As the global energy transition accelerates toward "Net Zero," the photovoltaic (PV) industry is shifting its focus from raw installation capacity to LCOE (Levelized Cost of Energy) optimization. Static mounting systems, while reliable, leave significant energy potential untapped. This is where Dual Axis Solar Tracking Systems emerge as the pinnacle of utility-scale and high-efficiency commercial solar projects.
Our solutions integrate advanced Astronomical Algorithms with real-time GPS positioning, ensuring that solar panels are always perpendicular to the sun's rays. This maximize-irradiance approach is particularly vital in high-latitude regions and for projects utilizing bifacial modules, where the back-side yield is significantly enhanced by precision tracking.
Shandong Zhaori New Energy Tech. Co., Ltd. is a high-tech and new energy company based on independent intellectual property rights. Founded in June 2012, we have established a robust organizational structure comprising 10 specialized departments: R&D, Technical, Engineering, Production, Quality Assurance, Development, Foreign Trade, Domestic Trade, I.M.D., and more.
With a team of over 60 professional technology talents and a decade of focus on solar tracking technology, we represent the leading edge of Chinese solar manufacturing excellence. Our commitment to the "More simple, more reliable, and more effective" principle ensures that every Zhaori tracker is built for longevity and performance.
Our manufacturing facility spans a massive 50,000 square meters. To ensure the highest level of precision, we utilize a suite of advanced industry 4.0 equipment, including CNC machine tools, laser cutting machines, automatic welding robots, and plasma machines. This infrastructure allows us to maintain a consistent output of 500MW per month.
Every product undergoes a rigorous multi-stage quality control process: from raw material screening and ultrasonic welding to anti-rust treatment and final inspection. Our strict adherence to ISO quality management systems and TUV/CE certifications provides our global partners with the reliability required for 25-year project lifespans.
Our authority is backed by a global portfolio of patents and certifications, ensuring seamless project approval in any jurisdiction.
Europe, USA, Canada, Australia, Japan, South Korea, Thailand, India, Brazil, South Africa.
8 National Invention Patents and 30+ Utility model patents.
TUV, CE, and ISO 9001 quality management system certified.
Optimized for high-temperature durability and sandstorm resistance. 20MW project success.
Smart sensors detect snow accumulation and tilt modules to shed load automatically.
Flexible mounting systems designed for uneven slopes and complex topography.
Dual-axis systems integrated into urban infrastructure for maximum space efficiency.
The next generation of Zhaori trackers focuses on AI-driven predictive maintenance and decentralized control. By leveraging IoT sensors, our future systems will communicate with local weather stations to preemptively move to "Safe Mode" during extreme wind events, while our cloud-based monitoring platform will provide real-time yield analytics to stakeholders worldwide.
5MW Dual Axis Project in North China
20MW Utility Project in Central China
360MW Single Axis Tracker in Desert
50MW SPIC Commercial Project
Industrial Factory Rooftop Project
Depending on the local solar irradiance (DNI), a Dual Axis system can increase yield by up to 45%. This typically results in a 2-4 year shorter payback period compared to fixed systems in high-yield areas.
Our trackers are equipped with anemometers and a "Stow Mode" function. When wind speeds exceed safety thresholds, the tracker automatically moves to a horizontal position to minimize wind load.
Zhaori trackers are designed for "low-touch" maintenance. We recommend bi-annual inspections of the drive mechanism and cleaning of the sensors. Our astronomical algorithm reduces the reliance on optical sensors that can be obscured by dust.
Absolutely. In fact, Dual Axis tracking is the most effective way to utilize bifacial technology, as it captures maximized reflected light on the rear side throughout the entire day.