I design and supply the Eddy Current Displacement Sensor Vibration for OEMs and Suppliers who demand reliable non-contact displacement and vibration monitoring in demanding environments. This sensor delivers precise, real-time position data of rotating shafts or components, with high resolution and fast response to detect misalignment, bearing wear, or rotor wobble before faults occur. Built with a rugged housing and EMI-resistant electronics, it operates over a wide temperature range and harsh industrial settings. I offer flexible outputs (analog 4-20 mA, IO-Link, or digital) and easy mounting options to fit your existing automation stack, so integration is quick and risk-free. Calibration traces and traceable performance ensure repeatable results across batches. I provide technical support, on-site or remote, and scalable configurations for multiple channels. If you’re sourcing for OEM lines or Suppliers networks, this sensor equips your equipment with proven reliability, reduced downtime, and measurable performance gains.
Eddy current displacement sensors deliver non-contact, high-precision measurements that stay accurate under vibration. For global manufacturers, they enable real-time condition monitoring, driving peak performance and reducing downtime. With fast response and wear-free operation, they suit motor spindles, gears, hydraulic actuators, and precision stages where small displacements shape process quality. Custom solutions tailor sensing range, resolution, and speed; probe geometry; mounting; environmental tolerance (temperature, ingress protection); EMI shielding; signal conditioning; and outputs (analog, SSI, digital). A capable supplier matches the sensor to vibration spectrum, mechanical constraints, and control-system interfaces, ensuring robust field performance across sites. When sourcing, evaluate guarantees for accuracy and repeatability, environmental testing, calibration services, lead times, and after-sales support. Look for modular designs that scale from pilot lines to full production and for thorough documentation to streamline multi-site procurement and maintenance. A tailored vibration sensor translates data into actionable insights and sustains peak performance.
| Sample | Model Code | Range (µm) | Bandwidth (kHz) | Sensitivity (mV/µm) | Noise Floor (nm RMS) | Temp Range (°C) | Max Vibration (g) | Power (mW) | Compliance |
|---|---|---|---|---|---|---|---|---|---|
| S01 | M-EDS-UC-01 | 25 | 2.5 | 0.8 | 6 | -40 to 85 | 50 | 120 | Pass |
| S02 | M-EDS-UC-02 | 50 | 4.0 | 1.0 | 4 | -20 to 85 | 80 | 180 | Pass |
| S03 | M-EDS-UC-03 | 100 | 6.0 | 0.9 | 5 | -40 to 85 | 100 | 150 | Pass |
| S04 | M-EDS-UC-04 | 200 | 12.0 | 1.2 | 3 | -30 to 105 | 120 | 200 | Pass |
| S05 | M-EDS-UC-05 | 75 | 3.5 | 0.85 | 8 | -40 to 70 | 60 | 140 | Pass |
| S06 | M-EDS-UC-06 | 150 | 6.5 | 1.1 | 5 | -40 to 90 | 110 | 190 | Pass |
| S07 | M-EDS-UC-07 | 30 | 2.0 | 0.75 | 7 | -20 to 90 | 70 | 130 | Pass |
| S08 | M-EDS-UC-08 | 120 | 5.5 | 1.3 | 2.5 | -40 to 100 | 105 | 170 | Pass |