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4 Wire Bipolar Nema 17 Stepper Motor, 2.1V 2.1A, 1.8 Degree, 2 Phase

4 Wire Bipolar Nema 17 Stepper Motor, 2.1V 2.1A, 1.8 Degree, 2 Phase
4 Wire Bipolar Nema 17 Stepper Motor, 2.1V 2.1A, 1.8 Degree, 2 Phase
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$66.46
Ex Tax: $66.46
  • Stock: In Stock
  • Model: RDDLZ-STEP-471721
  • Weight: 1.00
  • SKU: RDDLZ-STEP-471721

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Nema 17 stepper motor, 2.1V 2.1A, 2 phase 4 wires bipolar stepper motor, with 1.8 deg. step angle (200 steps/rev), body in 47mm, allowing for a holding torque of 62 oz-in.

Specifications

Electrical SpecificationModelRDDLZ47-0804A
Matched the Driver ModelRDDLZDSP42 (Click it to see more info)
Step Angle1.8°
Holding Torque5 kg-cm (62oz-in)
Voltage2.1V
Rated Current/phase2.1A
Phase Resistance
Inductance2mH
Rotor Inertia68g-cm2
Physical SpecificationFrame Size42 x 42mm
Length47mm
Shaft DiameterΦ5mm
Shaft Length22mm
Motor Leads4
Weight0.35kg
Technical ParametersStep Angle Accuracy±5% (full step, no load)
Resistance Accuracy±10%
Inductance Accuracy±20%
Temperature Rise80℃ Max. (rated current, 2 phase on)
Ambient Temperature-10℃~+50℃
Insulation Resistance100MΩ Min. 500VDC
Dielectric Strength1Min. 500VAC·5mA
Shaft Radial Play0.06Max. 450g
Shaft Axial Play0.08Max. 450g
Quality AssuranceWarranty Period12 months
CertificateCE, ROHs, ISO/SGS9001

Nema 17 Stepper Motor Dimension (Unit=mm)

L1=24mm, Lmax=47mm

Nema 17 Stepper Motor Wiring Diagram

Tips: Linear rod stepper motor for machine tool equipment

The advantages over applying the linear rod stepper motor into machine tool equipment are as below:

  1. With linear drive device, it is easy to reach the velocity lower than 1μm/s or higher than 5m/s. linear drive system can ensure the constant velocity characteristics. The velocity misalignment is superior to ±0.01%. During application of velocity with higher requirements, smaller linear rod motor can provide acceleration larger than 10g more conveniently while the acceleration generated by the traditional motor is generally within 1g.
  2. Linear rod stepper motor features simple structure and it is comprised of few components. Therefore, the required lubricating is little (linear rail should be lubricated at regular interval). It means that it has long service life and runs cleanly. By contrast, the traditional drive system is comprised of more than 20 parts and components, including motor, coupler, ball screw, U-shaped block, bearing, bolster and lubricating system.
  3. Other advantages of linear rod stepper motor includes low acting force and small velocity ripple so that the stable motion profile is guaranteed, which of course relies on structure, magnetic board and drive software. To utilize the intrinsic advantages of linear rod stepper motor over dynamic braking, the drive amplifier should effectively monitor EMF and even if the power may be cut off. Many linear rod stepper motors can be installed in the way of “back-to-back” to ensure the acting force is enhanced. Besides, extra magnetic board can be set to ensure the substantial infinite stroke (limited to the feedback device and length of cable) without accuracy loss.

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