| Stepper Motor (Industry Standard) | General industrial automation, basic machinery | Plastic housing (ISO 9001), 1.0 Nm torque, 50 dBA noise (as loud as normal conversation), ±5° step angle | Cost-effective, lightweight, simple control | Lower durability, less precise, limited load capacity (e.g., <2kg payloads) |
| Our Base Stepper Motor | Textile machinery, light industrial | Aluminum housing (ASTM B221), 1.8 Nm torque (▲0.8), 45 dBA (▲5dB quieter), ±3° step angle (▲2° better), Integrated gear wheel (10:1 ratio, ISO 9409) | Improved heat dissipation, moderate load handling (up to 5kg), durable | Moderate cost, no warranty, slightly heavier than plastic models |
| Our Advanced Stepper Motor | High-precision textile machinery | Stainless steel housing (ISO 3832), 3.0 Nm torque (▲1.2), 40 dBA (▲5dB quieter), ±1° step angle (▲2° better), High-torque gear wheel (20:1 ratio, ISO 9409) | High durability, exceptional precision, ultra-quiet operation | Higher cost, no warranty, requires more maintenance |
| Servo Motor | High-speed robotics, CNC machines | Brushless design (IEC 60034-30), 5.0 Nm torque, 55 dBA (louder), ±0.5° step angle | High speed, ultra-precise control, adaptable to complex systems | Complex control systems, expensive, maintenance-intensive |
| AC Induction Motor | Heavy-duty textile looms | Cast iron housing, 4.0 Nm torque, 60 dBA (very loud), limited positional control | Robust, simple operation, low maintenance | Inefficient for precise positioning, noisy, bulky design |
| Gear Reducer Motor | Conveyor systems, winding machinery | Steel gears (ISO 6336), 8.0 Nm torque, 50 dBA, moderate precision (±5°) | High torque output (handles up to 10kg loads), reliable in heavy-duty applications | Bulky design, requires regular lubrication, less precise than stepper motors |