nano3Dprint releases new conductive silver ink products
DW100-24 is a waterborne, low VOC, electrically conductive ink and coating
nano3Dprint, an additive manufacturing and printed electronics solutions provider, has launched its conductive silver ink products – developed in partnership with Creative Materials – for use in the company’s A2200, B3300, and MatDep Pro 3D printers. nano3Dprint DW100-24 is a waterborne, low VOC, electrically conductive ink and coating – suitable for application by Direct Write 3D printing using nano3Dprint’s line of multi-material 3D printers.
DW100-24 can air-dry at room temperature or be heat-cured at 100°C – 175°C for maximum conductivity. This product features adhesion to Kapton, Mylar, glass, PLA, ABS, and a variety of other surfaces. Unlike conventional conductive materials, this product is very resistant to flexing and creasing. Some applications for DW100-24 include embedded 3D circuitry, medical electrodes, PCBs, polymer thick film circuitry, membrane switches, and static elimination. DW100-24 is N-methyl Pyrrolidone free.
Key features of nano3Dprint’s conductive silver ink products include high conductivity (the silver ink formulations boast exceptional electrical conductivity – making them ideal for a wide range of applications, from flexible circuits to sensors); precision printing (the technology ensures precise deposition – allowing engineers and designers to create intricate patterns with ease); versatility (whether working with rigid substrates or flexible materials, DW100-24 conductive silver ink adheres uniformly – enabling seamless integration into various electronic devices); and environmental friendliness.
Applications include printed electronics (printed circuit boards, antennas, and touch sensors); wearable technology (designers can now incorporate conductive traces directly onto flexible substrates and fabrics);
Internet of Things (smart sensors, RFID tags, and other IoT components); and medical devices (the silver inks are compatible with embedded electronics applications – making them ideal for next-generation Orthopedics and embedded sensor medical devices).




