Abstract:
A layered connector includes a transmission unit having a supporting dielectric cell and an exposing dielectric cell. The supporting dielectric cell has a first surface supporting a signal conductor extending to a mating end of the supporting dielectric cell. The exposing dielectric cell is laminated to the first surface such that the signal conductor is positioned between the supporting dielectric cell and the exposing dielectric cell. The exposing dielectric cell is positioned on the first surface such that a portion of the first surface at the mating end and a portion of the signal conductor is exposed for direct electrical connection of the signal conductor to a mating component.
Abstract:
A connector assembly includes a center contact configured to be terminated to a center conductor of a cable. A dielectric holds the center contact. A stamped and formed outer contact surrounds the dielectric and the center contact. The outer contact is configured to be terminated to a braid of the cable. A stamped and formed outer ferrule surrounds at least a portion of the outer contact such that the braid is sandwiched between the outer ferrule and the outer contact.
Abstract:
A coaxial cable connector includes a connector housing configured to receive a coaxial cable having inner and outer conductors, and a ground shield including a plurality of walls cooperating to define a shielded chamber. The connector housing is received within the shielded chamber, and the walls are configured to be connected to the outer conductor of the coaxial cable. The coaxial cable connector also includes a center blade contact having a flat planar body, wherein the center blade contact is configured to be connected to the inner conductor of the coaxial cable. The center blade contact is supported by the connector housing between the walls of the ground shield in a stripline geometry. At least one of the walls includes a compensating tab extending inward therefrom, wherein the compensating tab is configured to be positioned proximate at least one of the center blade contact and the inner conductor of the coaxial cable.
Abstract:
A coaxial cable connector assembly includes a coaxial cable comprising a conductive braid, and a primary shield coupled to the cable and in electrical contact with the conductive braid. The primary shield defines a three sided enclosure surrounding the cable, and a secondary shield defines at least a portion of a fourth side of said enclosure and is electrically connected to the conductive braid.
Abstract:
A contactless connector includes a first communication chip configured to at least one of transmit and receive wireless RF signals, a second communication chip configured to at least one of transmit and receive wireless RF signals, and a waveguide structure between the first and second communication chips. The waveguide structure conveys RF signals between the first and second communication chips.
Abstract:
A contactless connector includes a first communication chip configured to at least one of transmit and receive wireless RF signals, a second communication chip configured to at least one of transmit and receive wireless RF signals, and a waveguide structure between the first and second communication chips. The waveguide structure conveys RF signals between the first and second communication chips.
Abstract:
A contactless connector includes a transmitter having a first transmit integrated circuit generating a first signal and a second transmit integrated circuit generating a second signal. A first pick-up antenna is adjacent the first transmit integrated circuit and conveys the first signal along a first transmission line to a first propagation antenna. A second pick-up antenna is adjacent the second transmit integrated circuit and conveys the second signal along a second transmission line to a second propagation antenna. The first and second propagation antennas transmit the first and second signals to a propagation path at different and separable polarizations to allow duplex communication with the propagation path.
Abstract:
A contactless connector includes a transmitter having a first transmit integrated circuit generating a first signal and a second transmit integrated circuit generating a second signal. A first pick-up antenna is adjacent the first transmit integrated circuit and conveys the first signal along a first transmission line to a first propagation antenna. A second pick-up antenna is adjacent the second transmit integrated circuit and conveys the second signal along a second transmission line to a second propagation antenna. The first and second propagation antennas transmit the first and second signals to a propagation path at different and separable polarizations to allow duplex communication with the propagation path.
Abstract:
A coaxial cable connector includes a connector housing configured to receive a coaxial cable having inner and outer conductors, and a ground shield including a plurality of walls cooperating to define a shielded chamber. The connector housing is received within the shielded chamber, and the walls are configured to be connected to the outer conductor of the coaxial cable. The coaxial cable connector also includes a center blade contact having a flat planar body, wherein the center blade contact is configured to be connected to the inner conductor of the coaxial cable. The center blade contact is supported by the connector housing between the walls of the ground shield in a stripline geometry. At least one of the walls includes a compensating tab extending inward therefrom, wherein the compensating tab is configured to be positioned proximate at least one of the center blade contact and the inner conductor of the coaxial cable.
Abstract:
A cable connector is provided. The cable connector includes a connector housing having a cavity for receiving a contact along an axis, and the cavity has a protrusion therein. The protrusion extends through the axis so that as the contact is inserted into the cavity along the axis, the contact is deflected by the protrusion until the contact moves past the protrusion into a locked position. The contact has a body section with at least one wing extending therefrom. The wing contacts the protrusion as the contact is inserted into the cavity along the axis causing the contact to rotate about the axis.