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The HF-SP202G7133 from Mitsubishi is an AC brushless servo motor for medium-power applications. It can deliver a rated active power of 2 kilowatts and operates effectively at a nominal torque of 9.55 Nm, with the capability to reach maximum torque levels up to 28.6 Nm.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HF Series |
| Part Number | HF-SP202G7133 |
| Weight | 30.00 lbs (13.61 kg) |
| Rated Current | 10 Amperes |
| Shaft Type | Standard (Straight Shaft) |
| Nominal Torque | 9.55 Nm |
| Speed Rating | 2,000 RPM |
| Inertia | Medium Inertia |
| Mounting Method | Flange Mounting |
| Gear Ratio | 1/33 |
| Rated Active Power | 2 kilowatts |
| Reduction Gear Type | Precision Application Type (Shaft Type) |
| Maximum Current | 30 Amperes |
| Maximum Torque | 28.6 Nm |
| Supply Voltage Class | 200VAC Voltage Class |
| Maximum Speed | 3,000 RPM |
| Capacity | Medium Power Capacity |
| Motor | AC Brushless Servo Motor |
Mitsubishi's HF-SP202G7133 is a robust AC brushless servo motor built for medium-power tasks. Rated for 2 kilowatts, it efficiently delivers a nominal torque of 9.55 Newton-meters. This unit boasts the capability to achieve a maximum torque of 28.6 Newton-meters, accommodating various load scenarios. It operates at a rated current of 10 Amps and can handle a maximum of 30 Amps, ensuring reliable performance in demanding environments.
The servo motor's speed capability includes a nominal rating of 2,000 RPM, while it can also reach up to 3,000 RPM for applications requiring higher performance metrics. The standard straight shaft design simplifies mounting, facilitated by flange mounting methods.
With medium inertia characteristics, the HF-SP202G7133 ensures a balanced response to changes in speed and load, making it suitable for precision-controlled tasks. The motor also utilizes a reduction gear type that adheres to precision application requirements with a gear ratio of 1/33. This combination of features positions the HF-SP202G7133 as an effective solution for various industrial application needs.