Hardware architecture, PCB design, and rapid prototyping with production-grade materials
We're engineers who understand the challenges of hardware development. Our services are designed to accelerate your product development while ensuring manufacturability, reliability, and cost-effectiveness.
System-level design from requirements through detailed implementation. Block diagrams, component selection, power budgets, thermal analysis.
Professional schematic entry and advanced PCB layout for high-speed digital, mixed-signal, and RF applications.
Rapid prototyping with production-quality polymers. From PA12 to PEKK, we print functional parts that perform.
Expert engineers using AI as an instrument to accelerate reviews, cross-check BOMs and datasheets, and build verified release packages, work that was once too slow or costly to justify.
We speak your language. No project managers or account executives between you and the people doing the work. Direct communication with the engineers designing your hardware.
Every prototype is designed with production in mind. We optimize for yield, cost, and manufacturability from day one - because getting to production is the goal, not just making a prototype work.
We don't just route traces or print parts. We understand signal integrity, power distribution, thermal management, and material science. Our designs are backed by analysis and simulation.
Fast turnaround on prototypes means faster design cycles. 24-72 hour 3D printing. Quick-turn PCBs. We keep your project moving while maintaining engineering rigor.
We believe in sharing knowledge. These guides and references are here to help you make informed decisions about materials, design approaches, and manufacturing processes.
Comprehensive guide to engineering polymers: PA6, PA12, PEKK, PPS, PC, ASA, and more. Includes mechanical properties, thermal characteristics, and application guidelines.
Technical GuidePractical guidance on designing controlled impedance traces for high-speed digital signals. Stackup design, routing guidelines, and verification methods.
PCB DesignThermal analysis techniques, heat sink selection, and cooling strategies for power electronics and high-performance processors.
Hardware DesignComprehensive decision trees and selection matrices for engineering polymers. Choose the right material for your application based on thermal, mechanical, and chemical requirements.
3D Printing