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Nema 34 3-phase Stepper Motor, 3A, 1.2 degree, 6 wires

Nema 34 3-phase Stepper Motor, 3A, 1.2 degree, 6 wires
Nema 34 3-phase Stepper Motor, 3A, 1.2 degree, 6 wires
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$175.85
Ex Tax: $175.85
  • Stock: In Stock
  • Model: SCJ009376
  • SKU: SCJ009376
Products Sold: 0
Product Views: 450

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  • Description

Nema 34 3-phase Stepper Motor, 3A, 1.2 degree, 6 wires

Brief

3-phase Nema 34 Stepper motor features 1.2 deg. step angle, 3A phase current, 7.6Nm holding torque. Connection is made through 6-wires. Favorable price and manufacturer direct sale.

Description

Nema 34 Stepper motor, 7.6Nm holding torque, 3A phase current, 1.2° step angle.

Specification

BasicsModelSOCOJE3126-3006A
Matched Driver ModelSCJ009376(Click it to see more info)
Holding torque7.6Nm
Current/phase3A
Resistance2.4Ω
Step angle1.2°
Rotor inertia3300g.cm²
Weight3.8kg
Length126mm
Motor leads6
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 500V DC
Dielectric Strength500V AC for one minute
Shaft Radial Play0.06Max.(450g)
Shaft Axial Play0.08Max.(450g)

Dimensions

Nema 34 3-phase Stepper Motor, 3A, 1.2 degree, 6 wires

Motor Connection

Nema 34 3-phase Stepper Motor, 3A, 1.2 degree, 6 wires

Details

Nema 34 3-phase Stepper Motor, 3A, 1.2 degree, 6 wires

Tips: Selection of stepper motor: how to select power?

  1. Confirmation of voltage
    The working voltage of stepper motor driver is generally a wide range. The power voltage is usually selected according to the working speed and response speed of the motor. If the working speed high or the response requirement is fast, then the voltage value should be high. However, the ripple wave of power voltage should not exceed the maximum input voltage of the driver, or the driver may be destroyed.
  2. Confirmation of current
    The power current is generally determined according to the output phase current of driver.In case that the linear power is used, the power current generally can be 1.1~1.3 times of current. If the switch power is used, it can be 1.5~2.0 of current.
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