Your Impact
You will be working on sophisticated, industrial, real time operating systems involving real time data acquisition and post processing of data for analysis and reports. This team of engineers develops innovative monitoring systems used for transformer monitoring at electrical sub stations.
Here’s where you’ll demonstrate your proficiencies:
- Embedded systems, firmware development with specific focus on Linux and real time embedded systems.
- Experience with Ubuntu Kylin Industrial, openEuler, and MLPS Level 3/4
- Experience with .NET development
- Developing advance firmware solutions for critical substation monitoring and diagnosis requirements.
- Coordinate firmware development activities and lead quality and scheduling projects.
- Supports development team and provides needed pre-qualification and verification testing. Ensure compliance to all regulatory needs for the product and business
- Support product transition to mass manufacturing
- Supports sales and support team post release to timely meet customer needs.
- Follow software development and validation processes and continuously improve them.
- Use Scrum Agile Methodology for software development.
- Experience or trailblazer in using AI tools in development
Qualifications
The successful candidate will be able to demonstrate the following skills and experience:
• Bachelors or Masters in Electrical / Electronics Engineering or Computer Science or equivalent
• Proven expertise in the design and support of embedded systems architecture in a real time, Linux environment (High Speed Serial IO, Embedded Processor).
• Experience with DSP programming. Familiar with use of Matlab.
• Expertise in Embedded C/C++. Code development in a hard real time, multi-threaded environment.
• Hands on experience in programming different peripheral interfaces like UART, I2C, SPI etc.
• Strong analytic and problem-solving skills for root cause determination and fixing issues.
Preferred Skills:
- Knowledge of unit test frameworks for Linux.
- Programming experience with device drivers.
- Experience in fault location, fault recording and/or power quality.
- Knowledge of Cyber security implementation
Ralliant Corporation Overview
Ralliant, originally part of Fortive, now stands as a bold, independent public company driving innovation at the forefront of precision technology. With a global footprint and a legacy of excellence, we empower engineers to bring next-generation breakthroughs to life — faster, smarter, and more reliably. Our high-performance instruments, sensors, and subsystems fuel mission-critical advancements across industries, enabling real-world impact where it matters most. At Ralliant we’re building the future, together with those driven to push boundaries, solve complex problems, and leave a lasting mark on the world.
About the TeamSkills Required
- Bachelor’s or Master’s degree in Electrical Engineering, Electronics Engineering, Computer Science, or equivalent
- Expertise designing and supporting embedded systems architecture in real-time Linux environments
- Experience with high-speed serial I/O and embedded processors
- Experience with DSP programming and familiarity with MATLAB
- Expertise in Embedded C and C++ development in hard real-time, multithreaded environments
- Hands-on programming experience with UART, I2C, SPI, and other peripheral interfaces
- Strong analytical and problem-solving skills for root-cause determination and issue resolution
- Experience with Ubuntu Kylin Industrial, openEuler, and MLPS Level 3/4
- Experience with .NET development
- Knowledge of Linux unit-test frameworks
- Programming experience with device drivers
- Experience with fault location, fault recording, or power quality
- Knowledge of cybersecurity implementation
What We Do
Ralliant is a global precision-technology company that designs, develops, manufactures, and services precision instruments and highly engineered products. Its two strategic segments, Test and Measurement and Sensors and Safety Systems, provide instruments, software, sensors, and monitoring solutions for mission-critical applications across electronics, semiconductors, utilities, industrial manufacturing, defense, space, and other advanced technology markets worldwide, helping engineers accelerate innovation and improve the reliability of critical systems.






