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Nema 17 Stepper motor, 2.8V 1.33A, 1.8 degree, 2 phase 4 wires

Nema 17 Stepper motor, 2.8V 1.33A, 1.8 degree, 2 phase 4 wires
Nema 17 Stepper motor, 2.8V 1.33A, 1.8 degree, 2 phase 4 wires
from
$64.92
Ex Tax: $64.92
  • Stock: In Stock
  • Model: SCJ009425
  • SKU: SCJ009425
  • UPC: 747851311410
Products Sold: 0
Product Views: 349

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  • Description

Nema 17 Stepper motor, 2.8V 1.33A, 1.8 degree, 2 phase 4 wires

Brief

2.8V, 1.33A, 30 oz-in NEMA 17 stepper motor, 4 wires bipolar stepper motor with 1.8 degree step angle, produce a maximum torque of 2.2 kg-cm, brand new direct sale by manufacturer.

Description

Nema 17 stepper motor, 2.8V 1.33A, 2 phase 4 wires bipolar stepper motor with 1.8 degree step angle, small body in 33mm, perfect for all kinds of mechanical and robotics projects.

Specifications

Electrical SpecificationModelSOCOJE33-1334A
Matched the Driver ModelSCJ009425 (Click it to see more info)
Step Angle1.8°
Holding Torque2.2kg-cm(30Oz-in)
Voltage2.8V
Rated Current/phase1.33A
Phase Resistance2.1Ω
Inductance4.2mH
Rotor Inertia35g-cm2
Physical SpecificationFrame Size42 x 42mm
Length33mm
Shaft DiameterΦ5mm
Shaft Length22mm
Motor Leads4
Weight0.22kg
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)

Nema 17 Stepper motor, 2.8V 1.33A, 1.8 degree, 2 phase 4 wires

L1=24mm, Lmax=33mm

Nema 17 Stepper Motor Wiring Diagram

Nema 17 Stepper motor, 2.8V 1.33A, 1.8 degree, 2 phase 4 wires

Tips: How to overcome the vibration and noises of 2-phase hybrid stepper motor when rotating at low velocity?
The vibration and noise of the stepper motor rotating at low velocity its the intrinsic defects, which can be generally overcome by adopting following schemes:

  1. If the stepper motor works at resonance region, the resonance region can be evaded by changing mechanical transmissions such as velocity ratio.
  2. Use subdivided driver, which is the most common and simple method.
  3. Replace for the stepper motor with smaller stepping angle, like 3-phase or 5-phase stepper motor.
  4. Replace for AC servo motor, which can nearly overcome vibration and noise, but the cost is quite high.
  5. Add magnetic damper to the shaft of motor, such product has been available in the market, but the mechanical structure is changed a lot.
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