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Embedded Software Engineer Mes Level Jobs in Minnesota

Embedded Software Engineer

Minneapolis, MN · On-site

$137K - $180K/yr

The Embedded Software Engineer will develop and maintain robust application software for Client ... Consume higher-level system and functional requirements to derive, document, and execute detailed ...

Embedded Software Engineer Location: Brooklyn Park, MN (Onsite) Work Authorization: Applicants must be currently authorized to work in the United States on a full-time basis. The company does not ...

This Embedded Software Engineer works independently on the design, development, testing and ... Has advanced level of knowledge in programming languages such as C, C++, C# or Python. Creates ...

The Lead Embedded Software Engineer will develop embedded software/firmware for high performance ... Lead high-level design activities for new product features • Lead system interface design ...

This Embedded Software Engineer works independently on the design, development, testing and ... Has advanced level of knowledge in programming languages such as C, C++, C# or Python. Creates ...

This Embedded Software Engineer works independently on the design, development, testing and ... Has advanced level of knowledge in programming languages such as C, C++, C# or Python. Creates ...

Sr. Embedded Software Engineer

New Brighton, MN · On-site

$131K - $171K/yr

This Embedded Software Engineer works independently on the design, development, testing and ... Has advanced level of knowledge in programming languages such as C, C++, C# or Python. Creates ...

This Embedded Software Engineer works independently on the design, development, testing and ... Has advanced level of knowledge in programming languages such as C, C++, C# or Python. Creates ...

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Senior Embedded Software Engineer

North Mankato, MN · On-site

$120K - $157K/yr

*** apply directly at NextGen RF Design is seeking a Senior Embedded Software Engineer with 7+ years of ... Debugging & Bring-Up o Lead board bring-up and system-level debugging on new hardware. o Diagnose ...

Embedded Software Engineer Join our dynamic team as an Embedded Software Engineer where you will be responsible for software and firmware development for new products. This role involves developing ...

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Embedded Software Engineer Mes Level information

What is the difference between Embedded Software Engineer Mes Level vs Embedded Software Developer?

AspectEmbedded Software Engineer Mes LevelEmbedded Software Developer
CredentialsBachelor's in Computer Engineering or related field; certifications like ARM or RTOS are commonBachelor's in Computer Science or Electrical Engineering; similar certifications may apply
Work EnvironmentEmbedded systems in industries like automotive, aerospace, consumer electronicsDeveloping software for embedded devices across various industries
Employer UsageUsed by companies designing hardware-software integrated productsCommonly used by tech firms and manufacturers focusing on embedded solutions

Embedded Software Engineer Mes Level and Embedded Software Developer roles share similar educational backgrounds and work environments. The Mes Level position often involves more specialized tasks within embedded systems, focusing on integration and testing, while the Developer role emphasizes coding and software design. Both roles are essential in embedded systems development, with overlapping skills and industry applications.

What job categories do people searching Embedded Software Engineer Mes Level jobs in Minnesota look for?

The top searched job categories for Embedded Software Engineer Mes Level jobs in Minnesota are:

Embedded Software Engineer

Rangam Consultants

Minneapolis, MN • On-site

$137K - $180K/yr

Other

Posted 21 days ago


Job description

Onsite/Hybrid – Hybrid

Job Summary:

  • The Embedded Software Engineer will develop and maintain robust application software for Client transport refrigeration units, with a specialized focus on the Rust programming language. This engineer will create software that runs within Embedded Linux and Real-Time Operating System (RTOS) environments.
  • Working directly from incoming requirements, you will collaborate closely with the platform''s technical lead to derive and document low-level designs.
  • Additionally, you will be responsible for upholding software engineering standards through peer reviews, unit/integration testing, and documentation practices, while providing mentorship and guidance to engineers who are new to embedded software development. 

Core Job Responsibilities:

  • Design, develop, and deliver maintainable, safe, and concurrent embedded applications using Rust.
  • Consume higher-level system and functional requirements to derive, document, and execute detailed low-level software designs in collaboration with the platform technical lead.
  • Drive software quality and adherence to software development processes through comprehensive unit and integration testing, rigorous peer code reviews, and high documentation standards.
  • Provide active mentorship and guidance to team members who are new to embedded software development or the Rust programming language.

Education and/or Experience Required:

  • Bachelor’s Degree in Electrical Engineering, Computer Engineering, Computer Science (or similar discipline).
  • 5+ years of total embedded software development experience is required.
  • Demonstrated experience developing Rust applications with a portion of your career dedicated to deploying these Rust applications into a production environment.

Essential Skills or Knowledge:

  • Strong proficiency in the Rust programming language, including a deep understanding of its ownership model, memory safety guarantees, and concurrency patterns.
  • Proven experience developing software for Embedded Linux and open RTOS operating systems.
  • Hands-on commitment to robust software development practices, including unit testing, integration testing, code reviews, and technical documentation standards.
  • Experience with software tools such as Git version control system, Jira, or Azure DevOps.
  • Computer Science principles such as data structures, algorithms, and system architecture.
  • Ability to translate functional requirements into clear, maintainable low-level software designs.