Scientists Developed Intelligent Cloth &Nbsp, Which Can Spin Sensors Electronic Components Into Them.
According to reports, scientists at the Federal Institute of technology in Zurich, Switzerland, have developed a new technology that can spin sensors, conductive fibers and other electronic components into fibers. The intelligent fabric made of ordinary fabrics and electronic components not only has the characteristics of electronic components, but also can be washed directly. In addition, because the core of the technology is to make electronic components miniaturized and fibrosis, there is no need to upgrade the existing textile equipment, so that large-scale commercial production can be made.
Scientists have been trying to Ordinary cloth Electronic components are added to make them have specific functions. The most common solution is to fix electronic components on cloth by sewing. And made by this method. Electronic clothing The obvious drawback is that it can not be washed directly. In addition, the production can only be carried out by manual operation, which is not convenient for large-scale commercial production, resulting in high cost of such clothing.
At present, the fabric made of this technology is mainly banded, but researchers hope that the final smart fabric can withstand arbitrary tailoring, so as to better meet the needs of clothing design and production. Through this technology, researchers have produced two samples: tablecloths that display the ambient temperature and humidity through the LED (LED), and vests that can measure body temperature at any time.
Kunigunde Chicnik, the head of the project, said that smart fabric technology will have a very wide application prospect in the future: the mixed fabric with heart rate monitoring sensors can help injured athletes safely carry out rehabilitation training, provide information for the wounded or the environment for the first aid and firemen, and even integrate the monitors and keyboards on the clothes so that we can easily "wear" the computer. Next, they will focus on solving the power supply problem of smart fabrics, and plan to further expand the space of smart fabrics to support larger sensor and bus structures.
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