Reverse crimping in a cable holder cuts connector length, while an over-molded flange keeps tensile strength and a flush finish.
Insert-molded shielding stiffener and shell integration closes mating gaps to curb EMI leakage and signal interference in compact connectors.
A slotted crimp housing secures the center conductor in one integrated step, cutting coaxial connector assembly complexity and cost.
A combined dialysis plug maintains separate power and hydraulics grounds in one connection to prevent leakage-current hazards and setup errors.
Integrated current sensing, proximity detection, and relay control let each outlet be monitored and switched remotely without home rewiring.
A synchronized cover and pin mechanism lets a thinner power adapter retract prongs for electrical clearance, safety, and portability.
Jacket-free outlet connectors on recessed surfaces or PCBs raise PDU outlet density while preserving standard cord compatibility.
Nanoparticle polycrystal transmission lines cut AC resistance in specific bands, reducing skin-effect loss and improving signal reliability.
Elastic arms and aligned mounting cavities simplify wire insertion while maintaining tight conductor contact and stable detachable connections.
A connector block with a resilient release lock enables one-step fixture mounting and secure electrical engagement with built-in safety protection.
A parallel thermal breaker and protective resistor let an overheated plug keep powering low-current alarms after the main path disconnects.
A stepped outer-conductor flange stabilizes ground contact despite connector misalignment, helping noise escape to external ground and improving EMC.
Retractable cords and integrated chargers built into an outlet cover keep charging always available without separate cables to manage.
A widened contact spring apex spreads bending loads in ground terminals, reducing stress concentration and stabilizing EMC and electrical contact.
An integral metal casing combines the ground terminal and fitting part to improve connector strength, shape accuracy, and assembly efficiency.
Spring elements in the insulating body clamp instrument limbs, simplify assembly, and compensate for limb manufacturing tolerances.
A hinged clamp and tab lock the medical patch to lead wires, reducing motion-driven disconnection and preserving reliable skin sensing.
A convex, resilient contact element creates a gentle insertion slope and secure pin contact for high current transfer with low resistance.
A low-conductivity planar line and coaxial-to-planar transitions cut stray heat paths while preserving RF transmission for lower measurement uncertainty.
Tapered guide holes and a short accommodation portion correct plug tilt and shaft misalignment before contact engagement, reducing insertion force.