Description
The FANUC A06B-0372-B575 is a three-phase AC servo motor designed for controlled motion applications requiring stable 2000 RPM operation. This unit operates at 120 V AC with a 2.2 A current rating and integrates pulse-based feedback for precise positioning. It is configured with a straight shaft and is suitable for CNC and automated machinery environments.
Technical Specifications
| Condition |
New/Never Used Surplus |
| Brand |
FANUC |
| Category |
Servo Products |
| Part Number |
A06B-0372-B575 |
| Subcategory |
Servo Motor |
| Product Type |
AC Servo Motor |
| Rated Speed |
2000 r/min |
| Voltage Rating |
120 V AC |
| Current Rating |
2.2 A |
| Frequency |
133 Hz |
| Number of Phases |
3-Phase AC |
| Feedback Type |
Pulse Coder |
| Shaft Type |
Straight Shaft |
| Brake |
Without Brake |
| Weight |
0.10 lbs |
Information About A06B-0372-B575
The A06B-0372-B575 is part of the FANUC A06B servo motor series and is engineered for precision-driven industrial systems. It is constructed as a compact AC servo motor intended for integration with compatible FANUC drive platforms. The motor utilizes a pulse coder to provide accurate positional feedback, supporting stable motion control within automation systems. Designed for cabinet-installed machinery, it operates within defined electrical and frequency parameters typical of CNC equipment.
Key Features:
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2000 RPM Rated Speed: Designed for stable rotational performance at 2000 r/min.
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120 V AC Operation: Compatible with three-phase 120 V AC supply systems.
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Pulse Coder Feedback: Provides accurate position and speed monitoring.
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Straight Shaft Design: Supports direct mechanical coupling.
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Three-Phase Configuration: Ensures balanced power delivery.
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133 Hz Operating Frequency: Suitable for compatible servo drive systems.
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2.2 A Current Rating: Defined electrical performance specification.
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Brake-Free Design: Configured without an integrated holding brake.
The A06B-0372-B575 delivers the reliability and precision required for CNC servo motor control and automated motion systems.