Vertical Single Axis Hourglass Slew Drive Gearbox For Linked Row Tracking System
Solar Slew Drive Description
Why we using solar slewing drive?
Since the 21st century, the global climate and environmental problems have become increasingly prominent, and all countries in the world have paid more attention to the development of renewable energy. The use of solar energy for photovoltaic power generation has the characteristics of green, low-carbon and sustainable, and has become one of the important choices for the development of new energy in the world.
Further more, with the continuous reduction of benchmark electricity prices for photovoltaic power generation around the world, photovoltaic technology developers, investors and operators are trying to find an economic model that enables investment in photovoltaic projects to obtain higher profits. Among them, the photovoltaic tracking system using slewing drives can adjust the orientation of the components according to the light conditions, reduce the angle between the components and the direct sunlight, and obtain more solar radiation, thereby effectively improving the power generation efficiency.
Advantages
1. Rotation 360 degrees
2. Connection of a driving motor from the left or right side,
3. During installation, it is not necessary to adjust the gearing clearance; this is already set by the producer before factory
4. Simple installation and low maintenance
5. Rational space utilization
6. Self-locking
7. Easy starting and stopping
8. High accuracy
Performance Parameters of SE series
SE Model Performance Parameters | ||||||||||||
Model |
Rated Output Torque (N.m) |
Tilting Torque (N.m) |
Holding Torque (N.m) |
Axial Load (kN) |
Radial Load (kN) |
Ratio | Efficiency |
Precision (degree) |
IP |
Working Tep. (℃) |
Self- locking |
Weight (kg) |
1" | 400 | 1000 | 1800 | 22 | 12 | 32:1 | 40% | ≤0.1 | 66 | -40~+120 | Yes | 6 |
3" | 600 | 1500 | 3000 | 30 | 16 | 31:1 | 40% | ≤0.1 | 66 | -40~+120 | Yes | 8 |
5" | 800 | 6000 | 9200 | 68 | 27 | 37:1 | 40% | ≤0.1 | 66 | -40~+120 | Yes | 12 |
7" | 2000 | 13500 | 13200 | 132 | 58 | 57:1 | 40% | ≤0.1 | 66 | -40~+120 | Yes | 21 |
9" | 4400 | 45000 | 30800 | 340 | 130 | 61:1 | 40% | ≤0.1 | 66 | -40~+120 | Yes | 49 |
12" | 5800 | 54400 | 40560 | 480 | 190 | 78:1 | 40% | ≤0.1 | 66 | -40~+120 | Yes | 61 |
14" | 6550 | 68000 | 54200 | 680 | 230 | 85:1 | 40% | ≤0.1 | 66 | -40~+120 | Yes | 63 |
17" | 9400 | 135600 | 65040 | 980 | 390 | 102:1 | 40% | ≤0.1 | 66 | -40~+120 | Yes | 105 |
21" | 16000 | 203400 | 81000 | 1600 | 640 | 125:1 | 40% | ≤0.1 | 66 | -40~+120 | Yes | 149 |
25" | 21000 | 271160 | 89000 | 2400 | 950 | 150:1 | 40% | ≤0.1 | 66 | -40~+120 | Yes | 204 |
Applications
Flat uniaxial photovoltaic tracking system
The flat single-axis photovoltaic tracking system is a high-return solution, which can effectively allow photovoltaic power generation projects to obtain higher profits under cost pressure. Economical and reliable at the same time are attractive. Flat single-axis tracking system, suitable for relatively low latitudes. The flat uniaxial system with inclination and the inclined uniaxial system are usually used in higher latitudes.