In terms of market taxonomy, anti‑static fibres are classified by material construction into several distinct types. Conductive fibers, typically copper‑ or silver‑coated polymer strands, deliver the highest surface conductivity and are priced for premium aerospace and electronics applications, representing roughly 30 % of type‑based revenue. Carbon‑based fibers, incorporating graphite or carbon nanotubes within a polymer matrix, offer moderate conductivity with improved mechanical strength; they account for about 25 % of the segment, favored in automotive interiors and protective apparel. Metallic‑coated fibers, such as nickel‑plated nylon, provide a balance of conductivity and flexibility and capture roughly 20 % of the market, largely driven by textile‑manufacturing cycles. Polymer‑blend antistatic fibers, which embed antistatic agents (e.g., quaternary ammonium salts) into polyester, polypropylene, or nylon backbones, dominate the volume side with an estimated 15 % share, owing to low cost and ease of processing for mass‑market garments. Emerging nanocomposite fibers, integrating nanometer‑scale conductive fillers into biodegradable polymers, are still nascent but projected to grow rapidly, currently contributing about 10 % of type‑based sales. This type‑level market taxonomy clarifies how material‑specific performance and cost structures allocate revenue across the anti‑static fibres market.