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Syensqo showcases advanced materials at Fakuma 2026

Syensqo’s specialty polymers performance and processing versatility enable increasingly complex components from miniature precision parts to large-scale structures

October, 2, 2026 - Syensqo, a global leader in performance materials, will showcase its portfolio of specialty polymers at Fakuma 2026 in Friedrichshafen, Germany, demonstrating how these materials enable manufacturers to produce increasingly complex components across a wide range of sizes, applications and production technologies.

“Material performance is only part of the equation. How a material flows, forms and joins during manufacturing can determine whether an ambitious design can become an industrial reality. At Fakuma, we are bringing materials, processes and finished components together so engineers can explore those possibilities firsthand,” said Wolf Sanner EVP Electronics & Industrial and Channel Partner & Digital Sales.

Across electric, hybrid and internal-combustion vehicles, materials must meet very different design and manufacturing requirements. Syensqo’s portfolio addresses these challenges across applications ranging from electrical insulation to power electronics and thermal management. The company says it will present the following materials during Fakuma:

  • Electric motor: KetaSpire PEEK extruded directly onto magnet wire conductors, complemented by Ajedium films and extruded profiles for slot liners; and Ryton Supreme HF for thin-wall molded bobbins and resolvers
  • 800V power module: Amodel PPA Bios for complex, miniaturized injection-molded components with demanding dimensional, thermal and electrical requirements
  • Busbars: Ryton PPS Orange for extrusion or injection molding, combines high visibility with integrated orange color to eliminate an in-process coloring step, helping simplify component manufacturing in e-motors, power electronics and fast-charging systems
  • Thermal management systems: Ryton PPS XE for extruded and laser-welded coolant lines, connectors and brackets; Amodel PPA for injection-molded ATF guide ring and delivery tube awarded by Altair Enlighten Award in 2025 and nominated finalist at PACE Awards 2026 for enabling a novel stator cooling design, resulting in a 47% weight reduction and 36% cost savings compared to traditional metal solutions (Syensqo´s claim).

The same demanding material requirements found in automotive are increasingly relevant in AI data centers, where rising power densities and more compact designs require thermal resistance, dimensional precision and electrical reliability. Syensqo will also showcase Amodel PPA and Ryton PPS for capacitor housings, Omnix HPPA for high-precision DDR5 connector components, and Halar ECTFE, Ryton PPS and Ixef PARA for connectivity and electrical protection applications.

Beyond that, Syensqo says its materials’ performance and processing versatility opens opportunities across very different industries and component scales.

  • Construction and thermal systems: Ryton PPS for blow-molded, thermoformed and machined pipes and water lines used in construction and heat-pump systems.
  • Consumer goods: Omnix HPPA 1030 ECHO RPRF, with 98% recycled content, for injection-molded components in the woom WOW self-balancing toddler bike.
  • Food-contact applications: high-purity Duradex PPSU ECHO, produced with 38% certified circular[1] feedstock, for molded nursing bottles, and Radel PPSU ultra-fine water-based coatings for metal surfaces in premium non-stick cookware.
  • Precision electronics: high-performance polymers for micro-molded components requiring very small dimensions and precise manufacturing.

Syensqo boasts global laboratory capabilities and local application expertise as a complement to its material portfolio, supporting customers from material and process selection through component design, testing, validation and production. The company also says its customers can draw on ECHO portfolio, designed to offer equivalent performance and specifications, helping customers integrate more circular materials while minimizing revalidation requirements.