1

Computer Engineering Jobs in Ottawa, OH (NOW HIRING)

Proven application of mechanical systems engineering (3D CAD, CAE, machine design, mechatronics). * Experience in R&D, advanced manufacturing, or technical centers. * Specific expertise in packaging ...

Controls Software Engineer

Bluffton, OH · On-site

$42.50 - $54.25/hr

Bachelor's Degree in Electrical Engineering * Knowledge of electrical design * Computer programming experience (C#, Visual Basic) * Siemens PLC knowledge is a plus * Knowledge of industrial robotics ...

Working knowledge of CAD or other engineering design software. * Excellent communication and collaboration skills, with the ability to influence and build relationships across all levels of the ...

Working knowledge of CAD or other engineering design software. * Excellent communication and collaboration skills, with the ability to influence and build relationships across all levels of the ...

Working knowledge of CAD or other engineering design software. * Excellent communication and collaboration skills, with the ability to influence and build relationships across all levels of the ...

next page

Showing results 1-20

Computer Engineering information

See Ottawa, OH salary details

$42.9K

$107.5K

$121.6K

How much do computer engineering jobs pay per year?

As of Sep 14, 2026, the average yearly pay for computer engineering in Ottawa, OH is $107,506.00, according to ZipRecruiter salary data. Most workers in this role earn between $98,600.00 and $116,300.00 per year, depending on experience, location, and employer.

What is computer engineering?

Computer engineering is a field that combines principles of electrical engineering and computer science to design, develop, and maintain computer systems and hardware. Computer engineers work on both the hardware (such as processors, circuit boards, and memory devices) and the software that runs on these systems. Their work enables the creation of everything from smartphones and laptops to complex embedded systems in cars and medical devices. Computer engineering can also involve research, innovation, and improving the efficiency and performance of computers and related technologies.

What are the key skills and qualifications needed to thrive as a computer engineer?

To thrive as a Computer Engineer, you need strong analytical skills, proficiency in computer architecture, hardware and software design, and at least a bachelor's degree in computer engineering or a related field. Familiarity with programming languages (such as C/C++ or Python), hardware description languages (like VHDL or Verilog), and tools like MATLAB or CAD software is common, and certifications like Cisco or CompTIA can be beneficial. Problem-solving abilities, teamwork, and effective communication are vital soft skills for collaborating on complex projects and troubleshooting technical issues. These skills and qualifications are essential for designing innovative computing solutions, ensuring reliable system performance, and succeeding in multidisciplinary engineering environments.

How do computer engineers typically collaborate with other departments in a tech company?

Computer engineers often work closely with software developers, hardware designers, and product managers to bring complex systems to life. Collaboration usually involves regular meetings to align on project goals, troubleshooting cross-disciplinary issues, and integrating hardware and software components. Effective communication and teamwork are essential, as computer engineers must translate technical requirements and constraints between teams to ensure a smooth development process. This collaborative environment helps broaden your skill set and exposes you to various aspects of product development.

What is the difference between Computer Engineering vs Computer Science?

AspectComputer EngineeringComputer Science
Required CredentialsBachelor's in Computer Engineering or related fieldBachelor's in Computer Science or related field
Work EnvironmentHardware and software development, embedded systems, device designSoftware development, algorithms, data structures, theoretical computing
Employer & Industry UsageTech companies, hardware firms, embedded systems companiesSoftware firms, research institutions, tech startups
Common Search & ComparisonYesYes

Computer Engineering focuses on designing and developing hardware and embedded systems, combining electrical engineering and computer science principles. Computer Science emphasizes software development, algorithms, and theoretical aspects of computing. While both fields overlap, Computer Engineering leans more toward hardware integration, whereas Computer Science centers on software and programming.

What do I do with a computer engineering degree?

A computer engineering degree prepares individuals for roles such as hardware engineer, software developer, systems analyst, or network administrator. Graduates often work in technology companies, design embedded systems, develop software, or manage computer networks, utilizing skills in programming, circuit design, and systems integration.

What is the job of a computer engineer?

A computer engineer designs, develops, and tests computer hardware and software systems. They work with programming languages, circuit design, and system integration to create efficient computing solutions, often collaborating with software developers and IT professionals.

What cities near Ottawa, OH are hiring for Computer Engineering jobs?

Cities near Ottawa, OH with the most Computer Engineering job openings:

Infographic showing various Computer Engineering job openings in Ottawa, OH as of August 2026, with employment types broken down into 1% As Needed, 86% Full Time, 10% Part Time, 2% Contract, and 1% Nights. Highlights an 76% Physical, 2% Hybrid, and 22% Remote job distribution, with an average salary of $107,506 per year, or $51.7 per hour.

Embedded Firmware Engineer - Radiation Detection

Oakwood, OH • On-site

Thermo Fisher Scientific
Biotechnology Research and Development • 10K+ employees

$101K - $138K/yr

Full-time

Re-posted 17 days ago


Thermo Fisher Scientific rating

7.7

Company rating: 7.7 out of 10

Based on 432 frontline employees who took The Breakroom Quiz


Job description

Work Schedule
Standard (Mon-Fri)
Environmental Conditions
Office
Job Description
LOCATION: This is a fully onsite position based at our Oakwood Village, OH site.
  • Must be legally authorized to work in the United States without sponsorship now or in the future.
  • Must be able to pass a comprehensive background check, which includes a drug screen.

How you will make an impact
At Thermo Fisher Scientific, our mission is to enable our customers to make the world safer. As an Embedded Firmware Engineer, you will help develop and deliver the embedded software that powers next-generation handheld radiation detection and identification systems used in public safety, dosimetry, environmental monitoring, and emergency response.
You will play a key role in translating advanced sensing technologies and system concepts into reliable, field-ready products by designing, developing, and integrating robust firmware for embedded platforms. Working closely with radiation scientists, electrical engineers, systems engineers, and software teams, you will help ensure our instruments perform accurately and reliably in demanding real-world environments.
This role is well suited for an early-career engineer with strong embedded software fundamentals and hands-on exposure to radiation detection, spectroscopy, scientific instrumentation, or sensor signal processing through graduate research, internships, co-ops, or prior employment.
Position Summary
We are seeking an Embedded Firmware Engineer to design, develop, test, and maintain firmware for next-generation radiation detection products. The role requires strong embedded C/C++ skills, microcontroller-based development, and familiarity with real-time systems and hardware interfaces. The ideal candidate is comfortable working close to the hardware and has enough radiation-detection or signal-processing background to understand detector data, calibration, and measurement behavior. Experience with Renesas platforms is a plus, but not required.
Experience with radiation instrumentation, spectroscopy, detector signal processing, Python-based analysis, or connected embedded products is a strong plus.
Key Responsibilities
  • Design, develop, debug, and maintain embedded firmware using C/C++ for microcontroller-based radiation detection systems.

  • Develop firmware running on real-time operating systems, including task scheduling, inter-task communication, timing, synchronization, and resource management.

  • Bring up and integrate firmware on microcontroller-based platforms, including peripheral configuration, board support packages, bootloaders, and device drivers; experience with Renesas platforms is a plus.

  • Work closely with electrical engineering and radiation science teams to support hardware bring-up, detector/electronics integration, board validation, and root-cause analysis.

  • Develop and maintain low-level drivers for interfaces such as I2C, SPI, UART, USB, CAN, Ethernet, GPIO, ADC, PWM, and similar embedded peripherals.

  • Support implementation and integration of radiation measurement functions such as detector calibration, pulse/event processing, spectral data handling, count-rate processing, alarm logic, and detector health/status monitoring.

  • Analyze detector data, spectra, and acquired signals with scientists and systems engineers to troubleshoot instrument performance and translate validated algorithms or calibration methods into efficient embedded implementations.

  • Develop or use Python, MATLAB, or similar analysis tools for firmware verification, detector characterization, calibration studies, and test automation.

  • Participate in firmware architecture, design reviews, code reviews, and technical decision-making.

  • Implement robust, maintainable, and testable firmware for commercial radiation detection and industrial embedded products.

  • Debug complex firmware and hardware interactions using oscilloscopes, logic analyzers, JTAG/SWD debuggers, and other lab equipment.

  • Support integration of embedded systems with higher-level software, detector-processing functions, connectivity stacks, and cloud-based services.

  • Develop unit, integration, and system-level test strategies for embedded firmware.

  • Create and maintain technical documentation, including requirements, design specifications, test plans, and release notes.

  • Collaborate with cross-functional teams to deliver high-quality products on schedule.

Required Qualifications
  • Bachelor's or Master's degree in Electrical Engineering, Computer Engineering, Computer Science, Nuclear Engineering, Applied Physics, or a related technical discipline with 5 years in related field.

  • Strong programming experience in embedded C or C++.

  • Understanding of embedded systems concepts including interrupts, timers, DMA, memory management, bootloaders, power management, and communication protocols.

  • Familiarity with real-time embedded systems or RTOS concepts such as task scheduling, synchronization, inter-task communication, and resource management.

  • Hands-on experience with microcontrollers, hardware/software integration, or laboratory instrumentation.

  • Experience with firmware debugging tools such as JTAG/SWD, oscilloscopes, logic analyzers, or protocol analyzers.

  • Familiarity with common embedded communication interfaces including SPI, I2C, UART, USB, CAN, Ethernet, GPIO, and ADC-based acquisition.

  • Exposure to radiation detection, spectroscopy, radiation instrumentation, detector signal processing, or related sensor systems through coursework, research, internships, or professional experience.

  • Ability to read schematics and work closely with hardware engineers during board bring-up and troubleshooting.

  • Strong analytical, debugging, and problem-solving skills, with excellent written and verbal communication skills.

Preferred Qualifications
  • Master's degree or experience involving embedded systems, radiation detection, spectroscopy, nuclear instrumentation, signal processing, or sensor electronics.

  • Experience developing firmware for an RTOS such as FreeRTOS, ThreadX, Zephyr, embOS, or similar.

  • Experience with Renesas RA, RX, RL78, RZ, or other commercial microcontroller platforms and associated SDKs, BSPs, or IDEs.

  • Familiarity with radiation detector technologies such as scintillators/SiPMs, semiconductor detectors, gamma-ray spectroscopy, neutron detection, or dosimetry.

  • Experience with detector calibration, digital pulse processing, spectral analysis, count-rate processing, neutron/gamma discrimination, or related radiation measurement algorithms.

  • Experience using Python, MATLAB, or similar tools for detector data analysis, test automation, calibration, or algorithm prototyping.

  • Experience working with ADC data, digitizers, detector waveforms, spectra, or event-based sensor data.

  • Experience with secure boot, firmware update mechanisms, device provisioning, certificates, encryption, or embedded cybersecurity.

  • Experience with connectivity protocols such as MQTT, TCP/IP, BLE, Wi-Fi, or cellular, or integrating embedded firmware with Linux/cloud-connected systems.

  • Experience with automated testing, CI/CD pipelines, static analysis, or code quality tools for embedded software.

  • Experience in regulated, industrial, scientific instrumentation, medical, life sciences, or other high-reliability product environments.

Desired Attributes
  • Deep technical curiosity and a hands-on approach to solving embedded problems involving sensors, electronics, and real-world measurement data.

  • Ability to work independently while collaborating effectively with cross-functional teams.

  • Strong ownership mindset with attention to quality, reliability, and long-term maintainability.

  • Comfortable working in a fast-paced engineering environment with evolving requirements.

  • Ability to learn quickly from experienced firmware engineers and radiation scientists and contribute to strong firmware development practices.

Example Technology Stack
  • Languages: C, C++, Python

  • RTOS: FreeRTOS, ThreadX, Zephyr, or similar

  • Chipsets: Renesas RA, RX, RL78, RZ, or similar embedded microcontroller platforms

  • Tools: Renesas e² studio, IAR, GCC, JTAG/SWD debuggers, Git, Python-based test/analysis tools

  • Interfaces: SPI, I2C, UART, USB, CAN, Ethernet, GPIO, ADC

  • Radiation/Measurement: detector calibration, spectra/event data, pulse/count processing, detector diagnostics

  • Cloud/Edge: AWS IoT Greengrass, AWS IoT Core, MQTT (plus)

What Thermo Fisher Scientific employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom