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The Mitsubishi HF-SP352BG7121 gearmotor is a precise and reliable solution for a variety of applications. This model showcases an output power capacity of 3.5 kW, making it effective for demanding tasks with varying speeds and loads.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HF Series |
| Part Number | HF-SP352BG7121 |
| Weight | 60.00 lbs (27.22 kg) |
| Product | Gearmotor |
| Output Power | 3.5 kW |
| 3-Phase Power Supply Voltage | 200 to 230 Volts AC |
| Frequency | 50/60 Hertz |
| Electromagnetic Brake | Built-In Electromagnetic Brake |
| Operating Temperature | 32 to 104°F |
| Storage Temperature | 5 to 158°F |
| Shaft Type | Straight Shaft |
| Reduction Gear | Precision Application Reduction Gear |
| Gear Ratio | 1/21 |
| Rated Speed | 2000 rpm |
| Maximum Speed | 3000 rpm |
| Rated Current | 16 Amps |
| Maximum Current | 48 Amps |
| Inertia | Medium Inertia |
The HF-SP352BG7121 gearmotor from Mitsubishi's HF Series offers significant power and efficiency for multiple industrial applications. Operating at an output power of 3.5 kW, this unit is engineered to achieve a rated speed of 2000 rpm while also allowing for a maximum speed of 3000 rpm, providing flexibility for various operational requirements.
It utilizes a 3-phase power supply, with an input voltage specification of 200 to 230 Volts AC. The unit is designed to support both 50 and 60 Hertz frequencies, giving it versatility in different environments. A built-in electromagnetic brake enhances its functionality, ensuring better control during operation.
Designed with a straight shaft type, the HF-SP352BG7121 also features a precision application reduction gear with a gear ratio of 1/21. This design is crucial for applications that require fine control and accuracy. The motor is rated for a current of 16 Amps under normal conditions, capable of handling a maximum current of 48 Amps when required.
In terms of environmental resilience, this gearmotor operates effectively within temperatures ranging between 32°F and 104°F and can be stored at temperatures from 5°F to 158°F. It is built with medium inertia characteristics to balance responsiveness with stability, making it a suitable choice for diverse automation tasks.