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Categories | Shaft Output Gearboxes |
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Brand Name: | Giant Precision |
Model Number: | NE Series Planetary Reducer |
Certification: | ISO9001 |
Place of Origin: | Jiangsu, China |
MOQ: | 1 set |
Price: | To Be Negotiated |
Payment Terms: | T/T |
Supply Ability: | 20000 Sets per Month |
Delivery Time: | 3-4 Weeks |
Packaging Details: | Carton Box |
Product: | NE Series Planetary Reducer Gearboxes |
Model: | NE070, NE090, NE120, NE155, NE205, NE235 |
Ratio: | 3 to 100 |
Segment: | Single, Double |
Efficiency: | ≥97% |
Service Life: | 20000 hours |
Max acceleration torque: | 1.8 times rated output torque |
Protection Class: | IP65 |
Operating Temperature: | -10℃-90℃ |
Standard backlash: | ≤7 arcmin |
Ultraprecise backlash: | ≤3 arcmin |
Application: | Automotive, Industrial Automation, Robotics, Aerospace, Renewable Energy, Medical Devices |
Specialized Features: | Integrated Brakes and Clutches, Modular Design |
Warranty: | 1 Year |
Company Info. |
Suzhou Giant Precision Industry Co., Ltd. |
Verified Supplier |
View Contact Details |
Product List |
Planetary reducer also known as a planetary gear system or epicyclic gear train, is a type of gear mechanism consisting of one or more outer gears (planet gears) revolving around a central (sun) gear. Typically, these systems also include a ring gear (annulus) that meshes with the planet gears. The planet gears are mounted on a movable carrier which also connects to the output shaft of the gearbox. Here's a breakdown of its components and functions:
Sun Gear The central gear around which the planet gears revolve.
Planet Gears Multiple gears that revolve around the sun gear and mesh with both the sun gear and the ring gear.
Ring Gear (Annulus) An outer gear that encircles the planet gears and meshes with them.
Planet Carrier A structure that holds the planet gears in place as they rotate around the sun gear.
Specification of NE Series Planetary Reducer
Specification | Segment number | Ratio | NE070 | NE090 | NE120 | NE155 | NE205 | NE235 | |
Rated output torque | Nm | single | 3 | 50 | 120 | 190 | 320 | 550 | 1080 |
4 | 45 | 130 | 270 | 510 | 990 | 1610 | |||
5 | 55 | 150 | 310 | 610 | 1140 | 1900 | |||
6 | 50 | 140 | 290 | 570 | 1040 | 1800 | |||
7 | 45 | 130 | 280 | 520 | 1040 | 1710 | |||
8 | 40 | 110 | 240 | 470 | 950 | 1520 | |||
9 | 35 | 95 | 210 | 420 | 850 | 1420 | |||
10 | 35 | 95 | 210 | 420 | 850 | 1420 | |||
double | 15 | 50 | 120 | 190 | 320 | 550 | 1080 | ||
16 | — | — | — | — | — | — | |||
20 | 45 | 130 | 270 | 510 | 990 | 1610 | |||
25 | 55 | 150 | 310 | 610 | 1140 | 1900 | |||
30 | 50 | 140 | 290 | 570 | 1040 | 1800 | |||
35 | 45 | 130 | 280 | 520 | 1040 | 1710 | |||
40 | 40 | 110 | 240 | 470 | 950 | 1520 | |||
45 | 35 | 95 | 210 | 420 | 850 | 1420 | |||
50 | 55 | 150 | 310 | 610 | 1140 | 1900 | |||
60 | 50 | 140 | 290 | 570 | 1040 | 1800 | |||
70 | 45 | 130 | 280 | 520 | 1040 | 1710 | |||
80 | 40 | 110 | 240 | 470 | 950 | 1520 | |||
90 | 35 | 95 | 210 | 420 | 850 | 1420 | |||
100 | 35 | 95 | 210 | 420 | 850 | 1420 | |||
Rotary inertia | Kg.cm3 | single | 3 | 0.16 | 0.61 | 3.25 | 9.21 | 28.98 | 69.61 |
4 | 0.14 | 0.48 | 2.74 | 7.54 | 23.67 | 54.37 | |||
5 | 0.13 | 0.47 | 2.71 | 7.42 | 23.29 | 53.27 | |||
6 | 0.13 | 0.45 | 2.65 | 7.25 | 22.75 | 51.72 | |||
7 | 0.13 | 0.45 | 2.62 | 7.14 | 22.48 | 50.97 | |||
8 | 0.13 | 0.44 | 2.58 | 7.07 | 22.59 | 50.84 | |||
9 | 0.13 | 0.44 | 2.57 | 7.04 | 22.53 | 50.63 | |||
10 | 0.13 | 0.44 | 2.57 | 7.03 | 22.51 | 50.56 | |||
double | 15 | 0.03 | 0.13 | 0.47 | 2.71 | 7.42 | 23.29 | ||
16 | — | — | — | — | — | — | |||
20 | 0.03 | 0.13 | 0.47 | 2.71 | 7.42 | 23.29 | |||
25 | 0.03 | 0.13 | 0.47 | 2.71 | 7.42 | 23.29 | |||
30 | 0.03 | 0.13 | 0.47 | 2.71 | 7.42 | 23.29 | |||
35 | 0.03 | 0.13 | 0.47 | 2.71 | 7.42 | 23.29 | |||
40 | 0.03 | 0.13 | 0.47 | 2.71 | 7.42 | 23.29 | |||
45 | 0.03 | 0.13 | 0.47 | 2.71 | 7.42 | 23.29 | |||
50 | 0.03 | 0.13 | 0.44 | 2.57 | 7.03 | 22.51 | |||
60 | 0.03 | 0.13 | 0.44 | 2.57 | 7.03 | 22.51 | |||
70 | 0.03 | 0.13 | 0.44 | 2.57 | 7.03 | 22.51 | |||
80 | 0.03 | 0.13 | 0.44 | 2.57 | 7.03 | 22.51 | |||
90 | 0.03 | 0.13 | 0.44 | 2.57 | 7.03 | 22.51 | |||
100 | 0.03 | 0.13 | 0.44 | 2.57 | 7.03 | 22.51 |
Drawings of NF Series Planetary Reducer
Parameters Table of NE Series Planetary Reducer | Segment number | Ratio | NE070 | NE090 | NE120 | NE155 | NE205 | NE235 | |
Max acceleration torque | Nm | 1,2 | 1.8 times rated output torque | ||||||
Emergency stop torque | Nm | 1,2 | 3 times rated output torque | ||||||
Rated input speed | rmp | 1 | 3~10 | 5000 | 4000 | 4000 | 3000 | 3000 | 2000 |
2 | 15~100 | 5000 | 4000 | 4000 | 3000 | 3000 | 2000 | ||
Max input speed | rmp | 1 | 3~10 | 10000 | 8000 | 8000 | 6000 | 6000 | 4000 |
2 | 15~100 | 10000 | 8000 | 8000 | 6000 | 6000 | 4000 | ||
Ultraprecise backlash | arcmin | 1 | 3~10 | — | ≤1 | ≤1 | ≤1 | ≤1 | ≤1 |
2 | 15~100 | — | — | ≤3 | ≤3 | ≤3 | ≤3 | ||
Precise backlash | arcmin | 1 | 3~10 | ≤3 | ≤3 | ≤3 | ≤3 | ≤3 | ≤3 |
2 | 15~100 | ≤5 | ≤5 | ≤5 | ≤5 | ≤5 | ≤5 | ||
Standard backlash | arcmin | 1 | 3~10 | ≤5 | ≤5 | ≤5 | ≤5 | ≤5 | ≤5 |
2 | 15~100 | ≤7 | ≤7 | ≤7 | ≤7 | ≤7 | ≤7 | ||
Orsional rigidity | Nm/arcmin | 1,2 | 3~100 | 8 | 14 | 27 | 52 | 148 | 305 |
Max. radial Force | N | 1,2 | 3~100 | 1730 | 3250 | 7000 | 9600 | 14500 | 27800 |
Max. axial Force | N | 1,2 | 3~100 | 865 | 1625 | 3500 | 4800 | 7250 | 13900 |
Tilting moment | Nm | 1,2 | 3~100 | 77 | 152 | 325 | 530 | 920 | 1840 |
Service Life | hr | 1,2 | 3~100 | 20000hr(continuous operation 10000hr) | |||||
Efficiency | % | 1 | 3~10 | ≥97% | |||||
% | 2 | 15~100 | ≥94% | ||||||
Weight | kg | 1 | 3~10 | 1.4 | 3.3 | 6.9 | 13.0 | 31.0 | 48.0 |
kg | 2 | 15~100 | 1.6 | 4.7 | 8.7 | 17.0 | 35.0 | 60.0 | |
Operating Temperature | ℃ | 1,2 | 3~100 | -10℃-90℃ | |||||
Lubrication | 1,2 | 3~100 | Synthetic grease | ||||||
Protection Class | 1,2 | 3~100 | IP65 | ||||||
Mounting Position | 1,2 | 3~100 | Any direction | ||||||
Noise Level (N1=3000rpm,Non-Loaded) | dB(A) | 1 | 3~10 | ≤58 | ≤60 | ≤63 | ≤65 | ≤67 | ≤70 |
2 | 15~100 | ≤58 | ≤60 | ≤63 | ≤65 | ≤67 | ≤70 |
Application of NE Series Planetary Reducer
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