Abstract:
An electrical connector includes a housing and contact assemblies. The housing includes shroud walls and a base having a front side and a rear side. The front side of the base and the shroud walls define a cavity configured to receive a mating connector. The base is electrically conductive and has chambers extending therethrough that are defined by chamber walls. The contact assemblies are received in the chambers. Each contact assembly has a signal pod surrounded on at least two sides by a ground shield. The signal pod includes a dielectric body holding a pair of signal contacts. The dielectric body engages interior sides of the ground shield to electrically insulate the signal contacts from the ground shield. Exterior sides of the ground shield engage the chamber walls of the base to electrically connect the ground shield to the base.
Abstract:
A connector assembly is configured to provide one or more signal paths between electrical components mounted on at least one component device. The connector assembly may include a printed circuit board (PCB) that supports one or more contacts on a first PCB surface that is opposite from a second PCB surface, a spacer secured over the first PCB surface, wherein at least portions of the one or more contacts are exposed through an opening in the spacer, and a support plate is secured to the second PCB surface. The support plate is configured to mount the connector assembly to a first device surface that is opposite from a second device surface on which at least one electrical component is mounted. The support plate may include fasteners at four corners.
Abstract:
An electrical connector includes a housing and contact assemblies. The housing includes shroud walls and a base having a front side and a rear side. The front side of the base and the shroud walls define a cavity configured to receive a mating connector. The base is electrically conductive and has chambers extending therethrough that are defined by chamber walls. The contact assemblies are received in the chambers. Each contact assembly has a signal pod surrounded on at least two sides by a ground shield. The signal pod includes a dielectric body holding a pair of signal contacts. The dielectric body engages interior sides of the ground shield to electrically insulate the signal contacts from the ground shield. Exterior sides of the ground shield engage the chamber walls of the base to electrically connect the ground shield to the base.
Abstract:
Cable connector including a connector body extending along a longitudinal axis between a mating side and a loading side of the connector body. The connector body is oriented with respect to a mating axis that is perpendicular to the longitudinal axis. The cable connector also includes electrical conductors having body segments that extend through the connector body between the mating and loading sides and contact beams that project from the mating side. The contact beams have mating interfaces that are configured to directly engage corresponding electrical contacts of a mating component during a mating operation. The contact beams are shaped to extend along the longitudinal axis away from the mating side and along the mating axis such that the mating interfaces form a two-dimensional (2D) array that is oriented substantially perpendicular to the mating axis.
Abstract:
Cable connector including a connector body extending along a longitudinal axis between a mating side and a loading side of the connector body. The connector body is oriented with respect to a mating axis that is perpendicular to the longitudinal axis. The cable connector also includes electrical conductors having body segments that extend through the connector body between the mating and loading sides and contact beams that project from the mating side. The contact beams have mating interfaces that are configured to directly engage corresponding electrical contacts of a mating component during a mating operation. The contact beams are shaped to extend along the longitudinal axis away from the mating side and along the mating axis such that the mating interfaces form a two-dimensional (2D) array that is oriented substantially perpendicular to the mating axis.
Abstract:
An electrical connector that includes a housing configured to be coupled to a mating connector. The connector has signal contacts held in signal contact openings. The signal contacts are arranged in arrays of quad groups. Each of the quad group has a set of four contacts arranged in row pairs and column pairs. The signal contacts of each quad group are configured to carry relational signals with each other signal contact in the quad group. Each signal contact is configured to electrically couple to a signal contact of the mating connector. The connector also includes ground shields held in corresponding ground shield openings. The ground shields have walls surrounding a corresponding quad group of signal contacts and provides electrical shielding from adjacent quad groups of signal contacts. The ground shields have mating ends for mating with corresponding ground contacts of the mating connector.
Abstract:
An electrical connector that includes a housing configured to be coupled to a mating connector. The connector has signal contacts held in signal contact openings. The signal contacts are arranged in arrays of quad groups. Each of the quad group has a set of four contacts arranged in row pairs and column pairs. The signal contacts of each quad group are configured to carry relational signals with each other signal contact in the quad group. Each signal contact is configured to electrically couple to a signal contact of the mating connector. The connector also includes ground shields held in corresponding ground shield openings. The ground shields have walls surrounding a corresponding quad group of signal contacts and provides electrical shielding from adjacent quad groups of signal contacts. The ground shields have mating ends for mating with corresponding ground contacts of the mating connector.
Abstract:
A cable backplane system includes a backplane having a plurality of openings therethrough. A cable rack is coupled to a rear of the backplane, which includes a tray and spacers coupled to the tray that have guide pins. Cable connector assemblies are held by the tray. Removable dust caps are coupled to corresponding cable connectors each having a distal end and guide walls extending therefrom that guide mating of the cable rack with the backplane. The distal end of each dust cap is received in a corresponding opening in the backplane. The guide walls guide the cable rack relative to the backplane such that the guide pins of the spacers are aligned with guide holes of the backplane and such that the cable connectors are aligned with the openings of the backplane. The removable dust caps are removed after the cable rack is coupled to the backplane.
Abstract:
A cable backplane system includes a backplane having a plurality of openings extending between a front and a rear of the backplane. The backplane has mounting locations proximate the openings. Mounting blocks are coupled to the front of the backplane at corresponding mounting locations. The mounting blocks are secured to the backplane by fasteners. A cable rack is coupled to the rear of the backplane and has a tray with a frame surrounding a raceway and spacers coupled to the tray. The spacers hold corresponding cable connectors and are secured to corresponding mounting blocks to position the spacers and cable connector assemblies relative to the backplane. The cable connectors are received in corresponding openings in the backplane and are held in position relative to the backplane by the spacers and mounting blocks.
Abstract:
A cable backplane system includes a backplane having a plurality of openings therethrough and a cable rack coupled to a rear of the backplane. The cable rack includes a tray having a frame surrounding a raceway and a brick held by the tray. The brick has side spacers at opposite sides of the brick and plates coupled to the side spacers that support a plurality of cable connector assemblies. Each cable connector assembly is positioned between and supported by corresponding plates on opposite sides of the cable connectors with the cable connectors positioned in corresponding openings in the backplane. The plates each include a hem folded over at a rear of the plate. The hem has an edge positioned rearward of the cable connectors and supporting the cable connectors from retreating from the openings in the backplane.