Abstract:
A connector assembly includes a housing and contacts. The housing is configured to mate with a mating connector. The contacts are in the housing and configured to electrically connect the connector assembly with the mating connector. The contacts are arranged in a coaxial signal contact pattern. The coaxial signal contact pattern includes a center signal contact surrounded by contacts electrically connected to an electrical ground in a manner to emulate a coaxial connection with the mating connector.
Abstract:
A receptacle connector includes a housing and a receptacle contact. The housing includes a cavity extending through the housing from the mating side to the mounting side. The receptacle contact is disposed within the cavity and is configured to receive a mating contact of the mating connector. The receptacle contact includes elongated shafts disposed on opposite sides of a longitudinal axis and mating tips coupled to the shafts. The mating tips have tapered shapes between the shafts and outer ends of the mating tips. The tapered shapes are wider than the shafts in a lateral direction that is transverse to the longitudinal axis. The receptacle contact is configured to receive a mating contact of a mating connector between the mating tips to electrically couple the mating connector with the receptacle connector.
Abstract:
A connector assembly includes a housing and substantially identical contacts. The housing is configured to mate with a mating connector. The contacts are arranged in a plurality of sets in the housing. The contacts are configured to electrically couple with the mating connector. Each set of contacts is arranged to communicate a different type of data signal with the mating connector. Optionally the contacts are formed as substantially identical pins. The different sets of contacts may concurrently communicate the different types of data signals.
Abstract:
An electrical connector for mating with a complementary connector receptacle is provided and includes a housing configured and adapted for selective matable connection with a corresponding complementary connector receptacle; a pair of latch arms provided on opposite sides of the housing; and a pair of latch guards extending from the sides of the housing and overlying at least a portion of a respective latch arm. Each latch arm includes a hinge joint spaced a selected distance rearwardly from a forward end thereof for joining the latch arm to a respective side of the housing. Accordingly, as a latch arm is twisted about the hinge joint, at least a portion of the latch arm abuts against the respective latch guard and additional twisting of the latch arm about the hinge joint is prevented.
Abstract:
An electrical connector assembly includes a connector housing holding a plurality of electrical contacts and a backshell including a backshell housing having a connector receiving end and a cable exit end. The connector housing is coupled to the connector receiving end of the backshell housing. A plurality of organizing elements are within the backshell housing. The organizing elements are arranged in a transverse row within the backshell housing. The organizing elements are configured to receive and support a plurality of electrical cables arranged in first and second transverse rows. The first and second rows are in a tiered relationship with one another and the electrical cables are transversely offset from one another.
Abstract:
A socket is provided for an electronic package. The socket includes a cover and base that are slidably joined with one another. An actuator drives the cover and base between open and closed positions or states as the actuator is rotated through a range of motion between open and closed positions, respectively. The socket further includes a socket state indicator provided on the base and located proximate one of the actuator and the cover. The socket state indicator is positioned, such that a relative spacing between the socket state indicator and one of the actuator and cover indicates when the cover and base are in the open state. The socket state indicator may include a ramped detent provided within the actuator's range of motion. Alternatively, the socket state indicator may include posts formed on the base. The cover moves relative to the posts as the state of the socket changes. Alternatively, an interference member may be provided on the actuator to block the loading area above a pin hole pattern in the cover when the socket is not fully open.
Abstract:
A zero insertion force socket includes a cover which is movable along a longitudinal axis relative to a base housing. An actuation member is mounted for rotation about a rotation axis that is parallel to the longitudinal axis. The actuation member is operably connected for moving the cover along the longitudinal axis when the actuation member is rotated about the rotation axis. The actuation member may include a leg that extends along the rotation axis, and a handle that extends perpendicular to the leg. The leg includes at least one thread that is received in a recess in the cover.
Abstract:
A zero insertion force socket includes a cover which is movable along a longitudinal axis relative to a base housing. An actuation member is mounted for rotation about a rotation axis that is parallel to the longitudinal axis. The actuation member is operably connected for moving the cover along the longitudinal axis when the actuation member is rotated about the rotation axis. The actuation member may include a leg that extends along the rotation axis, and a handle that extends perpendicular to the leg. The leg includes at least one thread that is received in a recess in the cover.
Abstract:
A connector assembly includes a housing and substantially identical contacts. The housing is configured to mate with a mating connector. The contacts are arranged in a plurality of sets in the housing. The contacts are configured to electrically couple with the mating connector. Each set of contacts is arranged to communicate a different type of data signal with the mating connector. Optionally, the contacts are formed as substantially identical pins. The different sets of contacts may concurrently communicate the different types of data signals.
Abstract:
A connector assembly includes a housing, a signal contact and a power contact. The housing has a mounting body and a mating body coupled together and separated by a gap. The gap permits air to flow between the lower and mating bodies. The mating body is configured to engage an upper substrate and the mounting body is configured to engage a lower substrate to mechanically interconnect the upper and lower substrates. The signal contact extends between and protrudes from the mating and mounting bodies and is configured to communicate a data signal between the mating and mounting bodies. The power contact extends between and protrudes from the mating and mounting bodies and is configured to communicate electrical power between the upper and lower substrates. The housing separates the upper and lower substrates by a predetermined stack height.