Abstract:
A cable protective shield assembly is provided for managing the position of computer cables. The assembly includes a base plate having a number of spacers formed on one surface, a cover plate having a number of bores extending through the plate at locations designated in alignment with the spacers of the base plate, and a corresponding number of fasteners for insertion through the bores of the cover plate into the spacers of the base plate to rigidly couple the plates together. The height of the spacers create a standoff distance between the base plate and cover plate defining a space for computer cables to extend. The spacers are also positioned across the base plate surface as to create specific passageways for the cables to be located. One or more ports can be placed along the perimeter of the cover plate to allow access to cable connectors while generally maintaining the organized position of the cables. The assembly shields the cables from electromagnetic energy and filters noise superimposed on the cables by electromagnetic energy present in the chassis.
Abstract:
A method and apparatus for centering an optical component, such as a lens element, within an optical bore sleeve. The optical component has an outer perimeter, and the optical bore sleeve has an inner perimeter for receiving the outer perimeter of the optical component. A plurality of deformable ridges are interposed between the outer perimeter of the optical component and the inner perimeter of the sleeve for aligning the optical component and the sleeve along a common optical axis as the ridges are deformed upon insertion of the optical component into the sleeve.
Abstract:
An apparatus is provided for storing and accessing a cable within a chassis. The apparatus comprises a filler drive drawer having a base shelf, an upper biasing arm disposed on the base shelf and a pair of resilient raised arm members positioned on the base shelf laterally on opposite sides of the upper biasing arm. The upper biasing arm has a flange that extends upward from the base shelf and a cantilever member extending therefrom. The cantilever member extends at least partially downward to provide an upper contact surface for a cable connector positioned below the upper biasing arm. The upper biasing arm and pair of resilient arm members are cooperatively arranged to releasably engage the cable connector within the filler drive drawer. The drawer can easily be slid into or out of the chassis to access the cable connector.
Abstract:
A contact image sensor includes a light sensitive optical detector and a light source mounted on a mounting surface. A light guide is located under the light source and is oriented to direct a light path from the light source to a scan line region under the light sensitive optical detector.
Abstract:
A smart charger that includes a housing with an interface for power and data transmission and adapted for connection to a communication device, with a second interface adapted for connection to a power source, and with a third interface adapted for connection to a second communication device. A charger within the housing is connected to the second interface to receive power, and connected to the first interface to provide charging power. A control module within the housing provides for communication between the first interface and the third interface.
Abstract:
A first unit comprises a projection having a first planar portion and a second planar portion, which intersect at an angle. The projection is an extension of the first unit, has a linear axis, and is perpendicular to a base end of the first unit. A second unit comprises a mounting face and a receptacle. The receptacle has a shape for receiving and holding the projection. The base end is aligned with the mounting face by inserting the projection into the receptacle. The receptacle engages the first planar portion and the second planar portion, thereby preventing rotation of the projection, the first unit and the second unit about the linear axis.