Abstract:
A cable assembly including first and second header connectors. The first header connector has mating and loading sides and includes electrical contacts. The mating side is configured to mate with a first module connector. The second header connector has mating and loading sides and includes electrical contacts. The mating side of the second header connector is configured to mate with a second module connector. The cable assembly also has a cable bundle including communication cables that extend between the loading sides of the first and second header connectors and that connect the electrical contacts of the first and second header connectors. The cables are substantially twist-free between the first and second header connectors when the first and second header connectors face in substantially opposite directions and the first and second module connectors have an orthogonal relationship.
Abstract:
A communication module including a circuit board having leading and trailing ends and a module axis extending therebetween. The communication module also includes a support wall that is coupled to the circuit board proximate to the leading end. The support wall extends transverse to the module axis and has a wall opening. The communication module also includes an electrical connector that is held by the support wall within the wall opening and has a mating face. The communication module also includes a board interconnect coupled to the circuit board. The communication module also includes a flex cable assembly that is coupled at one end to the array of electrical contacts and at an opposite end to the board interconnect. The electrical connector is permitted to float within the wall opening relative to the support wall.
Abstract:
An electrical connector assembly including a printed circuit board that has base and cover layers of dielectric material and first and second ground planes of conductive material. The base and cover layers are stacked relative to each other and located between the first and second ground planes. The base layer has a conductor-receiving portion that extends beyond the cover layer. The circuit board also includes signal traces that are exposed to an open space that exists above the conductor-receiving portion. The connector assembly also includes a compression component that is configured to be positioned in the open space to press wire-terminating ends of signal conductors onto the signal traces at the conductor-receiving portion.
Abstract:
A communication module including a circuit board having leading and trailing ends and a module axis extending therebetween. The communication module also includes a support wall that is coupled to the circuit board proximate to the leading end. The support wall extends transverse to the module axis and has a wall opening. The communication module also includes an electrical connector that is held by the support wall within the wall opening and has a mating face. The communication module also includes a board interconnect coupled to the circuit board. The communication module also includes a flex cable assembly that is coupled at one end to the array of electrical contacts and at an opposite end to the board interconnect. The electrical connector is permitted to float within the wall opening relative to the support wall.
Abstract:
In one embodiment, a compliant contactor is provided which includes a center conductor and an outer conductor with a spacer therebetween. The outer conductor has a mating end adapted to be capable of flexibly contacting an outer conductor mating surface prior to the center conductor contacting a center conductor mating surface.
Abstract:
In one embodiment, a tester interface module for connecting a plurality of signal paths from at least one electronic assembly to at least one other electronic assembly is provided. The interface module includes a capture board having center conductor vias with center conductor holes extending through the capture board. Axial cables secured to the capture board have center conductors extending at least part way through a corresponding center conductor hole of the center conductor via. An interface component is adjacent to the capture board, the conductor paths being conductively bonded to the conductor vias of the capture board so as to electrically connect center conductors to corresponding conductor paths. The conductor paths of the interface component are arranged to allow connection with an electronic assembly.
Abstract:
A coaxial cable for transmitting high frequency signals includes includes a body having a center conductor and a shield formed coaxially around the center conductor and separated from the center conductor by a layer of dielectric having an annular layer of electro-static-discharge polymer. The cable also includes conductive pads to engage contacts on a mating connector. At least one of the conductive pads is attached to the center conductor and at least another one of the conductive pads is attached to the shield.
Abstract:
In one embodiment a high power interface apparatus is provided having a multilayer laminated cable including force conductor planes having flush and recessed portions and return conductor planes having flush and recessed portions. The flush portions of the conductor planes extend to a contact end of the laminated cable and the recessed portions are removed from the contact end. The flush portions are aligned along axes at the contact end. The flush portions of the return conductor planes are aligned at the contact end along axes aligned within recessed portions of the force conductor planes. A dielectric material separates the force and return conductor planes. Surface contact pads may be provided on the contact end including force contact pads, each contacting and extending along aligned flush portions of the force conductor planes, and including return conductor pads, each contacting and extending along aligned flush portions of the return conductor planes. The contact pads may be formed by plating the end, and then scoring. The multilayer laminate cable can be formed with a rigid portion near the contact end and a flexible portion between the cable ends. In some embodiments the force and return conductor planes of the flexible portion extend to the ends of the cable while the rigid portion can be formed with additional force and return conductor planes. Through vias may be included at the rigid portion to electrically couple the force conductor planes together and to electrically coupling the return conductor planes together.