2026 Fulltime - Raytheon RF Digital Design Integration & Test Engineer I (Onsite)
RTXAbout the role
Date Posted:
2026-05-28Country:
United States of AmericaLocation:
US-TX-MCKINNEY-513WD ~ 2501 W University Dr ~ WING D BLDGPosition Role Type:
OnsiteU.S. Citizen, U.S. Person, or Immigration Status Requirements:
The ability to obtain and maintain a U.S. government issued security clearance is required. U.S. citizenship is required, as only U.S. citizens are eligible for a security clearanceSecurity Clearance Type:
DoD Clearance: SecretSecurity Clearance Status:
Active and existing security clearance required after day 1At Raytheon, the foundation of everything we do is rooted in our values and a higher calling – to help our nation and allies defend freedoms and deter aggression. We bring the strength of more than 100 years of experience and renowned engineering expertise to meet the needs of today’s mission and stay ahead of tomorrow’s threat. Our team solves tough, meaningful problems that create a safer, more secure world.
What You Will Do:
- In this role, you will contribute to the design, development, and integration of advanced digital hardware and embedded processing solutions.
- You will support ASIC digital core and FPGA FW development by implementing and verifying digital architectures, developing models and algorithms in MATLAB, and assisting with system-level integration activities.
- You will develop and maintain SystemVerilog/UVM verification environments, define and execute verification strategies—including constrained-random testing and coverage closure—and perform design reviews to identify functional and architectural risks early.
- You will drive pre-silicon validation through simulation, lint, CDC, and STA awareness, and lead post-silicon bring-up and debug in lab environments.
- You will serve as an Integration & Test lead for ASIC product development, creating test cases and evaluating early hardware performance. This includes analyzing high-speed ASIC behavior using MATLAB and Python scripts, supporting SERDES and other high-speed interfaces, and working with IIC, DAC/ADC IPs.
- You will debug complex issues spanning ASIC digital cores, FPGA FW, firmware, and hardware systems, and use advanced test equipment such as network analyzers, phase-noise analyzers, and high-speed oscilloscopes.
- You will calculate key performance parameters such as SINAD, jitter, bit-error rate, and intermodulation products, while developing automation tools using Python and scripting languages to improve regression efficiency and analysis. This role requires close collaboration with design, systems, and hardware teams to deliver robust, high-performance electronic systems.
Qualifications You Must Have:
- Bachelor's degree in Electrical Engineering or related Science, Technology, Engineering and Mathematics (STEM) major.
- The ability to obtain and maintain a U.S. government issued security clearance is required.
- U.S. citizenship is required, as only U.S. citizens are eligible for a security clearance.
Experience may be obtained through on‑the‑job experience, research, coursework, or projects.
Qualifications We Prefer:
- Demonstrated experience through, internships or senior project, in RF measurements, FPGA interface, Integration and Test, Matlab
- Familiarity with Xilinx, Altera or Microsemi/Microchip FPGAs.
- · Experience with ASIC digital core development and FPGA firmware implementation
- Familiarity with SystemVerilog and UVM‑based verification environments
- Understanding of constrained‑random testing, functional coverage, and verification planning
- Knowledge of FPGA validation methods including simulation, lint, CDC, and STA concepts
- Hands‑on experience with hardware debugging and laboratory testing
- Ability to debug issues spanning ASIC logic, FPGA firmware, embedded firmware, and hardware systems, Windows based PC networking
- Experience analyzing high‑speed ASIC or FPGA performance using MATLAB and Python
- Knowledge of high‑speed interfaces such as SERDES‑based systems, IIC, and DAC/ADC
- Understanding of performance metrics such as SINAD, jitter, BER, and intermodulation
- Familiarity with lab instrumentation (e.g., network analyzers, phase‑noise analyzers, high‑speed oscilloscopes)
- Ability to create automation tools or analysis scripts in Python or similar scripting languages
- Experience collaborating with cross‑functional teams including design, systems, and hardware engineering
What We Offer:
Our values drive our actions, behaviors, and performance with a vision for a safer, more connected world. At
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