The HS-X6 represents a midpoint between our entry-level and reference models, applying the same engineering framework as the HS-X9 but with a six-conductor layout. The focus remains on predictable electrical behaviour, mechanical integrity, and comprehensive noise management — not arbitrary complexity. Six-Conductor Architecture The HS-X6 uses six individually insulated 1.5 mm conductors, arranged in a controlled geometry to manage current distribution and interactions more effectively than a single large conductor. This multi-conductor approach draws on principles used in aerospace and defence systems, where predictable behaviour and consistent performance are required under real-world conditions. The benefits include: Balanced current pathways Reduced internal interaction between conductors Lower mechanical stress per conductor Improved high-frequency behaviour Conductors are formed from high-purity OCC copper, selected for consistency, low defect density, and long-term mechanical stability. Controlled Geometry and Braided Shielding The six cores are arranged with fixed spacing and orientation, preserving predictable conductor relationships and reducing irregular coupling between paths. A braided shielding system surrounds the conductors, managing electromagnetic interference while maintaining flexibility and long-term shielding behaviour. Unified Outer Structure All six conductors and shielding are contained within a unified outer sleeve, forming a stable mechanical assembly that suppresses micro-movement between conductors under load. This minimises modulation noise arising from mechanical movement within the cable. Precision Connector System The HS-X6 uses the same high-density engineered composite connectors as the rest of the Titan series, prioritising: Electrically neutral behaviour Mechanical damping Engineered internal structure Internal connector geometry is shaped to absorb vibration, relieve flex stress, and isolate the termination from mechanical disturbances. Radial Compression Retention System (RCRS™) The radial compression retention system secures the cable into the connector without distortion or degradation. A turbine-profile elastomeric interface expands uniformly via a calibrated retaining ring into both cable and connector, delivering: Uniform pressure distribution No point loading No conductor deformation Long-term mechanical stability This provides a secure, non-intrusive termination without compromising performance. Integrated FFT Module The central module houses an expanded FFT system designed to suppress high-frequency noise at the cable level. A dedicated DC input allows the FFT system to operate independently, maintaining consistent performance while minimising interference passed to downstream equipment. Structured Cable Architecture The HS-X6 is designed with a defined structural point at the FFT module, preventing the cable from acting as a single resonant or inductive length. This reduces high-frequency noise propagation while preserving full electrical continuity. Power flows uninterrupted.Noise does not. Titan Intent The HS-X6 exists to apply the Titan design philosophy to a six-conductor layout — blending engineering discipline with practical performance gains. It is logical, measurable, and purposeful. For more information on FFT click here