Mitsubishi HG-SR3524B - Servo Motors
Technical Specifications of Mitsubishi Servo Motors HG-SR3524B:

| Brand | Mitsubishi |
| Product Type | Servo Motors |
| Product | HG-SR3524B |
Mitsubishi Servo Motors HG-SR3524B 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) | 88,2 |
| Brake | YES |
| 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) | 291 |
| Weight (kg) | 22 |
| Width (mm) | 176 |
| Height (mm) | 228,9 |
The Mitsubishi HG-SR3524B Servo Motor is a 3.5 kW medium inertia unit engineered for stable torque delivery and controlled performance. With 16.7 Nm rated torque, 2000 rpm speed, and a 22-bit encoder offering 4194304 p/rev resolution, the motor supports precise motion control in demanding industrial systems. As part of the MELSERVO-J4 series, it is suited for tasks requiring consistent accuracy and dependable rotational response across automation environments.
This servo motor is used across conveyor drives, packaging machinery, automated assembly stations, and coordinated multi-axis systems. Its AC operation, IP67 protection, and medium inertia profile ensure dependable functioning even under varying mechanical loads. The straight shaft design enables secure mechanical coupling, resulting in predictable movement and reliable output for continuous operation applications in modern automation setups.
The Mitsubishi HG-SR3524B Servo Motor delivers stable torque, accurate encoder feedback, and strong environmental protection suitable for industrial automation. With Mitsubishiβs engineering reliability, the model supports long operating cycles, maintaining precision and consistency in systems where controlled motion, durability, and high-quality performance are essential.







