Full-Time

Modeling and Simulation Engineer

Posted on 11/18/2024

Atomic Machines

Atomic Machines

51-200 employees

Develops machines for atomically precise manufacturing

Industrial & Manufacturing
Healthcare

Compensation Overview

$180k - $220kAnnually

Senior

Berkeley, CA, USA

Position requires onsite presence in Berkeley, California.

Category
Thermal and Fluid Systems Engineering
Mechanical Engineering
Requirements
  • 6+ years of hands-on experience building multiphysics analytical models and simulations.
  • Strong foundation in multiphysics models, with strong emphasis on electrostatic, electromagnetic, piezoelectric, piezoresistive, fluid dynamics, thermodynamics, and structural mechanics.
  • FEA experience using COMSOL and/or Ansys in multiple coupled physics (experience with Abaqus, Siemens products, etc. is appreciated as well).
  • Strong written and verbal communication skills and the ability to work independently and/or cross-functionally.
  • Masters or Ph.D. in Engineering, Physics, or a related field.
Responsibilities
  • Determine critical system attributes and set up analytical models covering multiple physics domains for existing and future devices, with particular emphasis on electromagnetic and thermal effects.
  • Define figures of merit and boundary/operating conditions based on system and requirements as well as input from other engineers.
  • Set up multiphysics simulations for electromagnetism (and beyond) via Finite Elements and/or Finite Volumes models for static, transient, and harmonic analyses to aid design and process decisions.
  • Deliver executable computational models to support the company’s efforts in process sensitivity analysis, optimal design, and other engineering analyses as needed to improve robustness of designs and processes.
  • Systematically document methods and their validation. Document and visualize results and present findings and recommendations to the team.
  • Recommend model validation experiments and use results of such experiments to validate and improve models.
  • Work collaboratively in cross-functional engineering teams with prototype engineers, device designers and software, electrical and mechanical engineers.
  • Train other engineers in modeling and simulation tools.

Atomic Machines creates machines that fabricate objects at an atomic level, known as atomically precise manufacturing (APM). Their initial focus is on producing Micro-Electro-Mechanical Systems (MEMS), which are tiny devices used in industries like automotive and healthcare. Unlike traditional methods that rely on silicon, Atomic Machines offers a more efficient approach to fabrication. The company's goal is to set new standards in manufacturing precision and efficiency while serving a diverse range of clients.

Company Stage

Seed

Total Funding

N/A

Headquarters

Berkeley, California

Founded

2019

Growth & Insights
Headcount

6 month growth

16%

1 year growth

27%

2 year growth

100%
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Simplify's Take

What believers are saying

  • Atomic Machines' technology has the potential to disrupt multiple industries, including semiconductor, automotive, healthcare, and consumer electronics, offering vast market opportunities.
  • The company's innovative approach to MEMS fabrication could lead to higher precision, efficiency, and scalability, making it an attractive option for manufacturers seeking advanced solutions.
  • Revenue streams from machine sales, maintenance, and custom fabrication services provide a diversified and potentially lucrative business model.

What critics are saying

  • Operating in stealth mode may limit market visibility and delay potential partnerships or customer acquisition.
  • The high-tech manufacturing market is highly competitive and requires continuous innovation to stay ahead, posing a risk if Atomic Machines cannot maintain its technological edge.

What makes Atomic Machines unique

  • Atomic Machines is pioneering atomically precise manufacturing (APM), a groundbreaking technology that could revolutionize the fabrication of physical objects from digital designs.
  • Their focus on MEMS production using a novel approach offers a significant improvement over traditional silicon-based technologies, setting them apart in the microfabrication sector.
  • Operating in stealth mode allows Atomic Machines to develop and refine their technology without external pressures, giving them a strategic advantage in innovation.

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