Brushless DC Motor (User’s Base) | Lawn mowers, industrial automation | - IE3 efficiency (IEC 60034-30-1) - 24V rated voltage - 500 RPM (ISO 2372) - Brushless commutation (IEC 60034-30) | ▲ Energy savings: 85% efficiency (▲ vs brushed motors) - Low maintenance (no brushes) | Higher cost than brushed DC motors - Requires electronic controllers |
Brushed DC Motor (Industry Standard) | Low-cost appliances, toys | - Mechanical commutation - 24V rated voltage - 1000 RPM (ISO 2372) - IE2 efficiency (IEC 60034-30-1) | Low upfront cost - Simpler design | Short lifespan (brush wear) - 75% efficiency (▲ Base model improves to 85%) |
Planetary Gear Motor (User’s Advanced) | Heavy-duty machinery, robotics | - IE4 efficiency (▲ Base: IE3) - 24V rated voltage - 500 RPM (▲ torque: 15 Nm vs Base’s 10 Nm) - IP54 sealing (IEC 60529) | ▲ Torque boost: 15 Nm (▲ 50% over Base) - Compact design (42mm diameter) | Higher cost than Base model - Requires precision assembly |
Stepper Motor | 3D printers, CNC machines | - Step resolution: 1.8° (IEC 60034-10) - 24V rated voltage - 600 RPM (ISO 2372) | Precise positioning (±0.1° accuracy) - No feedback system needed | Lower efficiency (▲ Base DC motor is 85% vs 70%) - Audible noise at high speeds |
AC Induction Motor | HVAC systems, pumps | - 230V rated voltage - 1450 RPM (IEC 60034-1) - IE2 efficiency (IEC 60034-30-1) | Robust design (no moving parts) - Low maintenance | Inefficient at partial loads (▲ Base DC motor saves 15% energy) - Larger footprint |
Servo Motor | Industrial robots, robotics arms | - Closed-loop control (ISO 10218) - 24V/48V rated voltage - 3000 RPM (ISO 2372) - 90% efficiency (IEC 60034-30-1) | High precision (0.01° accuracy) - Fast response (▲ 0.5ms latency) | High cost (▲ 3x Base model) - Requires complex control systems |