A stretchable breathable washable all-textile smart wearable keyboard

Author:

Zhang Youzhi,Wang Haojie,Yu Ping,Chen Jinmiao,Li Hangze,Wu JinmingORCID,Chen XizhangORCID

Abstract

Abstract The development of comfortable and lightweight wearable devices is an emerging technological goal in human-computer interaction. Conductive textiles attract a great deal of interest as versatile materials for wearable devices. It can naturally integrate into our daily clothing, making wearable devices more comfortable and convenient. However, developing all-textile wearable devices remains an important challenge. And the wiring of wearable devices in practical applications is also a thorny issue. In this study, a novel wearable smart keyboard is proposed. Benefit from the ingenious structural design of double-faced effect functional textiles and 3D spacer textiles, the smart keyboard achieves all-textile structure and the wires can also be hidden inside the 3D spacer textile. The smart keyboard is stretchable, breathable, washable and can be integrated with daily clothing by sewing. In addition to the functions of traditional keyboards, smart keyboards also have the ability to detect tapping force which lays the foundation for future intelligent applications, such as tracking the tapping force of typewriting to enhance security.The application examples of integrating the smart keyboard into lab-coat for typewriting are demonstrated. This study shows that the novel smart keyboard has great potential in the fields of wearable devices and human-computer interface.

Funder

China Postdoctoral Science Foundation

Natural Science Foundation of Zhejiang Provincial

Wenzhou Major Technology Innovation Project

Wenzhou Industrial Science and Technology Project

Wenzhou Association for Science and Technology

Publisher

IOP Publishing

Reference29 articles.

1. Materials and device architecture towards a multimodal electronic skin;Yuan;Mater. Today,2023

2. Recent progress in the fabrication and applications of flexible capacitive and resistive pressure sensors;Bijender;Sensor. Actuat. A-Phys.,2022

3. Recent advanced in multiresponsive flexible sensors towards E-skin: a delicate design for versatile sensing;Li;Small,2022

4. Bio-compatible piezoelectric material based wearable pressure sensor for smart textiles;Abanah;Smart Mater. Struct.,2022

5. Photocurable 3D printing gels with dual networks for high-sensitivity wearable sensors;Rong;Colloid. Surface. A,2023

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