Emerson Shaft Relative Vibration Monitor A6110
$ 2,730
A6110
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Shaft Relative Vibration Monitor for AMS 6500
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Compatible with API 670 machinery protection standards
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Measures shaft vibration relative to bearing case
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Ideal for turbines, compressors, and hydro machines
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0 to -22 VDC input range; 0 to 10 VDC output
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Compact 1-slot design: 30 × 128.4 × 160 mm
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Lightweight at 320 grams
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Works with PlantWeb®, Ovation®, and DeltaV™ systems
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Enables predictive diagnostics with AMS software
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High-reliability monitoring for mission-critical assets
Emerson Shaft Relative Vibration Monitor A6110
The Emerson A6110 is a high-reliability Shaft Relative Vibration Monitor designed for integration into AMS 6500 systems to provide API 670 compliant machinery protection. Suitable for critical rotating equipment such as steam turbines, gas turbines, compressors, and hydro turbo machinery, the A6110 ensures early detection of shaft movement anomalies and prevents costly equipment failure.
The monitor works with a non-contact displacement sensor mounted through the bearing housing to measure shaft vibration relative to the bearing case. This makes it ideal for sleeve bearing machines where the machine casing remains stable while the rotor vibrates. The A6110 delivers precise analog signal outputs (0–10 VDC) based on shaft vibration parameters and initiates alarms or relay actions when thresholds are exceeded. Its compact, 1-slot form factor allows for easy installation within the AMS 6500 framework, providing continuous, accurate condition monitoring.
Specifications
| Specification | Details |
|---|---|
| Part Number | A6110 |
| Ordering Information | A6110 |
| Product Catalog | CSI 6500 |
| Description | Shaft Relative Vibration Monitor |
| Inputs | 0 to -22 VDC |
| Outputs | 0 to 10 VDC |
| Dimensions | 30.0 mm × 128.4 mm × 160.0 mm |
| Weight | 320 g |
| Application | Steam, gas, compressors, hydro turbo machinery |
| Installation | 1-slot configuration for AMS 6500 |
| Sensor Type | Non-contact displacement sensor |
| Measurement Type | Shaft relative to bearing case vibration |


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