Real-world performance is controlled by material choice, textile construction, contact design, use conditions, and care. This is why a conductive yarn, a conductive fabric, and a finished product can all perform differently.
A. Conductive materialSilver, copper, nickel, stainless steel, carbon, conductive polymers, and composites each behave differently.
B. Construction levelFiber-, yarn-, fabric-, surface-, and system-level conductivity produce different durability and hand feel.
C. Textile structureKnit, woven, mesh, embroidery, coating, and lamination change stretch, coverage, and conductive continuity.
D. Contact resistanceElectrical behavior depends on how well conductive areas touch each other, not only on the raw material.
E. Mechanical stressStretching, folding, abrasion, sewing, and repeated wear can change resistance over time.
F. Washing and chemistryWater, detergent, sweat, bleach, heat, and friction may affect coating adhesion, oxidation, and conductivity.
G. EnvironmentHumidity, salt, sweat, air exposure, corrosion, and temperature can affect long-term stability.
H. Product integrationSeams, snaps, connectors, lining, skin contact, and edge finishing can change final product performance.