Product Description
Auto Tracking Function Ground-Mounted Systems Single Axis Solar Tracker Bracket
The single-axis solar auto-tracking racking system designed for ground-mounted photovoltaic power plants maximises the efficiency of sunlight capture by adjusting the angle of the photovoltaic panels in real time through intelligent algorithms (±45°dynamic tracking), and improves power generation by 30%-40% compared with that of fixed racking. The system adopts hot-dipped galvanised steel and modular structure, which is suitable for harsh environments such as deserts, hills and high humidity, and supports the rapid deployment of 100 MW power plants, making it an ideal choice for large-scale terrestrial power plants and industrial and commercial energy storage projects.
System type |
Independent Drive |
NO.of Panel |
2-10 Piece(≤23 sq.m.) |
Power Consumption |
5.0Kwh/set/year |
Max. wind speed in running |
24 m/s |
Max. wind speed in fat |
40 m/s |
Rust protection |
Hot-dipped galvanized/superdyma |
Azimuth angle tracking range |
±45ºC |
Elevation angle tracking range |
45ºC |
Control model |
Time + GPS Control |
Tracking accuracy |
0.1°-2°(Adjustable) |
Control tilt angle method |
Manual remote control+remote computer control |
Core Advantages
1. High-efficiency power generation performance
Intelligent single-axis tracking: Dynamically adjusts the angle of the PV panels based on light-sensing sensors and meteorological data, increasing average daily power generation by more than 35%.
Bifacial Module Optimisation: Adjustable height from the ground (1.5m-4m), maximising the backside power generation gain of the bifacial module (+15%-20%).
2. Industrial-grade durability
Hot-dip galvanised anti-corrosion (zinc layer ≥85μm), passed ISO 1461 salt spray test (3000 hours without rusting), adapted to coastal salt spray, industrial pollution and other C5M level environments.
Resistant to extreme climate: wind load up to 60m/s (class 14 typhoon), snow load 5500Pa, passed IEC 62817 structural certification.
3. Fully automatic intelligent control
AI Tracking Algorithm: Built-in weather prediction and shadow avoidance function, automatic switching of high efficiency mode in cloudy/rainy weather, daily power consumption <0.12kWh.
Remote monitoring: supports 4G/Wi-Fi networking, real-time view of power generation data and equipment status, fault self-test rate >90%.
4. Fast installation and low maintenance
Modular pre-assembly design: 50% reduction in on-site assembly time, adaptable to helical pile, concrete foundation and micro-piling scheme, daily installation capacity ≥8MW.
Self-lubricating bearings + hydrophobic coating: annual maintenance cost is less than 1% of power generation revenue, automatic reset to wind-resistant angle (25°) after disaster.
5. Low Carbon & Economy
90% materials recyclable, 30% lower energy consumption for production, LEED certification compliant.
Payback period < 4 years, LCOE (cost of kilowatt-hour) as low as $0.021/kWh.
Installation and Maintenance Guide
Installation steps
Foundation construction: Select pile foundation according to geological report (recommended helical pile torque ≥4000N-m), horizontal error ≤1.5°.
Bracket assembly:
Main beam and column bolt fastening torque 65N-m±5%, guide rail spacing adapted to 30-60mm component border (error ±1mm).
System integration:
Installation of IP68 protection motor, connect the light sensor and PLC controller, calibrate the zero angle (accuracy ± 0.5 °).
Test high wind response (wind speed ≥20m/s auto reset, delay <3 seconds).
Maintenance Recommendations
Monthly inspection: clean track debris, check bolt anti-loosening marks, motor gear lubrication (NLGI grade 2 grease).
Annual maintenance: check galvanising thickness (local ≥70μm), update control software, electrical insulation test (≥100MΩ).
Post-disaster treatment: forced reset of bracket after typhoon/sandstorm, inspection of structural deformation and grounding resistance (≤4Ω).

Typical Application Scenarios
Large ground power station: desert, Gobi, wasteland and other GW-level centralised PV projects.
Agricultural/pastoral complementary photovoltaic: height-adjustable bracket (2m-4m), compatible with agricultural machinery and animal husbandry activities.
Ecological restoration in mining areas: suitable for rugged terrain, with vegetation restoration to achieve the integration of 'PV + reclamation'.
Microgrid system: Off-grid area with energy storage to achieve 24-hour stable power supply.
Distributed power generation in industrial areas: energy replacement solutions for chemical plants, oil refineries and other highly polluted areas.
Company Profile

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FAQ
Q1: How does the tracking angle adapt to the sun altitude in different seasons?
A: The system has built-in seasonal mode and GPS positioning, which automatically calculates the optimal inclination angle of latitude (e.g. 20° in summer, 40° in winter), or can be manually fine-tuned via APP.
Q2: Is it compatible with PERC/HJT/Calcitonite modules?
A: It supports all mainstream technologies, with maximum module size of 2384×1303mm, and ventilation spacing reserved on the back to enhance the double-sided rate.
Q3: How reliable is the system in a sandy environment?
A: The drive components are designed with sealed bearings and dust cover, which can be measured to operate stably in PM10>1500μg/m³ environment, and the self-cleaning coating reduces dust accumulation by 90%.
Q4: How long is the delivery cycle for 100MW projects?
A: Standardised module transportation + automated installation, 100MW project only takes 10-14 weeks from order to grid connection (including foundation construction).
Q5: What are the warranty and after-sales terms?
A: We provide 15-year warranty on the main structure, 8-year warranty on the drive system, 48-hour global emergency response, and lifetime free remote technical support.