A conductive contact element around the coolant opening equalizes cooler and housing potential to limit EMI while preserving liquid cooling.
Built-in pin barbs and compliant PCB features secure IDCC header pins without extra covers, simplifying wire connection and strain relief.
A curved shield-shell contact and stepped hole geometry prevent sliding contact, improving connector sealing and ground stability.
Glass-fiber-reinforced self-healing caps seal pin holes, preserve shape, and prevent liquid metal leakage and oxidation in socket assemblies.
Multiple contact points, insulation displacement slots, and strain relief improve field wire termination while maintaining stable electrical connection.
A shared mounting frame lets PV terminals scale channel count while preserving hermetic sealing, reducing volume, and simplifying installation.
A gapped flat rear contact creates a solder reserve that stabilizes RF coaxial transition performance and joint strength up to 100 GHz.
A two-section coaxial cable balances narrow endoscope insertion with lower RF loss and less heating in electrosurgical energy delivery.
A two-piece HV terminal frame uses thickness-tuned spring and frame sections to eliminate crimping, cut parts, and support bi-directional bus bar connection.
A circumferential groove at the folded contact blade base prevents brittleness and stabilizes pull-off force in crimped socket contacts.
Sequential ultrasonic welding joins copper and aluminum conductors with a contact element while preserving bond strength and production accuracy.
Bridges incompatible SPE standards by switching between 100Base-T1, 10Base-T1L, and 10Base-T1S interfaces in one board-level design.
A transverse handle surface carries markings while housing a visible fuse indicator, improving maneuverability in compact terminal block connectors.
Direct plug-in links between inverter modules replace wires, reducing EMI, simplifying maintenance, and improving operating stability.
Positioning projections and slits align split outer conductors quickly, improving shield connector assembly accuracy and speed.
An elastic pressing mechanism helps terminal blocks resist vibration loosening while simplifying connector engagement and release.
An elastomer seal spring combines environmental sealing and spring force in connector assemblies to maintain contact pressure with less geometry complexity.
An acute angled mating interface with thin shielded conductors cuts angular twist and mode conversion in dense high-speed connectors.
Preassembled conductive panels replace wire nuts in an electrical box, cutting installation time and reducing wiring errors and circuit failures.
Using same-structure cable assemblies and shared molds, this connector cuts manufacturing cost while preserving shielding and signal efficiency.
Liquid coolant channels and braided copper mesh remove charging heat from the cable and connector, improving EV charging safety.
A composite cover with an insulating body and flameproof outer shell helps terminal blocks resist ignition and self-extinguish faster in extreme heat.
Spring-elastic contacts clamp both PCB and conductor, replacing soldering for faster, lower-cost assembly of single-sided boards.
Snap-fit bus modules with segmented conductive plates adapt to terminal block width while limiting exposed conductors and short-circuit risk.
Simultaneous crimping of exposed FFC conductors improves low-resistance contact, strain relief, and termination reliability in harsh environments.