1

Embedded Software Engineer Jobs in Houston, TX (NOW HIRING)

Our Principal Embedded Real-Time Software Developer/Integrator is a technical position that works in an Integrated Product Team (IPT) environment to architect, design, implement, test, debug, and ...

Our Principal Embedded Real-Time Software Developer/Integrator is a technical position that works in an Integrated Product Team (IPT) environment to architect, design, implement, test, debug, and ...

Collaborate with embedded software teams to integrate, test, and verify GNC functionality on ... Proficiency in C++ and Python programming. * Experience with NASA GUNNS and TRICK Simulation ...

About Software Engineering Roles at Danaher Are you passionate about building real-world ... Supporting the development of console and embedded software systems * Troubleshooting issues and ...

Showing results 21-40

Embedded Software Engineer information

See Houston, TX salary details

$66.8K

$146.5K

$166.2K

How much do embedded software engineer jobs pay per year?

As of Aug 14, 2026, the average yearly pay for embedded software engineer in Houston, TX is $146,477.00, according to ZipRecruiter salary data. Most workers in this role earn between $125,600.00 and $165,200.00 per year, depending on experience, location, and employer.

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

AspectEmbedded Software EngineerFirmware Engineer
CredentialsBachelor's in Computer Engineering, Electrical Engineering, or related fields; often requires knowledge of C/C++Similar credentials; strong C/C++ skills, understanding of hardware
Work EnvironmentDevelops software for embedded systems in various industries like automotive, IoT, consumer electronicsFocuses on low-level hardware interaction, often working closely with hardware teams
Industry UsageCommon in automotive, medical devices, consumer electronics, industrial automationPrimarily in consumer electronics, IoT devices, and hardware startups

Embedded Software Engineers design and develop software for embedded systems, focusing on system-level programming. Firmware Engineers write low-level code that directly interacts with hardware components. While both roles require similar skills and work environments, Embedded Software Engineers often work on a broader range of software, whereas Firmware Engineers focus on hardware-specific code. Understanding these differences helps in choosing the right career path or job search focus.

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

To thrive as an Embedded Software Engineer, you need a solid background in computer science or electrical engineering, strong programming skills in C/C++, and experience with embedded systems design. Familiarity with real-time operating systems (RTOS), microcontroller architectures, debugging tools, and version control systems like Git is typically required. Excellent problem-solving abilities, attention to detail, and effective communication skills set top engineers apart. These competencies are crucial for building reliable, efficient, and safe embedded solutions that meet industry standards.

What is an embedded software engineer?

Embedded Software Engineers are professionals who design, develop, and maintain software that runs on embedded systems—specialized computing devices that are part of larger systems, such as cars, medical devices, industrial machines, and consumer electronics. Their work involves programming in languages like C or C++ to interact closely with hardware components, ensuring optimal performance, reliability, and safety. Embedded Software Engineers work closely with hardware engineers to integrate and test software with physical devices, often working within real-time and resource-constrained environments. Their expertise is crucial in developing the 'brains' of many devices we use every day.

How does an embedded software engineer typically collaborate with hardware engineers during product development?

Embedded Software Engineers work closely with hardware engineers throughout the product development lifecycle. Collaboration often involves joint design reviews, debugging sessions, and integration testing to ensure software and hardware function seamlessly together. Effective communication is crucial, as changes in hardware can impact software functionality and vice versa. This cross-disciplinary teamwork helps resolve technical issues quickly and ensures the end product meets performance and reliability standards.

What are the most commonly searched types of Embedded Software Engineer jobs in Houston, TX?

The most popular types of Embedded Software Engineer jobs in Houston, TX are:

What cities near Houston, TX are hiring for Embedded Software Engineer jobs?

Cities near Houston, TX with the most Embedded Software Engineer job openings:

Infographic showing various Embedded Software Engineer job openings in Houston, TX as of August 2026, with employment types broken down into 88% Full Time, 3% Part Time, and 9% Contract. Highlights an 94% In-person, and 6% Remote job distribution, with an average salary of $146,477 per year, or $70.4 per hour.

Software Engineer, VCU (Vehicle Control Unit)

Bot Auto

Houston, TX

Full-time

Posted 20 days ago


Job description

Company Introduction

At Bot Auto, we build autonomous trucks to transform the way goods are transported and improve the quality of life for communities worldwide. With a start-up spirit yet long-established experience, Bot Auto has the most seasoned team that has delivered several world's first and world's only. Together, we share vision, we see and build miracles and we drive the future of transportation. Join us and turn your dream into something RUNNING.

Position Overview

We are seeking a VCU Software Engineer to design, implement, integrate, and validate production-grade embedded software for advanced vehicle control systems. This role owns work across requirements, architecture, model-based development, embedded C/C++, AUTOSAR integration, and MIL/SIL/HIL validation. The ideal candidate combines strong vehicle-controls fundamentals with disciplined software engineering and hands-on debugging across simulation, bench, and vehicle environments.

Key Responsibilities

Software System Design:

    • Own the VCU software lifecycle from requirements analysis and architecture through implementation, integration, validation, release, and field support.
    • Define and maintain system and software requirements, architecture, interfaces, state machines, fault handling, and safe-state behavior.
    • Translate vehicle-level requirements into clear, testable software requirements with end-to-end traceability.
    • Partner with controls, hardware, systems, autonomy, validation, manufacturing, and service teams to optimize performance, safety, reliability, and diagnosability.

Embedded Software Development:Application Software and Integration:

      • Develop and optimize VCU application software using MATLAB/Simulink/Stateflow and embedded C/C++, including production-code generation where appropriate.
      • Implement vehicle operating modes, torque coordination, power and energy management, diagnostics, fault management, and drive-by-wire supervisory functions.
      • Integrate application software with AUTOSAR Classic components and layers, including ASW, RTE, BSW, MCAL, and external ECU interfaces.
      • Perform code and model reviews, static analysis, debugging, timing and memory analysis, and performance optimization to deliver robust real-time software.
    • Tooling and Diagnostics: Build or maintain Python-based automation, logging, calibration, monitoring, benchmarking, and data-analysis tools that improve engineering efficiency and product observability.

Verification & Validation:

    • Define and execute unit, integration, MIL, SIL, and HIL test strategies, including requirement-based tests, fault injection, and regression coverage.
    • Automate build, test, and reporting workflows within CI/CD pipelines, and use results to drive measurable quality improvements.
    • Support bench and vehicle integration, diagnose cross-domain hardware/software issues, reproduce failures from logs, and drive issues to verified closure.

Collaboration and Technical Leadership:

    • Coordinate technical decisions with internal teams, suppliers, and platform partners; document assumptions, interfaces, risks, and release readiness.
    • Contribute to design reviews, coding and modeling standards, knowledge sharing, and mentorship while continuously improving the team's development practices.
Skills and Qualifications
  • Bachelor's or advanced degree in Computer Science, Electrical Engineering, Computer Engineering, Automotive Engineering, Robotics, or a related field.
  • Demonstrated experience developing and delivering embedded software for automotive, robotics, autonomous systems, or other safety-critical real-time products.
  • Strong embedded C/C++ skills and practical knowledge of real-time systems, microcontrollers, memory constraints, concurrency, and hardware/software interfaces.
  • Hands-on proficiency with MATLAB, Simulink, and Stateflow for model-based design, simulation, and production software development.
  • Solid understanding of vehicle control concepts, feedback control, state machines, fault detection, degraded modes, and safety mechanisms.
  • Experience with in-vehicle networks and diagnostics, including CAN/CAN-FD and working knowledge of UDS, XCP, or equivalent protocols.
  • Working knowledge of AUTOSAR Classic architecture and the interaction among application software, RTE, BSW, and MCAL.
  • Experience with requirement-based development and MIL, SIL, HIL, bench, or vehicle-level verification.
  • Proficiency with version control, code review, issue tracking, automated testing, CI/CD, and structured debugging workflows.
  • Strong analytical, communication, and cross-functional collaboration skills, with ownership from ambiguous problem definition through validated delivery.
Preferred Qualifications
  • Experience with Infineon AURIX/TC3xx or comparable automotive microcontrollers and associated compilers, debuggers, and RTOS environments.
  • Practical exposure to ISO 26262, Automotive SPICE, MISRA C/C++, safety analysis, or safety-oriented development processes.
  • Experience with Vector, dSPACE, ETAS, or similar tools for network analysis, measurement, calibration, rapid prototyping, and HIL testing.
  • Hands-on experience with CANoe/CANalyzer, DaVinci Configurator/Developer, Embedded Coder, TargetLink, or comparable toolchains.
  • Python experience for test automation, log processing, data analysis, reporting, or developer tooling.
  • Experience with ECU bring-up, board-level debugging, vehicle testing, drive-by-wire systems, or autonomous/electric vehicle platforms.