Lead Machinist/Shift Supervisor (7:00am - 3:30pm) at Atomic Machines

Emeryville, California, United States

Atomic Machines Logo
Not SpecifiedCompensation
Senior (5 to 8 years), Expert & Leadership (9+ years)Experience Level
Full TimeJob Type
UnknownVisa
Manufacturing, Micromanufacturing, MEMSIndustries

Requirements

  • Five or more years of hands-on CNC machining experience in prototype or research and development environments, including 5-axis CNCs and live-turn mill centers
  • Demonstrated mastery of at least one modern CAM platform such as Fusion 360, Mastercam, HyperMill, or FeatureCAM and the ability to support others learning those tools
  • Strong literacy in GD&T including the ability to interpret complex prints, hold tolerances below one thousandth of an inch, and identify unrealistic callouts
  • Proficiency in inspection (in process and final)

Responsibilities

  • Interpret three dimensional models and prints, plan setups, program CAM, design fixturing, and perform in process and final inspection
  • Run a wide range of CNC equipment to produce high precision parts quickly and efficiently
  • Program quickly and efficiently in CAM and guide others in best practices
  • Plan and oversee daily machining priorities and balance workloads across the shift
  • Serve as the main point of contact for engineers during your shift and communicate risks, delays, and design for manufacturability feedback in real time
  • Coordinate with other shift leads to hand off jobs cleanly and maintain continuity across all machining operations
  • Lead a team of machinists by setting clear expectations, defining daily goals, and maintaining consistent communication throughout the shift
  • Foster a positive, collaborative environment where machinists feel supported, informed, and empowered to do high quality work
  • Conduct regular performance check ins with machinists, provide actionable feedback, and help remove blockers to maintain productivity
  • Hold the team accountable for safety, quality, and workmanship while modeling professionalism and calm decision making under pressure
  • Train and mentor junior machinists and shop technicians on machining fundamentals, metrology techniques, GD&T, and efficient CAM workflows
  • Provide constructive feedback, support career growth, and reinforce a culture of precision, safety, and continuous learning
  • Oversee tooling and material procurement for your shift and ensure that stock levels support production needs
  • Track machine performance, communicate maintenance needs, and coordinate with facilities and equipment teams

Skills

Key technologies and capabilities for this role

CNC machiningCAM programmingFixture design3D model interpretationBlueprint readingPrecision inspectionShop supervisionWorkflow managementMachinist trainingSafety enforcement

Questions & Answers

Common questions about this position

What are the shift hours for this Lead Machinist/Shift Supervisor role?

The role starts on a modified day shift of 8:30am - 5:00pm for ramp-up and training, transitioning within the first six months to the standard hours of 7:00am - 3:30pm.

What is the salary or compensation for this position?

This information is not specified in the job description.

What key skills are required for the Lead Machinist/Shift Supervisor role?

Key skills include interpreting 3D models and prints, programming CAM efficiently, running CNC equipment for high precision parts, planning setups and fixturing, and performing inspections.

What does the company culture look like for this machinist team?

The culture emphasizes excellence in machining, safety, and organization, fostering a positive, collaborative environment where machinists are supported, informed, empowered, with continuous improvement, clear expectations, and calm decision-making under pressure.

What makes a strong candidate for this Lead Machinist/Shift Supervisor position?

Strong candidates can lead teams by setting expectations, mentoring juniors, overseeing workflows safely and efficiently, communicating with engineers on risks and feedback, and demonstrating hands-on machining expertise with CNC and CAM.

Atomic Machines

Develops machines for atomically precise manufacturing

About Atomic Machines

Atomic Machines develops machines for atomically precise manufacturing (APM), which allows for the creation of physical objects directly from digital designs. Their technology focuses on microfabrication, particularly in producing Micro-Electro-Mechanical Systems (MEMS), which are small devices that combine mechanical and electronic components. Unlike traditional methods that rely on silicon, Atomic Machines offers a more efficient approach to MEMS fabrication. They cater to various industries, including semiconductor, automotive, healthcare, and consumer electronics, providing advanced fabrication solutions that enhance precision, efficiency, and scalability. The company differentiates itself by focusing on APM, aiming to set new standards in manufacturing technology. Their goal is to transform the manufacturing landscape by merging digital and physical production processes.

Berkeley, CaliforniaHeadquarters
2019Year Founded
SEEDCompany Stage
Industrial & Manufacturing, HealthcareIndustries
51-200Employees

Benefits

Professional Development Budget

Risks

Emerging competition from companies like Zyvex Labs in atomically precise manufacturing.
Potential intellectual property disputes as more companies enter the APM space.
Economic downturns could reduce demand for MEMS in key sectors.

Differentiation

Atomic Machines focuses on atomically precise manufacturing, a novel approach in microfabrication.
The company targets diverse industries, including automotive, healthcare, and consumer electronics.
Their innovative MEMS technology offers higher precision and efficiency than traditional methods.

Upsides

Growing demand for MEMS in smart medical devices presents a significant market opportunity.
Advancements in nanomaterials could enhance Atomic Machines' manufacturing capabilities.
The shift to electric vehicles increases the need for advanced MEMS sensors.

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