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The FANUC A06B-0641-B003 is a servo motor designed for precision applications, featuring a flange mounting type and taper with key shaft design for secure installation. It operates at an input voltage of 96 V DC and delivers a rated speed of 2,000 RPM.
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| Manufacturer | FANUC |
|---|---|
| Product Type | Servo Motor |
| Product Line | A06B |
| Part Number | A06B-0641-B003 |
| Mounting Type | Flange |
| Shaft Type | Tapered with Key |
| Protection Class | IP54 |
| Cooling Method | Natural Convection |
| Input Voltage | 96 V DC |
| Rated Speed | 2,000 RPM |
| Continuous Torque | 2.9 Nm |
| Output Current | 7.2 A continuous |
| Encoder Type | Tachometer & TPR (3X) |
| Peak Torque | 8.7 Nm |
The A06B-0641-B003 belongs to FANUC’s A06B series as a high-performance servo motor. This motor type is critical for various automated tasks given its specialized design. It utilizes a flange mounting style, facilitating straightforward installation into various systems. The tapered key shaft ensures a reliable mechanical connection, enhancing operational efficiency and stability.
Operating at a consistent input voltage of 96 V DC, this servo motor achieves a notable rated speed of 2,000 RPM, making it suitable for tasks requiring rapid motion. With a continuous torque output of 2.9 Nm, it is designed to manage sustained loads efficiently, while it can handle peak torque of up to 8.7 Nm during operation, accommodating dynamic applications.
Weighing in at 4.2 kg (approximately 9.2 lbs), the A06B-0641-B003 is compact yet powerful. Its protection class of IP54 indicates a moderate resistance to dust ingress and some water exposure, making it suitable for a variety of environments. The motor relies on natural convection for cooling, ensuring reliable performance without the complexity of additional cooling systems.
Moreover, this servo motor features an encoder comprised of a tachometer and a TPR (3X) system, enabling precise feedback for improved control and accuracy in motion applications. This servo motor is an optimal choice for demanding scenarios where operational dependability and efficiency are paramount.