AE120 Series High Precision Planetary Gearbox

AE120 Series High Precision Planetary Gearbox

Type: planetary gearbox with helical teeth
Degree of gearbox protection grade: IP65
Ratio: 3, 4, 5, 7, 10 for one stage
Ratio: 15, 16, 20, 25, 28, 30, 35, 40, 50, 70, 100 (two stage)
Standard Backlash P1:≤ 3 arcmin(one stage); ≤ 5 arcmin (two stage)
Standard Backlash P2:≤ 5 arcmin( one stage); ≤ 7 arcmin (two stage)
Eficiency: ≥ 95% (one stage); ≥ 92% (two stage)

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  • Customization AvailableCustomization Available
Product Introduction

AE Naming Rule (For example: AE-090N-010-22-19-4)

 

31

Performance Data

               Technical Parameter

1 stage

2 stage

Ratio

 

3

4

5

7

10

15

16

20

25

28

30

35

40

50

70

100

Nominal Output Torque T2N

Nm

208

290

330

300

230

208

290

290

160

140

310

300

260

330

300

230

Emergency Stop Torque T2NOT

Nm

3 times of Nominal Output Torque

Nominal input Speed n1N

rpm

4000

Max.Input Speed n1B

rpm

8000

Reduced Backlash P1

arcmin

≤3

≤5

Standard Backlash P2

arcmin

≤5

≤7

Torsional Rigidity

Nm/arcmin

25

Max.Bending moment F2rB

N

6100

Max.Axial Load F2aB

N

3350

Service Life

hr

20000

Efficiency η

%

≥95%

≥92%

Operating Temp

-10℃~90℃

Lubrication

 

Synthetic lubrication oils

Degree of Gearbox Protection

 

IP65

Mounting Position

 

all directions

Noise Level n=3000rpm, No Load,50cm )

dB(A)

68

68

65

62

60

66

66

64

64

62

62

62

60

58

58

58

Mass Moments of Inertia J1

kg.cm2

3.25

2.74

2.71

2.62

2.57

0.47

0.48

0.47

0.47

0.48

0.47

0.47

0.47

0.44

0.44

0.44

 

Mechanical Dimension

30

 

Matched Motor Size

AE120 Series Stage Ratio Diameter of output shaft Diameter of intput shaft Diameter x length of motor shaft/Diameter and height of pilot on motor/QTYs-diameter-spacing of mounting holes
One Stage 3/4/5/7/10 32 19

Φ19×30/Φ70×3/4-Φ5.5-Φ90

Φ19×30/Φ70×3/4-Φ6.5-Φ90

Φ19×30/Φ80×3/4-Φ6.5-Φ100

Φ19×50/Φ95×6/4-Φ9-Φ130

Φ19×58/Φ110×6/4-Φ9-Φ145

22 Φ22×58/Φ110×6/4-Φ9-Φ145
24

Φ24×48/Φ95×6/4-Φ9-Φ115

Φ24×48/Φ95×6/4-Φ6.5-Φ115

Φ24×58/Φ95×6/4-Φ6.5-Φ115

Φ24×58/Φ110×6/4-Φ9-Φ145

35 Φ35×80/Φ114.3×8/4-Φ13.5-Φ200
Two Stage

15/16/20/25/

28/30/35/40/50/70/100

32 19

Φ19×30/Φ70×3/4-Φ5.5-Φ90

Φ19×30/Φ70×3/4-Φ6.5-Φ90

Φ19×30/Φ80×3/4-Φ6.5-Φ100

Φ19×50/Φ95×6/4-Φ9-Φ130

Φ19×58/Φ110×6/4-Φ9-Φ145

22 Φ22×58/Φ110×6/4-Φ9-Φ145
24

Φ24×48/Φ95×6/4-Φ9-Φ115

Φ24×48/Φ95×6/4-Φ6.5-Φ115

Φ24×58/Φ95×6/4-Φ6.5-Φ115

Φ24×58/Φ110×6/4-Φ9-Φ145

 

FAQ

Q: What if I have an issue or need support after receiving the products?

A: We strive to provide excellent customer support. If you have any issues or require assistance after receiving the products, please contact our customer service department. We will do our best to address your concerns and provide a satisfactory solution.

 

Q: Do you have a minimum order quantity (MOQ) requirement?

A: Our minimum order quantity (MOQ) can vary depending on the product. Some items may have a specific MOQ, while others may be available for purchase in smaller quantities. Please contact our sales team for more information regarding the MOQ for the specific product you are interested in.

 

Q: How do planetary gearboxes handle overloading?

A: Planetary gearboxes have the capability to handle overloading to a certain extent as they distribute the load across multiple gear sets. This load-sharing feature allows them to withstand increased torque and maintain functionality. However, it is important to note that prolonged overloading can cause excessive stress on the gears and bearings, leading to accelerated wear and potential failure.

 

Q: How do planetary gearboxes compare to other types of gearboxes?

A: Planetary gearboxes possess several advantages compared to other types of gearboxes, including their compactness, high torque density, efficiency, and versatility. Their compact design allows for efficient use of space, making them suitable for applications where size is a constraint. With their multiple gear sets, planetary gearboxes can achieve high torque transmission capabilities while maintaining a small form factor.

 

Q: Can planetary gearboxes be used in wind turbines?

A: Planetary gearboxes have extensive applications in wind turbines, specifically in the conversion of the low-speed rotation generated by the turbine blades to the high-speed rotation needed by the electrical generator. The utilization of planetary gearboxes in wind turbines allows for efficient power transmission and optimal matching of the rotational speeds between the slower-moving rotor and the faster-spinning generator. This crucial role played by planetary gearboxes enables wind turbines to effectively harness the power of wind and convert it into usable electrical energy.

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