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Sun Tracking Solar Slewing Drive Horizontal 24V Stepper Motor

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Changzhou Hangtuo Mechanical Co., Ltd
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City:changzhou
Province/State:jiangsu
Country/Region:china
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Sun Tracking Solar Slewing Drive Horizontal 24V Stepper Motor

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Brand Name :HT
Model Number :SE9“
Certification :CE, ISO9001
Place of Origin :Changzhou, China
MOQ :1 piece
Price :USD 280~504 / pc
Payment Terms :L/C, T/T, Western Union
Supply Ability :2000 pcs per month
Delivery Time :15~45 days
Packaging Details :plywood box
Model :9 Inches
Gear Ratio :61:1
Efficiency :40%
Type :Horizontal Series
Application :Solar Trackers
OEM Service :Available
Driver :Stepper Motor
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View Product Description

FlatTracking Sun Solar Slewing Drive With 24V Stepper Motor And Encoders For Solar Trackers

Tracking Sun Solar Slewing Drive

The sun tracking slewing drive is a core part in turning the oblique single-axis tracking system which is a cost-effective product mainly developed and designed for the construction of large-scale power stations, and is widely used in middle and low latitudes.

The system only needs the entire array can be automatically tracked by using a set of slewing drive and controller. The unique linkage structure and maintenance-free slewing drive can make it reliable and reliable system stability, low failure rate and low maintenance costs. Compared with the traditional fixed installation bracket, it can increase the annual power generation by about 30%, which is a large-scale power generation system.
Ideal for station construction.

Key Features

1. An unlimited rotating angle and range

2. Provide the most efficient transmission of high power and torque possible

3. Completely enclosed and sealed housing withstands harsh environments and increases safety

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 oblique single

"Flat oblique single", or "flat uniaxial with inclination" is the product of the combination of the above two modes. In fact, the flat inclined single should belong to the category of the flat single axis, its rotation axis is horizontal, and his entire tracking system can follow the flat single axis system. The difference is that each component on its axis of rotation has a certain inclination to the south.

Inclined single axis:

The inclined uniaxial has a certain inclination to the south, so this situation is better than the flat uniaxial. But the oblique uniaxial also has its own limitations. Due to the inclination to the south, the inclined uniaxial support becomes higher and higher from the ground on the north side as the rotation axis grows, and because the rear column cannot be made too high, the rotation axis of the inclined uniaxial is limited. It cannot be made into a long shaft as long as a single shaft, but can only be independent one by one, which increases its cost and, of course, increases the floor space.

Flat Single Axis

The flat uniaxial tracking bracket can significantly increase the power generation by tracking the sun's trajectory in the east-west direction, but the flat uniaxial also has its disadvantages. Because the flat uniaxial support has no inclination to the south, its radiation receiving ability is poor when the sun altitude angle is low, which is especially obvious in high latitudes. There has been a decrease, especially in winter, and the power generation is even lower than that of fixed mounts.

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