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Archer — San Jose California
Archer is an aerospace company based in San Jose, California building an all-electric vertical takeoff and landing aircraft with a mission to advance the
Benefits
of sustainable air mobility. We are designing, manufacturing, and operating an all-electric aircraft that can carry four passengers while producing minimal noise. Our sights are set high and our problems are hard, and we believe that diversity in the workplace is what makes us smarter, drives better insights, and will ultimately lift us all to success.
We are dedicated to cultivating an equitable and inclusive environment that embraces our differences, and supports and celebrates all of our team members.
About The Role
As the Design Data Integrity Engineer, you will ensure the accuracy, completeness, and compliance of engineering drawings and models.
Requirements
before release. Your work will directly support the production of error-free, manufacturable, and compliant engineering designs.
What You'Ll Do
5 Geometric Dimensioning and Tolerancing (GD&T) and ASME Y14 drafting standards Identify and document errors, inconsistencies, and missing information in design data Provide clear feedback and recommendations to design engineers for correction and improvement Validate the accuracy of CAD models and associated metadata before release Ensure drawings reflect design intent and support producibility and manufacturability Collaborate with multiple design engineering organizations supporting multiple commodity types while ensuring design standards and configuration management processes are met. Eg. Machine Parts, Composites, Wiring Harnesses, PCBAs, etc.
Qualifications
Prior experience working for an aerospace OEM or tier 1 supplier, with exposure to large-scale product development and release processes Background as a senior design engineer interested in contributing their expertise to shape methods, standards, and best practices across the organization while remaining engaged in new aircraft design Experience checking flight hardware, test hardware, or ground support equipment drawings Familiarity with model-based definition (MBD) and digital thread practices Knowledge of design for manufacturability (DFM) and producibility best practices Exposure to tolerance stack-up and interface analysi