A modular polymeric insulator joins segments via an encased non-metallic pin to enhance flexural strength and radio interference resistance.
A photovoltaic cable uses a hydrophobic diffusion barrier between the insulation and outer sheath to block water ingress.
A touch display panel employs a stepped insulating layer with varying heights to protect conductive lines, preventing cracks during bending.
Embedding a metal reinforcement in resin pipe bends suppresses springback, resolving the trade-off between weight reduction and shape retention reliability.
A wire harness connection uses a tubular covering ventilation to dissipate heat generated by electrical current.
A connector prevents oil infiltration between the cable and cover unit using a cohesion unit fixed by cohesive fracture.
Segmenting the silencer into an acoustic body and rigid locking member preserves insulation while enabling stable clip attachment without insert-molding.
Controlled heat and pressure melt insulation toward the tube open end, sealing wires against fluid ingress while preserving strand integrity.
Engaging protrusion locks barrel pieces against tensile load, maintaining core-to-shield distance and high-frequency signal integrity.
Inner high LOI sheath layer reduces droplet generation to meet EN 50399 certification.
Segmented axial locks prevent sheathing withdrawal, maintaining path regulation despite single lock failure.
A cover portion with a hole communicates internal space to suppress temperature rise at the power supply connection.
A power circuit case aligns its rear wall air outlet with a housing opening to improve ventilation efficiency.
Elastic protective tubes and tightening members secure insulated wires at branching points, preventing stone chip damage that causes signal interference.
An asymmetric clamp mark prevents wire twisting from vibration and maintains electrical conductivity by fixing rotation.
Rotating mandrel ensures uniform polymer coating thickness, preserving conduit cross-sectional area and reducing wire pulling forces during installation.
Optimized oxide ratios in the ceramifiable composition create a crack-free ceramic layer that withstands water jet impacts.
A corrugated tube features a soft outer layer stacked concentrically with the main body to absorb sound energy upon contact.
A segmented multi-core cable design reduces material costs by limiting the main cable length to the longest branch connection.
A conductor joint uses a nested tubular sleeve and core rod to maintain cable diameter during hydraulic compression.
External mounting of a compact spillover fitting preserves lateral cable trough capacity while maintaining precise bend radius control.
A modular cable management assembly uses a metal bar with U-shaped sections and locking members to secure network cables.
A wire support portion on a protector bottom plate inclines an electric wire away from hard resin tube cutting edges, preventing insulation coating damage.
Resin molding fills minute gaps inside the sheath, resolving incomplete gap filling challenges that limit traditional heat shrinkable tube solutions.
Arc-shaped guiding walls maintain special wire curvature, preventing tape wrapping interference and reducing vehicle loading space.
Magnesium phosphate hydrate particles absorb heat through dehydration reactions to maintain cable temperature below 100°C.
Elastic protrusions inside a tubular exterior member securely hold conductive paths, preventing vibration-induced shavings and maintaining water-tightness.
A wire harness indicator positioned on the back surface of the cable unit enables visual twist detection during vehicle attachment.
A vehicular circuit body uses a modular trunk line to connect control units and branch lines.
Elastomeric insulation extends past cut-off points to shield exposed conductors, preventing electrical hazards from collision separation.
Ceiling-mounted fluid distribution devices deliver controlled firefighting flow to quench fires in high-piled storage.
A wire harness sheath incorporates a bellows-shaped portion to absorb impact forces from flying stones.
Thick rigid sheath sections enable precise route restriction while thin flexible parts reduce manufacturing workload and component count.
Chemical bonding of the stress cone and field grading adapter via vulcanization removes interface voids and contamination risks that cause electrical breakdown.