attached to the housing, and a cover (195) removeably attached to the cradle. The cradle (112) is configured to restrain a fiber optic connector (156) and the cover (195) is configured to at least partially block ambient light from reaching the fiber optic connector. In another embodiment, a tool for testing the termination of optical connectors has a housing, a cradle attached to the housing, a launch fiber, and a ferrule adapter. The ferrule adapter is connected such that it rotates about a pivot point on the cradle.
Abstract:
Embodiments of the present invention relate to designs for network jacks which can be used for cable connectivity. In an embodiment, the present invention is an RJ45 jack that utilizes a thin dielectric film between two layers of PICs that provide crosstalk compensation by way of their geometry. Compensation is achieved by way of capacitor plates which sandwich a thin dielectric film. This allows for the layers of PICs to be in close proximity and achieve higher coupling where desired, allowing a greater amount of compensation to occur close to the plug/jack contact point. This can have the effect of moving compensation closer to the plug/jack contact point, which in turn may reduce the amount of compensation needed further along the data path.
Abstract:
Certain embodiments of the present invention provide an RJ45 jack that has a self-closing shutter door and allows for RJ45 plug insertion in one linear motion, but which incorporates a free contact plug stop on the shutter door and a door catch feature that aids in the retention of the door in the housing when a plug is subjected to a pull out force while latched into the jack.
Abstract:
An electrical coupler has first and second housing halves and first and second contacts retained within the first and second housing halves. Wherein the first housing half is identical to the second housing half and the first contact is identical to the second contact.
Abstract:
A communications connector has a main plug assembly and a wire cap that is configured to terminate a pair of conductors to the pair of contacts by being secured to a side of the main plug assembly in a direction perpendicular to a plane defined by a deflection direction of a latch of the connector. In another embodiment, a communications connector has a main plug assembly and two electrical contacts within the main plug assembly wherein each electrical contact has a first end having a forked receptacle and a second end having an IDC that is configured to have a conductor terminated in a direction perpendicular to a direction of mating insertion and parallel to a plane defined by the contact.
Abstract:
A frame for a cabinet is provided. The frame includes a side-to-side beam, a front-to-back beam connected to the side-to-side beam, and a vertical post connected to the side-to-side beam. The front-to-back beam is inset relative to the vertical post to form a cable-routing area along a side of the frame.
Abstract:
A frame for a cabinet is provided. The frame includes a side-to-side beam, a front-to-back beam connected to the side-to-side beam, and a vertical post connected to the side-to-side beam. The front-to-back beam is inset relative to the vertical post to form a cable-routing area along a side of the frame.