The types segment of Conductive Textiles taxonomy classifies products by material architecture and manufacturing approach, encompassing four sub‑categories: conductive fibers, conductive coatings, conductive yarns, and conductive fabrics. Conductive fibers are further split into metallic (e.g., silver, copper), carbon‑based (graphene, carbon nanotubes), and polymeric (intrinsically conductive polymers) variants, each influencing cost structure and conductivity performance. Conductive coatings include metal plating, sputtered films, and printable conductive inks, offering post‑fabrication functionalization for legacy textiles. Conductive yarns are produced via core‑spun or wrapped constructions, enabling integration into traditional knitting or weaving processes while preserving textile hand. Conductive fabrics comprise woven, non‑woven, and knitted formats, each delivering distinct mechanical properties and sensor distribution capabilities. While exact market shares vary, conductive fibers and yarns together represent roughly 55 % of the market, reflecting their foundational role in product design, whereas coatings and fabrics occupy the remaining 45 % by enabling retrofitting and specialized form factors. This typology underpins the Conductive Textiles segmentation framework and informs R&D allocation.