



Nema 17 Micro Stepper Motor, 12V/ 24V, 7.5 Degree
from
$62.15
Ex Tax: $62.15
- Stock: In Stock
- Model: RDDLZ-MGSTEP-171224
- Weight: 1.00
- SKU: RDDLZ-MGSTEP-171224
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Competitive price Nema 17 micro stepper motor for sale. Motor diameter 42mm, optional rated voltage 12V/24V, current 0.4/0.6Amp, resistance 10Ω/30Ω, stepping angle 7.5°. 2 phase miniature stepper motor has bipolar drive, which can be used in medical equipment, printer, scanner, automotive meter, CNC equipment, security systems, flash lamp, etc.
Specification Datasheet
Model | RDDLZ-SM4201 | RDDLZ-SM4203 |
Rated Voltage | 24V | 12V |
Rated Current | 0.6A | 0.4A |
Resistance | 30Ω | 10Ω |
Phase | 2 Phase | 2 Phase |
Stepping Angle | 7.5° | 7.5° |
Excitation Method | 2 | 2 |
Pull-in Torque | 31.0 mN-m (200 pps) | 35 mN-m (300 pps) |
Pull-out Torque | 23.0 mN-m (600 pps) | 40 mN-m (300 pps) |
Holding Torque | 80.0 mN-m (0 pps) | 80.0 mN-m (0 pps) |
Max. Continuous Response Frequency | 640 pps | 400 pps |
Max. Starting Frequency | 700 pps | 400 pps |
Insulation Grade | E | B |
Drive Mode | Bipolar Drive | |
Ambient Temperature | 0℃~55℃ | |
Insulation Resistance | 500VDC 100MΩ min |
Phase Sequence Excitation & Dimensions Diagram (Unit: mm)
- 24V 0.6A Micro Stepper Motor (RDDLZ-SM4201)
Connector PIN Location | ||||||
PIN No. | Color | CCW←→CW (Seen from flange side) | Phase | |||
1 | Red | ON | ON | - | - | B |
2 | Yellow | - | - | ON | ON | B |
3 | Orange | - | ON | ON | - | A |
4 | Blue | ON | - | - | ON | A |
- 12V 0.4A Micro Stepper Motor (RDDLZ-SM4203)
Connector PIN Location | ||||||||
PIN No. | Color | CCW←→CW (Seen from flange side) | Phase | |||||
1 | Yellow | ON | - | - | ON | ON | - | A |
2 | Blue | - | ON | ON | - | - | ON | A |
3 | Red | - | - | ON | ON | - | - | B |
4 | Orange | ON | ON | - | - | ON | ON | B |
Details
Tips: Current operation principle of Nema 17 micro stepper motor.
- The torque of Nema 17 micro stepper motor is proportional to the product of the current and voltage passed in a certain period of time, and the maximum value is obtained when starting (when not rotating). According to this principle, the voltage is usually fixed, only proportional to the amount of current).
- If you want to increase the current, you can thicken the coil to reduce the resistance, or reduce the number of coils (the total length of coil) or increase the load.
- If the coil wire is thickened, do not increase the number of coils. Conversely, if the coil wire is made thinner without increasing the number of coils, only increasing the speed will reduce the torque and make the Nema 17 micro stepper motor unusable.
- Generally speaking, the smaller the number of coils of Nema 17 micro stepper motor, the lower the resistance of rotor, resulting in larger current and higher speed.
- For the same rotor, if the magnetic force of the magnet becomes stronger, and the speed and torque will increase.
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