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Wireless Embedded Software Engineer Jobs in Fairplay, MD

Senior Principal Software Engineer

Frederick, MD · On-site

$116K - $160K/yr

... Verilog) for embedded systems, FPGAs, or SDR. * Collaborate with RF and systems engineers to ... Develop software tools including operating systems, compilers, routers, networks, utilities ...

Collaborate with RF, Digital/FPGA, Embedded Software, Systems, Manufacturing, and Program teams to ... Support engineering estimates, proposals, planning activities, and execution of assigned Test ...

Senior TCMS Engineer

Hagerstown, MD · On-site

$103K - $142K/yr

Experience with software engineering principles and embedded systems development. * Understanding of system engineering processes, requirements management, and software lifecycle activities.

New

Senior TCMS Engineer

Hagerstown, MD · On-site

$97K - $133K/yr

Experience with software engineering principles and embedded systems development. * Understanding of system engineering processes, requirements management, and software lifecycle activities.

New

Showing results 21-40

Wireless Embedded Software Engineer information

See Fairplay, MD salary details

$65K

$142.5K

$161.6K

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

As of Sep 12, 2026, the average yearly pay for wireless embedded software engineer in Fairplay, MD is $142,464.00, according to ZipRecruiter salary data. Most workers in this role earn between $122,100.00 and $160,700.00 per year, depending on experience, location, and employer.

What does a wireless embedded software engineer do?

A Wireless Embedded Software Engineer designs, develops, and maintains software that runs on embedded systems, such as microcontrollers, with a focus on wireless communication protocols (e.g., Wi-Fi, Bluetooth, Zigbee). They work closely with hardware engineers to ensure seamless integration between hardware and software components. Their responsibilities include writing firmware, debugging issues, optimizing performance, and ensuring reliable wireless data transfer. These engineers are crucial in industries like IoT, telecommunications, and consumer electronics, where wireless connectivity is essential.

What are the key skills and qualifications needed to thrive as a wireless embedded software engineer?

To thrive as a Wireless Embedded Software Engineer, you need a solid background in embedded systems programming, wireless communication protocols, and a relevant degree in electrical engineering, computer engineering, or computer science. Familiarity with C/C++, RTOS, microcontrollers, and tools like oscilloscopes and protocol analyzers, as well as knowledge of standards such as Bluetooth, Zigbee, or Wi-Fi, is typically required. Strong problem-solving, attention to detail, and collaborative communication skills help engineers excel in complex, cross-functional environments. These abilities are critical for designing reliable, efficient wireless solutions that meet rigorous technical and market requirements.

What are some common challenges wireless embedded software engineers face when integrating new wireless protocols into existing systems?

Wireless Embedded Software Engineers often encounter challenges such as ensuring compatibility between legacy hardware and new wireless protocols, maintaining low power consumption, and optimizing for limited memory and processing resources. Debugging and testing wireless communication in real-world environments can also be complex due to unpredictable interference and signal degradation. Collaborating closely with hardware engineers and firmware developers is essential to address these integration issues effectively.

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

AspectWireless Embedded Software EngineerFirmware Engineer
Required CredentialsBachelor's in Electrical Engineering, Computer Science, or related; knowledge of wireless protocolsBachelor's in Electrical Engineering, Computer Science, or related; embedded systems experience
Work EnvironmentDesigning wireless communication systems, embedded devices, IoT productsDeveloping low-level code for hardware devices, embedded systems
Industry UsageTelecommunications, IoT, consumer electronicsConsumer electronics, automotive, industrial equipment

Wireless Embedded Software Engineers focus on developing software for wireless communication modules within embedded systems, often working on IoT and connectivity solutions. Firmware Engineers primarily develop low-level code that directly interacts with hardware components. While both roles require embedded systems knowledge, Wireless Embedded Software Engineers emphasize wireless protocols and connectivity, whereas Firmware Engineers concentrate on hardware-level programming.

Are wireless embedded software engineers in demand?

Wireless embedded software engineers are in high demand due to the growth of IoT devices, connected systems, and wireless communication technologies like Bluetooth, Wi-Fi, and LTE. Employers seek professionals skilled in embedded programming, real-time operating systems, and wireless protocols to develop and maintain connected hardware products. The role often requires knowledge of C/C++, hardware integration, and certifications such as CE or FCC for compliance.
Infographic showing various Wireless Embedded Software Engineer job openings in Fairplay, MD as of June 2026, with employment types broken down into 96% Full Time, 2% Part Time, 1% Contract, and 1% Nights. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $142,464 per year, or $68.5 per hour.

Multidisciplinary Systems Engineer (Mechanical/Software)

Frederick, MD • On-site

WGS SYSTEMS LLC
11 - 50 employees

$75K - $101K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 8 days ago


Key responsibilities

  • Design mechanical assemblies, enclosures, and mounting solutions for sensor systems using CAD software.

  • Develop test automation scripts, embedded software, and data pipelines for hardware validation and sensor data integration.

  • Collaborate with cross-functional teams to support system integration, testing, and continuous product improvement.


Job description

Benefits:
  • 401(k)
  • 401(k) matching
  • Company parties
  • Competitive salary
  • Dental insurance
  • Health insurance
  • Paid time off
  • Training & development
  • Tuition assistance
  • Vision insurance
  • Wellness resources

Job Summary 
WGS Systems, a leading innovator in communications and defense industries, is looking to expand our technical team. We are seeking an early-career multidisciplinary engineer to support product development across mechanical design, analysis, and software integration. This hybrid role offers unique exposure to both hardware and software disciplines, ideal for someone who enjoys variety and wants to build broad systems engineering capabilities in the defense/aerospace sector. 
You'll contribute approximately 50-60% of your time to mechanical engineering tasks (CAD design, structural analysis, thermal management, packaging) and 40-50% to software development (embedded systems, test automation, data pipeline development, and analytics infrastructure support). You'll work at the intersection of sensor hardware and data science, ensuring our sensors collect high-quality data and integrate seamlessly with our analytics platform that fuses proprietary and commercial intelligence data. 
As our product portfolio grows, this role will evolve with your interests and company needs. This position is perfect for someone who doesn't want to be pigeonholed into a single discipline and thrives in a fast-paced, hands-on engineering environment where you'll see your work go from concept to fielded system. 
Key Responsibilities 
Mechanical Design (50%): 
  • Design mechanical assemblies, enclosures, and mounting solutions for sensor systems using CAD (SolidWorks/CREO preferred) 
  • Perform structural, thermal, and vibration analysis to ensure designs meet environmental requirements (MIL-STD-810, DO-160)  
  • Support prototyping, fabrication coordination, and design for manufacturability (DFM) with machine shops and vendors 
  • Conduct mechanical testing and validation; document results for design verification 
  • Create and maintain engineering drawings, BOMs, and technical documentation per AS9100 standards 
  • Collaborate on packaging solutions for RF systems, thermal management for electronics, and integration with existing platforms 
Software Development (50%) 
  • Develop test automation scripts and data acquisition software for hardware validation and sensor characterization (Python, MATLAB) 
  • Write embedded software for sensor control, data logging, and system configuration (C/C++, Linux) 
  • Build data pipelines and ETL processes to ingest sensor data into analytics infrastructure; support integration with commercial datasets 
  • Develop preprocessing and feature extraction algorithms for raw sensor data to support ML model development 
  • Create APIs and data interfaces between sensor systems and analytics platforms; ensure data quality and formatting standards 
  • Develop GUIs and user interfaces for sensor configuration, system monitoring, and data visualization 
  • Support software integration with customer platforms; troubleshoot hardware-software interface issues 
  • Contribute to version control practices, automated testing, and documentation for software deliverables 
Cross Functional Collaboration: 
  • Work closely with electrical engineers, data scientists, and senior systems engineers to integrate mechanical and software subsystems 
  • Partner with data science team to ensure sensor data collection meets analytics requirements; implement data quality checks and validation 
  • Support development of data infrastructure for model training, including data storage, versioning, and retrieval systems 
  • Support Factory Acceptance Testing (FAT), customer demonstrations, and field testing activities 
  • Participate in design reviews, failure analysis, and continuous product improvement initiatives 
Required Qualifications 
  • Bachelor's degree in Mechanical Engineering, Mechatronics, Robotics, Aerospace Engineering, or related field 
  • 2-5 years of professional experience in product development, preferably in defense, aerospace, or electronics 
  • U.S. Citizen (required for contract work; ability to obtain USG security clearance 
  • Proficiency in CAD software (SolidWorks, CREO, or similar) with experience designing mechanical assemblies for electronics products 
  • Working knowledge of FEA tools (ANSYS, COMSOL, or SolidWorks Simulation) for structural/thermal analysis 
  • Strong programming skills in Python (required); familiarity with MATLAB, C/C++, or LabVIEW 
  • Hands-on experience with prototyping, fabrication methods, and working with machine shops 
  • Understanding of mechanical testing methods (vibration, shock, thermal cycling) 
  • Excellent problem-solving skills with ability to work independently on multiple projects  
Preferred Skills 
  • Active Secret or higher clearance 
  • Experience with embedded systems development (Linux, microcontrollers, RTOS) 
  • Familiarity with RF system packaging, thermal management for high-power electronics, or sensor integration 
  • Knowledge of defense/aerospace standards: MIL-STD-810 (environmental testing), AS9100 (quality), DO-160 (airborne equipment) 
  • Experience with Git/version control 
  • Background in mechatronics, robotics, or electromechanical systems 
  • Exposure to manufacturing processes: CNC machining, 3D printing, sheet metal fabrication 
  • Familiarity with cloud platforms (AWS, GCP) and containerization (Docker) for deploying data processing services 
  • Prior work in startup or small team environments where you wore multiple hats