A connector uses a movable pressing member to secure sheet-like objects against horizontal displacement.
Segmented elastic sheets absorb assembly forces to prevent grounding sheet bending, ensuring stable high-frequency signal transmission.
Merging inner and outer shells into one piece reduces connector volume while maintaining electromagnetic noise shielding via nested ground contacts.
Grounding member wing portions abut receiving slot bottoms to establish pre-pressure on contacting arms for stable electrical connection.
Spring loaded common ground plates mechanically and electrically connect vertical grounding wafers in an electrical receptacle connector assembly.
Oblique rearward positioning of lower contacts compresses the connector footprint, resolving size constraints without complex bending.
Segmenting the ejector pin contact surfaces allows smaller partitions between terminals, resolving the strength versus density trade-off in connector molding.
An asymmetric electrical connector adjusts contact spacing to match characteristic impedance using a high-dielectric insulating body.
Segmented connector housings with a compressed rubber member maintain stable terminal contact, preventing loosening and wear.
Dual-row power terminals merge with signal lines inside the connector body, eliminating separate cables to simplify server maintenance.
Segmented housing and elastomeric grommet prevent water ingress in outdoor plugs while reducing production cost.
An asymmetric electrical contact spring prevents wire rod intersection and interference with holding members, ensuring reliable connection stability.
Grooves in the elastic member allow seal lips to follow wire shake, preventing thermal deformation and maintaining waterproof integrity.
A withdrawable plug module uses angled through-recesses to orient electrical contact pins independently of the mechanical insertion axis.
Bent clamping portions bypass soldering areas to secure balls, reducing terminal spacing and enabling single-step assembly.
Integrated insertion stoppers and holding projections shorten the press-fit portion while preventing housing wall chipping during assembly.
A fully insulated flag terminal insulator uses an L-shaped housing and snap-fit cover to secure electrical connections.
A straddle mount connector contact assembly uses a universal organizer with upper and lower channels to hold contacts within a housing cavity.
Insert molding secures upper and lower terminal modules to a metallic plate inside a bracket, resisting high pressure during formation to ensure waterproofing.
A SIM card connector uses U-shaped resilient portions and slanted second terminals to prevent sticking.
A terminal structure uses a damping section to reduce collision force during shift member operation.
A receptacle connector housing uses a cross-shaped supporting structure to wrap contact assemblies and maintain electrical connections.
Tapered geometry uses external pressure to tighten fit, preventing leakage under high differential stress.
An insulation insert with a conductive coating forms an integrated shielding element for plug-in connectors.
Resilient coupling portions enable movable housing displacement while maintaining signal and ground contact alignment.
Protective tube and conductive end cap shield exposed tracer wires from corrosion and physical damage without interrupting signal transmission.
A male terminal design uses a press-fit projection to secure the component within a housing cavity, preventing metal plate buckling during miniaturization.
A waterproof electrical receptacle connector uses a glue block to fill gaps between the insulated housing and metallic shell.
Segmented metal shield members cover differential pair circumferences at the electronic device interface, reducing crosstalk while maintaining assembly ease.
A laminate interposer structure uses elastomer layers and elastic columns to provide localized conductive paths.
Side wall reinforcements on a connector retainer detect insufficient insertion without increasing connector width or compromising housing strength.
Protruding shoulder presses insulator downward to shield solder joints from vibration damage.
Splayed L-shaped contacts engage opposing side edges to balance force, resolving signal transmission instability in high speed connectors.