By shifting lock-arm deformation from vertical to lateral, this connector cuts height while maintaining secure engagement and lower stress.
Twisted separation walls keep each wire pair aligned in one direction, reducing insertion and reflection loss in compact high-speed connectors.
An elastic contact member and locking plate simplify high-voltage terminal structure while keeping contact stable under vibration.
A two-plane sliding trough lets the flexible arm unlock easily without jamming, while preserving smooth cable connector insertion.
Oblique upper and lower elastic arms enlarge the grounding contact area and self-align in the housing for more reliable connector grounding.
Single grounding bars between selected ground terminals break resonance conditions, reducing EMI and crosstalk in high-speed connectors.
A staggered contact layout lowers connector center height for direct PCB mounting while preserving high-current transmission and easier assembly.
Grounded partition and surrounding walls isolate high-frequency contacts from other signals, suppressing noise in a compact connector.
A sealing rubber and temporary holding portion use friction to hold the second housing before bolting, improving assembly and water sealing.
A guided pin structure shifts insertion contact away from the insulating sleeve to limit carbonization, scratching, and female terminal pollution.
A sliding movable member lowers connector mating resistance while preventing resilient contact piece settling and preserving contact pressure.
Pre-aligned plug and socket housings improve assembly while maintaining secure wire, tensioning, and RF energy connections.
Detachable power terminals let a projector draw power from ceiling or stand contacts, expanding installation options without fixed ceiling outlets.
Axial spring bias keeps H-MTD terminals precisely aligned to stabilize 100 Ohm impedance and reduce high-speed signal reflection and loss.
A shared insertion part lets conductive pins and the optical plug core mate together, reducing mis-insertion and simplifying 5G connector handling.
Axial spring bias keeps terminal positions defined in the connector, reducing differential impedance variation, signal reflections, and loss.
Flexible contacting beams maintain stable ground contact across position variation, improving potential equalization and signal intensity.
Flexible contacting beams keep ground contacts equipotential despite fine pitch, misalignment, and dimensional tolerances in connectors.
A widened press-fit contact with a pushing protrusion supports dense pitches, impedance matching, and stable floating connections under board shift and vibration.
Integrated inserts, covers, and spring clips secure flat cables and busbars while improving alignment, retention, and assembly in vehicles.
Stacked organizers separately position signal and ground contacts to prevent PCB misalignment while preserving electrical continuity.
A partitioned inner housing separates terminal cavities from the bolt recess, securing both housings while limiting short-circuit risk and size growth.
Selective plating creates isolated contact regions and controlled contact force to keep high-speed connector impedance stable.
Integrated tongue bridging replaces jumper adapters, enabling custom terminal layouts in compact connectors while improving signal quality.
A folded ground terminal with a protrusion-contact stop lets wires be removed without unfixing the base while keeping pull strength and wire direction stable.
A split tongue-and-shell connector supports custom terminal counts and direct internal bridging, avoiding jumper adapters and saving space.
Side-mounted release buttons and cable seatings let this connector disconnect easily while supporting larger low-loss cables and longer runs.
A tapered passageway lets the sealing member shift during contact insertion and removal, preventing damage while maintaining a water-tight connector seal.
Compliant signal and ground contacts create a removable PCB cable interface that preserves impedance and reduces reflections at high frequencies.
An oblique terminal and forward PCB layout shortens the RJ45 signal path to cut loss and interference for 25 Gbps+ transmission.
A molded protruding part guides plug ground pads away from the EMC shield, preventing buckling damage during connector mating.
A protruding front mask section gives clear visual confirmation of correct connector assembly, reducing misalignment and reassembly.