An inclined drive path cuts thrust dispersion and extends shell travel, enabling smoother socket locking without steel-ball jamming.
Alternating dispersed power and signal contacts spreads thermal load in a hybrid connector, preventing local heat buildup and preserving performance.
Two-piece power contacts split current in a hybrid connector, cutting heat buildup while exposing solder joints for easier inspection.
A concave-convex assembly locks center pin position during screw fastening to prevent shifting, preserve concentricity, and maintain transmission quality.
Long-fiber thermoplastic insulation and modular busbar assemblies let this high-voltage piercing connector pierce thick cable insulation safely.
A nested frame-shaped seal stays protected inside the connector before fixation, improving handling ease and sealing consistency.
Nested shielding structures isolate terminal joins and coaxial cable connections to cut EMI and crosstalk in signal transmission.
A movable wing and lever mechanism spreads the clamping clip during connection while reducing deformation and improving inter-battery contact reliability.
A moveable housing protects fragile socket pins during handling while enabling dense grid-array connections without increasing package size.
Side webs and a closed recess guide the busbar twice through the spring to secure conductors, prevent strand splicing, and add overload protection.
A crown spring terminal in the receptacle lowers contact resistance, limits temperature rise, and supports high-current repeated plugging.
Concave connecting ribs and a suspended spring plate maintain pin contact while lowering insertion force and protecting the terminal from deformation.
Side arms on the elastic contact piece act as housing stops, limiting over-deflection from misaligned insertion and preserving terminal contact reliability.
A neck-and-head conductive connector stabilizes aerosol generator power contact while limiting particulate release and preserving aerosol purity.
Bent spring arms with wall support regions keep the contact pin engaged under vibration, preventing detachment and contact interruption.