
|
Sleeve Thread |
M10x1 |
|
Armored Cable |
No |
|
Model No. |
PR6423/003-130 CON021 |
|
Case Thread |
55mm |
|
Cable Length |
8m |
|
Cable End |
LEMO |

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|
PR6423 Eddy Current Sensor |
|
|
Tip Diameter |
8.0 mm |
|
Measurement Range |
±1.0 mm Position; 0 to 500 μm PP Vibration |
|
Frequency Range |
0 to 20 kHz |
|
Sensitivity |
8 V/mm (203.2 mV/mil) ±1.0% |
|
Sensor Body Thread Options |
M10x1 or 3/8-24 UNF-2A |
|
Temperature Range |
-35 to 180°C (-31 to 250°F) |
|
Offers ideal vibration and position measurements in medium shafts (≥25mm or 0.984”). Can be used as a tachometer for rotational speed measurements |
|
|
CON021 Converter |
|
|
Maximum Output Range |
-4 to -20V |
|
Reference Voltage |
-12V |
|
Connector Arrangement |
Lemo |
|
Frequency Range |
0 to 20 kHz |
|
Rise Time |
<15 μs |
|
Sealing |
IP20 |
|
Temperature Range |
-30 to 100°C (-22 to 212°F) |
|
Designed to be panel mounted in an enclosure. Works with all Emerson eddy current sensors. |
|
FAQ
|
1. How does the PR6423/003-130 CON021 achieve sub-micron resolution in non-contact eddy current displacement measurement applications? |
|
The PR6423/003-130 CON021 employs a high-frequency eddy current sensing architecture with optimized coil configuration, enabling ultra-precise, contactless measurement of shaft displacement with excellent resolution stability in dynamic industrial environments. |
|
2. What linearity compensation mechanisms are implemented in the PR6423/003-130 CON021 to ensure measurement integrity across its calibrated range? |
|
The PR6423/003-130 CON021 integrates factory-calibrated linearization profiles that minimize non-linearity and hysteresis effects, ensuring consistent proportional output behavior throughout its operational measurement span. |
|
3. How does the PR6423/003-130 CON021 maintain signal stability under severe thermal cycling and mechanical vibration conditions? |
|
The PR6423/003-130 CON021 is engineered with thermally resilient materials and mechanically reinforced sensor housing, allowing it to maintain signal fidelity under fluctuating temperatures and high-vibration turbomachinery environments. |
|
4. What electromagnetic compatibility (EMC) design strategies are embedded in the PR6423/003-130 CON021 to suppress industrial noise interference? |
|
The PR6423/003-130 CON021 features enhanced shielding topology and optimized coil winding structure, significantly reducing susceptibility to electromagnetic interference (EMI) and ensuring stable signal transmission in electrically dense environments. |
|
5. How does the PR6423/003-130 CON021 enhance predictive maintenance capabilities when integrated into CON021-based monitoring systems? |
|
When deployed with CON021 signal conditioning modules, the PR6423/003-130 CON021 delivers high-resolution vibration and axial displacement data, enabling early-stage anomaly detection and improving the reliability of rotating machinery condition monitoring systems. |
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