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Railroad Cyber Jobs (NOW HIRING)

$140 - $180/hr

NEURA's humanoid robot is a deeply complex cyber-physical system: distributed computing, high ... Strong command of power system architecture: multi-rail SMPS design, battery/BMS integration, load ...

Eng Sr - SW

Denver, CO · On-site

$97K - $164K/yr

Creating views and templates in full-stack frameworks like Rails, Express, or Django * Angular ... Our pride and dedication shows in everything we do-from intelligence analysis, cyber operations and ...

Eng Prin - SW

Denver, CO · On-site

$118K - $200K/yr

Creating views and templates in full-stack frameworks like Rails, Express, or Django * Angular ... Our pride and dedication shows in everything we do-from intelligence analysis, cyber operations and ...

... cyber interests. Responsibilities : • Must have significant experience with Python, Java ... Ruby, Rails, Django, etc.) • Knowledge of Infrastructure as Code • Knowledge of Agile ...

We design, build, operate, and maintain cyber-physical solutions for the nation's most mission ... Project types include data centers, hospitals, complex government facilities, airports, railway ...

General Foreman

Richmond, VA · On-site

$43.50/hr

We design, build, operate, and maintain cyber-physical solutions for the nation's most mission ... Project types include data centers, hospitals, complex government facilities, airports, railway ...

Showing results 41-60

Railroad Cyber information

See salary details

$68.5K

$128.9K

$162K

How much do railroad cyber jobs pay per year?

As of Aug 9, 2026, the average yearly pay for railroad cyber in the United States is $128,882.00, according to ZipRecruiter salary data. Most workers in this role earn between $113,000.00 and $146,500.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a railroad cyber professional?

To thrive as a Railroad Cybersecurity Specialist, you need expertise in cybersecurity principles, risk assessment, and knowledge of both IT and operational technology (OT) systems commonly used in the rail industry, usually supported by a degree in cybersecurity or computer science. Familiarity with security tools such as intrusion detection systems, SIEM platforms, and certifications like CISSP or GICSP are highly valued. Strong problem-solving skills, attention to detail, and the ability to communicate complex risks to non-technical stakeholders set top performers apart. These skills are vital to protect critical rail infrastructure from cyber threats and ensure the safety and reliability of rail operations.

What are some common challenges faced by professionals in railroad cyber security roles?

Railroad cyber security professionals often face the challenge of protecting complex and aging infrastructure that was not originally designed with cyber threats in mind. They must stay ahead of evolving cyber risks while ensuring operational safety and minimal disruptions to rail services. Collaboration with operations, IT, and engineering teams is essential to implement effective security measures across both legacy and modern systems. Additionally, continuous education and adherence to industry regulations are crucial to managing vulnerabilities and maintaining compliance.

What is the difference between Railroad Cyber vs Railroad Signal Technician?

AspectRailroad CyberRailroad Signal Technician
CertificationsCybersecurity certifications (e.g., CISSP, CISA)Signal system certifications, OSHA safety training
Work EnvironmentControl centers, field sites, cybersecurity labsTrackside, signal control rooms, maintenance yards
Industry UsageProtects digital infrastructure of rail systemsMaintains and repairs signaling equipment
Job FocusCybersecurity, network protection, threat mitigationSignal system installation, troubleshooting, repair

Railroad Cyber professionals focus on safeguarding digital systems and networks within the railroad industry, while Railroad Signal Technicians maintain and repair physical signaling equipment. Both roles are essential for safe and efficient rail operations but differ in their technical focus and work environments.

What is a railroad cyber job?

Railroad cyber jobs focus on protecting the information technology and operational technology systems used in the rail industry from cyber threats. Professionals in this field work to secure signaling systems, communication networks, and critical infrastructure against hacking, malware, and other cyber risks. Their responsibilities may include risk assessment, incident response, compliance with security regulations, and implementing cybersecurity best practices specific to railway environments. As railways become more digitized, the demand for cybersecurity experts in this sector continues to grow.
More about Railroad Cyber jobs
What cities are hiring for Railroad Cyber jobs? Cities with the most Railroad Cyber job openings:
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What job categories do people searching Railroad Cyber jobs look for? The top searched job categories for Railroad Cyber jobs are:
Infographic showing various Railroad Cyber job openings in the United States as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $128,882 per year, or $62 per hour.

Hardware Architect - Cognitive Robotics (human)

NEURA Robotics

On-site

$140 - $180/hr

Other

Posted 4 days ago


Job description

This is where Artificial Intelligence comes to life. The Hardware Department designs, constructs, and optimizes all physical components of our cognitive robots. As NEURA scales from prototype to production of five million robots, the decisions made at the architecture level today will shape the platform for years to come. The Hardware Architect is the person who makes those decisions — with the authority to define the blueprint and the accountability to make it work in the real world.

Your mission & challenges

You define the hardware blueprint for the world's most advanced cognitive robots.

NEURA's humanoid robot is a deeply complex cyber-physical system: distributed computing, high-density power electronics, a body-area sensor network, real-time actuation control, and a cognitive AI stack — all packed into a human-scale form factor and designed for mass production. The Hardware Architect owns the overall hardware system architecture, translates product requirements into physical design constraints, and ensures that every sub-system — from PCBAs to cabling to compute modules — fits coherently into a scalable, manufacturable whole.

  • Hardware system architecture: Define and maintain the top-level hardware architecture of the robot platform — compute topology (SoCs, MCUs, edge AI accelerators), power architecture (bus voltages, distribution, protection), communication backbone (EtherCAT, CAN-FD, Ethernet, SerDes), and sensing architecture (sensor selection, placement, interface strategy).
  • Requirements & partitioning: Translate product, performance, and safety requirements into hardware requirements; partition functionality across electronics, embedded software, and mechanical subsystems; manage technical interfaces between all hardware disciplines.
  • Architecture governance: Lead hardware architecture reviews; define and enforce hardware design standards, interface control documents, and design rules across the electronics, firmware, and mechanical teams.
  • Technology selection: Evaluate and select key platform components — compute SoCs, power management ICs, communication controllers, sensor ICs — balancing performance, availability, NRE cost, and long-term scalability.
  • Cross-disciplinary integration: Serve as the primary technical interface between the hardware team and software/AI architecture teams; ensure the hardware platform exposes the right capabilities (memory bandwidth, I/O, compute) to meet AI inference and real-time control requirements.
  • DFM and scalability: Ensure architectural decisions are compatible with high-volume manufacturing; drive design-for-reliability, design-for-testability (DFT), and design-for-cost principles from day one.
  • Technical mentorship: Provide technical guidance and mentorship to senior electronics, firmware, and system engineers; support hiring and team growth in the hardware domain.
What we can look forward to

A rare combination: system-level thinker and hands-on hardware expert.

You are a senior hardware engineer or architect who has seen the full lifecycle of a complex embedded hardware product — from architecture concept through mass production — and who understands what it takes to get architecture right at each stage. You lead by technical authority, not organizational position, and you thrive in environments where the architecture is still being shaped.

  • Master's degree in Electrical Engineering, Computer Engineering, Mechatronics, or a closely related field; PhD is a plus but not required.
  • 8+ years of professional experience in hardware development for complex embedded or cyber-physical systems, with at least 3 years in a hardware architecture, lead engineer, or staff engineer role.
  • Proven track record of defining and delivering multi-disciplinary hardware system architectures — from concept through EVT/DVT and into production — for products combining high-speed compute, power electronics, and real-time sensing.
  • Deep understanding of embedded compute platforms (ARM Cortex-A/M, NVIDIA Jetson class, FPGA/eFPGA) and the trade-offs between centralized and distributed compute topologies.
  • Strong command of power system architecture: multi-rail SMPS design, battery/BMS integration, load analysis, power sequencing, and EMC mitigation at the system level.
  • Experience defining communication backbone architectures for real-time distributed systems (EtherCAT, CAN-FD, TSN Ethernet, SpaceWire, or similar).
  • Familiarity with functional safety standards and the ability to translate safety requirements into hardware architecture constraints (redundancy, monitoring, safe states).
  • Experience with DFM/DFT in high-volume hardware — able to drive architecture choices that remain manufacturable and testable at scale.
  • Strong cross-functional communication skills: able to represent hardware architecture in discussions with product management, AI/software architects, supply chain, and executive leadership.
  • Experience in robotics, automotive (ADAS/body electronics), aerospace, or industrial automation hardware is strongly preferred.
  • Fluent English; German is a practical advantage.
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