Segmented holding portions let the inner housing mold open along insertion direction while dispersing external force for stronger, more reliable connections.
A gap between separation wall faces raises terminal impedance near the wall, preserving isolation and helping prevent shorting.
An exposed grounded base in an insert-molded connector improves impedance stability and cuts crosstalk without separate shield members.
Slidable contact protrusions on the lever and wire cover guide rotation, reducing lever deformation and connector mating effort.
A V-shaped terminal bending section and stopping block stabilize solder balls, cut connector height, and improve solderability for high-frequency use.
Nested shielding cage and conductive housing isolate terminals to improve signal transmission and save circuit board area.
A pivoting two-armed lever opens the clamping leg with low effort while keeping the conductor terminal compact and compatible with automatic connection.
A pivoting handlebar connector reduces high-current insertion friction and avoids wire-to-housing interference in compact board layouts.
Stacked receiving cavities and nested conductive housings improve connector shielding, cut crosstalk, and support high-speed signal transmission.
Integrated sidewall cantilevers secure connector engagement without protruding arms, freeing internal space and protecting terminals.
A braided meshy cylindrical terminal shortens the current path while providing axial elasticity, enabling stable high-speed board connections at lower cost.
A conductive housing paired with a shielding cage improves connector shielding, reducing signal crosstalk and supporting faster transmission.
A braided conductive mesh terminal replaces complex winding to improve connector contact stability, signal transmission, and production consistency.
A single molded terminal carrier and insert linked by a breakable bridge cuts cooling time, mold complexity, and connector assembly labor.
Direct terminal fastening with thickness adjustment cuts connector thickness and size while limiting exposure to live contact portions.
A latched plastic holder lets a frame clamp float orthogonally to conductor insertion, easing assembly while maintaining stable insulated contact.
A polyamide blend with aluminium oxide, magnesium hydroxide, and epoxide achieves UL94 V-0 at thin walls while maintaining heat conduction and strength.
Dual ring ribs seal against opposite cavity faces to block water ingress and keep electrical connectors securely fitted during use and testing.
A support block between connector plates absorbs installation clamping force, protecting thin housing ribs from damage.
An integrated folded connector clamps the wire without crimping, simplifying assembly while maintaining stable board contact.
A floating connector enables blind, screwless bus bar mating while absorbing terminal misalignment and assembly stress to improve connection reliability.
A compressed elastic reinforcement fills lance gaps to block Z-direction movement and keep connector contacts securely retained.
Elastic ground contact in a segmented connector shell improves high-frequency EMI shielding while limiting size growth and contact deformation.
A conductive film on the socket through-hole wall prevents oxidation-driven contact resistance and keeps ground potential stable.
Paired flexible and rigid contact regions create secure angled PCB mating while keeping hermaphroditic connector elements compact and manufacturable.
A flange and C-ring clamp the case opening for bolt-free mounting, while potting seals the housing and reduces connector height.
Dual-side latching lets contact inserts snap into a wall-mount housing tool-free, cutting installation time and enabling later replacement.
Predetermined terminal abutment limits elastic deformation in a floating board connector, suppressing resonance and reducing damage.
A universal busbar connector with interchangeable cable-end connectors and unequal cable lengths cuts connector variety, resistance, and handling effort.
Beveled sidewalls and a recessed connector mount simplify IMU package assembly while improving shock, vibration, and attachment reliability.
Separate flexible projections let a bendable connector keep stable contact pressure while reducing protrusion discomfort on garments.
A split grounding layout connects one nearby ground terminal and isolates the other to shift resonance and cut connector interference.
Inclined surfaces guide a spring-loaded contact part to keep shield connections reliable in a lower-profile connector while limiting solder spread.
Three joined metal shells fully enclose solder tails and cable ends to improve connector grounding, shielding, and mechanical stability.
Airflow openings and welded ground members help stacked I/O connectors dissipate transceiver heat while preserving signal integrity.
Swinging contact arms and widened slot clearance keep both terminal rows engaged during oblique card insertion, improving vibration resistance.
A force accumulator drives a sliding terminal to speed hot insertion and removal, shortening electric arc duration during high-voltage connection.
A two-piece retainer secures flat cables through aligned openings and interference fit to limit vehicle noise, rattling, and movement.
A movable holding member keeps the male tab protected in a cavity, enabling smaller connectors with smooth mating and simpler structure.
Direct terminal fixing in the base removes the insulation block, shrinking connector size while keeping assembly and contact reliability.
Nested inner and outer spring contacts increase contact points, improve thermal balance, and lower insertion force in battery connectors.
A friction-fit plug and socket keep RF and mechanical links secure while allowing wire retraction and independent movement during tissue segmentation.
Arc-shaped elastic contact portions are integrated into the terminal to reduce vibration wear and keep connector current carrying stable.
Segmented conductive housing sections and surrounding grooves improve shielding around terminals, reducing crosstalk in high-speed transmission.
Lug portions, limiting grooves, and clipped terminal tabs keep elastic terminals from loosening or breaking during repeated connector insertion.
A dual conductive-housing connector isolates terminals through insulating bodies to improve shielding and reduce crosstalk in high-speed transmission.
Overlapping inclined reinforcement and shaft restriction surfaces raise connector strength without increasing Y-direction size.
Integrated guide and protection brackets shield power terminals during mating while limiting connector length growth and preserving strength.
A nested plug sleeve and sliding pin layout lets two plug standards share space, cutting travel adapter length and overall volume.
A rocker-and-chute linkage lets adapter plug pins extend in two stages with a shorter push-tab stroke, reducing plug volume.