Maine Made. Engineered for Precision.

CAD services and simulation software built for creators, engineers, and innovators.
Engineering Tools
Precision‑built CAD models, custom components, and technical design solutions developed with aerospace‑grade accuracy, supporting creators and engineers who need reliable, high‑performance tools for real‑world applications.
Digital Simulation
Advanced, engineering‑focused simulation software designed to model complex systems with clarity and precision, including our aircraft simulator and future digital platforms built to support modern aerospace and technical development workflows.
Sustainable Systems
Maine‑Made structural and environmental solutions engineered with aerospace‑grade principles, focusing on durability, efficiency, and systems design that scales from ground infrastructure to future flight technologies.
Electric Aircraft Conceptual Sizing Simulator

$49.99
Engineering‑grade simulation built for creators, students, and aerospace innovators.
Mission Statement
Wicked North exists to build precision‑engineered tools and systems that empower creators, engineers, and innovators. Rooted in Maine and guided by aerospace‑grade principles, we design technology that strengthens real‑world capability — from ground infrastructure to future flight. Our mission is to combine Northern craftsmanship with modern engineering to create reliable, high‑performance solutions that help people understand, build, and operate in challenging environments. We are committed to advancing accessible engineering technologies that expand human capability and support the next generation of sustainable aerospace development.
Research and Development
Wicked North is actively developing research pathways in aerospace systems and electric propulsion, focusing on technologies that improve efficiency, reliability, and environmental performance in future flight. Our work explores conceptual aircraft sizing, electric thruster modeling, and advanced simulation methods that help engineers understand how emerging propulsion architectures behave under real‑world constraints. By combining rigorous analysis with practical engineering, we aim to contribute to the next generation of sustainable aerospace innovation.