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The A20B-1004-0070 spindle motor sensor unit by FANUC is engineered for precision and reliability. It features a high-resolution CZ-type sensor designed for use with S-series AC Spindle Servo Units.
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| Manufacturer | FANUC |
|---|---|
| Product Type | Spindle motor sensor unit |
| Product Line | Series 20 |
| Part Number | A20B-1004-0070 |
| Weight | 0.06 lbs (0.03 kg) |
| Sensor Type | CZ type and high-resolution sensor |
| Mounting Method | Bracket mount |
| Types of Component Included | Amplifier cable, sensor head, and spindle amplifier cable |
| Compatibility | S-series AC Spindle Servo Unit |
| Network Phase Type | 3-phase |
| Ambient Operating Temperature | 0 to 45°C (in a non-condensing environment) |
| Rated Frequency | 50 to 60 Hertz |
| Storage Temperature | -20 to 60°C (in a non-condensing environment) |
| Vibration Resistance | 0.5G or less |
| Rated Supply Voltage | 200 to 230 Volts AC |
The A20B-1004-0070 from FANUC is a spindle motor sensor unit designed to deliver accurate measurements and performance. It utilizes a high-resolution CZ-type sensor, ensuring precise feedback for the S-series AC Spindle Servo Unit. This product is mounted using a bracket method, facilitating straightforward installation.
Included with the sensor unit are essential components such as the amplifier cable, sensor head, and spindle amplifier cable, providing a complete solution for spindle motor control. It operates in a 3-phase network type and maintains reliability across an ambient temperature range of 0 to 45°C in non-condensing environments.
The unit can withstand a maximum storage temperature of -20 to 60°C, accommodating various situations when not actively in use. Designed with a vibration resistance rating of 0.5G or less, it promises stability under operational conditions.
The A20B-1004-0070 requires a supply voltage of 200 to 230 Volts AC and supports a rated frequency of 50 to 60 Hertz, making it compatible with standard industrial power systems. This sensor unit is suitable for applications that demand high performance and precision.