DeAnna Lindsey web

DeAnna Lindsey

Certified IPC Trainer

DeAnna Lindsey has years of experience in aerospace, defense, and electronics manufacturing, specializing in high‑reliability production environments and advanced workforce development. Her background includes supporting mission‑critical programs such as PAC‑3, Space Launch System (SLS), Ground Missile Defense, and complex electronic and electro‑mechanical manufacturing operations across multiple sites.

DeAnna has served in key instructional and leadership roles with Boeing Defense, Space & Security, Lockheed Martin Space, and SCI Technologies, where she developed and delivered training that strengthened production capability and improved compliance with stringent industry standards. Her expertise spans soldering, cable and wire harness assembly, inspection, rework/repair, and technical documentation aligned with IPC, NASA, MIL‑STD, and AS9100 requirements.

She is an IPC Trainer certified in:

  • IPC J‑STD‑001 Requirements for Soldered Electrical and Electronic Assemblies
  • IPC J‑STD‑001 Space Addendum
  • IPC‑A‑610 Acceptability of Electronic Assemblies
  • IPC/WHMA‑A‑620 Requirements and Acceptance for Cable and Wire Harness Assemblies
  • IPC 7711/7721 Rework, Modification, and Repair of Electronic Assemblies
  • NASA 8739.1B Polymeric Application, Level B Instructor

Her training capabilities also include electro‑mechanical assembly, ESD/FOD prevention, quality system and process improvement. She excels at translating complex engineering and quality requirements into clear, accessible training that meets technicians at their level and elevates overall workforce performance.

DeAnna brings to the organization a deep understanding of electronics manufacturing processes, strong cross‑functional communication, and a passion for developing technicians who support the highest levels of reliability and mission success. She is recognized for translating complex engineering and quality standards into clear, actionable training that builds technician confidence and strengthens production performance. Her approach blends technical mastery, adult learning principles, and data‑driven process improvement to elevate workforce capability and drive organizational excellence.

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