PneuBytes12-Channel Inductance Sensor Board SSIND2-2

PneuBytes12-Channel Inductance Sensor Board SSIND2-2

  • Product Code: SSIND2-2
  • Availability: In Stock
  • £40.00

12-Channel Inductance Sensor Board SSIND2-220

The 12-Channel Inductance Sensor Board is a high-precision sensing platform designed for acquiring and processing data from up to twelve inductive sensors simultaneously. Engineered for soft robotics, interactive systems, and non-contact measurement, it provides a centralized and robust solution for tracking position, deformation, or proximity with high sensitivity.

Key Features

  • Twelve Independent Sensing Channels

    Connect and monitor up to 12 inductive coils or sensors from a single board.

  • High-Resolution Data Acquisition

    Onboard electronics deliver clean, high-resolution data for accurate and sensitive measurements.

  • Flexible Communication

    Features a standard USB/serial interface for easy connection to a PC, with optional I²C/SPI for integration with microcontrollers and embedded systems.

  • Compact and Integrated Design

    A single, lightweight PCB simplifies wiring and integration, reducing clutter in complex setups.

  • Customizable Firmware

    Adjustable sampling rates, filtering, and calibration parameters allow for tailoring the sensor response to specific materials and applications.

  • Low-Noise, Stable Operation

    Optimized circuit layout and power regulation ensure minimal signal noise for reliable and repeatable readings.

Applications

  • Shape and deformation sensing in soft robots and actuators

  • Non-contact proximity and position tracking of metallic objects

  • Human-computer interaction (HCI) and smart surface development

  • Research and teaching of advanced sensing principles

  • Custom automation and quality control systems requiring multi-point detection

Unlock high-fidelity feedback for your dynamic systems. The 12-Channel Inductance Sensor Board offers researchers, roboticists, and engineers a powerful and streamlined tool to capture complex physical interactions in one integrated package.