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The Mitsubishi HF-SP702G1H111 is an AC gearmotor delivering an output power of 7 kW. Its operational speeds range from a nominal 2000 RPM to a peak of 3000 RPM, equipped with an 18-bit encoder for precision.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | HF Series |
| Part Number | HF-SP702G1H111 |
| Weight | 80.00 lbs (36.29 kg) |
| Output Power | 7 kW |
| Rotational Speed | 2000 RPM |
| Maximum Speed | 3000 RPM |
| Encoder | 18-Bit Encoder |
| Power Supply Voltage | 200-230V AC |
| Frequency | 50/60 Hz |
| Rated Current | 33A |
| Maximum Current | 99A |
| Reduction Gear | General Industrial Machine Reduction Gear |
| Shaft Type | Special Order Type |
| Gear Ratio | 1/11 |
| Nominal Torque | 33.4 Nm |
| Maximum Torque | 100 Nm |
| Operating Temperature | 32 to 104°F (Non-Freezing) |
The HF-SP702G1H111 from Mitsubishi functions as an AC gearmotor, known for its power and efficiency. This model offers substantial output power, rated at 7 kW, making it suitable for a range of industrial applications. It is capable of achieving a consistent operational speed of 2000 RPM, with the ability to reach a maximum of 3000 RPM under load.
Equipped with an advanced 18-bit encoder, this motor enhances positioning accuracy and control, vital for automated processes. It operates on a power supply voltage of 200 to 230 volts AC, with frequency specifications accommodating either 50 or 60 Hz operational environments, ensuring versatility across different setups.
In terms of current, the HF-SP702G1H111 has a rated current of 33A and can endure maximum currents up to 99A, ensuring reliability even in demanding conditions. Its design features a special order shaft type, paired with a general industrial machine reduction gear characterized by a gear ratio of 1/11, facilitating efficient torque transmission.
The nominal torque is rated at 33.4 Nm, while the motor can reach a maximum torque of 100 Nm, making it well-suited for a variety of load requirements. Operating within a non-freezing temperature range of 32 to 104°F, the motor maintains performance in typical industrial environments without risk of freezing or overheating.