Embroidering Resonant Circuits for Inductive Pressure Sensing
Authors
In this paper, we introduce an embroidered resonant circuit for textile-based inductive pressure sensing. By embroidering enameled wire onto a flexible textile, we create a coil and a capacitor using a single continuous wire. This resonant circuit, combined with a ferromagnetic layer and a soft, compressible material such as foam, forms the basis of a flexible and soft pressure sensor. We investigate the fabrication of coils and capacitors through embroidery, evaluate different conductive materials for altering the circuit's resonance frequency, and assess the impact of different foams on the sensor's performance. Following our tests, we evaluated an embroidered sensor with a diameter of 45 mm, actuated with a force of up to 50 N over 100 cycles, using foams with different compression strengths. A series of applications demonstrate that our approach offers a performant complement to existing sensing methods used in electronic textiles.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 100%
E-Sewing: Exploring the Design Space of Machine-Sewing E-Textile Circuits
DIS '25· Electronic Textiles (E-textiles) +1
- 80%
SenSequins: Smart Textile Using 3D Printed Conductive Sequins
UIST '22· Electronic Textiles (E-textiles) +1
- 60%
Sketch&Stitch: Interactive Embroidery for E-textiles
CHI '18· Shape-Changing Interfaces & Soft Robotic Materials +1
- 60%
KnitUI: Fabricating Textile Sensor and User Interface with Machine Knitting
CHI '21· Shape-Changing Interfaces & Soft Robotic Materials +1
- 60%
Crafting Research Products through Digital Machine Embroidery
DIS '20· Shape-Changing Interfaces & Soft Robotic Materials +1
- 60%
WovenCircuits: A 3-Step Fabrication Process for Weaving Electric Circuit Layouts in Everyday Artefacts
DIS '25· Shape-Changing Interfaces & Soft Robotic Materials +1
- 60%
Towards Yarnier Interactive Textiles: Mapping a Design Journey through Hand Spun Conductive Yarns
DIS '25· Shape-Changing Interfaces & Soft Robotic Materials +1
- 60%
Tessutivo: Contextual Interactions on Interactive Fabrics with Inductive Sensing
UIST '19· Electronic Textiles (E-textiles) +1
- 60%
KnitScript: A Domain-Specific Scripting Language for Advanced Machine Knitting
UIST '23· Desktop 3D Printing & Personal Fabrication +1
- 60%
QUILT: Supporting Modular Design of Machine-Knitting Programs
UIST '25· Aging-Friendly Technology Design +1
Based on Jaccard similarity of research subtopics & professions (≥60%)