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The HF-SP102BG715 is part of Mitsubishi's HF Series, designed as a geared servo motor. It operates at 1 kW output power and features precise performance metrics.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HF Series |
| Part Number | HF-SP102BG715 |
| Weight | 30.00 lbs (13.61 kg) |
| Mounting | Flange Mounting |
| Reduction Gear Type | Precision Application Type |
| Output Power | 1 kW |
| Rated Speed | 2000 rpm |
| Maximum Speed | 3000 rpm |
| Voltage | 200-230V AC |
| Inertia | Medium Inertia |
| Capacity | Medium Power Capacity |
| Electromagnetic Brake | Included |
| Operating Temperature | 32 to 104 degrees Fahrenheit |
| Shaft Type | Straight |
| Storage Temperature | 5 to 158 degrees Fahrenheit |
| Rated Torque | 4.77 Nm |
| Maximum Torque | 14.3 Nm |
| Motor Type | Geared Servo Motor |
In the realm of servo motors, the Mitsubishi HF-SP102BG715 stands out due to its geared design tailored for precision tasks. This motor operates effectively at an output power of 1 kilowatt. It is designed for flange mounting, providing convenient installation options. Its specification allows for a voltage range of 200 to 230 volts AC, ensuring compatibility with various power sources.
Running with a rated speed of 2000 rpm, it can achieve a maximum speed of 3000 rpm, accommodating tasks that require varying speeds. The gear type is optimized for precision applications, making it suitable for environments where accuracy and control are paramount.
This motor delivers a rated torque of 4.77 Nm, easily reaching maximum torque levels of 14.3 Nm, ideal for medium power applications. A straight shaft design facilitates easy integration into existing setups.
Moreover, the motor includes an electromagnetic brake feature to enhance operational safety during use. The device is designed to function within a temperature range of 32 to 104 degrees Fahrenheit during operation, while it can be stored in conditions ranging from 5 to 158 degrees Fahrenheit. The medium inertia characteristic assures a balance between responsiveness and stability in various operating conditions.