Low rpm 3-phase AC motor adds reduction gearbox working at 200W power. Gear ratios 3:1 to 100:1 to choose, corresponding speed rpm value 465~15, horizontal or vertical mounting direction. A brake is recommended to be used with the electric geared motor, for stopping machine safely.
Basic Specification
| Model |
CCHN-CH18-200((Ratio:3~10) , CCHN-CH22-200((Ratio:15~90), CCHN-CH28-200((Ratio:100~200) |
| Rated Power |
200W |
| Rated Voltage |
Single-phase 110V, 50/60Hz Single-phase 220V, 50/60Hz 3-phase 220V, 50/60Hz 3-phase 380-415V, 50/60Hz |
| Gear Ratio |
3:1/ 5:1/ 10:1/ 15:1/ 20:1/ 25:1/ 30:1/ 40:1/ 45:1/ 50:1/ 60:1/ 70:1/ 80:1/ 90:1/ 100:1 |
| Working Efficiency |
75% |
| Insulation Grade |
Class B, Class F can be customized |
| Protection Grade |
IP54 |
| Duty |
Continuous running |
| Working Environment |
Temperature 10℃~+40℃ Humidity ≤90% |
| Pole |
4P (6P) |
| Working Height |
≤1000m |
| Standard |
GB755/IEC-60034 |
Download Attachments |
200W 3 Phase AC Gear Motor Datasheet |
Terminal Box Direction (From Output Shaft)

AC Gear Motor Standard Installation
- All the CCHN 3-phase AC gear motors are suitable for this installation method, as shown in the following diagram.
- In the diagram, Q1, Q4, Q7, Q8 are the standard types of oil hole direction. If you need the air hole be on a special position, please contact us to modify the air hole direction.
- In actual use, it is recommended to pull out the oil plug in the air hole to balance the pressure in gearbox.

Details

Tips: How to calculate torque for 3-phase AC gear motor?
After calculating the gear ratio, convert the torque using the conditions of the machine used.
- First, calculate the torque of the conveyor pulley (T1)
T1 = (μ × load × roller radius) ÷ η1
- Convert the result into the torque required by AC gear motor output shaft (T2)
T2 = (T1 × sprocket reduction ratio) ÷ η2
Calculation example
- T1 = μ × W (D/2) ÷ η1
= 0.15 × 600 × (0.2/2) ÷ 0.95 = 9.5kgf-m
- T2 = (T1 × 1/2) ÷ η2
= (9.5 × 1/2) ÷ 0.9 = 5.28kgf-m