At SITEX 2026, held from February 21 to 23 in Surat, Stäubli is demonstrating how advanced innovation translates into measurable benefits for weaving mills. One of India’s most prominent textile industry events, SITEX provides a platform for Stäubli to present state-of-the-art solutions tailored to regional requirements, with a strong focus on performance, reliability, and power efficiency.
High-Performance Solutions Tailored to Indian Weaving Needs
At Booth 242, visitors can explore how Stäubli’s latest technologies help mills achieve higher speed, improved precision, and superior fabric quality. The company is showcasing its expertise across weaving preparation, cam and dobby shedding solutions, and Jacquard technologies—combining global know-how with local market needs.
A key highlight is the S3018 rotary dobby for waterjet weaving machines, engineered to deliver exceptional reactivity and high running speeds. Designed for stable and optimized lifting performance, the solution supports mills seeking greater versatility and consistent production.
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In Jacquard weaving, Stäubli is presenting the LX PRO Jacquard machine, displayed on an ITEMA EVO 380 cm loom for saree applications. Equipped with TC8 controllers and NOEMI electronics, the LX PRO delivers high energy savings, precision, and reliability—qualities that have made it a preferred choice among Indian weaving mills.
Complementing these solutions, Stäubli is also highlighting its warp preparation automation systems, including the SAFIR S32 drawing-in system and TOPMATIC and TIEPRO warp tying machines. These technologies are designed to reduce downtime, speed up style changes, and enhance overall operational efficiency.
Together, the showcased solutions address current industry challenges related to productivity, fabric excellence, and energy optimization. With more than 130 years of experience in high-performance equipment development, Stäubli continues to support weaving mills in India and worldwide with durable, efficient technologies aligned with evolving production demands.
















