High Torque Nema 34 Stepper Motor, 6A, 1.8 degree, 4 wires

High Torque Nema 34 Stepper Motor, 6A, 1.8 degree,  4 wires
High Torque Nema 34 Stepper Motor, 6A, 1.8 degree, 4 wires
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$106.62
Ex Tax: $106.62
  • Stock: In Stock
  • Model: SCJ009371
  • SKU: SCJ009371
Products Sold: 0
Product Views: 501

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  • Description

High Torque Nema 34 Stepper Motor, 6A, 1.8 degree,  4 wires

Brief

2-phase 4-wire Nema 34 stepper motor with high torque, 4.4Nm holding torque, 4.5A phase current and 1.8 degree step angle. These are new motors in perfect working condition. Manufacturer direct sale.

Description

Nema 34 Stepper motor, 4.4Nm in 80mm, 1.8 degree.

Specification

BasicsModelSOCOJE280-6004A
Matched Driver ModelSCJ009371(Click it to see more info)
Holding torque4.4Nm
Current/phase6A
Resistance0.4Ω
Step angle1.8°
Rotor inertia1600g.cm²
Weight2.4kg
Length80mm
Motor leads4
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

High Torque Nema 34 Stepper Motor, 6A, 1.8 degree,  4 wires

Motor Connection

High Torque Nema 34 Stepper Motor, 6A, 1.8 degree,  4 wires

Details

High Torque Nema 34 Stepper Motor, 6A, 1.8 degree,  4 wires

Tips: Stepper motor can rotate continuously?

If the stepper motor rotates for a long time continuously, the temperature of motor will rise. When exceeding the internal heat resistance grade, the insulation performance will be deteriorated. When using the stepper motor, the motor can rotate continuously so long as the surface temperature of motor shell is below 100℃. The temperature of stepper motor can be easily reduced through following methods.

  1. Select motor with sufficient torque and reduce the running current.
  2. Heating can be effectively inhibited by reducing the running current. However, corresponding output torque will also be reduced. Therefore, it is necessary to reserve certain margin when selecting the motor.
  3. Select efficient stepper motor, by optimizing the material, the loss is substantially reduced and heating also can be reduced.
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