A flattened helical metal sheath cuts stud hang-ups and friction during cable installation while preserving flexibility and crush resistance.
A helical metal sheath with shallow valleys and angled free ends reduces cable hang-ups through studs while preserving crush resistance and flexibility.
A helical metal sheath with shallow valleys and curved transitions reduces cable hang-ups through studs while preserving flexibility and crush resistance.
An integrated wire-and-conduit cable delivers suppressant to overheated circuits and cuts power to stop hidden electrical fires at the source.
Oppositely wound foil shields improve EMI protection and bending durability in moving and drag chain cables.
A slit shielding layer and cover block dust, maintain bending protection, and reduce electromagnetic leakage for cleaner signal transmission.
Routes fire-suppressant fluid through the cable itself to suppress overheating or sparking faster while simplifying electrical and suppression installation.
A multi-stage twisted titanium-alloy DC line cuts heat conduction and bending radius for compact quantum computer wiring.
An arc-shaped groove in the outer coating creates a flexible bending zone for suspension wiring between vehicle-side and wheel-side devices.
A two-layer sheath pairs a stiff outer layer with a softer inner layer to absorb bending stress and reduce wire breakage in cables.
Curved touch-line layouts and mesh sensors keep touch sensitivity uniform on display panels with non-rectangular edges, holes, or notches.
Varying-height protrusions in a wire harness protector absorb exterior-member wrinkles and slack to keep assembly positions stable.
Routes fire suppressant through the same cable sheath as electrical wires, enabling automatic response to overheating in concealed circuits.
An integrated wire-and-fluid cable releases fire suppressant and cuts power at overheated circuits to limit ignition and fire spread.
An integrated cable routes power and suppressant fluid together, releasing retardant at overheated circuits to limit ignition and fire spread.
A flatter helical metal sheath cuts hang-ups on wood or metal studs while preserving crush resistance and cable flexibility.
A helically wound metal sheath uses a flatter exterior profile to prevent hang-ups, reduce pulling friction, and keep crush resistance.
Flexible front and rear shields contain EMI from wearable EL elements while preserving washability, comfort, and wire connection reliability.
A separated touch sensor seals the housing opening so a rollable display can keep image visibility, surface quality, and structural reliability.
Pivotally linked rigid sheath sections let an extension cord bend along its length while resisting kinks, crushing, and accidental cuts.
A flatter helical metal sheath reduces cable hang-ups and tangles during stud routing while preserving crush resistance and flexibility.
A PEEK jacket constrains EPDM insulation in wellbore conductive cables, reducing partial discharge and extending ESP cable life.
A cable with built-in suppressant conduit delivers fire retardants to overheated circuits, enabling early suppression in concealed wiring.
Metallic elements fill cable gaps so a seam-welded outer layer avoids polymer burning, reducing weight while preserving cable fatigue life.
Mechanical stress during cable bending and twisting is mitigated by a protective tube and support cord that let the RFID device move in a controlled way.
Embedded cooling fluid channels remove heat from subsea power cable conductors, maintaining temperatures below insulation limits to extend service life.
Linear shape fiber yarns in a cushion layer mitigate lateral pressure on the braided shield, preventing wire breaks from repeated industrial robot bending.
Polymeric stopping layer prevents armor wire penetration and insulation creep under tension.