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Mechanical Engineer

Amidon Heavy Industries (Amidon) is a venture-backed company transforming America’s maritime capabilities. We specialize in autonomous underwater vehicles (AUVs) designed to address modern maritime challenges. By leveraging breakthroughs in manufacturing, energy systems, and autonomy, we deliver scalable solutions tailored for the evolving needs of naval operations.

For years, legacy companies have struggled to advance subsea technology, leaving critical gaps in innovation and capability. Amidon takes a fresh approach, breaking away from outdated practices to design affordable, high-performance systems that enhance naval security and fleet logistics.

As we grow, we are seeking passionate, driven individuals to join a dynamic, innovative, and high-energy team that is at the forefront of subsea robotics. In this fast-paced startup environment, collaboration, creativity, and idea-sharing are integral to our success. We are looking for a Mechanical Engineer to help drive the next phase of development, pushing the boundaries of what’s possible in undersea robotics.

Responsibilities:

  • Architect and design AUV subsystems, including pressure vessel design, hydrodynamics, propulsion and structural design.

  • Conduct stress analysis, stability/maneuverability calculations and design for manufacturing.

  • Collaborate with electrical and software teams to integrate requirements into mechanical design.

  • Build, test and iterate AUV prototypes using test data and simulations.

  • Understand end-users' needs while balancing those needs with external constraints, restrictions, and requirements in a multi-stakeholder environment.

Qualifications:

  • Bachelor’s degree in Mechanical Engineering, Marine Engineering, or a related field

  • 3+ years relevant industry experience

  • Experience in mechanical design, in aerospace, or maritime/underwater vehicle systems.

  • Strong foundation in materials science, mechanical design, composite materials and manufacturing techniques. 

  • Strong problem solving and troubleshooting, detail oriented

  • Solidworks, FEA and CFD experience

  • Ability to adapt and excel in a dynamic startup environment with changing priorities.

  • Understanding of the unique challenges and requirements of underwater and maritime systems.

Average salary estimate

$90000 / YEARLY (est.)
min
max
$80000K
$100000K

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What You Should Know About Mechanical Engineer, Amidon Heavy Industries

Amidon Heavy Industries is searching for a passionate Mechanical Engineer to join our innovative team in El Segundo. As a venture-backed company at the forefront of transforming America’s maritime capabilities, we specialize in developing groundbreaking autonomous underwater vehicles (AUVs) that tackle modern maritime challenges. In this dynamic role, you’ll have the opportunity to architect and design cutting-edge subsystems for AUVs, including pressure vessels, hydrodynamics, and propulsion systems. The ideal candidate will possess a Bachelor’s degree in Mechanical Engineering or a related field, along with a minimum of 3 years of relevant industry experience. You’ll collaborate closely with our electrical and software teams to integrate mechanical designs while embracing an iterative prototyping process that sharpens our innovations. From conducting stress analyses to understanding user needs within a multi-stakeholder environment, you’ll play an integral role in enhancing naval security and fleet logistics. At Amidon, every day brings new challenges and rewards as we break away from traditional practices to create high-performance, affordable solutions. If you’re ready to push the limits of undersea robotics and thrive in a fast-paced startup environment, we invite you to embark on this exciting journey with us!

Frequently Asked Questions (FAQs) for Mechanical Engineer Role at Amidon Heavy Industries
What are the main responsibilities of a Mechanical Engineer at Amidon Heavy Industries?

The Mechanical Engineer at Amidon Heavy Industries is responsible for architecting and designing AUV subsystems, conducting stress analyses, and collaborating with electrical and software teams. You will focus on pressure vessel design, hydrodynamics, and propulsion, while also building and testing prototypes using data and simulations.

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What qualifications are required for the Mechanical Engineer position at Amidon?

To qualify for the Mechanical Engineer role at Amidon Heavy Industries, candidates should have a Bachelor’s degree in Mechanical Engineering or a related field, along with at least 3 years of relevant industry experience. Familiarity with mechanical design in aerospace or maritime systems, as well as proficiency in Solidworks, FEA, and CFD, is also essential.

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How does the Mechanical Engineer role contribute to naval security at Amidon?

As a Mechanical Engineer at Amidon Heavy Industries, your work directly contributes to naval security by designing innovative AUVs that improve operational capabilities. By creating systems that address modern maritime challenges, you help enhance the effectiveness and safety of naval fleets.

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What software skills should a Mechanical Engineer have for Amidon?

A Mechanical Engineer at Amidon Heavy Industries should be proficient in software tools such as Solidworks, FEA, and CFD. These skills are critical for designing and analyzing components, performing simulations, and ensuring that the final product meets both performance and safety standards.

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What is the workplace culture like for a Mechanical Engineer at Amidon Heavy Industries?

The workplace culture for a Mechanical Engineer at Amidon Heavy Industries is dynamic, collaborative, and innovation-driven. As part of a fast-paced startup, you will engage in idea-sharing and teamwork, which are vital to achieving our goals in advancing subsea robotics.

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Common Interview Questions for Mechanical Engineer
Can you describe your experience with mechanical design as it relates to underwater vehicles?

In preparing for this question, reflect on specific projects where you applied mechanical design principles to underwater vehicles. Highlight your understanding of hydrodynamics, material selection, and any testing protocols you followed to ensure reliability.

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What approaches do you use for stress analysis in your designs?

Discuss your preferred methods for conducting stress analysis, such as Finite Element Analysis (FEA). Mention any software tools you are proficient in, and explain how you interpret the results to inform design decisions.

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How do you prioritize tasks in a fast-paced startup environment?

To answer this question effectively, discuss your time management strategies and your approach to assessing the urgency and importance of tasks. Provide examples of how you've adapted to changing priorities in past experiences.

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Describe a challenging design problem you've encountered and how you solved it.

Use the STAR format (Situation, Task, Action, Result) to explain a specific design challenge. Detail the problem, the steps you took to analyze it, the solutions you implemented, and the outcomes that followed.

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How do you ensure collaboration with electrical and software engineers?

Emphasize the importance of open communication and regular cross-discipline meetings. Share your experiences in collaborative projects, highlighting how you integrated mechanical designs with electrical and software requirements.

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What techniques do you use to test and iterate AUV prototypes?

Discuss your approach to testing prototypes, including the types of testing you conduct (e.g., simulations, field tests) and how you collect and analyze data. Talk about your willingness to iterate designs based on test results to ensure functionality.

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What material considerations do you factor in when designing underwater systems?

Explain the importance of materials science in underwater systems. Mention specific materials you have experience with and how you select them based on environmental conditions, durability, and performance requirements.

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How do you align your designs with user needs?

Articulate your process for gathering and interpreting user feedback. Explain how you incorporate user insights into design iterations to enhance usability and effectiveness while navigating external constraints.

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What safety standards do you follow in your mechanical designs?

Provide an overview of relevant safety standards applicable to underwater vehicles or marine systems, such as ISO standards. Discuss your experience in ensuring compliance throughout the design and testing processes.

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How do you stay updated with industry trends and advancements in marine technology?

Discuss your strategies for professional development, such as attending industry conferences, participating in workshops, or following relevant publications and online resources to keep abreast of new technologies and trends.

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EMPLOYMENT TYPE
Full-time, on-site
DATE POSTED
January 9, 2025

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