CNC Prototype Machinist Lead

AppleSeattle, WA
Onsite

About The Position

We are looking for an experienced CNC Prototype Machinist Lead to help establish a new Seattle-based lab for Apple’s Vision Product Group (VPG). In this role, you will join the VPG team while partnering closely with Apple’s Advanced Development Lab (ADL)—leveraging their established processes, tool libraries, and expertise to bring high-quality models and prototypes to life locally. In this highly collaborative position, you will work directly with VPG Hardware Engineering. Your day-to-day will entail preparing materials, setting up complex CNC Mill machines, programming tool paths, and conducting advanced metrology. Beyond hands-on machining, you will utilize your deep manufacturing background to offer design solutions and provide valuable feedback on machining processes that can optimize production cycle times. As the Lead CNC Prototype Machinist for our new Seattle lab, you will work autonomously on assignments that require considerable judgment and initiative. Because this is an up-and-coming lab, working in a small group setting and supporting startup-style activities is a must. You will serve as the foundational machining expert for the local team, collaborating directly with Apple’s Hardware Engineering VPG team while seamlessly interfacing with the ADL team to leverage shared processes and part submission workflows. This position requires an experienced machinist who has the ability to create unique work holdings to produce complex prototypes at the highest quality. You will be responsible for the end-to-end manufacturing process, from fixture design and 5-axis tool pathing to executing close-tolerance machining and validating critical features using both hand metrology and advanced inspection equipment. The ideal candidate demonstrates the ability to quickly adapt to new processes, troubleshoot complex setups, and provide direct Design for Manufacturing (DFM) feedback to hardware and product design teams.

Requirements

  • 7+ years of experience working in a new product development (NPD) environment
  • Experience setting up, operating, and programming CNC machines in a 3D CAD/CAM environment to produce complex 3D parts
  • Experience fabricating parts, jigs, fixtures, and custom tooling using machine shop tools
  • Experience holding close tolerances and validating critical features and dimensions using hand metrology equipment
  • Excellent problem-solving and interpersonal skills, with the ability to communicate technical feedback directly to engineering teams
  • CAD experience for part and fixture design
  • CAM experience for programming 3-5 axis parts on mills
  • Experience with Hermle and Datron CNC machines
  • Experience with Heidenhain TNC7 controllers
  • Solid understanding of high-feed milling, high-speed machining, and high-performance machining concepts in CNC, including cutting tool design and constraints
  • Experience providing DFM (Design for Manufacturing) feedback to industrial or product design teams to optimize a design for CNC
  • Solid understanding of GD&T
  • Ability to operate highly independently in a startup-style lab environment
  • Experience using horizontal and vertical saws, manual mills, and lathes
  • Advanced metrology experience

Nice To Haves

  • Hypermill experience is highly preferred

Responsibilities

  • Preparing materials
  • Setting up complex CNC Mill machines
  • Programming tool paths
  • Conducting advanced metrology
  • Offering design solutions
  • Providing valuable feedback on machining processes to optimize production cycle times
  • Creating unique work holdings to produce complex prototypes
  • Fixture design
  • 5-axis tool pathing
  • Executing close-tolerance machining
  • Validating critical features using both hand metrology and advanced inspection equipment
  • Adapting to new processes
  • Troubleshooting complex setups
  • Providing direct Design for Manufacturing (DFM) feedback to hardware and product design teams
  • Reading and interpreting engineering drawings and CAD models
  • Setting up and troubleshooting CNC processes
  • Providing corrective actions
  • Operating highly independently in a startup-style lab environment
  • Programming a CMM
  • Using CT scanning machines
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