High Speed Closed Loop Stepper Motor 3.1N.M - NEMA23 - Complete Axe
Holding Torque: 3.1 N.m
Current /phase: 5 A
Original Leadshine Products
Motor Model: CS-M22331 Driver Model: CS-D508 + Encoder 3m Cable + Motor 3m Cable
Internal Reference:
CS.AXE.3.1NM
System Include:
- Motor Model: CS-M22331 X1
- Driver Model: CS-D508 X1
- Encoder 3m Cable X1
- Motor 3m Cable X1
Motor Features
- 2 phase, NEMA 23 frame size, 105 mm long
- 5 A phase current
- 3.1 N.m holding torque
- 8 mm shaft size
- Integrated 1,000 lines (4,000 count/revolution) quadrature rotary encoder
- High precision, low motor heating, and low vibration
- Build with high-quality materials including bearings and shaft made by Japanese manufacturers.
- This closed loop stepper motor can be adopted in many industrial applications with excellent performance such as high precision, low motor heating, and low vibration.
Motor Parameters:
- Model: CS-MD22331
- Frame Size: NEMA 23
- Phase: 2
- Step Angle: 1.8°
- Accuracy: ±0.9°
- Length: 105 mm (4.13 inch)
- Number of Wires: 4
- Holding Torque: 3.1N.m
- Phase Current: 5 A/Phase
- Encoder Resolution: 1000 Line (4000 counts/per revolution)
- Voltage: 2 V
- Resistance: 0.4 Ω
- Inductance: 1.8 mH
- Rotor Inertia: 0.84 kg-cm2 (0.01189 oz-in-sec2 )
- Shaft Size: 8 mm
- Shaft Type: Single
- Weight: 1.6 kg (3.52 lb)
- Insolation Class: B
- Insolation resistance: Min 100 MΩ,500 VDC)
- Operating Temperature: -10 - 50°C (14 - 122°F)
- Temperature Rise (Max): 80K
- Radial Play: Max 0.02 mm with 450g load
- Axial Play: Max 0.08 mm with 900g load
Driver Features
- Step & direction or CW/CCW control modes
- Supply voltage of 20-50 VDC, maximum output current of 8.0A
- Powering 2-phase stepper motor of NEMA 23, 24, or 34 with 1000-line encoder
- Closed-loop, eliminates loss of steps
- No Tuning & No hunting
- No overshooting
- No torque margin
- Reduced motor heating and more efficient
- Smooth motion and super-low motor noise
- CE-certified and RoHS compliant
- CS-D508 Driver adopted closed loop stepper system can eliminate loss of step, make real-time position error correction, and use 100% available torque of the driven stepper motor. It can also power the driven stepper motor with reduced heating, lower noise, low vibration, …
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