Resilient portions on a terminal fitting fill clearance gaps to prevent rattling and ensure proper alignment within the connector housing.
A conductive plastic layer on the back surface of a high-speed connector insulating body prevents electromagnetic signal interference where cables pass through.
Differentiated cantilevered spring arm contacts in a matrix reduce total loading force on CPU pads while maintaining signal transmission and power delivery.
Asymmetric D-shaped connector housings guide proper orientation during assembly, resolving the trade-off between reduced volume and reliable engagement.
A plug connector employs a mating spring to bias an end wall, reducing electrical stub length and preventing overmating latch unseating.
Spring-terminals apply balanced force to secure a resistor inside a terminal-position-assurance device, preventing unintentional removal under vibration.
An electrical receptacle uses an elastic element to connect conductive strips, enabling slot expansion during plug insertion and automatic shape recovery.
Alternating ground and differential signal terminals with elastic contact portions reduce crosstalk and terminal impedance to enhance signal transmission speed.
Nesting multiple ferrules within a standard SC connector housing increases connection capacity without requiring additional optical fiber towers.
Ground contact extensions protrude from the connector tongue to provide stable grounding, resolving interference issues in dual-orientation configurations.
Asymmetric projections and a stopper block prevent reverse insertion, avoiding short circuits and hardware damage during connector mating.
Divided cover sections elastically deform against spring contacts to reduce insertion force while preventing male terminal exposure.
Protruding insulating gaskets prevent short circuits in high voltage assemblies by blocking direct contact between conducting cases and power terminals.
A shunt device segments electric current paths using multiple terminals to distribute power from a single connector.
A terminal lock with a raised ridge engages electric terminals to maintain their installed position within the connector housing.
Separate front and rear terminals eliminate junctions to reduce multi-contact connector volume.
A connector module uses a block member to secure a detachable floating assembly within a base slot.
Elastically deformable inter-buckling portions secure multichannel connectors while integrated shielding isolates conductive terminals from electromagnetic noise.
Sloped slot geometry in an electrical connector housing enhances terminal elasticity, resolving damage risks during miniaturization.
A connector housing uses a rotating second housing with a central locking portion to secure coupling.
A connector rib on the terminal box pre-bends the lance, reducing insertion force and preventing irregularity-induced resistance.
A tapered elastic arm portion reduces thickness toward the distal end to maintain contact pressure within a compact electrical connector housing.
Compressive folded layer structure abuts spring arm to reduce impedance and resonance during high-frequency signal transmission.
Segmenting the lance into distinct cross-sectional areas resolves the contradiction between reducing connector size and maintaining holding power.
A connector locking arm uses pre-calculated geometry to maintain engagement area during resin molding.
A fitting connector design integrates an inner cylindrical body to shield the female-side insulating member from direct contact with the male terminal.
A rotatable plug uses a pivot shaft to retract conductive prongs into the casing for protection.
Elastic deformation of the bus bar provides temporary holding without complex locking structures, reducing size and cost.
Integrating the socket with a circuit board eliminates soldering steps, achieving IPX7 waterproof sealing while simplifying assembly.
A connector contact arm support resists deformation moments through housing groove interaction.
Integrating a plug socket into the switch housing eliminates external live connections and reduces manufacturing costs.
A connector tubular portion features a recessed suppressing portion that projects inward to control impedance while serving as a locking mechanism.
Divided terminal bodies with integrated conductive tabs enable tool-free assembly for large cable sections.
Segmented contact modules constrain untwisted wire lengths to prevent congestion and maintain signal integrity in multi-circuit connectors.
An integrated connector merges mating functions into a single unit, eliminating separate components and reducing assembly complexity.
Male terminal tabs extend forward with centers higher than terminal bodies to maintain coaxial wire alignment within waterproof connector housings.
Elastic locking piece hooks lower housing locking portion to restrict relative movement in separation direction.
A connector uses an insulation member with a protruding heat dissipating portion to cool the male terminal.
An outer frame allows the inner frame to move perpendicularly, absorbing strain and preventing breakage of the conductive elastic member.
A low profile electrical connector uses housing protrusions to secure contacts within passageways.
A connector uses a receptacle protrusion and female housing slit to block finger access to male terminals.
A connector assembly uses linearly symmetrical quasi-coaxial shielding to maintain stable transmission characteristics across high frequency signal terminals.
A seal carrier system re-twists twisted pairs after terminal coupling to maintain water resistance.
Segmented metal wire contact members with fewer than five turns reduce insertion force and wear while maintaining high-quality electric contact.
A backplane connector merges right-angle mating into a single unit using edge-coupled terminals and a shroud to maintain impedance.
Segmented shielding structures minimize electromagnetic interference between contact rows while managing assembly complexity.
Sealing member fills gaps between conductors and insertion hole to stop capillary liquid penetration without complex stripping.
Segmenting the contact into front and rear press fitting sections reduces resonance under severe vibration while lowering peak insertion force.