We turn your engineering and product design concepts into functional physical prototypes. We help you source components, oversee assembly, and ensure your hardware works for rigorous academic validation.
We provide end-to-end hardware development services, from the first prototype to the final tested product.
Rapidly produce complex geometries and functional parts using FDM, SLA, and SLS technologies. Ideal for enclosures, mechanical components, and proof-of-concept models.
We design and assemble printed circuit boards for your electronic systems. We handle schematic capture, layout, component sourcing, and soldering.
We produce high-precision metal and plastic parts using computer-controlled milling and turning. Suitable for mechanical structures, fixtures, and custom brackets.
We integrate microcontrollers like Arduino, Raspberry Pi, ESP32, and STM32 into your prototype. We handle firmware development and sensor integration.
We help you quickly iterate on your design based on test results. We manage design revisions, new component orders, and assembly updates.
We create professional technical documentation, including schematics, assembly drawings, and a complete Bill of Materials for your research records.
We work with a wide range of industrial grade technologies and materials to bring your hardware concept to life.
High-precision FDM, SLA, and SLS printing for engineering-grade parts. Supports ABS, PETG, nylon, resin, and more.
Single-layer to multi-layer rigid and flexible PCBs. Includes soldermask, silkscreen, and electrical testing.
Custom enclosures, brackets, and chassis using laser cutting, CNC punching, and metal bending.
Arduino, Raspberry Pi, ESP32, STM32 integration. Includes sensor interfacing, motor control, and wireless communication.
Sanding, painting, coating, surface treatment, and assembly finishing for a professional look.
Dimensional inspection, functional testing, and environmental checks to ensure your prototype works as intended.
High-precision tools and a rigorous quality process ensure your hardware is accurate, reliable, and ready for academic evaluation.
We achieve tight tolerances using calibrated CNC machines and industrial 3D printers. Your parts will fit and function as designed.
We understand academic deadlines. Most prototypes are completed within 48 hours of design finalization.
We have successfully fabricated hardware for over 500 research projects, including PhD dissertations and Master's theses.