1

Fpga Software Engineer Robotics Jobs (NOW HIRING)

Software Engineer, Robotics

Austin, TX · On-site

$224K - $279K/yr

You've shipped software for robots or autonomous systems in production. * You've worked with ROS or equivalent middleware on real hardware. * You engineer for remote failure: recovery, fallback, and ...

Purpose We are seeking a talented and motivated Software Developer to join our Robotics & AI Software team. In this role, you will have the opportunity to work closely with experienced automation and ...

We are looking for a Software Engineer, Robotics & Integration to help turn advanced drones, sensors, payloads, and third-party technologies into reliable, field-ready capabilities that operators can ...

FPGA Engineer

Aberdeen Proving Ground, MD · On-site

$130 - $180K/hr

FPGA Engineer * 3+ years of experience developing SDR solutions (Software Defined Radio) * Linux experience * VHDL programming experience * FPGA Toolchains (Vivado or Quartus) expérience * Basic Git ...

Purpose We are seeking a talented and motivated Software Developer to join our Robotics & AI Software team. In this role, you will have the opportunity to work closely with experienced automation and ...

Showing results 41-60

Fpga Software Engineer Robotics information

See salary details

$60K

$124.5K

$179K

How much do fpga software engineer robotics jobs pay per year?

As of Sep 9, 2026, the average yearly pay for fpga software engineer robotics in the United States is $124,523.00, according to ZipRecruiter salary data. Most workers in this role earn between $104,000.00 and $152,000.00 per year, depending on experience, location, and employer.

What does an FPGA software engineer in robotics do?

An FPGA Software Engineer in Robotics designs, develops, and implements software that runs on Field Programmable Gate Arrays (FPGAs) to control robotic systems. Their work involves creating hardware-accelerated algorithms, optimizing signal processing, and ensuring real-time performance for robotics applications. They collaborate with hardware and robotics teams to integrate FPGA solutions, often using languages like VHDL or Verilog, and may also work on simulation, testing, and debugging to ensure reliable robotic operations.

What are the key skills and qualifications needed to thrive as an FPGA software engineer in robotics?

To thrive as an FPGA Software Engineer in Robotics, you need expertise in digital design, hardware description languages (such as VHDL or Verilog), and a background in electrical engineering or computer engineering. Familiarity with FPGA development tools (like Xilinx Vivado or Intel Quartus), simulation environments, and experience with embedded systems are typically required. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help you excel in this multidisciplinary field. These skills are crucial for designing reliable, high-performance robotic systems that integrate seamlessly with hardware and software components.

How does an FPGA software engineer in robotics typically collaborate with hardware and robotics teams during a project?

As an FPGA Software Engineer in robotics, you will work closely with both hardware engineers and robotics specialists to design, implement, and optimize real-time processing systems. Collaboration usually involves regularly reviewing system requirements, integrating FPGA designs with sensors and actuators, and troubleshooting issues that arise at the interface between hardware and software. Effective communication and teamwork are essential, as you will often participate in cross-functional meetings and testing sessions to ensure that your FPGA solutions meet the stringent performance and reliability standards required in robotics applications.

What is the difference between Fpga Software Engineer Robotics vs Embedded Software Engineer Robotics?

AspectFpga Software Engineer RoboticsEmbedded Software Engineer Robotics
Required CredentialsBachelor's/Master's in Electrical Engineering, Computer Engineering, or related; FPGA design certificationsBachelor's/Master's in Computer Engineering, Electrical Engineering, or related; embedded systems certifications
Work EnvironmentDesigning FPGA hardware, writing HDL code, testing FPGA implementationsDeveloping embedded software, firmware, and real-time applications for robotic systems
Industry UsageUsed in robotics for high-speed processing, signal processing, and hardware accelerationUsed in robotics for control systems, sensor integration, and embedded system functionality

While both roles support robotics development, Fpga Software Engineers focus on FPGA hardware design and HDL coding, whereas Embedded Software Engineers develop software for embedded controllers. Both are essential in robotics but serve different technical needs.

What are popular job titles related to Fpga Software Engineer Robotics jobs?

For Fpga Software Engineer Robotics jobs, the most frequently searched job titles are:

Autonomous Robotics Software Engineer (Robotics / Autonomy / C++)

Houston, TX • On-site

Advanced Robotics Group, LLC
Internet and IT • 11 - 50 employees

$125 - $150/hr

Other

Medical, Vision, PTO

Posted 8 days ago


Job description

Job Overview

At Advanced Robotics Group, we develop fully autonomous robotic systems for complex industrial environments where GPS is unavailable, communications are unreliable, conditions change constantly, and failure is not an option.

Our engineers work at the intersection of robotics, autonomy, computer vision, software engineering, and large-scale data systems. This role is focused on solving open-ended technical challenges: enabling robotic platforms to perceive their surroundings, localize and navigate independently, make intelligent decisions, and operate reliably in the real world.

As an Autonomous Robotics Software Engineer, you will design and develop the software that enables our robotic platforms to operate autonomously. You will contribute to localization, mapping, navigation, perception, system integration, and autonomy architecture while working with a small, highly capable engineering team to solve some of the most demanding problems in industrial robotics. The ideal candidate is a strong software engineer, systems thinker, and relentless problem solver who enjoys difficult challenges, thrives in ambiguity, and takes satisfaction in seeing their ideas deployed in real‑world autonomous systems.

If you're the type of engineer who enjoys building things that others say can't be done, we'd like to talk.

Key Responsibilities
  • Design and implement autonomous capabilities for high-performance robotic platforms.
  • Develop algorithms for localization, mapping, SLAM, state estimation, motion planning, and navigation.
  • Build perception and multi-sensor fusion solutions that enable robust environmental understanding.
  • Integrate sensing, planning, and control systems into cohesive autonomy frameworks.
  • Design and execute simulation and real-world testing to validate reliability and performance.
  • Develop production‑quality software from prototype through deployment.
  • Extend and integrate open‑source robotics frameworks with proprietary technologies.
  • Collaborate closely with software, electrical, mechanical, and field engineering teams to deliver fully integrated systems.
  • Solve technically challenging problems that directly impact safety, operational efficiency, and real-world deployments.
Qualifications
  • BS, MS, or PhD in Computer Science, Robotics, Computer Engineering, or a related technical field.
  • Proven experience designing and developing robotics software and delivering complex technical projects.
  • Strong software engineering fundamentals, including architecture, testing, debugging, and code quality.
  • Experience with localization, mapping, SLAM and state estimation techniques.
  • Experience with path planning, motion planning, perception and navigation algorithms.
  • Experience designing and integrating complex systems.
  • Experience with ROS, ROS 2 or similar robotics middleware.
  • Advanced proficiency in modern C++ and performance optimization techniques.
  • Strong problem‑solving skills and system‑level thinking.
  • Ability to work independently on open-ended engineering challenges.
  • Demonstrated ability to learn and apply new technologies quickly.
  • High level of professional integrity and confidentiality.
Preferred Backgrounds
  • 5+ years of robotics software development experience.
  • Experience deploying robotics systems in real‑world environments.
  • Experience with CI/CD pipelines and automated testing.
  • Experience with embedded systems or real-time software development.
  • Experience with robotics simulation environments.
  • Hands‑on experience with robotic platforms and field testing.
  • Experience with computer vision, sensor fusion, or machine learning applications in robotics.
  • Familiarity with Linux development environments, distributed software architectures and modern software development workflows.
Work Environment

This is a full‑time, on‑site position located in Houston, Texas. The role requires close collaboration with software, electrical, mechanical, and field engineering teams and supports rapid iteration, peer review, hardware integration, and hands‑on system testing. The position involves a combination of software development, laboratory testing, and direct interaction with robotic platforms in a professional R&D environment.

What We Offer
  • Competitive compensation based on experience.
  • Stock option participation.
  • Company‑paid medical, vision, and disability coverage.
  • Paid holidays and PTO.
  • Daily team lunches and a stocked kitchen.
  • Modern 14,000 square‑foot R&D facility in Houston.
  • Opportunity to work on cutting‑edge autonomous robotics systems with real‑world impact.
  • Small, highly technical team environment where individual contributions matter.
  • Established, well‑funded organization with more than a decade of robotics and analytics innovation.
Who Will Succeed Here
  • Enjoys solving difficult technical problems with no obvious answer.
  • Thrives in small teams where ownership and accountability are expected.
  • Prefers building real systems that operate outside of laboratory conditions.
  • Comfortable balancing research, experimentation, and production‑quality engineering.
  • Communicates effectively and collaborates across disciplines.
  • Takes initiative and continuously pursues technical growth.
#J-18808-Ljbffr