I’m offering a Displacement sensor (LVDT) for MSV amp; PCV that speaks to demanding manufacturing lines. As an OEM or supplier, you need reliability, repeatability, and easy integration. I provide a rugged, high-sensitivity displacement sensor built around a proven LVDT core, with sealed housing, EMI shielding, and wide operating range. Our design ensures precise position feedback for MSV amp; PCV control loops, reduces downtime, and simplifies calibration. With plug-and-play connectors, scalable output, and robust temp range, it fits your automation stack. I support OEMs and Suppliers with small batch and high-volume production, fast lead times, and tailored cable lengths. Firmware/PC software optional for real-time diagnostics. We offer dependable support, datasheets, and sample units. If you need consistent metrology and repeatability across machines, this Displacement sensor (LVDT) for MSV amp; PCV is ready to ship.
For MSV and PCV applications, precise and reliable sensing is vital. Displacement sensors based on LVDTs deliver high resolution, excellent linearity, and negligible hysteresis over wide temperatures. Their rugged, sealed design tolerates vibration and harsh environments, making field installations more dependable and maintenance-friendly. LVDT-based sensors offer multiple outputs and interfaces to fit modern control systems, with long life thanks to no mechanical wear. They deliver stable feedback for tight control loops, enabling finer positioning, improved repeatability, and predictive maintenance through trend data. Global buyers seeking value will appreciate suppliers with strict quality control, scalable manufacturing, and global support. Choosing robust LVDT displacement sensors delivers easier calibration, faster deployment, and dependable performance that helps MSV and PCV platforms stay competitive in demanding markets.
| Parameter (Units) | Featured LVDT (MSV & PCV) | Industry Average | Typical Competitor |
|---|---|---|---|
| Measurement range (mm) | 0 – 25 mm (full scale) | 0 – 20 mm | 0 – 30 mm |
| Sensitivity (mV/V/mm) | 25 mV/V/mm (nominal) | 18 – 22 mV/V/mm | 15 – 25 mV/V/mm |
| Linearity (% FS) | ±0.25% FS | ±0.4 – ±0.6% FS | ±0.5% FS |
| Repeatability (% FS) | ≤0.01% FS | 0.02 – 0.05% FS | 0.03% FS |
| Hysteresis (% FS) | <0.02% FS | 0.03 – 0.08% FS | 0.04% FS |
| Resolution | Practical: 0.1 μm (system-limited) | 0.5 – 1 μm | 0.5 μm |
| Frequency response / Bandwidth | DC – 10 kHz (–3 dB) | DC – 5 kHz | DC – 8 kHz |
| Typical response time (10–90%) | <0.12 ms | 0.2 – 0.5 ms | ≈0.25 ms |
| Excitation (typical) | 3 Vrms @ 1–2 kHz | 3–5 Vrms @ 1 kHz | 2–5 Vrms @ 400–2 kHz |
| Output type | AC differential (conditioning recommended) | AC differential | AC differential / proprietary conditioned |
| Operating temperature | -40 °C to +125 °C | -20 °C to +85 °C | -40 °C to +100 °C |
| Environmental rating | Designed for IP67 when properly terminated | IP54 – IP65 typical | IP65 typical |
| Mounting options | Flange, clevis, stud mount adaptable to MSV/PCV actuation | Basic stud or flange | Flange or custom |
| Mechanical construction | Hardened stainless plunger, non-magnetic housing, corrosion-resistant seal | Stainless plunger, standard housing | Stainless components, variable sealing |
| Weight | ≈120 g (nominal) | 100–200 g | 120–250 g |
| Typical cable / connector | Shielded multi-core; up to 3 m factory lead (customizable) | Shielded or conduit options | Varies by supplier |
| Calibration stability (1 year) | <0.1% FS drift under specified conditions | 0.2 – 0.5% FS drift | 0.3% FS drift |
| Certifications / Test standards | Tested to common industrial shock & vibration profiles; thermal cycle validation | Basic factory tests | Supplier-dependent |
| Application fit for MSV / PCV | Engineered for valve position feedback, high-repeatability closed-loop control | General-purpose position sensing | General-purpose; may require additional conditioning |
| Recommended signal conditioning | Precision demodulator + low-noise amplifier for best linearity & repeatability | Standard conditioner | Supplier-specific modules |
| Typical failure modes | Seal degradation (mitigated by materials), connector fatigue—designed for field serviceability | Wear, moisture ingress | Connector and lead wear |