A laminated terminal structure supports a movable housing within an electrical connector assembly.
An insulation arrangement isolates the metallic fastening assembly from energized terminals, eliminating electrical hazard risks during vehicle assembly.
An isolation base with assembly slots and a waterproof sealant fills gaps between signal terminals and the connector port.
Plug side housings feature positioning grooves and protrusions for provisional alignment before dovetail joint formation.
A circuit connection module uses a conductive member to bridge electrical and thermal paths between components.
Insulating separators isolate adjacent electrical terminals to prevent point discharge interference in compact connector assemblies.
Positioning upper and lower contact points in the receiving portion maintains reliable connection despite downsized Z-direction dimensions.
A micro power connector positions a ground terminal on the insulation body side wall to maintain safe electrical spacing.
Conductive resin accommodates manufacturing deviations in optical transceivers, reducing electromagnetic interference while maintaining mechanical strength.
A connector sub shell abuts the tongue and base portions to create a protective gap between power terminals and the shielding shell.
Ferrite noise reduction members target branch-line terminals only, omitting trunk lines to shrink connector volume and cut manufacturing costs.
A connector locking lance uses a projected part to override the lance beak, distributing insertion force to a robust locking projection.
A hollow tube terminal uses axially extending resilient members with a specific thickness-to-width ratio to form radially deflected free ends.
Segmented locking lance projection and widened body distribute shear stress to prevent fracture during terminal fitting insertion.
Extended housing holding parts align contacts directly, eliminating compensation plates that cause solder cracking and assembly delays.
Shielding terminals connect to grounding terminals in a one-to-plurality manner, reducing crosstalk and improving common ground performance.
Beam expansion lenses resolve alignment sensitivity while metal clips maintain stable electrical contact.
A board mating connector uses a slit ground contact part to provide elasticity.
Separate molding of the terminal member and housing simplifies fabrication while nested side edge covering portions prevent detachment under prying forces.
A wire harness integrates a soft resin waterproof member between the housing and covering part to eliminate manual sealant application steps.
A connector terminal unit uses a guide rib to slide within a housing groove, stabilizing insertion posture and position.
Dielectric ribs extend beyond pin ends to increase operative through-air spacing, enabling smaller diameter terminals to meet higher voltage requirements.
Modular submarine cable sections with self-sealing elastic members allow in-situ repair, eliminating the need to retrieve damaged segments from the ocean floor.
Elastic contact piece extends like a cantilever with an elastic reinforcing piece positioned opposite the insertion space.
Metal reinforcing members cover the CPU board opposed surface around positioning holes to enhance accuracy while preventing deformation.
Press-fit retention mechanisms stabilize board-to-board connector terminals against lifting forces during unmating operations.
Guide portions on the insulating body prevent misalignment and short circuits caused by dense terminal assembly pressure.
A USB receptacle connector uses an integrated fixing base to position conductive terminals within the insulated housing.
Modular connection modules allow the plug to rotate and fit various socket types without blocking adjacent outlets, resolving interference issues.
A stacked connector system joins split housings to reduce vehicle installation space while maintaining efficient electrical connections.
A full-shielding cable connector integrates a shielding conductive body with a metal frame to establish electrical continuity.
Compression locking grips wires on terminals, eliminating welding complexity while maintaining electrical connection reliability.
A connector with three-directional sliding members adapts to electrical component deviations.
Segmenting the conductive terminal and nesting its protruding portion into a pre-formed recessed groove eliminates manual alignment errors during assembly.
Magnetic conductivity material absorbs resonance energy near ground contacts, eliminating crosstalk without expensive conductive plastic.
Segmenting the spring into an arm and strengtheners resolves the holding force versus connector height trade-off in compact button cell designs.
Segmenting the hinge into two flexible joints prevents component interference during 90-degree rotation, allowing 180-degree movement without breakage.
Integrating plastic latches into the rear insert eliminates adhesive application steps while maintaining permanent retention through elastic deformation.
A terminal assembly uses a conductive plastic surface parallel to the terminal body to improve signal integrity.
A plug connector uses a detachable front section to swap mating faces while keeping the rear housing installed.
A safety switching apparatus plug connector separates low voltage and power supply circuit connections using distinct spacing patterns.
Overlapping material layers create reinforced regions with guiding faces, preventing housing damage during insertion while maintaining secure retention.
Segmented elastic contacts resolve the trade-off between miniaturization and transmission loss in high-speed signal connectors.
Integrating fitting protrusions into the holder body seals unused wire insertion holes in waterproof connectors.
Multi-directional press-fit portions anchor contacts in perpendicular directions, preventing solder cracking under applied stress.
Segmented resilient positioning members suppress vibration while reducing material costs compared to continuous ring designs.
A terminal position assurance device uses a U-shaped member and matrix tubes to lock female terminals only when fully inserted.
A slidable lock reinforcement with a cam mechanism moves a secondary lock into engagement, eliminating independent adjustment steps during assembly.
Segmented terminal fitting margins ensure lead portion coplanarity while preventing resin dregs production from tab scraping.
Segmented U-shaped contacts with curved ends achieve roll-face engagement, resolving the trade-off between downsizing and structural strength.