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The FANUC A06B-0147-B075#7008 is an AC servo motor designed for precision applications. It delivers a power output of 3.8 kW (5.1 HP) and operates at a rated voltage of 157 VAC with an inverter voltage of 200 VAC, ensuring optimal performance across a range of industrial environments.
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| Manufacturer | FANUC |
|---|---|
| Product Line | A06B |
| Part Number | A06B-0147-B075#7008 |
| Weight | 70.00 lbs (31.75 kg) |
| Product Description | AC Servo Motor |
| Power Output | 3.8 kW |
| Output Power | 5.1 HP |
| Motor Rated Voltage | 157 VAC |
| Inverter Rated Voltage | 200 VAC |
| Current Rating | 15 A |
| Motor Frequency | 133 Hz |
| Rated Speed | 2000 rpm |
| Insulation Class | Class F |
| Number of Phases | 3-phase |
| Winding | Y-connected |
| Excitation | Permanent Magnet |
| Stall Torque | 195 lbf-in |
| Stall Current | 19 A |
The FANUC A06B-0147-B075#7008 represents a robust choice as an AC servo motor within the A06B series. It provides a substantial power output of 3.8 kW, which translates to approximately 5.1 horsepower, enabling it to perform in versatile applications. The motor operates at a rated voltage of 157 VAC, and its inverter requires a rated voltage of 200 VAC for effective conversion and functionality.
Rated for a maximum frequency of 133 Hz, this motor ensures precise control and consistent operation, achieving a rated speed of 2000 rpm. Built to withstand thermal stress, it adheres to class F insulation standards, signifying that it can endure elevated temperatures without compromising performance.
A 3-phase design supports efficient power delivery, with winding configured in a Y connection for optimal torque generation. The motor employs permanent magnet excitation, enhancing performance and efficiency at higher operational loads. The stall torque of 22 Nm (195 lbf-in) asserts its capability to handle considerable loads, while a stall current of 19 A indicates its power threshold. This motor is designed to meet robust operational demands, making it suitable for various industrial applications requiring high levels of precision and reliability.