Proximity Probe with Driver
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PROXIMITY PROBE, 8 MM PROBE TIP DIAMETER, WITH 3/8-24 OR M10X1 CASE THREAD Measure shaft vibration and displacement on machinery with fluid film bearings. Durable PPS over-molded probe tips withstand harsh conditions when monitoring critical machinery such as turbines and compressors. Complete hardware system is compatible with all standard condition monitoring software EDDY CURRENT DRIVER COMPATIBLE WITH 8 MM PROXIMITY PROBE SYSTEMS, VOLTAGE OUTPUT API Standard 670 specified format Isolated voltage output standard at BNC and terminal block Vout and Com Upgraded to include SecureLock connector
PROXIMITY PROBE, 8 MM PROBE TIP DIAMETER, WITH 3/8-24 OR M10X1 CASE THREAD Measure shaft vibration and displacement on machinery with fluid film bearings. Read more
Durable PPS over-molded probe tips withstand harsh conditions when monitoring critical machinery such as turbines and compressors. Complete hardware system is compatible with all standard condition monitoring software EDDY CURRENT DRIVER COMPATIBLE WITH 8 MM PROXIMITY PROBE SYSTEMS, VOLTAGE OUTPUT API Standard 670 specified format Isolated voltage output standard at BNC and terminal block Vout and Com Upgraded to include SecureLock connectorDescription
DP100103-00-06-50-02-00 DP1001Series Proximity Probe, 8 mm Probe Tip Diameter; M10x1 Threaded Case, Integral FEP Jacketed Cable; Fastest Delivery Option, No Additional Charge; 60 mm Overall Case Length; 5.0 m Total Length; Secure Lock Connector Without Protector; CE Certified DD100180-50-00 Proximity Probe Driver for 8 mm PRO Proximity Probes, Voltage Output, Calibrated to 4140 Steel; System Length: 5 Meter; Mounting Type: Panel Mount; CE Certified
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The engineering behind this product
Why this measurement is made, how it goes wrong, and what the numbers mean — written by the people who build the instrument.
Phase analysisPhase: The Ruler Most People Never Pick UpAmplitude says how much, frequency says how often — phase says how the machine is actually moving. A mini explainer plus a live simulator: pick a fault, toggle the measurement direction, and read the phase pattern that separates faults the spectrum cannot.8 min read · Read →
Hard conceptsAcceleration, Velocity, Displacement: Same Motion, Three Answers — and the Traps Between ThemTwo analysts measure the same bearing and report numbers that look incompatible — 0.02 g, 3 mm/s, 500 µm. All three can describe one motion, because each integration divides by frequency and tilts the whole spectrum. Here is the ω-arithmetic, the ski-slope trap that manufactures false millimetres, and how to integrate without lying.10 min read · Read →
Hard concepts · Order analysisWhen the Speed Will Not Sit Still: Smeared Spectra and Order TrackingOn a VFD-driven machine a perfectly good analyser can produce a useless spectrum: shaft speed drifts during the average, every shaft-related peak walks across bins, and the 10th order smears ten times as badly as the 1st. Order tracking — resampling the signal against shaft angle using a tacho pulse — collapses the smear back into sharp lines. A hard-concepts walk through why, with a live rig: dial in speed wobble, pile on averages, and watch the Hz spectrum die while the order spectrum holds.9 min read · Read →