nScrypt designs and manufactures high-precision 3D manufacturing systems, providing solutions for industrial applications with unmatched accuracy and flexibility. Serving industries such as printed electronics, electronic packaging, communications, printed antenna, defense, space, and 3D printing, our systems are widely used by the military, academic research institutes, government agencies, and national labs.
Our patented SmartPump™ offers a significant edge in speed and precision over other micro-dispense pump technologies. Our 3D printing features the patent-pending nFD™, which reaches printing temperatures exceeding 400°C and produces the smallest commercial prints at less than 50 microns. nScrypt’s direct print technologies meet a broad range of customer needs through creative use of advanced printing and micro-dispensing technologies, including 3D printing, laser machining, and conformal coating. We also develop unique variations of our patented SmartPump™ valves along with customized dispensing techniques.
Our line of 3D manufacturing systems features high-precision motion platforms that can be customized to meet specific application needs. These systems take traditional 3D printing to the next level, offering capabilities like material-agnostic dispensing, milling, drilling, polishing, pick and place operations, with areas up to 1.5m x 1.5m, ±1.5 μm accuracy, 4/5/6-axis functionality, conformal printing, digital control, high speed, automatic tool changes, and the ability to handle extreme multi-curved surfaces. nScrypt systems allow users to go directly from CAD files to fully functional products—complete with electronics—without manual tool changes. Our manufacturing and research facilities are located in Orlando, FL.
Industry
Machinery Manufacturing, Metering & Mixing Dispensers, Flux Dispensers, Dispensers, Materials Handling, General Accessories, Accessories, Instruments & Controls, Scaffolding & Scaffolds, Scaffolds
HQ Location
12151 Research Pkwy
Suite 150
Orlando, FL 32826, US
Keywords
Microdispensing3D manufacturingAdditive ManufacturingPrinted ElectronicsOrganization