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SHZW57BYGH HL Linear Stepper Motor - High-Precision for Medical/3D Printing/Automation

With a 1.8° step angle, Class B insulation (100MΩ MIN at 500V DC), and -20℃~+55℃ operating temperature, the SHZW57BYGH HL Linear Stepper Motor delivers 50-280g.cm holding torque, 3-6.8g.cm detent torque, 275-700g.cm² rotor inertia, and 0.6-1.5kg weight, suiting diverse precision industrial applications.
  • SHZW57BYGH

  • SHINE

  • 20221218

Availability:
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Product Description

Motor Features and Technical Parameters
The SHZW57BYGH HL Linear Stepper Motor is engineered for high-precision motion control in key industries, including medical equipment, tap control, 3D printer X-Y workbenches, and automation equipment. It maintains reliable performance with a 1.8deg step angle, adaptability to -20℃~+55℃ ambient temperatures, and Class B insulation (insulation resistance ≥100MΩ at 500V DC), ensuring safety and stability in varied working environments.
Available in 4 models with distinct voltage, current, and torque configurations, it meets diverse operational demands. Below is the detailed specification table for each model:
ZW57BYGH ZW57BYGH3 ZW57BYGH1
Model
Volt.(V)
Current(A)
Resistance(Ω)
Inductance(mH)
Holding torque(g.cm)
Detent torque(g.cm)
Rotor Inertia(g.cm²)
Length(mm)
Weight(kg)
SHZW57BYGH507-X
4.8
1
4.8
8.2
50
4
275
51
0.6
SHZW57BYGH602-X
2.4
2
1.32
3.19
93
4
300
56
0.7
SHZW57BYGH801-X
2.4
3
0.8
7.35
160
3
440
76
1.1
SHZW57BYGH1001-X
8.4
3
2.8
12
280
6.8
700
100
1.5


Application


Detailed Application Scope


The SHZW57BYGH HL Linear Stepper Motor stands out in precision-dependent fields, thanks to its robust performance and broad adaptability. In medical equipment, its accurate motion control ensures stable operation of diagnostic devices (e.g., testing instrument component drives) and therapeutic equipment, where precision directly affects operational reliability.
For tap control, it enables precise adjustment of valve openings, meeting strict fluid flow control requirements in industrial pipelines and systems. In 3D printing, it drives X-Y workbenches with consistent, precise displacement—critical for minimizing layer errors and ensuring high-quality print outputs.
Notably, it excels in automation equipment too: whether in automated assembly lines, precision positioning systems, or intelligent sorting devices, its stable torque output and accurate motion control support smooth, efficient operation of automated workflows, boosting overall production efficiency and product consistency across industries.


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