Druckempfindliches piezoresistives Gewebe

Angebot$7.20

Dieses piezoresistive Drucksensorgewebe, vergleichbar mit dem Gewebe von Eeonyx, ist äußerst langlebig und für verschiedene E-Textil-Anwendungen geeignet. Seine Dicke ermöglicht vielseitige Anwendungsmöglichkeiten.

Der Oberflächenwiderstand ist von 10⁴ bis 10⁷ Ohm/sq einstellbar. Sekundärbeschichtungen erhöhen die Haltbarkeit und Waschbeständigkeit. Das druckempfindliche Gewebe zeigte nach 30 Wäschen keinen signifikanten Anstieg des Widerstands und gewährleistet so langfristige Stabilität.

Composition: 90% Conductive Fiber 10%Spandex
Stoffgewicht: 130 GSM

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Type

Electrode

Piezoresistive

Raw Material

Silver

Carbon

Electrical Resistance

0.1 -1 Ω

10⁴–10⁷ Ω

Piezoresistive Resistance Data Sheet

A sandwich structure using conductive PCB silver thin films on the top and bottom layers. Under a 0–2 kg applied force over a 1 cm-diameter contact area, the values shown represent the average of five measurements. This dataset serves as a material performance reference.



01

Durability

Unlike rigid PCB or thin-film materials, conductive textiles provide superior flexibility and stretch, allowing them to bend, compress, and move naturally with the body. This fabric structure maintains conductivity even under repeated deformation, giving textile-based sensors far better durability and comfort for wearable, smart-home, and pressure-sensing applications.




02

Conformability

Conductive fabrics offer exceptional conformability, allowing them to wrap, bend, and adapt smoothly to curved or moving surfaces without losing electrical performance. Their textile structure naturally follows body contours or complex shapes, enabling stable contact and consistent signal response. This makes fabric-based sensors far more versatile than rigid PCB or thin-film materials.


01

Durability

Unlike rigid PCB or thin-film materials, conductive textiles provide superior flexibility and stretch, allowing them to bend, compress, and move naturally with the body. This fabric structure maintains conductivity even under repeated deformation, giving textile-based sensors far better durability and comfort for wearable, smart-home, and pressure-sensing applications.




02

Conformability

Conductive fabrics offer exceptional conformability, allowing them to wrap, bend, and adapt smoothly to curved or moving surfaces without losing electrical performance. Their textile structure naturally follows body contours or complex shapes, enabling stable contact and consistent signal response. This makes fabric-based sensors far more versatile than rigid PCB or thin-film materials.


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