Nema 11 Stepper Motor Linear Actuator, 2 phase, 3.8V, 0.67A

Nema 11 Stepper Motor Linear Actuator, 2 phase, 3.8V, 0.67A
Nema 11 Stepper Motor Linear Actuator, 2 phase, 3.8V, 0.67A
from
$166.08
Ex Tax: $166.08
  • Stock: In Stock
  • Model: SCJ009327
  • SKU: SCJ009327
Products Sold: 0
Product Views: 511

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  • Description

Nema 11 Stepper Motor Linear Actuator, 2 phase, 3.8V, 0.67A

Brief

2 phase 4 wires, 0.67A 3.8V bipolar stepper motor linear actuator come in Nema 11 frame size, which has 1.8 degree per step for smooth motion and a nice holding torque, non-captive, external shaft options are available.

Description

This is high quality Nema 11 stepper motor linear actuator with 1.8 deg. step angle (200 steps/rev). Each phase draws current 0.67A at 3.8V voltage, allowing for a holding torque of 8.3 Oz-in. You can choose a external shaft type or a non-captive shaft type stepper linear actuator to meet your specific application requirements.
Stepper Motor Linear Actuator Specification

Model TypeExternal ShaftNon-Captive Shaft
28H32-0674AST28H32-0674GTS
Weight3 kg
Length32 mm
Screw Diameter8 mm (0.315 inch)
Screw Lead8 mm/rev (0.315 inch/rev)
Travel Per 1.8 Step0.04 mm/step (0.00157 inch/step)
Phase2 phase
Step Angle1.8°
Rated Voltage3.8 V
Rated Current0.67 A
Resistance5.6 Ω
Holding Torque8.3 Oz-in
Number of Leads4
Rotor Inertia9 g-cm2

Stepper Motor Linear Actuator Dimension (Unit=mm)

1. Non-captive shaft style
Nema 11 Stepper Motor Linear Actuator, 2 phase, 3.8V, 0.67A

L=32mm

2. External shaft style
Nema 11 Stepper Motor Linear Actuator, 2 phase, 3.8V, 0.67A

L=32mm

Details

Nema 11 Stepper Motor Linear Actuator, 2 phase, 3.8V, 0.67A

Tips: Basic principle of stepper motor linear actuator
The stepper motor linear actuator is meshed with a screw and nut, so as to prevent the relative rotation of the screw nut so that the screw will have axial movement. There are two ways to achieve this transformation. The first is to build a rotor with inner screw thread in the stepper motor so as to achieve the linear motion through the mesh of internal thread and the screw. The second is to use the screw as the output shaft of the motor. A linear motion is achieved by meshing the external drive nut and screw. It simplifies the design greatly so that precise linear motion can be carried out in many application areas without installing external mechanical linkage device.

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