TL;DR
Antaisolar announced an upgraded 80-meter multi-drive solar tracker at SNEC 2026, featuring reinforced structure and high wind resistance. The new system aims to reduce costs and improve performance for large ground-mounted solar farms.
Antaisolar has introduced an upgraded version of its TAI-Universal 2P multi-drive solar tracker at SNEC 2026, featuring an 80-meter span and supporting wind speeds up to 60 m/s. This development aims to enhance structural stability and reduce project costs for large-scale ground-mounted solar installations.
The new tracker system incorporates reinforced main structures and joint points, enabling spans of up to 80 meters. According to Antaisolar, this longer span reduces the number of foundations needed, lowering the levelized cost of energy (LCOE) for large projects, particularly in desert and arid regions where foundation and wind performance are critical.
The 2P multi-drive architecture distributes torque across multiple drive points along each row, improving stability and supporting higher power modules and increased DC/AC ratios. The system is also designed to enhance bifacial gains by minimizing rear-side shading, which can boost energy yield in bifacial module deployments.
While Antaisolar did not specify a production timeline for the upgraded tracker, the company highlighted its focus on large-scale projects and cost-effective deployment. The company also showcased other innovations, including the AT-Spark 1P tracker with increased structural stiffness and the SmartTrail intelligent control system capable of operating under extreme weather conditions.
Implications for Large-Scale Solar Project Costs
The introduction of an 80-meter span solar tracker with high wind resistance could significantly impact the economics of utility-scale solar farms. By reducing foundation requirements and improving structural stability, the system has the potential to lower installation costs and improve energy yield, especially in challenging environments like deserts. This advancement aligns with industry efforts to optimize cost efficiency and performance for large renewable energy projects, making solar more competitive globally.

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Growing Demand for Long-Span, Durable Trackers
Recent years have seen a push for larger, more efficient solar trackers capable of supporting high-power modules and operating reliably in diverse climates. Antaisolar’s new system responds to this trend, aiming to address challenges related to structural stability and wind resilience in large-scale deployments. The company’s focus on reinforced design and high wind resistance reflects industry needs for robust, cost-effective solutions in arid and high-wind regions.
At SNEC 2026, the company also announced certifications and strategic partnerships, including TÜV Rheinland certification for UK market access and an ESG cooperation with TÜV SÜD. Its shipment record of over 50 GW globally by the end of 2025 underscores its growing presence in the industry.
“The longer span and reinforced structure of Antaisolar’s new tracker aim to reduce project costs while maintaining high structural stability in challenging environments.”
— an anonymous researcher
Unconfirmed Production Timeline and Market Adoption
Antaisolar has not announced a specific timeline for mass production or deployment of the 80-meter tracker. It remains unclear how quickly the system will be adopted in commercial projects, or how it will perform in real-world conditions over time.
Next Steps for Deployment and Industry Adoption
The company is expected to initiate pilot projects and gather field data to validate performance claims. Further announcements regarding commercial rollouts, production schedules, and client deployments are anticipated in the coming months. Industry analysts will monitor how the system’s cost and performance benefits translate into market adoption.
Key Questions
When will the 80-meter tracker be available for commercial projects?
Antaisolar has not yet announced a specific release date. The system is currently in the development or testing phase, with deployment likely to follow after pilot projects and validation.
How does the new tracker improve upon previous models?
The upgraded system features reinforced structures supporting longer spans of up to 80 meters, higher wind resistance up to 60 m/s, and better torque distribution, all aimed at reducing costs and increasing stability in large-scale deployments.
What regions are most likely to benefit from this technology?
Desert and arid regions with high wind speeds are prime markets, as the system is designed to withstand extreme weather and reduce foundation costs in challenging terrains.
Will the new tracker support bifacial modules?
Yes, the design aims to improve bifacial gain by reducing rear-side shading, which is beneficial for bifacial module deployment.
Source: PV Magazine