Precision and reliability drive my work with the Linear Position Sensor Displacement LVDT. This rugged displacement sensor delivers stable linear position data across varying speeds and loads, ideal for CNC, robotics, or test benches. With robust LVDT architecture, it provides high accuracy, low hysteresis, and excellent repeatability, even in harsh environments. I offer CE Certification to ensure compliance with European safety and environmental standards, helping you pass audits with ease. The device pairs easily with standard signal conditioners and controllers, and its sealed housing resists dust, oil, and moisture. For procurement, I can share a detailed Pricelist and customization options to fit your OEM specs, including stroke length, connectors, and IP ratings. When you choose my Linear Position Sensor Displacement LVDT, you’re investing in long service life and predictable measurement. Let me tailor a solution that maps your measurement range to your process, and we’ll streamline testing, calibration, and integration for your team.
In precision motion control, linear position sensors using displacement LVDTs deliver reliable, repeatable measurement of stroke across automation, manufacturing, and aerospace. Pioneering service models merge engineering expertise with a global support network: design and integration consultation, on-site calibration, fault diagnostics, refurbishment, and rapid field service to minimize downtime. For global buyers, a single partner can manage the full lifecycle of displacement sensing—from specification to ongoing maintenance. Key advantages include rugged, high-accuracy sensing across wide temperatures, robust packaging, and compatibility with various LVDT configurations. A service-led approach provides traceable calibration certificates, ISO-compliant quality management, spares availability, and predictable lead times. Whether upgrading legacy lines or deploying new equipment, end-to-end capability enables tailored solutions to stringent industrial standards, ensuring consistent performance, long service life, and reduced total cost of ownership for global operations.
| Sensor ID | Measurement Range (mm) | Resolution (µm) | Sensitivity (mV/mm) | Linearity (%FS) | Repeatability (µm) | Operating Temp (°C) | Excitation (Vrms) | Frequency (kHz) | Output Type | Bore Ø (mm) |
|---|---|---|---|---|---|---|---|---|---|---|
| LVDT-01 | ±1 | 0.1 | 420 | 0.05 | 0.2 | -40 to 125 | 3 | 2.5 | Demodulated DC (ratiometric) | 3 |
| LVDT-02 | ±3 | 0.3 | 200 | 0.08 | 0.5 | -55 to 150 | 5 | 3 | AC differential | 4 |
| LVDT-03 | ±5 | 0.5 | 120 | 0.12 | 1.0 | -30 to 120 | 3 | 2 | Demodulated DC | 6 |
| LVDT-04 | ±12.5 | 1.5 | 48 | 0.18 | 2.5 | -20 to 100 | 3 | 2 | AC differential | 8 |
| LVDT-05 | ±25 | 3 | 22 | 0.25 | 5 | -20 to 85 | 5 | 1 | Demodulated DC | 10 |
| LVDT-06 | ±50 | 8 | 12 | 0.35 | 10 | -10 to 80 | 3 | 0.8 | AC differential | 14 |
| LVDT-07 | ±100 | 25 | 6 | 0.5 | 25 | -10 to 70 | 5 | 0.5 | Demodulated DC | 18 |