Product Description
High Energy Output High Precision Single Axis Solar Tracker Bracket
High Precision Single-Axis Solar Tracking Racking System | Intelligent and Efficient Power Generation Solutions
The high-precision single-axis solar tracking racking system is specially designed for large-scale ground power stations, industrial and commercial rooftops and complex terrains. It adopts aerospace-grade aluminium alloy guide rails and intelligent angle adjustment technology, and is suitable for bifacial modules and ultra-long-sized PV panels (2,600mm+). With ±0.5° dynamic tracking accuracy and AI light-sensing algorithm, the average daily power generation is increased by 35%-50% compared with fixed racking, and it provides a 10-year warranty for the main structure, helping customers achieve efficient conversion of clean energy.
Core Parameters.
Material: 6061-T6 aluminium alloy rails + Q345B carbon steel main beams
Load capacity: 12 tonnes for single set, compatible with double-sided modules/2600×1500mm PV panels
Adjustment range: ±45°automatic tracking + 0°-15°manual tilt adjustment
Protection: IP68 motor + weather resistant coating (salt spray test ≥ 5000 hours)
Certification: ISO 9001, CE, RoHS 2.0, etc.
Core Advantages
1. Ultra-high precision tracking
**±0.5°Dynamic Adjustment**: Adopting astronomical algorithm + high precision angle sensor, real-time calibration of module inclination angle, power generation is increased by 10%-15% compared with traditional single-axis.
Double-sided module optimisation: Adjustable height from 3m-6m above ground, up to 25% gain in power generation on the back side.
2. Intelligent control and low O&M
AI Light Sensing Algorithm: Dynamically adjust the angle by combining with weather satellite data, power consumption <0.1kWh/day in cloudy mode, support remote monitoring and fault warning.
Modular design: Factory prefabrication rate 95%, on-site assembly only requires fastening bolts (torque 50N-m±5%), daily installation capacity ≥15MW.
Annual maintenance cost <0.3% of power generation revenue, free coating repair service provided.
3. High load-bearing and wind-resistant performance
Box section main beam: 40% increase in flexural rigidity, passed IEC 62817 wind test (wind speed ≥120km/h).
Triple anti-tipping device: rope reinforcement + base anchorage + intelligent gravity sensor, tilt angle error ≤2°.
4. Wide compatibility
Supports PERC/HJT/Calcium-Titanium modules, with adjustable rail spacing up to 30-80mm, suitable for Huawei, SMA and other mainstream inverters.
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 |
Typical Application Scenarios
Large-scale ground power station: Sahara, Gobi and other arid areas, suitable for double-sided module agricultural and solar complementary.
Industrial and commercial rooftops: distributed power generation in factories and warehouses, suitable for highly polluted environments.
Port PV Terminal: 150km/h wind load resistant design to withstand marine salt spray corrosion.
Data Centre Cooling System: Combined with PV + energy storage, it provides green power for high energy-consuming facilities.
Installation and Maintenance Guide
Installation Procedure.
Foundation Survey .
Use geological radar to detect foundation stability, helical pile torque ≥ 8000N-m (sand foundation).
Verticality error of base pre-embedded bolts ≤1°.
Main beam assembly.
Insert the prefabricated main beam into the base casing, tightening bolt torque 150N-m±10%.
Calibrate the horizontal error (laser range finder ≤2mm).
Module Installation.
Install the rails and PV panels to ensure that the spacing error between the module frame and the rails is ≤1mm.
System Commissioning.
Connect the PLC controller, calibrate the initial tilt angle and tracking sensitivity (accuracy ±0.5°).
Maintenance Recommendations
Monthly inspection.
Check the bolt anti-loosening marks, clean the guide rails from dust (high pressure air gun), lubricate the guide rails (silicone-based grease NLGI grade 2).
Annual maintenance.
Replace drive bearings (-40ºC~120ºC grease resistant), update control software.
Use a coating thickness gauge to check the thickness of the galvanised layer (partial ≥70μm needs to be re-coated).


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FAQ
Q1: How does the system achieve ±0.5° high precision tracking?
A: Adopting astronomical algorithm + high-precision angle sensor, combined with dynamic calibration of meteorological data, the accuracy is 3 times higher than traditional single-axis.
Q2: Does it support the renovation of old factories?
A: Yes! The modular design can be adapted to sloping roofs (slope ≤ 30°), providing customised base solutions.
Q3: What is the reliability in coastal typhoon areas?
A: Designed for 150km/h wind load, passes IEC 62817 wind test, automatically resets to safe angle (delay <2 seconds).
Q4: What is the delivery cycle of 100MW project?
A: Standardised prefabrication + regional warehousing, 100MW project only takes 12-16 weeks from order to grid connection.
Q5: How to deal with the coating peeling off during the warranty period?
A: We provide free coating repair service, on-site repainting of weather resistant coating, unlimited times during the warranty period.