Many procurement teams check MITSUBISHIELECTRIC-HG-SR2024 against Mitsubishi VFD, Mitsubishi Mitsubishielectric Mr Jet 70G and Mitsubishi Electric before signing purchase orders, verifying quality, compliance, and after-sales support availability.
Mitsubishi HG-SR2024 - Servo Motors
Technical Specifications of Mitsubishi Servo Motors HG-SR2024:

| Brand | Mitsubishi |
| Product Type | Servo Motors |
| Product | HG-SR2024 |
Mitsubishi Servo Motors HG-SR2024 Technical Specifications:
| Specification | Value |
|---|---|
| Series | MELSERVO-J4 |
| Type | HG-SR |
| Power Supply (V) | 400 |
| Rated Capacity (kW) | 2 |
| Inertia | MEDIUM INERTIA |
| Rated Torque (Nm) | 9,5 |
| Maximum Torque (Nm) | 28,6 |
| Rated Speed (rpm) | 2000 |
| Inertia (kg*cm2) | 46,8 |
| 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) | 217,5 |
| Weight (kg) | 11 |
| Width (mm) | 176 |
| Height (mm) | 228,9 |
The Mitsubishi HG-SR2024 Servo Motor is a medium inertia 2 kW unit developed for dependable motion control in industrial automation. The model provides 9.5 Nm rated torque, 2000 rpm rated speed, and a 22-bit encoder delivering high-resolution positional accuracy. As part of the MELSERVO-J4 series, the HG-SR2024 supports consistent performance in continuous-duty machinery requiring stable rotational control.
This servo motor is suitable for conveyors, packaging equipment, automated assembly machines, and material-handling systems requiring predictable torque output. Its 3000 rpm maximum speed, IP67 protection, and AC-driven operation support reliable use in environments with dust, moisture, or vibration. The straight shaft design ensures smooth mechanical integration for load-driven applications.
The Mitsubishi HG-SR2024 Servo Motor offers precise encoder resolution, steady torque delivery, and industrial-grade durability. Backed by Mitsubishi’s engineering quality, the model provides dependable performance for automated systems that require accurate movement, long service cycles, and stable operation under continuous workloads.







