A wire harness regulation member uses stacked flexible plate members with long holes and convex holding portions to guide conductors along a moving body.
Reduced bis(benzotriazole) concentrations prevent surface migration while maintaining color stability in light-colored polyphenylene ether cable jackets.
Local quality design differentiates inner and outer surface properties to manage thermal impact on high-tension wire harnesses.
A wire harness configuration prevents electric wire compression within tubular members during bending.
A flexible sign on an insulated wire cover indicates the correct insertion length for a conductor into a crimp terminal.
A wire harness protector uses a projecting portion on the side panel to create clearance for branch line routing.
Grooves in a resin wire exterior body distribute stress at bending portions, preventing breakage from vehicle vibration.
Parallel open channels in an insulative body paired with grounding elements reduce signal losses from non-extrudable materials.
Holes in protective tube allow heat dissipation while waterproof film prevents water ingress and foreign matter entry.
A noise reduction cable uses a magnetic-material-fixing-and-insulating tape layer to secure the magnetic shield.
Embedded polymer markings survive fire destruction, allowing database-linked cable identification and recovery.
Capacitive sensors measure traction cable speed using phase shifts between marker signals, eliminating slippage errors and coating incompatibility.
A protector latch and sliding portion join a conduit to enable reliable attachment without bellows shaping.
A breakout sleeve secures hybrid power and fiber conductors within a pre-assembled structure for rapid field installation.
Segmented pneumatic voids allow armor shell pressure testing while preventing exocentric displacement, ensuring consistent capacitance.
A phase-separated polymer blend with acetylene carbon black creates smooth semiconductive shield layers.
A thermoplastic adhesive sheet bonds a wire harness structure directly to an automotive roof liner.
A segmented wire harness exterior member applies distinct resin materials to specific longitudinal sections for targeted protection.
A woven cylindrical cover combines conductor and reinforced fiber strands to protect high-voltage wires.
Fiberglass separators replace toxic halogenated materials to cut emissions and cost.
A wire protection pipe features a flat portion with a recess to reduce vertical height.
A segmented cable shield uses isolated conductive patches on a dielectric substrate to block electromagnetic interference without continuous grounding.
A sheet-shaped exterior member adapts to both flat and bent wire harness regions via partial ultrasonic welding, eliminating the need for separate components.
A trunk line middle distributor connects power storage to bundled wiring bodies in a vehicle wire harness system.
A cable assembly bundles fiber optic and power cables using a sleeve, grommet dam, and bonding material to prevent installation damage.
A binding unit and guide track constrain wiring harness motion along a predetermined path, preventing damage from friction with nearby vehicle components.
Segmented waveguides in a polymer film differentiate bending losses from mechanical damage, preventing electrical breakdowns.
Thermoelectric cooling elements embedded in PoE cable jackets dissipate heat, preventing fire hazards and enabling safe cable bundling.
Silane crosslinking binds magnesium dihydroxide fillers into a polyolefin matrix, maintaining tensile strength while achieving halogen-free flame retardancy.
A tubular protective cover uses a foil outer layer, fiberglass core, and felt inner lining to shield cables.
Mixed zero halogen insulation layers balance flame suppression and flexibility while eliminating toxic gas release.
Segmented cap and frame reduce weight by 40% while maintaining secure locking.
Specific viscosity filler prevents gas flow through cable cavities without deforming dielectric insulation.
A composite cable pair uses opposite wire twisting directions to maintain structural integrity during steering operations.
A wire harness uses a rigid routing path regulator covered by thermal shrinkable tubing to prevent twisting misalignment and reduce structural size.
Sandwiching electric wires between adhesive tapes creates a flat bundle that increases the roof lining adhesion area and prevents wire movement.
A cable insulation composition uses a dual sulfur-containing antioxidant blend to stabilize peroxide crosslinking agents in ethylene-based polymers.
Vanadium phosphate glass particles replace halogenated compounds in polyolefin cable jackets, achieving UL-94 V-0 ratings while minimizing environmental harm.
Linear medium-density polyethylene resin composition for power cable insulation layers.
Segmented fluorine and polyolefin layers resolve mechanical strength versus fitting property trade-offs.
Segmented ground terminals use thinner deformation portions between rigid fastening segments to adapt to foreign matter and ensure secure attachment.
Printed identification symbols on electrical conductor sheaths enable distinct coil marking without manual application.
Segmented insulation elements isolate adjacent conductors, lowering crosstalk while cutting material costs and boosting flexibility.
Opposing helical polymeric layers over segmented metallic shielding tape reduce signal loss and skew in high-speed data transmission.
Composite foams with peroxide-modified HDPE improve crush resistance and cell uniformity for mobile telecommunication systems.
Segmented rigid and flexible outer portions maintain installation geometry while enabling compact folding.
Positioning the unit in an intermediate sheath protects it from mechanical stress while enabling electromagnetic field coupling.
A USB 3.0 Type C connector uses nested molding and adhesive layers to create a sealed transmission path.
Dielectric fluid and elastomeric seals balance pressure in underwater connectors, reducing unmating force and preventing electrical leakage.
A holder member guides a flat cable through a curved path to absorb tension, preventing damage from external forces and static electricity.