Description
Product Description
The AMS EZ 1000 is a fully integrated eddy current measurement system designed to simplify and enhance shaft monitoring for turbines, compressors, pumps, and other rotating machinery. It combines a precision sensor, high-quality cable, and compatible converter into a single system, while also allowing individual component purchases to optimize inventory management.
Engineered for compliance with API 670 standards, the system delivers accurate, oil-resistant measurements, reducing downtime and enabling field calibration for quick part replacement. Its universal design supports third-party sensors, giving engineers maximum flexibility when managing spares.
Technical Specifications
Measurement & System Features
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Complete measurement chain: sensor, cable, and converter included
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API 670 compliant for eddy current monitoring
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Field calibration capability for on-site replacement
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Compatible with third-party sensors to reduce inventory needs
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Reliable, oil-resistant sensors ensure accurate readings
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Warranty: 42 months
Operational Advantages
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Mix-and-match sensor and cable configuration for flexible deployment
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Quick push-button field calibration using Emerson Machine Studio software
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Minimizes downtime during maintenance or sensor replacement
Applications
Ideal for high-reliability monitoring of rotating machinery, including:
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Steam, gas, and hydro turbines
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Industrial compressors and pumps
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Gearboxes and rotating machinery in heavy equipment
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Facilities requiring rapid sensor replacement and calibration
FAQ
Q: Can I replace the sensor without sending the system back to the factory?
A: Yes, field calibration allows you to swap sensors on-site, saving time and minimizing downtime.
Q: Is it compatible with sensors from other manufacturers?
A: The system is designed to accept third-party sensors, providing flexible inventory options.
Q: How long is the warranty?
A: Emerson provides a 42-month warranty for the AMS EZ 1000.
Q: Does it meet industry standards?
A: Yes, it is fully compliant with API 670 eddy current measurement requirements.