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Embedded Engineer Jobs in Mississippi (NOW HIRING)

Sr Advanced Manufacturing Engineer

Grenada, MS ยท On-site

$83K - $114K/yr

Our Engineering Team is responsible for giving life to thebatteries,motors,and electronics that ... And we're pushing the limits in firmwareengineering,power electronics,embedded systems,machine ...

Sr Advanced Manufacturing Engineer

Grenada, MS ยท On-site

$83K - $114K/yr

And we're pushing the limits in firmware engineering, power electronics, embedded systems, machine learning, and the use of artificial intelligence. Behind our doors you'll be empowered every day to ...

Sr Advanced Manufacturing Engineer

Grenada, MS ยท On-site

$83K - $114K/yr

And we're pushing the limits in firmware engineering, power electronics, embedded systems, machine learning, and the use of artificial intelligence. Behind our doors you'll be empowered every day to ...

Showing results 41-60

Embedded Engineer information

See Mississippi salary details

$66.3K

$145.3K

$164.8K

How much do embedded engineer jobs pay per year?

As of Sep 3, 2026, the average yearly pay for embedded engineer in Mississippi is $145,265.00, according to ZipRecruiter salary data. Most workers in this role earn between $124,500.00 and $163,800.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as an embedded engineer?

To thrive as an Embedded Engineer, you need a solid background in computer science or electrical engineering, with strong skills in C/C++, microcontroller programming, and embedded systems design. Familiarity with real-time operating systems (RTOS), hardware debugging tools, and version control systems like Git is typically required, and certifications such as Certified Embedded Systems Engineer (CESE) can be beneficial. Strong problem-solving abilities, attention to detail, and effective communication are standout soft skills in this field. These competencies are crucial for developing reliable, efficient embedded solutions that integrate seamlessly with hardware and meet user requirements.

What are some common challenges faced by embedded engineers when working on cross-functional teams?

Embedded Engineers often collaborate closely with hardware designers, software developers, and test engineers, which can present challenges related to communication and integration. Aligning the firmware with hardware specifications, managing resource constraints, and ensuring timely debugging across different platforms are frequent hurdles. To succeed, Embedded Engineers need strong communication skills and a collaborative mindset to bridge gaps between disciplines and deliver cohesive, reliable systems.

What is the difference between Embedded Engineer vs Firmware Engineer?

AspectEmbedded EngineerFirmware Engineer
Required CredentialsBachelor's in Electrical, Computer Engineering, or related fields; certifications like ARM or IoT certifications are commonBachelor's in Computer Engineering, Electrical Engineering, or related; often similar certifications in embedded systems or firmware development
Work EnvironmentDesigning and developing hardware-software integrated systems, often in industrial, automotive, or consumer electronicsWriting, testing, and debugging low-level code that runs directly on hardware devices like microcontrollers or embedded processors
Employer & Industry UsageElectronics manufacturers, automotive, aerospace, IoT companiesConsumer electronics, IoT devices, medical devices, automotive systems

Embedded Engineers and Firmware Engineers often work closely, but Embedded Engineers focus on both hardware and software integration, while Firmware Engineers specialize in low-level code development that runs directly on hardware. Both roles require similar skills and certifications, but their primary focus and work environment differ slightly.

Are embedded engineers in demand?

Embedded engineers are in high demand due to the growth of IoT devices, automotive systems, and consumer electronics. Skills in C/C++, real-time operating systems, and hardware integration are particularly valuable in this field, which offers strong job stability and opportunities across various industries.

What does an embedded engineer do?

An embedded engineer designs, develops, and tests software and hardware for embedded systems, which are specialized computing devices within larger machines or products. They work with microcontrollers, real-time operating systems, and programming languages like C or C++, often collaborating with hardware teams to ensure system functionality and reliability.

What are the most commonly searched types of Embedded Engineer jobs in Mississippi?

The most popular types of Embedded Engineer jobs in Mississippi are:

What are popular job titles related to Embedded Engineer jobs in Mississippi?

For Embedded Engineer jobs in Mississippi, the most frequently searched job titles are:

What job categories do people searching Embedded Engineer jobs in Mississippi look for?

The top searched job categories for Embedded Engineer jobs in Mississippi are:

Infographic showing various Embedded Engineer job openings in Mississippi as of August 2026, with employment types broken down into 83% Full Time, and 17% Contract. Highlights an 100% In-person job distribution, with an average salary of $145,265 per year, or $69.8 per hour.

Electrical and Electronics Engineer

LeVanta Tech

Biloxi, MS โ€ข On-site

Other

Posted 4 days ago


Job description

LeVantaโ€™s Mission 

LeVanta is building the worldโ€™s first float-fly-float unmanned drone that will significantly change defense and commercial maritime operations. Weโ€™re striving to protect the national interests of US and ally countries by breaking technological barriers that meet pressing operational needs. Our team of passionate professionalsโ€”including industry-leading engineers, former military operators, and other experts, are committed to creating a high value company leveraging truly disruptive UAV technology. 


These cutting-edge drones provide a seamless sea-air interface, offering the ability to float indefinitely while minimizing energy consumption, and taking off to fly at high speeds on demand. Designed to address the challenges of aerial endurance and rough sea conditions, LeVanta Techโ€™s innovative solutions serve to redefine the future of drone operations. Located at the forefront of technological advancements, LeVanta Tech is dedicated to pushing boundaries in the field of drone technology.


Role Summary

The Electrical and Electronics Engineer is the end-to-end owner of the vehicleโ€™s electrical system architecture, spanning power generation and storage, motors and ESCs, power distribution and conversion, wiring and harnessing, grounding, EMI/EMC discipline, and system integration.


This is a hands-on engineering role with real technical authority and accountability. The ideal candidate can architect complex electrical systems, build and rework prototypes at the bench, troubleshoot under test pressure, and sign off on electrical designs and test readiness. This role operates as a peer to other engineers and plays a central role in ensuring the reliability, safety, and scalability of LeVantaโ€™s unmanned systems.


The position is based on-site in Mississippi and is deeply embedded in daily prototype development and testing.


Responsibilities


  • Serve as primary technical owner of the vehicleโ€™s electrical and electronic systems across all prototype and scaling variants.
  • Architect and maintain the electrical system design, including motors, ESCs, wiring harnesses, power distribution, power conversion, grounding, and protection.
  • Design, analyze, and sign off on electrical architectures and schematics, ensuring safe, robust operation in demanding environments.
  • Lead integration of battery and hybrid power systems, working closely with power and propulsion engineers.
  • Design and build wiring harnesses, prototype installations, and bench test setups; perform hands-on soldering, rework, and troubleshooting.
  • Ensure EMI/EMC discipline is designed in from day one, with readiness for exposure to MIL-STD-461 and MIL-STD-810 environments.
  • Support and participate in vehicle testing, including bench, integration, environmental, and flight testing.
  • Collaborate cross-functionally with aero, structures, power, controls, and software engineers to ensure clean interfaces and system reliability.
  • Work with external suppliers and manufacturing partners to ensure DFM/DFA, wiring repeatability, and production readiness.
  • Contribute to technical standards, documentation, and mentoring of less-experienced engineers as the team grows.


Measures of Success

  • Electrical System Reliability - Electrical systems operate reliably through testing milestones with no preventable electrical failures or unsafe conditions.
  • Clean Architecture & Integration - Electrical designs are clear, well-documented, and integrate cleanly with mechanical, propulsion, and avionics systems.
  • Power System Performance - Power distribution and conversion systems support mission requirements, efficiency targets, and hybrid operating modes without unexpected limitations.
  • EMI/EMC Readiness - Electrical designs demonstrate strong EMI awareness and progressively improved compliance readiness as testing matures.
  • Prototype Velocity - Prototypes move quickly from concept to test, with electrical issues identified early and resolved efficiently.
  • Scalable Design - Electrical architectures support scaling of a single vehicle platform across configurations without fundamental redesign.
  • Team Impact - Other engineers demonstrate improved electrical awareness and integration confidence due to this roleโ€™s leadership and collaboration.


Skills & Experience Required

  • Demonstrated experience designing and integrating electrical systems for UAS, aerospace, robotics, EVs, or similar complex platforms.
  • Strong understanding of motors, ESCs, power distribution, and power electronics.
  • Hands-on experience with wiring, harnessing, soldering, and bench troubleshooting.
  • Experience architecting battery-based and hybrid electrical systems.
  • Ability to sign off on electrical designs and test readiness.
  • Comfort working in a fast-paced, low-hierarchy startup environment.
  • Proficiency with standard electrical design and documentation tools.
  • Microsoft Office proficient


Skills & Experience Preferred

  • Experience designing for EMI/EMC and exposure to MIL-STD-461 / 810 environments.
  • Familiarity with firmware or embedded systems, including ESC tuning or controller configuration.
  • Experience supporting flight or field testing of unmanned systems.
  • Experience transitioning electrical designs from prototype to production.
  • Defense, aerospace, or high-reliability system experience.