EMERSON
EMERSON EZ1080-05-00-010 Eddy Current Proximity Sensor
In stock, ready to ship
Manufacturer: EMERSON
Product No.: EZ1080-05-00-010
Product Type: Eddy Current Proximity Sensor
Product Origin: USA
Payment: T/T
Weight: 1000g
Shipping port: Xiamen
Warranty: 12 months
Yes, we provide a 30-day money-back guarantee for all purchases.
Yes, all items come with a 12-month warranty from the date of shipment.
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Model Number: EZ1080-05-00-010
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Sensor Type: Eddy Current Proximity Sensor
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Sensing Diameter: 8 mm
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Thread Size: M10 x 1
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Sensing Length: 50 mm
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Cable Length: 1 meter
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Configuration: No unthreaded tip, no armor protection
Product Description
The EZ1080-05-00-010 is a precision-engineered eddy current sensor designed for non-contact measurement of position, displacement, and vibration. Featuring an 8 mm diameter sensing head with a M10 x 1 threaded body and a 50 mm sensing length, this sensor is suitable for installation in tight spaces and critical monitoring points.
This model comes with a 1-meter integrated cable (non-armored) and features no unthreaded length at the tip, providing full thread engagement for maximum installation stability. The sensor is ideal for OEMs and system integrators seeking compact, rugged solutions for industrial condition monitoring.
Key Features
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8 mm Sensing Head Diameter – Compact and suitable for confined installation areas
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Thread Size: M10 x 1 – Industry-standard threading for easy mounting
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50 mm Sensing Length – Extended probe length for deep or recessed sensing applications
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No Unthreaded Tip – Full thread allows secure and flush installation
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Unarmored Cable – Includes 1-meter flexible cable for simple routing in protected environments
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Reliable Eddy Current Technology – Provides accurate, stable measurements even in harsh conditions
Typical Applications
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Shaft position and runout monitoring
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Non-contact vibration measurement in rotating machinery
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Turbomachinery and compressor protection systems
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Embedded sensor applications in OEM industrial equipment
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Condition monitoring in high-speed or high-precision environments