A bent exposed central conductor shifts microwave heating to the tip end, improving coagulation and hemostasis while limiting base-end overheating.
A bent exposed central conductor and concave slit redirect microwaves to raise tip-end heat for better tissue coagulation and hemostasis.
Sequential dielectric coating and metallization enable 54 AWG or smaller coaxial cables with better flexibility and electrical performance.
Additive manufacturing enables 54 AWG or smaller coaxial cables, improving flexibility and navigation in confined medical spaces.
A ribbed dielectric core inside a shielded rail structure cuts signal leakage and attenuation while allowing flexible routing in tight spaces.
A spiral-wrapped sheath over an extruded twin-core structure improves cable bending, stability, and electrical performance for high-speed signals.
Dual metal shielding and added insulation stabilize core wires, improve bending resistance, and maintain high-speed cable shielding.
A smoothed insulator surface enables direct metallized shielding that removes air pockets, controls capacitance, and cuts timing skew.
Multiple dielectric layers with different permittivities help differential cables reduce skew and signal degradation despite conductor spacing tolerances.
Air cavities between insulated core wires and the shield lower dielectric constant, cutting attenuation and extending high-speed cable bandwidth.
A lower-dielectric intermediate layer balances shielded differential pairs to cut mode conversion, noise, and high-frequency signal loss.
A coaxial wire incorporates a fused film layer between the internal insulator and external conductor to block plasticizer migration.
Optimizing arc radii and conductor spacing in twinaxial cables reduces mode conversion while maintaining manufacturing ease.
Bifurcated electrical insulators with higher dielectric constants minimize resonance caused by periodic impedance discontinuities in cable shields.
Limiting route change points to 1.43 per meter suppresses transmission loss in high-frequency signals while enabling space-saving routing.
A semi-solid audio cable uses spirally wrapped non-conductive thread to position the conductor within an air void.
Nested coaxial structure reduces downhole cable diameter below 4 mm while maintaining sufficient current carrying capacity for coiled tubing applications.
A semi-solid balanced audio cable uses a spirally wrapped non-conductive thread to position the conductor within an air void.