Adds sensors, wireless links, and audio feedback to existing outlets, enabling smart-home functions without replacing costly socket hardware.
A latch and retention seat secure a multi-contact electrode tail during seizures while spring pins maintain reliable EEG signal contact.
Double spring arms and extending members use the housing to raise plug blade retention and improve heat dissipation in high-current wiring devices.
A spring member and projection-recess interface maintain contact pressure while preventing terminal rubbing that degrades connection reliability.
Floating contact elements and an integrated finger guard enable compact, safe busbar clamping with simpler assembly and less installation space.
Conical sleeve geometry with radial concavities and convexities cuts insertion wear and friction while improving contact force and vibration resistance.
An integrated holder flange guides terminal insertion in the receptacle, preserving alignment reliability without separate guide structures.
A hot-melt impedance mold with adjustable dielectric constant matches signal wires to a PCB, reducing delay and crosstalk in connectors.
Floating terminals absorb ±0.8 mm assembly variation while maintaining PCIe Gen 4 signal integrity and 5 A power transfer.
Through-card signal and ground vias with angled cable exits shorten paths, cut signal loss, and support denser connector routing.
Latching pins and receptacles set a specified connector disconnection force while preserving high-current contact reliability and retrofit ease.
Turning points in the terminal path absorb thermal expansion and resist axial shift, helping connector assemblies maintain reliable contact.
Spring-portion geometry balances insertion force, holding force, and contact area to reduce board damage and improve connection reliability.
An orthogonal third pin cluster improves signal integrity and impedance control in dense memory module connectors while limiting crosstalk and EMI.
An inner-face connector structure carries plug loads away from the adhesive seal, preventing moisture ingress in vehicle control housings.
Elastic clamping legs and edge guide wings secure plug lugs despite tolerance variation, maintaining stable contact under vibration.
Factory pre-assembly of a wall plug across a base plate enables final quality checks and reduces customer-side assembly errors.
A restricting structure limits cantilever over-deformation during core locking, improving locking stability in miniature electrical connectors.
A movable radiator in the connector shell maintains preset thermal contact with the mating connector while reducing protrusion wear and heat loss.
Differently spaced terminal groups cut cartridge size while reducing noise and keeping data transfer and insertion stable.
A thin dielectric section and outer-conductor impedance adjustment reduce air-gap mismatch at the connector interface for stable high-speed signals.
A 180° reversible contact lets one connector mate with flexible conductors on either surface while keeping counter-connector alignment unchanged.
A rear-mounted handle and smooth connector surfaces improve MRI connector guidance, cleaning ease, and signal quality in medical use.
Sharpened multi-tine terminals and a sliding cable holder simplify FFC termination while improving contact reliability and mechanical stability.
A pivoting pull ring eases unplugging in high-current connectors while bent conductive paths reduce wire interference near PCB housings.
Spring-loaded conductive pins connect the keyboard only at usable viewing angles, reducing wire fatigue and protecting folded screen contact.
Additional contact pairs let high-current connectors reach a preset disconnect force while preserving modular retrofitting and standard compatibility.
A repeater module built into the connector shortens data channels and simplifies power delivery to restore high-speed signals with less crosstalk.
A positioning adapter constrains cartridge movement under drive torque to keep conductive contacts aligned and printing operation stable.
A thermally deformable filling member seals the groove, sidewall, and cover gaps to waterproof wire ends and simplify connector assembly.
A flexible narrow-side contact structure cuts connector width while tuning mating force for reliable high-frequency PCB connections.
Alternating positive and negative contact boards enable reverse insertion and raise DC charging current capacity from 5 A to 20 A.
Corner ground terminals and commoning bars establish early grounding to limit crosstalk, interference, and ESD in high-data-rate I/O connectors.
A peripheral wall shields the lock arm from external force, preserving lever holding force and preventing unintended rotation without enlarging the connector.
A slider retracts contact tails before insertion, cutting residual terminal length and protecting high-speed signal paths from damage.
A resilient stress absorbing section between terminal portions relaxes thermal expansion stress to prevent breakage and connection failure.
A nested locking lance and retention finger secure terminal positioning in compact connectors while preventing assembly damage and improper mating.
Built-in limit structures stop overexpansion in charging terminals, preventing yield deformation and preserving reliable electrical contact.
Offset grooves and integrated signal and power conductors cut PCB space and assembly steps while limiting crosstalk in one connector.
Separating high-speed terminals to cable links and others to an adapter board cuts signal distortion while simplifying connector circuit design.
A rigid insulative mount and annular rubber-ring seal prevent skewing, moisture ingress, and unstable signal transmission in waterproof adapters.
A spring-loaded plunger clamp keeps stranded wires under constant pressure, preventing relaxation, overheating, and re-torqueing.
A spring clamp and plunger keep wire pressure constant to prevent strand relaxation, overheating, and costly re-torqueing.
A spring-loaded plunger terminal keeps constant wire pressure through thermal cycling, reducing strand relaxation, resistance rise, and overheating.
A recessed, multi-surface terminal support structure prevents connector terminal detachment while improving RF signal isolation.
A substrate forms the connector bottom wall and replaces stamped contacts, enabling lower profile packaging and more efficient signal transmission.
Retractable covers and self-actuated mating let identical connectors align easily while protecting contacts from damage and contamination.
Extended housing guides align mating contacts before engagement, preventing positional deviation, damage, and connector mating failure.
A tapered male terminal and biased split female walls raise contact pressure while reducing plating scraping and insertion resistance.