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Sr. Mechanical Engineer; Spector

Job in Plainview, Nassau County, New York, 11803, USA
Listing for: Veeco Instruments Inc.
Full Time position
Listed on 2026-05-26
Job specializations:
  • Engineering
    Mechanical Engineer
Salary/Wage Range or Industry Benchmark: 60000 - 80000 USD Yearly USD 60000.00 80000.00 YEAR
Job Description & How to Apply Below
Position: Sr. Mechanical Engineer (Spector)

Senior Mechanical Engineer (Spector)

Location:

US - NY - Plainview

Requisition

About Veeco

You probably don't realize it, but what we do at Veeco touches the lives of every person, every day. It's a bold statement, but it's true. From the smartphones in our pockets that access the world's collective knowledge, to the cloud‑based services where all that information lives, to high‑speed wireless communication and computing power needed to drive artificial intelligence, augmented and virtual reality, gaming and so much more, our technology is all around us.

We design, develop, manufacture, and service highly complex, cutting‑edge machines used by our customers to create the essential devices that drive the digital age, connect the world, and improve the human experience. Along with the world's leading technology companies, many of which are household names, we help solve their most difficult material science challenges, enabling technologies for a more connected, sustainable, and convenient world.

We're looking for material difference‑makers to join our growing team. Interested? Learn more at

OVERVIEW

Veeco's ion beam deposition and etch platforms – including the Spector product family – are scaling rapidly as AI datacenter architectures and advanced semiconductor manufacturing drive unprecedented demand for high‑performance thin‑film equipment. Veeco's semiconductor served available market is projected to more than double, from $1.3 billion to $2.7 billion, with ion beam deposition SAM for high‑value front‑end applications reaching $350 million.

RESPONSIBILITIES
  • Own the mechanical architecture of ion beam deposition and etch systems end to end – vacuum vessels, ion beam sources, wafer‑handling stages, automation and robotics interfaces, and OEM component integration – making design trade‑off decisions that balance performance, reliability, cost, and manufacturability across the full system.
  • Lead engineering analysis and simulation – structural and thermal finite element analysis (FEA), heat transfer modeling, fluid dynamics, and motion mechanism design – to validate concepts, reduce prototype iterations, and build the analytical evidence base required at each Product Life Cycle (PLC) phase gate.
  • Drive prototype development from design through test
    , authoring design‑of‑experiments (DOE) plans, executing tests, performing root‑cause analysis, and translating findings into documented engineering changes (ECOs) that accelerate time to production readiness.
  • Run design reviews that present design rationale, risk assessment, analysis results, and test data to cross‑functional peers, senior leadership, and external customers – ensuring decisions are documented, actionable, and traceable.
  • Collaborate with Supply Chain and manufacturing on procurement decisions, vendor qualification, and build sequences, delivering technical guidance that keeps programs on schedule – and stepping onto the factory floor to troubleshoot assembly or integration issues in real time.
  • Mentor junior engineers by reviewing their designs, guiding their analytical methods, and progressively expanding their ownership of subsystem‑level decisions – building the team's depth as program volume grows.
  • Define mechanical design specifications from customer requirements, translating them into measurable acceptance criteria and ensuring all designs comply with SEMI safety standards (S2/S8) and applicable regulatory codes.
QUALIFICATIONS
  • Bachelor's degree in Mechanical Engineering with a minimum of 8 years, or a Master's degree with a minimum of 6 years, of experience designing capital equipment, vacuum systems, or precision mechanical subsystems.
  • Demonstrated proficiency with 3D CAD (Solid Works, Inventor, Creo, or equivalent) and 2D drafting tools (AutoCAD or equivalent) used as primary design platforms.
  • Proven experience performing structural and thermal finite element analysis and applying results to inform design decisions on production‑bound hardware.
  • Hands‑on experience building, assembling, and troubleshooting prototype mechanical hardware in a lab or factory environment.
KNOWLEDGE, SKILLS, AND ABILITIES
  • Deep experience designing capital equipment…
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