Basic Parameters
Product Type: Tilted Single-Axis Tracker
Drive Mechanism: Sprocket + Gear Reducer (Multi-Row Linkage)
Main Shaft Tilt Angle: 10-30°
Foundation Type: PHC Piles / Driven Piles / Bored Piles
Tracking Range: ±60°
Module Capacity: 50-300 kWp
Wind Resistance Design: 47 m/s
High Wind Protection: Activated at 18 m/s
Minimum Ground Clearance: 0.5 m (or project-specific)
Land Occupancy: 14,800 m²/MW (at 20° latitude)
Automation System Parameters
Tracking Mode: Astronomical Algorithm / Active Tracking / Anti-Shadowing AI
Tracking Accuracy: ≤1°
Control Method: Siemens PLC Closed-Loop Feedback Control
Control Precision: ≤0.3°
Power Supply Mode: AC Power from Substation
Supply Voltage: AC 380V
Communication Method: Zigbee Wireless / Modbus
Monitoring Device: SCADA (Optional)
Ingress Protection Rating: ≥IP65
Weather Protection: High Wind / Snowfall / Hail
Description
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The inclined single-axis tracking bracket combines the tracking capability of a horizontal single-axis with the tilt Angle advantage of a fixed bracket. Through an array of axis drive components with a specific initial tilt Angle, it simultaneously tracks the azimuth and partial elevation Angle changes of the sun, achieving more precise tracking of the sun's trajectory. This system can maximize the efficiency of light energy capture in mid-high latitude regions or projects with distinct seasonal patterns, making it an ideal solution for those pursuing ultimate power generation gains.
The design and installation of the inclined single-axis system require precise calculation of the local optimal initial inclination Angle and comprehensive consideration of the terrain and the shading of the front and rear seats. Its control strategy is more complex than that of a single axis, requiring a balance between tracking benefits and additional land use and costs.
Detailed description of advantages
Higher power generation gain: By simultaneously optimizing the azimuth Angle and part of the altitude Angle, the increase in power generation is usually better than that of a single axis, especially in spring, autumn and winter when the solar altitude Angle is lower.
Superior performance in mid-high latitude regions: In view of the fact that the solar altitude Angle in mid-high latitude regions is relatively low throughout the year, its preset inclination Angle can more effectively utilize oblique sunlight, significantly enhancing the power generation capacity during low-sunlight periods.
Optimized land utilization rate: Although it uses slightly more land than a single-axis structure, it still significantly saves land compared to a double-axis support, maximizing power generation efficiency on limited land resources.
Smoothing the output curve throughout the year: It can effectively make up for the relative performance deficiency of the single-axis system in the winter half-year, making the annual power generation distribution of the power station more balanced and enhancing the stability and reliability of energy output.

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Zhejiang Kaibang New Energy Technology Co., Ltd. is a 16-year-old company that focuses on building an intelligent protection platform research and development, production, sales, Maintenance, and service in one of the high-tech enterprises. In 2021, under the guidance of the new policy. The company has fully laid out the new energy board. At present, we mainly engage in the research and development, manufacturing, and sales of customized solutions and corresponding equipment for low-carbon comprehensive steel structure products in multiple fields, including centralized photovoltaic support systems, flexible photovoltaic support systems, distributed photovoltaic support systems, and photovoltaic energy storage.
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