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Railway Signalling Design Engineer Jobs in Atlanta, GA

Systems Engineer

Atlanta, GA · On-site

$75 - $85/hr

Systems Engineer Overview We are seeking a hands-on Systems Engineer to design, integrate, deploy, and support complex technology systems used in railroad environments. These solutions combine ...

On-site in Atlanta, GA Our client seeks a hands-on Systems Engineer to design, integrate, deploy, and support complex railroad technology systems that combine electrical hardware, embedded computing ...

On-site in Atlanta, GA Our client seeks a hands-on Systems Engineer to design, integrate, deploy, and support complex railroad technology systems that combine electrical hardware, embedded computing ...

Experience working with AREMA's Manual for Railway Engineering and/or other railroad design guidelines, specifications, and criteria * Expertise with freight rail client guidelines, policies, and ...

Bridge BIM/CAD Designer

Atlanta, GA · On-site

$26 - $35.75/hr

... rail, aviation, federal transportation ports and marine infrastructure, your work will directly ... We bring together planners, engineers, architects, construction management staff, environmental ...

Showing results 21-40

Railway Signalling Design Engineer information

See Atlanta, GA salary details

$17

$48

$70

How much do railway signalling design engineer jobs pay per hour?

As of Aug 22, 2026, the average hourly pay for railway signalling design engineer in Atlanta, GA is $48.75, according to ZipRecruiter salary data. Most workers in this role earn between $37.69 and $59.42 per hour, depending on experience, location, and employer.

What does a railway signalling design engineer do?

A Railway Signalling Design Engineer is responsible for designing, developing, and maintaining the systems that control railway signals and ensure the safe and efficient movement of trains. Their work involves creating detailed signalling layouts, preparing technical documentation, and ensuring that all designs comply with safety standards and regulations. They often collaborate with project managers, civil engineers, and installation teams to deliver signalling solutions for new and existing railway lines.

What are some common challenges faced by railway signalling design engineers during project delivery?

Railway Signalling Design Engineers often encounter challenges such as coordinating with multidisciplinary teams, adapting to evolving safety and regulatory standards, and managing tight project deadlines. Ensuring compatibility between new and existing signalling systems requires meticulous attention to detail and strong problem-solving skills. Additionally, engineers must frequently collaborate with clients, contractors, and authorities to address site-specific constraints and unexpected technical issues, making flexibility and clear communication essential for successful project delivery.

What are the key skills and qualifications needed to thrive as a railway signalling design engineer, and why are they important?

To thrive as a Railway Signalling Design Engineer, you need a solid grounding in electrical or electronics engineering, railway signalling principles, and typically a relevant engineering degree or equivalent experience. Familiarity with industry-standard design software (such as AutoCAD and MicroStation), railway signalling systems, and standards like CENELEC EN 50126/50128/50129 is essential. Strong problem-solving, communication, and attention to detail are vital soft skills for effective collaboration and safety-critical design work. These skills and qualities are crucial to ensuring reliable, safe, and compliant railway signalling systems.

What is the difference between Railway Signalling Design Engineer vs Railway Signalling Maintenance Engineer?

AspectRailway Signalling Design EngineerRailway Signalling Maintenance Engineer
Primary FocusDesigning signalling systems and infrastructureMaintaining and repairing signalling equipment
Required SkillsEngineering design, CAD, system integrationTroubleshooting, repair, operational procedures
Work EnvironmentDesign offices, project sitesMaintenance depots, operational sites
CertificationsEngineering degree, signalling system certificationsTechnical maintenance certifications, safety training

While both roles are essential in railway signalling, the Railway Signalling Design Engineer focuses on creating and planning signalling systems, whereas the Railway Signalling Maintenance Engineer handles the upkeep and repair of existing systems. Their skills, work environments, and responsibilities differ, but both require specialized knowledge and certifications in railway signalling.

What are popular job titles related to Railway Signalling Design Engineer jobs in Atlanta, GA?

For Railway Signalling Design Engineer jobs in Atlanta, GA, the most frequently searched job titles are:

Infographic showing various Railway Signalling Design Engineer job openings in Atlanta, GA as of August 2026, with employment types broken down into 87% Full Time, 8% Part Time, and 5% Contract. Highlights an 84% Physical, 5% Hybrid, and 11% Remote job distribution, with an average salary of $101,393 per year, or $48.7 per hour.

Systems Engineer

Wabash Solutions Inc

Atlanta, GA • On-site

$75 - $85/hr

Contractor

Posted 9 days ago


Job description

Systems Engineer

Overview

We are seeking a hands-on Systems Engineer to design, integrate, deploy, and support complex technology systems used in railroad environments. These solutions combine electrical hardware, embedded computing, software, cameras, sensors, networking, machine learning, servers, and physical infrastructure.

This role works across hardware, software, data science, solution architecture, and field operations to ensure complete systems operate reliably in real-world environments. Applications may include machine vision, trackside inspection, railcar identification, autonomous platforms, robotics, drones, distributed sensing, and AI-enabled monitoring.

The ideal candidate has depth in at least one engineering discipline and the ability to work broadly across electrical/electronic systems, embedded software, networking, sensing, vision, AI, robotics, and field engineering.

Key Responsibilities

  • Design and integrate complete systems spanning electrical, embedded, software, networking, sensing, AI, and field infrastructure.
  • Translate operational requirements into system architectures, interfaces, implementation plans, and integration strategies.
  • Integrate and troubleshoot electronics, PCBs, embedded computers, cameras, sensors, networking equipment, servers, software, and AI models.
  • Write and maintain C++ and Python software, scripts, and tools for device control, data acquisition, communications, diagnostics, testing, configuration, deployment, and monitoring.
  • Diagnose system issues across hardware, firmware, software, networking, sensors, data quality, AI/model performance, and environmental conditions.
  • Configure and troubleshoot embedded computing platforms and hardware/software interfaces.
  • Integrate machine learning and computer vision solutions and ensure reliable capture, processing, and delivery of sensor and image data.
  • Read schematics, PCB documentation, datasheets, technical drawings, and specifications and support component selection and hardware integration.
  • Integrate cameras, lenses, lighting, optics, sensors, and image-acquisition systems for machine vision and inspection applications.
  • Evaluate camera placement, field of view, resolution, exposure, lighting, image quality, and environmental effects.
  • Configure and troubleshoot servers, switches, routers, wireless equipment, edge platforms, IP networks, databases, cloud interfaces, and enterprise infrastructure connections.
  • Deploy, commission, validate, test, and troubleshoot systems in laboratories, test-track environments, rail yards, trackside locations, maintenance facilities, and other field settings.
  • Analyze logs, operational data, sensor information, images, and diagnostics to evaluate performance and isolate failures.
  • Develop tools and procedures that simplify system installation, configuration, testing, maintenance, and troubleshooting.
  • Collaborate with Software Engineers, Data Scientists, Electrical Engineers, Solution Architects, IT/cybersecurity, DevSecOps, field personnel, and other engineering teams.
  • Travel to field locations as needed.

Required Qualifications

  • Bachelor’s degree in Electrical Engineering, Computer Engineering, Mechatronics, or a related engineering discipline, or equivalent relevant experience.
  • Experience developing, integrating, or troubleshooting complex hardware/software systems.
  • Working knowledge of C++ and Python.
  • Ability to troubleshoot systems involving hardware, software, embedded computing, networking, sensors, and field equipment.
  • Understanding of electrical and electronic fundamentals, including sensors, signals, power, digital/analog I/O, embedded systems, and electronic components.
  • Ability to read schematics, technical drawings, datasheets, and system documentation.
  • Understanding of computer networking fundamentals, including TCP/IP, IP networking, and networked devices.
  • Strong analytical and hands-on problem-solving skills in laboratory and field environments.
  • Strong communication and collaboration skills with the ability to work across multiple engineering disciplines.
  • Ability to learn new technologies and take ownership of complete system performance.

Preferred Qualifications

  • Experience with robotics, mechatronics, autonomous systems, drones, industrial automation, motion systems, or physical system integration.
  • Experience with computer vision, machine learning, cameras, lenses, optics, lighting, image acquisition, sensor fusion, localization, tracking, or perception systems.
  • Experience with PCB or electronics design, wiring, microcontrollers, embedded processors, edge-computing platforms, embedded Linux, or other embedded operating systems.
  • Experience with Linux servers, industrial networking, communications protocols, databases, SQL, Docker, containers, virtualization, Git, CI/CD, DevSecOps, automated deployment, real-time systems, or high-performance computing.
  • Experience working in outdoor, industrial, transportation, railroad, rail-vehicle, track-infrastructure, or other demanding physical environments.

Candidate Profile

Successful Systems Engineers are hands-on systems thinkers who can understand how electronics, computers, networks, software, cameras, sensors, AI models, and physical equipment work together as one operational system.

Candidates do not need to be experts in every discipline. Strong technical fundamentals, practical troubleshooting ability, adaptability, curiosity, and the willingness to learn across engineering domains are essential.