Smart textiles have attracted huge attention due to their potential applications for ease of life. Recently, smart textiles have been produced by means of incorporation of electronic components onto/into conductive metallic yarns. The development, characterizations, and electro-mechanical testing of surface mounted electronic device (SMD) integrated E-yarns is still limited. There is a vulnerability to short circuits as non-filament conductive yarns have protruding fibers. It is important to determine the best construction method and study the factors that influence the textile properties of the base yarn. This paper investigated the effects of different external factors, namely, strain, solder pad size, temperature, abrasion, and washing o...
The functionalization of textiles with electro-conductive particles and layers is a vivid field of r...
Electronic components formed from electrically conductive textiles require a clear characterization ...
The functionalization of textiles with electro-conductive particles and layers is a vivid field of r...
Smart textiles have attracted huge attention due to their potential applications for ease of life. R...
The emergence of intelligent textiles in recent years has highlighted the importance of e-textiles (...
Electronic textiles are an early developing hybrid system and require new standards of reliability a...
The integration of electronic components in/onto conductive textile yarns without compromising texti...
The integration of electronic components in/onto conductive textile yarns without compromising texti...
Electronic yarns contain electronic components which are fully embedded into the conductive yarn’s s...
The emergence of intelligent textiles in recent years has highlighted the importance of e-textiles (...
Seam strength has a huge impact on the durability of the garment. Conductive yarn usage in a stitchi...
Recently, electrically driven conducting polymer (CP) coated yarns have shown great promise to devel...
Recently, electrically driven conducting polymer (CP) coated yarns have shown great promise to devel...
The functionalization of textiles with electro-conductive particles and layers is a vivid field of r...
Recently, electrically driven conducting polymer (CP) coated yarns have shown great promise to devel...
The functionalization of textiles with electro-conductive particles and layers is a vivid field of r...
Electronic components formed from electrically conductive textiles require a clear characterization ...
The functionalization of textiles with electro-conductive particles and layers is a vivid field of r...
Smart textiles have attracted huge attention due to their potential applications for ease of life. R...
The emergence of intelligent textiles in recent years has highlighted the importance of e-textiles (...
Electronic textiles are an early developing hybrid system and require new standards of reliability a...
The integration of electronic components in/onto conductive textile yarns without compromising texti...
The integration of electronic components in/onto conductive textile yarns without compromising texti...
Electronic yarns contain electronic components which are fully embedded into the conductive yarn’s s...
The emergence of intelligent textiles in recent years has highlighted the importance of e-textiles (...
Seam strength has a huge impact on the durability of the garment. Conductive yarn usage in a stitchi...
Recently, electrically driven conducting polymer (CP) coated yarns have shown great promise to devel...
Recently, electrically driven conducting polymer (CP) coated yarns have shown great promise to devel...
The functionalization of textiles with electro-conductive particles and layers is a vivid field of r...
Recently, electrically driven conducting polymer (CP) coated yarns have shown great promise to devel...
The functionalization of textiles with electro-conductive particles and layers is a vivid field of r...
Electronic components formed from electrically conductive textiles require a clear characterization ...
The functionalization of textiles with electro-conductive particles and layers is a vivid field of r...