Resilient portions on a terminal fitting fill clearance gaps to prevent rattling and ensure proper alignment within the connector housing.
A conductive plastic layer on the back surface of a high-speed connector insulating body prevents electromagnetic signal interference where cables pass through.
Differentiated cantilevered spring arm contacts in a matrix reduce total loading force on CPU pads while maintaining signal transmission and power delivery.
Asymmetric D-shaped connector housings guide proper orientation during assembly, resolving the trade-off between reduced volume and reliable engagement.
A plug connector employs a mating spring to bias an end wall, reducing electrical stub length and preventing overmating latch unseating.
Spring-terminals apply balanced force to secure a resistor inside a terminal-position-assurance device, preventing unintentional removal under vibration.
An electrical receptacle uses an elastic element to connect conductive strips, enabling slot expansion during plug insertion and automatic shape recovery.
Alternating ground and differential signal terminals with elastic contact portions reduce crosstalk and terminal impedance to enhance signal transmission speed.
Nesting multiple ferrules within a standard SC connector housing increases connection capacity without requiring additional optical fiber towers.
Ground contact extensions protrude from the connector tongue to provide stable grounding, resolving interference issues in dual-orientation configurations.
Asymmetric projections and a stopper block prevent reverse insertion, avoiding short circuits and hardware damage during connector mating.
Divided cover sections elastically deform against spring contacts to reduce insertion force while preventing male terminal exposure.