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Radar Signal Processing Engineer Jobs in Utah (NOW HIRING)

Software Engineer Location: Salt Lake City, UT Employment: Temp to Perm (12 months) Industry ... Working knowledge of signal processing and control systems. * Strong communication skills and ...

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Radar Signal Processing Engineer information

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$91.5K

$119.5K

$134.7K

How much do radar signal processing engineer jobs pay per year?

As of Aug 21, 2026, the average yearly pay for radar signal processing engineer in Utah is $119,486.00, according to ZipRecruiter salary data. Most workers in this role earn between $113,800.00 and $129,300.00 per year, depending on experience, location, and employer.

What does a radar signal processing engineer do?

As a radar signal processing engineer, your responsibilities involve the development and implementation of radar systems. Additional duties are to research and design new algorithms to improve signal processing. You are responsible for modeling and simulating system performance as well as testing the system. You then analyze test results and provide assessment and resolutions to discrepancies. You work with a team to conduct design review and combine efforts to meet and exceed customer requirements. Another important aspect of this job is to ensure the system is compliant with all regulations.

What does a radar signal processing engineer do?

A Radar Signal Processing Engineer designs, develops, and implements algorithms and systems for processing signals received by radar systems. Their work involves extracting meaningful information such as object detection, tracking, and classification from raw radar data. They use mathematical and computational techniques to enhance radar performance, reduce noise, and interpret complex signals. This role is critical in industries like defense, aerospace, automotive, and weather monitoring, where radar technology is essential.

What are the key skills and qualifications needed to thrive as a radar signal processing engineer, and why are they important?

A Radar Signal Processing Engineer should possess a strong background in electrical engineering, signal processing theory, and mathematics, typically with a relevant bachelor's or master's degree. Experience with tools such as MATLAB, Python, C/C++, and familiarity with simulation environments and hardware-in-the-loop testing are commonly required, along with knowledge of radar systems and possibly security clearance. Analytical thinking, problem-solving abilities, and effective communication are critical soft skills to excel in multidisciplinary teams. These skills and qualifications are crucial for developing, optimizing, and implementing complex radar algorithms that ensure high-performance and reliable systems.

What are some common challenges faced by radar signal processing engineers when working on real-world systems?

Radar Signal Processing Engineers often encounter challenges such as mitigating interference and clutter in complex environments, optimizing algorithms for real-time performance, and ensuring signal integrity amidst hardware limitations. Collaboration with hardware engineers and system architects is crucial, as signal processing solutions must integrate seamlessly with physical radar systems. Staying updated with the latest advancements in algorithms and simulation tools can also help tackle these challenges effectively.

What is the difference between Radar Signal Processing Engineer vs RF Engineer?

AspectRadar Signal Processing EngineerRF Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, Signal Processing, or related fieldsBachelor's or Master's in Electrical Engineering, RF Engineering, or related fields
Work EnvironmentDesigning and analyzing radar signal algorithms, testing in labs or fieldDesigning RF circuits, testing antennas, working in labs or manufacturing
Industry UsageDefense, aerospace, military radar systemsWireless communications, radar, satellite systems

Radar Signal Processing Engineers focus on developing algorithms to interpret radar signals, while RF Engineers work on designing and optimizing radio frequency hardware. Both roles require electrical engineering backgrounds but differ in their core responsibilities and work environments.

What are the most commonly searched types of Radar Signal Processing Engineer jobs in Utah?

The most popular types of Radar Signal Processing Engineer jobs in Utah are:

What job categories do people searching Radar Signal Processing Engineer jobs in Utah look for?

The top searched job categories for Radar Signal Processing Engineer jobs in Utah are:

What are popular job titles related to Radar Signal Processing Engineer jobs in UT?

For Radar Signal Processing Engineer jobs in UT, the most frequently searched job titles are:

Infographic showing various Radar Signal Processing Engineer job openings in Utah as of August 2026, with employment types broken down into 1% As Needed, 74% Full Time, 21% Part Time, 1% Temporary, 2% Contract, and 1% Nights. Highlights an 92% Physical, 3% Hybrid, and 5% Remote job distribution, with an average salary of $119,486 per year, or $57.4 per hour.

BCI Software Team Lead

Blackrock Neurotech

Salt Lake City, UT • On-site

Full-time

Re-posted 17 days ago


Job description

Job Summary:
Blackrock Neurotech is a pioneering company focused on brain-computer interfaces that enhance human capabilities. The Software Team Lead will oversee a team of engineers, translating innovative research into reliable software systems while ensuring compliance with regulatory standards and collaborating with various interdisciplinary teams.
Responsibilities:
• Lead and mentor a team of 5–8 engineers while actively contributing to the codebase
• Own system architecture and technical direction for real-time BCI application software
• Design and maintain low-latency, high-reliability streaming signal-processing pipelines
• Ensure deterministic performance across CPU, GPU, and/or FPGA-accelerated components
• Strengthen cybersecurity and reliability of connected medical-device software systems
• Define and enforce engineering standards, design review processes, and best practices
• Drive software readiness for clinical studies, trials, and regulated device environments
• Balance research prototyping with production-grade software development and long-term maintainability
• Partner closely with neuroscientists on signal processing and algorithm requirements
• Collaborate with hardware and firmware teams on system integration and performance
• Work with clinical teams on study design, trial software needs, and deployment readiness
• Coordinate with Regulatory and Quality teams on documentation, traceability, and verification requirements
Qualifications:
Required:
• 10+ years combined education and experience in software engineering, with at least 3 years building production software in the field
• 3+ years leading or managing engineering teams, with demonstrated success running teams through hiring, mentorship, goal-setting, and performance management
• Proven track record of shipping production software in real-time, embedded, or safety-critical domains
• Experience developing software for, or within, a regulated environment (e.g., for medical device, ISO 13485, FDA QSR/QMSR, or equivalent)
• Demonstrated ability to define and communicate software architecture for complex, multi-component systems to both technical and non-technical stakeholders
• Strong command of real-time architectures, data streaming, and signal processing, including determinism, latency constraints, and resource management
• Proficiency in real-time and/or embedded software development
• Hands-on proficiency in Python for data pipelines, test automation, and prototyping
• Working experience with high-performance compute for low-latency signal processing using GPU (Metal, CUDA, OpenCL), FPGA, or equivalent
• Familiarity with cybersecurity principles for networked or connected medical device software (threat modeling, secure coding practices, vulnerability management)
• Ownership mindset that takes accountability for individual, team, and department outcomes and follows problems through to resolution
• Leads by example, balancing hands-on technical contribution with mentorship and people leadership rather than choosing one over the other
• Sound technical judgment under ambiguity, with the discernment to know when to invest in productization versus prototype and when to escalate
• Curiosity and adaptability through active tracking of advances in real-time systems and neurotechnology and adjusts approach as the company, products, and regulatory landscape evolve
• Excellent communicator and cross-functional coordinator across neuroscience, hardware, firmware, clinical, regulatory, and quality partners
Preferred:
• Prior experience building software for brain-computer interfaces, neural recording systems, or closed-loop neurostimulation
• Deep understanding of real-time and multi-threaded systems, including OS-, scheduler-, or kernel-level performance tuning and debugging
• Strong systems thinking with proven ability to tightly integrate software with hardware, firmware, and clinical workflows
• Experience supporting FDA submissions (IDE, 510(k), De Novo) in a technical or engineering leadership role
• Familiarity with IEC 62304 and design-controlled development, including authoring or reviewing software lifecycle and traceability artifacts
• Experience working within clinical study or trial environments, including software deployment to sites, protocol alignment, and safety reporting
• Experience in startup, scale-up, or deep-tech environments with rapidly shifting priorities and lightweight process structure
• Proven ability to balance research prototyping with disciplined productization, taking ideas from early exploration to regulated, shipped systems without losing technical intent
• Track record of mentoring engineers and building high-trust, inclusive teams that perform under pressure and through ambiguity
• Open-source contributions, publications, or conference talks in real-time systems, neurotechnology, signal processing, or medical device software
• Background in neuroscience, biomedical engineering, or related fields enabling fluent collaboration with scientific and clinical partners
• Experience hiring and scaling engineering teams through rapid growth or regulatory transition periods
Company:
Blackrock Neurotech is the platform for brain-computer interface (BCI) technology and manufacturing. Founded in 2008, the company is headquartered in Salt Lake City, USA, with a team of 51-200 employees. The company is currently Growth Stage.