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Rf Embedded Software Engineer Jobs in Mississippi

This role is embedded within delivery teams and works closely with software engineers, technical program managers, and business stakeholders to ensure high-quality, scalable, and reliable solutions.

Collaborate across engineering, operations, and software teams to ensure systems meet performance ... Robotics, autonomous systems, or embedded platforms * High-performance or data-intensive systems

C++ Tutor

Starkville, MS · Remote

$18 - $40/hr

... programming to operating systems, embedded systems, and high-performance computing applications ... level software development. * Effective Teaching Methods: Ability to identify concepts students ...

Showing results 41-60

Rf Embedded Software Engineer information

See Mississippi salary details

$66.3K

$145.3K

$164.8K

How much do rf embedded software engineer jobs pay per year?

As of Aug 10, 2026, the average yearly pay for rf embedded software 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 some common challenges faced by RF embedded software engineers when integrating software with hardware components?

RF Embedded Software Engineers often encounter challenges related to ensuring reliable communication between software and RF hardware modules, particularly due to signal interference, timing constraints, and hardware-software compatibility issues. Debugging and testing in real-world environments can be complex, as subtle hardware anomalies may require close collaboration with hardware engineers for troubleshooting. Additionally, optimizing code for limited memory and processing power while maintaining low latency is a frequent challenge. Familiarity with embedded debugging tools and effective cross-disciplinary teamwork are essential for overcoming these hurdles.

What is an RF embedded software engineer?

RF Embedded Software Engineers are professionals who design, develop, and troubleshoot software that runs on embedded systems with a focus on radio frequency (RF) communications. They integrate hardware and software components to enable wireless communication in devices such as radios, IoT devices, and wireless sensors. Their work often involves programming microcontrollers, optimizing signal processing, and ensuring reliable data transmission. These engineers collaborate closely with hardware and RF design teams to deliver efficient and robust wireless solutions.

What is the difference between Rf Embedded Software Engineer vs Rf Firmware Engineer?

AspectRf Embedded Software EngineerRf Firmware Engineer
CredentialsBachelor's in Electrical Engineering, Computer Science, or related; experience with embedded systemsBachelor's or higher in Electrical Engineering, Computer Engineering; firmware development experience
Work EnvironmentDesigning and developing embedded software for RF hardware in labs or office settingsWriting low-level firmware for RF devices, often in manufacturing or R&D labs
Industry UsageWireless communication, telecommunications, aerospaceWireless devices, RF modules, IoT products

Both roles focus on RF technology and embedded systems, but Rf Embedded Software Engineers typically develop higher-level embedded software, while Rf Firmware Engineers work on low-level firmware directly controlling RF hardware. The roles often overlap, but the main difference lies in the level of software abstraction and specific responsibilities.

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

To thrive as an RF Embedded Software Engineer, you need a solid background in embedded systems, RF design principles, digital signal processing, and a relevant degree such as electrical engineering or computer engineering. Familiarity with programming languages like C/C++, RF simulation tools (such as ADS or HFSS), and embedded development platforms is typically required, and certifications in wireless communications can be advantageous. Strong problem-solving skills, attention to detail, and effective teamwork and communication abilities help professionals excel in complex project environments. These competencies are critical for designing reliable, high-performance RF systems that meet industry standards and operational requirements.
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Full-time

Posted 11 days ago


University Of Southern Mississippi rating

7.0

Company rating: 7.0 out of 10

Based on 9 frontline employees who took The Breakroom Quiz

436th of 617 rated colleges and universities


Job description

Special Instructions to Applicants
Applicants must be currently authorized to work in theUnited States on a full-time basis without the need for visa sponsorship. TheUniversity will not sponsor applicants for work visas (e.g., H-1B).

Job Summary 
TheElectrical Engineer I provides professional electrical engineering support forthe design, integration, testing, and maintenance of electrical and electronicsystems supporting oceanographic research and autonomous marine technologies.The position assists with the development of electrical systems,instrumentation, embedded electronics, and power distribution for stationaryand autonomous platforms. The incumbent collaborates with multidisciplinaryteams to support research projects, evaluate system performance, troubleshoottechnical issues, and implement engineering solutions that advance the missionof the Roger F. Wicker Center for Ocean Enterprise.

PrimaryJob Duties and Responsibilities

  1. Design, develop, and test electrical and electronic equipment, systems, and components.
  2. Analyze the generation, transmission, and distribution of electricity in uncrewed oceanographic equipment/vessels.
  3. Analyze and recommend renewable energy sources for use in uncrewed oceanographic equipment/vessels.
  4. Integrate instruments into autonomous vehicles based on available space and power to maximize performance while limiting design modifications to avoid degradation of equipment performance.
  5. Participate in test plan development and evaluation of systems and vehicles and perform analysis of data collected.
  6. Participate in the design of Electronics & Embedded Systems used in uncrewed oceanographic equipment/vessels.
  7. Utilize Computer Aided (CAD) design software.
  8. Performs other duties as assigned

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