About the job

About Us
At ZeroMark, we are pioneering the development of AI-driven counter-drone systems that deliver real-world results in combat situations. Our technology is field-tested and proven to save lives, eliminating the need for theoretical PowerPoints and excessive hype.
In the past two years, we have achieved remarkable growth, doubling our revenue and securing contracts that validate our belief that true innovation occurs in the field, not in conference rooms. Our systems enhance standard weapons, transforming them into AI-powered platforms capable of detecting, tracking, and neutralizing drone threats—because a $200 drone shouldn't necessitate a million-dollar countermeasure.
What sets us apart is our hands-on approach. ZeroMark operators validate technology from Blackhawk helicopters, train alongside elite Tier-1 units, and test at renowned locations such as White Sands and the stunning cliffs of Hawaii. When we say our products are field-tested, we mean you'll operate them, assess their limits, and truly understand their capabilities. We focus on making a difference rather than just discussing it, and we believe that a sense of humor is essential in this high-stakes environment.
If you are passionate about making a tangible impact and are ready for unforgettable experiences, we would love to hear from you. We prioritize delivering practical, field-tested technology over mere theoretical concepts.
The Role
As a Mechanical Design Engineer, you will oversee the entire lifecycle of mechanical design, from initial concepts through detailed design, prototyping, testing, and production support. This position requires a solid foundation in mechanical engineering principles, advanced CAD software skills, and a drive to develop robust systems in a fast-paced environment.
What You’ll Do
Design & Development:
Lead the mechanical design efforts for complex defense systems, ensuring optimal performance, reliability, and manufacturability.
Create comprehensive 3D models, assemblies, and 2D engineering drawings using advanced CAD software.
Conduct engineering calculations, simulations (FEA, CFD), and analyses to confirm design integrity.
Select suitable materials, manufacturing processes, and components for design implementation.
Prototyping & Testing:
Manage the fabrication and assembly of prototypes, ensuring they meet design specifications.

