Mitsubishi HG-SR3524 - Servo Motors
Technical Specifications of Mitsubishi Servo Motors HG-SR3524:

| Brand | Mitsubishi |
| Product Type | Servo Motors |
| Product | HG-SR3524 |
Mitsubishi Servo Motors HG-SR3524 Technical Specifications:
| Specification | Value |
|---|---|
| Series | MELSERVO-J4 |
| Type | HG-SR |
| Power Supply (V) | 400 |
| Rated Capacity (kW) | 3,5 |
| Inertia | MEDIUM INERTIA |
| Rated Torque (Nm) | 16,7 |
| Maximum Torque (Nm) | 50,1 |
| Rated Speed (rpm) | 2000 |
| Inertia (kg*cm2) | 78,6 |
| Brake | NO |
| Shaft Type | STRAIGHT SHAFT |
| Current Type | AC |
| Encoder Resolution (p/rev) | 4194304 |
| Maximum Speed (rpm) | 3000 |
| Protection Class | IP67 |
| Encoder Type | 22-BIT |
| Depth (mm) | 241,5 |
| Weight (kg) | 16 |
| Width (mm) | 176 |
| Height (mm) | 228,9 |
The Mitsubishi HG-SR3524 Servo Motor is a 3.5 kW medium-inertia model built for stable and accurate performance in industrial automation. It provides 16.7 Nm rated torque, 2000 rpm operating speed, and a 22-bit encoder for consistent positional feedback. As part of the MELSERVO-J4 Series, the HG-SR3524 offers IP67 protection and a straight-shaft configuration suited for controlled mechanical motion.
The Mitsubishi HG-SR3524 Servo Motor is used in conveyors, packaging lines, automated handling systems, and multi-axis assembly machinery. Its medium-inertia structure ensures smooth acceleration, dependable torque delivery, and stable rotational characteristics. The encoder enhances precision in synchronized motion tasks, enabling reliable operation for applications requiring accurate speed and position control in continuous-duty environments.
The Mitsubishi HG-SR3524 Servo Motor combines mechanical durability, torque stability, and accurate encoder feedback to support long-term industrial use. With its 3.5 kW output and robust torque profile, the HG-SR3524 performs reliably in demanding automation systems. Mitsubishiβs servo platform ensures consistent performance, making this model suitable for high-duty industrial applications where precision and operational dependability are essential.







