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Salary: USD 152,100 - 190,100 / annual
Archer Technologies is an aerospace company building all-electric vertical takeoff and landing (eVTOL) aircraft for sustainable air mobility. As Design Data Integrity Engineer, you will serve as the quality gate for engineering design data, ensuring accuracy, completeness, and compliance before release to manufacturing and operations.
You will review and verify engineering drawings, CAD models, and associated documentation against company standards, industry best practices (ASME Y14.5 GD&T, ASME Y14 drafting standards), and regulatory requirements. Your responsibilities include identifying and documenting errors, inconsistencies, and missing information in design data; providing clear feedback to design engineers; validating CAD model accuracy and metadata; and ensuring drawings reflect design intent while supporting manufacturability.
You will collaborate across multiple design engineering organizations supporting diverse commodity types—machine parts, composites, wiring harnesses, PCBAs, and more. You will support drawing release processes within PLM systems (Teamcenter, Windchill, Enovia), coordinate with Configuration Management on change notices and effectivity, and participate in tolerance stack-up and interface checks to ensure fit, form, and function integrity. You will also contribute to process improvements that enhance drawing quality and release efficiency.
Required: 5+ years producing, reviewing, or checking engineering drawings or model-based definitions in aerospace, automotive, or complex product environments. Proficiency with CAD tools (NX, CATIA, CREO, or equivalent) and PLM systems. Strong knowledge of ASME Y14.5 GD&T and ASME Y14 standards. Ability to interpret drawings, CAD models, and metadata; familiarity with tolerance analysis and drawing release processes; basic understanding of configuration management (effectivity, baselines, change control); and strong communication skills.
Bonus qualifications include aerospace OEM or tier-1 supplier experience, background as a senior design engineer, exposure to flight hardware or test hardware drawings, model-based definition (MBD) and digital thread practices, design for manufacturability (DFM) expertise, tolerance stack-up analysis experience, mentoring junior engineers, and hands-on experience in highly regulated environments.