A card socket uses a metal base frame to support resin housing and contacts, reducing overall thickness while maintaining structural strength.
Segmented housing with flat top surface allows vacuum nozzle pickup, resolving weight and automation compatibility issues.
Radial bosses in the housing create localized friction zones that distribute stress along the cord, preventing separation from jerks.
A combined fly line connector integrates multiple pins and interlocking holes to secure varying line diameters in a single reusable unit.
Segmented cloverleaf contactors compressed between terminals resolve the trade-off between connection reliability and manufacturing cost.
A rotatable hook engages a recessed clip to pivot a slide insert and release the connector.
An audio adapter integrates an FM processing circuit with a digital interface to enable radio reception.
A modular power receptacle uses an interchangeable upper cover to provide flexible interface configurations without altering the base assembly.
A card edge connector uses a nut retained in an insulative housing to secure external heat dissipation modules.
A grounding sheet with protruded portions contacts ground terminals between rows to reduce crosstalk interference in compact USB Type-C connectors.
Trapezoidal tapering on spring-elastic cheek parts reduces plug-in force while maintaining stable module retention in metallic connector housings.
An extended plate covers the flexible arm to maintain rigidity without increasing height when external forces act on the latch.
Internalizing the vent patch within the socket assembly eliminates external housing holes, reducing manufacturing complexity and improving reliability.
A grounding lattice electrically commons ground shields within an electrical connector housing to stabilize signal integrity.
Removable interlinking plates adjust service plug current capacity, reducing manufacturing costs for varying vehicle requirements.
An articulated holding frame uses a guide element to align pneumatic plug connector modules, preventing misalignment wear during assembly.
A hybridized cable assembly merges copper conductors with fiber optics to transfer data and power through a single unified structure.