Micro-Epsilon provides a comprehensive portfolio of inductive displacement and position sensors, ranging from traditional LVDT models and integrated-controller versions to bespoke, high-volume OEM solutions. These induSENSOR systems are engineered for high-performance measurement across a wide array of industrial sectors.
The sensors ensure precision and durability in demanding environments by offering standardized and custom configurations.
Ideal for Serial Applications in Numerous Industries

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With a reputation built over decades, Micro-Epsilon has continuously advanced the field of inductive displacement sensing. While mastering traditional Linear Variable Differential Transformer (LVDT) technology, the company has expanded its portfolio through innovative developments that push beyond classical measurement techniques.
The induSENSOR range offers diverse mechanical configurations, including plunger, measuring ring, measuring tube, and gauge models – as well as options for external controllers. This versatility allows for seamless integration across a vast spectrum of industrial applications.
Sensor Modifications and Customer-Specific Sensor Development

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Micro-Epsilon develops specialized sensors for requirements that standard models cannot meet. Existing inductive sensors from the standard range can be modified, with commercial implementation possible even for medium-sized quantities. These standard induSENSOR models serve as the technical foundation for such adaptations.
For applications requiring large volumes, Micro-Epsilon creates sensors precisely tailored to customer specifications. The geometry, electronics, and packaging are custom-engineered to meet specific demands. With a high level of vertical manufacturing integration, large quantities can be produced at a low cost.
Key Features
- Well-suited for high-volume applications
- Wear-free and maintenance-free displacement and position measurement
- Outstanding price/performance ratio
- Compact designs, ideal for integration into machinery
- Robust and industrial-grade sensor designs