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Brand Name : HeTai
Model Number : 42BYGHM
Certification : CE ROHS ISO
Place of Origin : China
MOQ : 50
Price : USD
Payment Terms : L/C, D/P, T/T, Western Union, MoneyGram
Supply Ability : 10000 PCS/MONTH
Delivery Time : 25 DAYS
Packaging Details : Carton with Inner Foam Box, Pallet
Product name : Stepping gearbox motor
Match gearbox : 36mm, 42mm
Step Accuracy : ± 5%
Temperature Rise : 80 ℃ Max
Insulation Resistance : 100MΩ Min.500VC DC
Ambient Temperature : -20℃~+50℃
Dielectric Strength : 500VAC 1 minute
Max Radial Force : 28N (20mm from front flange)
Max Axial Force : 10N
Bearing at output : sleeve bearing, Porous bearing
42BYGHM CE ROHS ISO gear stepper motor dc with 36mm or 42mm planetary gearbox
The NEMA 17 stepper motor can choose from 36mm or 42mm gearbox. The 36 mm gearbox has 2 housing material-- powder metallurgy and zinc alloy. The rated tolerance torque of 42mm gearbox is 10Nm and max momentary tolerance torque is 30Nm.
The 36mm Zinc alloy gearbox is more cost-effective. This gearbox reduction ratio is 1/12, rated tolerance torque is 0.3Nm, and max momentary tolerance torque is 1 Nm.
MOTOR PART Electrical Specification:
| MODEL | STEP ANGLE (°/STEP) | LEAD WIRE (NO.) | VOLTAGE (V) | CURRENT (A/PHASE) | RESISTANCE (Ω/PHASE) | INDUCTANCE (MH/PHASE) | HOLDING TORQUE (G.CM) | MOTOR HEIGHT L(MM) | MOTOR WEIGHT (KG) | 
|---|---|---|---|---|---|---|---|---|---|
| 42BYGHM203 | 0.9 | 4 | 10 | 0.5 | 20 | 40 | 2100 | 34 | 0.20 | 
| 42BYGHM213-07A | 0.9 | 4 | 8 | 1 | 8.0 | 13 | 2200 | 34 | 0.20 | 
| 42BYGHM607-16 | 0.9 | 4 | 2.6 | 1.7 | 1.5 | 3.2 | 3200 | 40 | 0.24 | 
| 42BYGHM619-08 | 0.9 | 4 | 11.2 | 0.4 | 28 | 60 | 2800 | 40 | 0.24 | 
| 42BYGHM805 | 0.9 | 4 | 3.5 | 1 | 3.5 | 7.6 | 3700 | 48 | 0.34 | 
| 42BYGHM810 | 0.9 | 4 | 2.4 | 2.4 | 1.0 | 1.8 | 4800 | 48 | 0.34 | 
*Products can be customized by special request.
*Products can match gearbox 36, 42mm


GEARBOX Electrical Specification:
Out diameter 36mm Powder metallurgy
| Housing material | Bearing at output | Radial load(10mm from flange)N | Shaft axial load(N) | Shaft press-fit force max(N) | Radial play of shaft(mm) | Thrust play of shaft(mm) | Backlash at no-load (°) | 
| Powder metallurgy | sleeve bearing | ≤120 | ≤80 | ≤500 | ≤0.03 | ≤0.1 | ≤1.5 | 
| Reduction ratio | Rated tolerance torque (Nm) | Max momentary tolerance torque (Nm) | Efficiency% | Length (mm) | Weight(g) | Number of gear trains | 
| 1/4 | 0.3 | 1.0 | 81% | 24.8 | 145 | 1 | 
| 1/5 | ||||||
| 1/16 | 1.2 
 | 3.5 
 | 72% | 32.4 | 173 | 2 | 
| 1/20 | ||||||
| 1/25 | ||||||
| 1/53 | 2.5 
 | 7.5 | 65% | 41.9 | 213 | 3 | 
| 1/62 | ||||||
| 1/76 | ||||||
| 1/94 | ||||||
| 1/117 | 
Mechanical Dimension

Out diameter 36mm Zinc alloy
| Housing material | Bearing at output | Radial load(10mm from flange)N | Shaft axial load(N) | Shaft press-fit force max(N) | Radial play of shaft(mm) | Thrust play of shaft(mm) | Backlash at no-load (°) | 
| Zinc alloy | Porous bearing | ≤45 | ≤25 | ≤100 | ≤0.08 | ≤0.4 | ≤1.5 | 
| Reduction ratio | Rated tolerance torque (Nm) | Max momentary tolerance torque (Nm) | Efficiency% | Length (mm) | Weight(g) | Number of gear trains | 
| 1/12 | 0.3 | 1.0 | 81% | 26.8 | 100 | 1 | 
Mechanical Dimension

Out diameter 42mm Powder metallurgy
| Housing material | Bearing at output | Radial load(10mm from flange)N | Shaft axial load(N) | Shaft press-fit force max(N) | Radial play of shaft(mm) | Thrust play of shaft(mm) | Backlash at no-load (°) | 
| Powder metallurgy | sleeve bearing | ≤120 | ≤80 | ≤500 | ≤0.03 | ≤0.1 | ≤1.5 | 
| Reduction ratio | Rated tolerance torque (Nm) | Max momentary tolerance torque (Nm) | Efficiency% | Length (mm) | Weight(g) | Number of gear trains | 
| 1/4 | 1.0 | 3.0 | 81% | 32.5 | 170 | 1 | 
| 1/6 | ||||||
| 1/15 | 4.0 | 12 | 72% | 46.3 | 207 | 2 | 
| 1/18 | ||||||
| 1/25 | ||||||
| 1/36 | ||||||
| 1/54 | 8.0 
 | 25 
 | 65% 
 | 60.1 
 | 267 
 | 3 | 
| 1/65 | ||||||
| 1/90 | ||||||
| 1/112 | ||||||
| 1/155 | ||||||
| 1/216 | 10 | 30 | 65% | 60.1 | 267 | 
Mechanical Dimension

Planetary gears are slightly expensive compared to traditional gears. However, they guarantee a high ROI.
Design is quite complex thou they are efficient and still easy to maintain.
From this, you can see that the planetary gearbox has many advantages.
1.Increased repeatability: Its greater speed radial and axial load offer reliability and robustness, minimizing the misalignment of the gear.
2.Perfect precision: Most rotating angular stability improves the accuracy and reliability of the movement.
3.Lower noise level because there is more surface contact. Rolling is much softer and jumps are virtually nonexistent.
4.Greater durability: Due to its torsional rigidity and better rolling. Thus, greater efficiency of the gear and a much smoother operation is achieved.
5.Very good levels of efficiency: Planetary reducers offer greater efficiency
6.Increased torque transmission: With more teeth in contact, the mechanism is able to transmit and withstand more torque. In addition, it does it in a more uniform manner.
7.Maximum versatility: Its mechanism is contained in a cylindrical gearbox, which can be installed in almost any space.
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