We deliver an industrial-grade inductive displacement sensor designed for tough automation lines. As an ODM Factory, we tailor the sensor to your exact needs—size, housing, cable length, connectors, and output options (4-20 mA, NPN/PNP, SSI, CANopen). Our in-house engineering ensures high repeatability, rugged IP67/IP68 housing, and shock resistance for harsh environments. You get precise non-contact measurement, fast response, and reliable long-term stability, essential for robotics, packaging, or CNC equipment. We offer short lead times and scalable production, with ODM services that let you brand and customize sensor electronics and housings while keeping costs down. Quality is our top priority: every unit undergoes calibration, testing, and traceable QC records. If you are sourcing a Factory-direct supply, I can coordinate prototypes, full-scale production, and ongoing support. With me, your sensor supply becomes predictable, cost-efficient, and ready for mass deployment in your next automation project.
Inductive displacement sensors provide non-contact, high-precision position data for today’s automated lines. Their rugged metal housings and sensing principle deliver repeatable results in demanding environments. Sourcing factory-direct offers tangible advantages: predictable pricing, shorter lead times, and tighter quality control, with engineering standards aligned across batches. Global buyers can select from a range of outputs (analog and digital), stroke lengths, and connection options, while OEM/ODM capabilities allow customization of heads, connectors, and mounting to fit your equipment and reduce integration risk. To guarantee peak performance, sensors arrive factory-calibrated with traceable documentation and consistent performance over temperature and vibration. Reliable operation is supported by robust construction, protective coatings, and electronics designed for drift resistance. Through direct-from-manufacturer procurement, spare parts, recalibration, and technical support are available with short lead times, ensuring continuity across sites. This approach simplifies compliance, documentation, and scalable deployment for global operations without compromising on quality or service.
| Parameter | Unit | Typical Value | Specification / Notes |
|---|---|---|---|
| Measurement principle | — | Eddy-current (inductive) | Non-contact metallic target measurement; robust for harsh environments |
| Sensing range (nominal) | mm | 0.5 | Standard coordinate; configurable 0.2–6.0 mm depending on probe geometry |
| Resolution | µm | ≤0.1 | System resolution with proper signal conditioning; sub-micron achievable |
| Linearity (typical) | %FS | ±0.1 | Measured across calibrated range; better accuracy possible with calibration |
| Repeatability | µm | ±0.05 | 1σ repeatability under steady conditions |
| Hysteresis | µm | ≤0.2 | Measured over full travel; low hysteresis typical for eddy-current probes |
| Frequency response (-3 dB) | kHz | 10 | Bandwidth up to 10 kHz typical; extended bandwidth options available |
| Response time (10–90%) | ms | < 0.1 | Fast analog response for dynamic measurements |
| Supply voltage | V DC | +12 to +24 | Typical ratiometric operation; dedicated conditioners may require regulated supply |
| Current consumption | mA | < 35 | Depends on sensor driver; lower-power versions available |
| Temperature coefficient | ppm/°C | < 50 | Typical; compensation further reduces drift for precision applications |
| Operating temperature | °C | -20 to +85 | Extended temp versions: -40 to +125°C |
| Protection rating | — | IP67 | Sealed housings for dust and splash protection; higher ratings possible |
| Probe tip material | — | Stainless steel | Standard hardened tips; non-marring options available |
| Housing material | — | Aluminum / Stainless | Robust mechanical construction for industrial environments |
| Cable / Connector | m / type | 3 m (customizable) | Shielded cable recommended; IP-rated connector options |
| Output signal | — | Ratiometric voltage (analog) | Alternative: current-loop or digital conditioned output (e.g., ±10 V, 4–20 mA) |
| Typical applications | — | Precision gap, vibration, shaft position | Suitable for machine tool feedback, bearing monitoring, assembly verification |
| Calibration & traceability | — | Factory calibration included | Calibration certificate available on request; supports ISO/IEC traceable processes |