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Sr Rf Engineer Jobs in Alabama (NOW HIRING)

Parsons is seeking an exceptionally talented Senior Radar/RF Engineer to join our team! In this role, you will perform modeling and simulation of defensive weapon systems used by peer and near-peer ...

Technical oversight responsibilities for less-senior engineers * Working across domains on complex projects * Architecting and requirements definition for complex RF products * Team lead experience ...

Technical oversight responsibilities for less-senior engineers * Working across domains on complex projects * Architecting and requirements definition for complex RF products * Team lead experience ...

Showing results 41-60

Sr Rf Engineer information

See Alabama salary details

$33.5K

$106.7K

$165.9K

How much do sr rf engineer jobs pay per year?

As of Sep 1, 2026, the average yearly pay for sr rf engineer in Alabama is $106,664.00, according to ZipRecruiter salary data. Most workers in this role earn between $88,400.00 and $126,000.00 per year, depending on experience, location, and employer.

What is a Sr RF engineer?

Sr RF Engineers, or Senior Radio Frequency Engineers, are professionals who design, implement, and optimize wireless communication systems. They work with radio frequency signals and components to ensure reliable transmission and reception for applications such as cellular networks, satellite communications, and wireless devices. Their responsibilities often include system design, troubleshooting, network optimization, and compliance with regulatory standards. Sr RF Engineers typically have extensive experience and may lead teams or mentor junior engineers. They play a crucial role in advancing wireless technology and maintaining high-quality communications infrastructure.

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

To thrive as a Sr RF Engineer, you need deep expertise in radio frequency engineering, signal processing, and wireless communication systems, usually supported by a degree in electrical engineering or a related field. Familiarity with RF simulation tools (such as CST, HFSS, or ADS), network analyzers, and relevant certifications like FCC or IEEE are typically required. Strong problem-solving skills, attention to detail, and effective collaboration set standout professionals apart in this role. These skills ensure reliable RF system performance, compliance with technical standards, and successful project delivery in dynamic technology environments.

What are some typical challenges Sr RF engineers face when managing large-scale wireless network deployments?

Sr RF Engineers often encounter challenges such as mitigating signal interference, ensuring optimal coverage in complex environments, and adapting designs to evolving regulatory standards. Managing multiple project timelines and coordinating with cross-functional teams—like network planners, field technicians, and software specialists—are also common aspects of the role. Effective problem-solving, strong communication, and staying current with RF technologies are essential to successfully overcoming these challenges.

What is the difference between Sr Rf Engineer vs RF Engineer?

AspectSr Rf EngineerRF Engineer
CredentialsBachelor's or Master's in Electrical Engineering, certifications like FCC or RF-specific coursesBachelor's in Electrical or Electronics Engineering, similar certifications often required
Work EnvironmentDesign, testing, and troubleshooting RF systems in labs or fieldSimilar environments, focusing on RF system implementation and testing
Industry UsageTelecommunications, aerospace, defense, wireless networksTelecommunications, consumer electronics, wireless communication
Role FocusAdvanced RF design, system optimization, technical leadershipRF system setup, testing, and basic troubleshooting

The main difference between a Sr Rf Engineer and an RF Engineer lies in experience and responsibilities. Sr Rf Engineers typically handle advanced design and optimization tasks, often leading projects, while RF Engineers focus on implementation and testing. Both roles require similar educational backgrounds and certifications, but the senior role involves more strategic and technical leadership in RF projects.

What are popular job titles related to Sr Rf Engineer jobs in Alabama?

For Sr Rf Engineer jobs in Alabama, the most frequently searched job titles are:

What job categories do people searching Sr Rf Engineer jobs in Alabama look for?

The top searched job categories for Sr Rf Engineer jobs in Alabama are:

What cities in Alabama are hiring for Sr Rf Engineer jobs?

Cities in Alabama with the most Sr Rf Engineer job openings:

Infographic showing various Sr Rf Engineer job openings in Alabama as of August 2026, with employment types broken down into 94% Full Time, 2% Part Time, 1% Temporary, and 3% Contract. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $106,664 per year, or $51.3 per hour.

RF/Radar Engineer - Senior

Phased n Research, Inc.

Huntsville, AL • On-site

Full-time

Posted 21 days ago


Job description

RF/Radar Engineer – SeniorLocation: Huntsville, AL; Denver, COClearance: Active Top Secret/SCIPosition Type: Full-TimeAbout the RolePhased n Research is seeking a senior RF/Radar Engineer to provide radar engineering expertise supporting the production of technically defensible threat-system parametrics for U.S. Air Force intelligence and mission-planning applications. The engineer will perform advanced radar analysis, develop and apply physics-based engineering methods, and provide technical review and adjudication of complex radar assessments derived from incomplete, inconsistent, or indirect intelligence information.You will work with radar engineers, intelligence analysts, and software developers to translate radar engineering tradecraft into repeatable, AI-assisted analytic workflows. The role combines hands-on threat-system analysis with engineering method development, modeling and simulation, algorithm development and validation, and technical oversight of automated radar-analysis results.Radar Engineering & Threat Analysis ResponsibilitiesPerform advanced radar engineering analysis and support threat-data package production by characterizing foreign radar systems, operating modes, and mission-planning threat parameters.Derive and assess radar parameters spanning transmitter, antenna, receiver, waveform, PRI/PRF, signal processing, Doppler and velocity performance, integration, scan behavior, detection performance, and related system characteristics.Apply radar equations, signal-processing relationships, antenna theory, electromagnetic principles, and physics-based modeling to derive technically defensible parameters when source information is incomplete, inconsistent, or indirect.Analyze and reconcile intelligence reporting, signal measurements, technical drawings, schematics, databases, modeled performance, and other approved technical sources.Evaluate parameter dependencies and cross-parameter relationships to identify technically inconsistent, unsupported, or operationally implausible results.Characterize mode-specific radar behavior and determine the engineering implications of incomplete or conflicting source information.Document engineering assumptions, uncertainty, confidence, source provenance, technical rationale, and limitations associated with calculated or assessed parameters.Perform technical review and adjudication of complex, novel, low-confidence, or conflicting radar assessments and provide engineering guidance to less-experienced analysts and engineers.Modeling, Simulation & Engineering Method Development ResponsibilitiesDevelop, apply, and validate physics-based radar models, engineering algorithms, and computational methods supporting radar threat characterization and parametric analysis.Develop MATLAB and/or Python algorithms, models, and analysis tools supporting radar performance, antenna, receiver, waveform, signal-processing, and related engineering assessments.Establish governing engineering relationships, required inputs, parameter dependencies, boundary conditions, assumptions, and applicability limits for priority radar parameter families.Develop engineering reference calculations, representative test cases, expected results, and acceptance tolerances used to verify manual and automated radar-analysis methods.Evaluate modeled and calculated results against source information, empirical data, reported performance, and independent engineering predictions; investigate and disposition significant fidelity gaps.Maintain technical and configuration traceability of approved engineering methods, algorithms, models, reference cases, and acceptance criteria.·AI-Assisted Analytic Workflow ResponsibilitiesDefine radar engineering methods, decision logic, parameter dependencies, consistency checks, confidence criteria, and exception conditions for implementation in automated engineering playbooks and analytic workflows.Translate radar SME tradecraft into structured, repeatable engineering methods with defined inputs, calculations, outputs, assumptions, and technical-review triggers.Establish engineering reference cases, expected results, acceptance tolerances, and validation criteria for automated radar-analysis workflows.Verify that implemented workflows preserve approved engineering logic and reproduce reference results within established tolerances.Review and adjudicate technically significant discrepancies between automated results, source information, engineering models, and approved reference calculations.Establish engineering criteria for determining when automated results are technically supportable, require additional engineering review or information, or cannot be defensibly determined.Support regression testing and technical approval of workflow changes following updates to engineering methods, algorithms, models, or source information.·Collaboration & Program Execution ResponsibilitiesServe as a senior radar engineering resource for threat-system analysis, engineering-method development, technical validation, and resolution of complex radar-analysis issues.Prepare and present technical analyses, engineering recommendations, and technical-risk assessments to U.S. Air Force stakeholders.Represent PnR in technical interchange meetings (TIMs), engineering reviews, working groups, and technical discussions with Government and industry partners.Collaborate with intelligence analysts and software/AI developers to ensure approved radar engineering methods are accurately represented in automated analytic workflows.Provide technical review, guidance, and mentorship to junior and mid-level radar engineers performing threat-parametric analysis and validation.Support technical planning, prioritization, and resolution of engineering issues affecting production quality, schedule, and delivery.·Position RequirementsBachelor's degree in Electrical Engineering, Computer Engineering, Physics, or a closely related technical discipline with 8+ years of relevant experience, or a Master's degree with 6+ years of relevant experience.Demonstrated experience in radar engineering or radar-system analysis, with supporting experience in one or more areas such as RF engineering, signal processing, electromagnetics, or modeling and simulation.Experience applying physics-based engineering methods and analytical techniques to radar, RF, or related system-performance problems.Proficiency with MATLAB and/or Python for engineering analysis, modeling, simulation, or algorithm development.Demonstrated ability to independently perform complex technical analyses, identify and resolve technically ambiguous or inconsistent results, and document defensible engineering conclusions.Ability to communicate complex technical concepts and results clearly to engineering, intelligence, and Government stakeholders.Active Top Secret/SCI clearance required.Preferred QualificationsExperience performing radar performance analysis, modeling and simulation, signal-processing analysis, antenna/receiver/waveform analysis, or threat-system characterization.Experience analyzing foreign radar systems or supporting scientific and technical intelligence (S&TI), Department of Defense, or Intelligence Community missions.Experience deriving or assessing radar-system parameters from incomplete, indirect, or conflicting technical information.Experience developing or validating engineering methods, algorithms, models, reference calculations, test cases, or acceptance criteria.Familiarity with, or experience applying, ICD 203 and ICD 206 principles to analytic tradecraft and technical intelligence production.Familiarity with CSDB, EWIRDB, JMPS, TERF, USELMS, or related threat-parametric, mission-planning, or intelligence-production workflows.Experience validating automated engineering analyses against physics-based models, reference calculations, or established technical criteria.Familiarity with AI/ML-assisted engineering, automated analytic workflows, or validation of AI-generated technical results.