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Radar Engineer Jobs in Seattle, WA (NOW HIRING)

Kapta is seeking a Principal Antenna Engineer to lead the development of our radar antenna systems. The antenna engineer will be responsible for design, build and test of high frequency and ...

Kapta is seeking a Principal Antenna Engineer to lead the development of our radar antenna systems. The antenna engineer will be responsible for design, build and test of high frequency and ...

Kapta is seeking a Principal Antenna Engineer to lead the development of our radar antenna systems. The antenna engineer will be responsible for design, build and test of high frequency and ...

Software Engineer II, Embedded

Kirkland, WA · On-site +1

$114K - $170K/yr

Radar Reinvented. Echodyne offers the world's first compact solid-state true beam-steering radar ... Echodyne is seeking a Software Engineer II, Embedded to design and produce radar equipment ...

Mechanical Engineer II

Kirkland, WA · On-site

$104K - $155K/yr

Radar Reinvented. Echodyne offers the world's first compact solid-state true beam-steering radar ... Echodyne is seeking a Mechanical Engineer II to join our fast-growing team. RESPONSIBILITIES

Software Engineer II, Embedded

Kirkland, WA

$149K - $196K/yr

Echodyne is seeking a Software Engineer II, Embedded to design and produce radar equipment subsystems composed of Echodyne's industry-leading radars. In this role, you will engage with an experienced ...

Principal DevOps Engineer

Kirkland, WA · On-site

$149K - $224K/yr

Radar Reinvented. Echodyne offers the world's first compact solid-state true beam-steering radar ... Engineer to lead the design and implementation of secure development and deployment practices ...

SDET

Redmond, WA · On-site

Test Management Tools - Radar, RQM, HP ALM, Jira, and Test Rail * Programming Languages - Java, Python, Java Script, SQL * Performance Testing Tools - JMeter, Blaze Meter & Rational Performance ...

New

Senior FPGA Engineer

Redmond, WA · On-site

$215K - $250K/yr

Work collaboratively with radar algorithm, hardware, software and mechanical engineers to build reliable, embedded firmware for the payload * Evaluate implementation/maintenance, complexity and ...

Test Management Tools - Radar, RQM, HP ALM, Jira, and Test Rail * Programming Languages - Java, Python, Java Script, SQL * Performance Testing Tools - JMeter, Blaze Meter & Rational Performance ...

New

Senior Mechanical Engineer

Kirkland, WA · On-site

$124K - $187K/yr

Radar Reinvented. Echodyne offers the world's first compact solid-state true beam-steering radar ... Senior-engineer level experience in mechanical engineering design for electro-mechanical products ...

Senior FPGA Engineer

Redmond, WA · On-site

$215K - $250K/yr

Work collaboratively with radar algorithm, hardware, software and mechanical engineers to build reliable, embedded firmware for the payload * Evaluate implementation/maintenance, complexity and ...

Showing results 41-60

Radar Engineer information

See Seattle, WA salary details

$87.6K

$91.6K

$94.5K

How much do radar engineer jobs pay per year?

As of Sep 1, 2026, the average yearly pay for radar engineer in Seattle, WA is $91,611.00, according to ZipRecruiter salary data. Most workers in this role earn between $89,900.00 and $93,300.00 per year, depending on experience, location, and employer.

What does a radar engineer do?

A radar engineer works to design, enhance, or test the accuracy of radar systems. In this career, your duties vary depending on the industry. You may develop radar for weather forecast or tracking purposes, or you could work for the military or a private company in the defense industry. Regardless of your employer, your responsibilities as a radar engineer focus on the technical aspects of a radar system, such as testing of sensor instrument devices or the creation of an algorithm to continuously ensure accuracy and give users control of how they view the system’s data.

What does a radar engineer do?

A Radar Engineer designs, develops, tests, and maintains radar systems used for detecting and tracking objects such as aircraft, ships, or weather formations. They work with both hardware and software components to ensure radar systems function accurately and reliably. Their responsibilities often include signal processing, system integration, and troubleshooting technical issues. Radar Engineers are employed in industries such as defense, aerospace, meteorology, and automotive safety systems.

What are some typical challenges radar engineers face when working on new radar system designs?

Radar Engineers often encounter challenges such as balancing performance requirements with size, weight, and power constraints, especially when designing systems for aerospace or defense applications. Integrating the latest signal processing techniques while ensuring system reliability and meeting strict regulatory standards can also be complex. Additionally, Radar Engineers regularly collaborate with multidisciplinary teams—including software developers, hardware engineers, and project managers—to troubleshoot issues and implement innovative solutions throughout the development cycle.

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

To thrive as a Radar Engineer, you need a solid background in electrical engineering, signal processing, and electromagnetics, usually supported by a relevant engineering degree. Familiarity with simulation software (like MATLAB or CST), hardware testing tools, and industry-specific certifications such as those from IEEE are commonly required. Strong analytical thinking, problem-solving, and effective teamwork distinguish top performers in this role. These skills are crucial for designing, optimizing, and troubleshooting radar systems that meet stringent performance and safety standards.

What is the difference between Radar Engineer vs RF Engineer?

AspectRadar EngineerRF Engineer
Required CredentialsBachelor's or higher in Electrical Engineering, specialized training in radar systemsBachelor's or higher in Electrical or Electronics Engineering, RF design certifications
Work EnvironmentDefense, aerospace, military, or research labsTelecommunications, wireless, consumer electronics industries
Industry UsageDesign and development of radar systems and sensorsDesign and testing of radio frequency components and systems

Radar Engineers focus on designing and developing radar systems used in defense, aerospace, and research. RF Engineers work on radio frequency components for wireless and communication devices. While both roles require knowledge of RF principles, Radar Engineers specialize in radar-specific technologies, whereas RF Engineers have a broader focus on RF systems across various industries.

How much would a radar engineer make?

Radar engineers typically earn a median annual salary of around $100,000 to $130,000, depending on experience, education, and location. Senior roles or those with specialized skills in signal processing or systems integration can earn higher salaries, often exceeding $150,000 annually.

What are the most commonly searched types of Radar Engineer jobs in Seattle, WA?

The most popular types of Radar Engineer jobs in Seattle, WA are:

What are popular job titles related to Radar Engineer jobs in Seattle, WA?

For Radar Engineer jobs in Seattle, WA, the most frequently searched job titles are:

What job categories do people searching Radar Engineer jobs in Seattle, WA look for?

The top searched job categories for Radar Engineer jobs in Seattle, WA are:

Infographic showing various Radar Engineer job openings in Seattle, WA as of August 2026, with employment types broken down into 91% Full Time, 5% Part Time, and 4% Contract. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution, with an average salary of $91,611 per year, or $44 per hour.

Director of Manufacturing - Spaceborne Radar Payloads

Kapta Space

Redmond, WA • On-site

Full-time

Posted 14 days ago


Job description

Kapta Space, a VC-funded early-stage startup in Seattle, WA, is breaking new ground in Geospatial Intelligence.  Our technology centers around a proven, scalable electronically-steered radar for sophisticated spaceborne applications such as earth observation using synthetic aperture radar (SAR) techniques, as well as enabling advanced defense missions such as target tracking on the ground and in the air.

Kapta is seeking a Director of Manufacturing – Spaceborne Radar Payloads to lead the manufacturing strategy and execution from production planning and material flow through assembly, integration, environmental testing, qualification, and final delivery. The ideal candidate combines deep hands-on experience in high-reliability electronics manufacturing with the leadership skills required to scale production while maintaining the rigorous quality, traceability, and configuration-control standards required for space hardware.

The Director of Manufacturing will work closely with Engineering, Quality, Supply Chain, Program Management, and Operations leadership to transition products from development into repeatable, scalable production.

Role

Manufacturing Leadership

  • Lead all manufacturing activities for space-qualified radar, RF, microwave, digital, and electronic assemblies.
  • Develop and execute the manufacturing strategy to support current programs and future production growth.
  • Establish manufacturing capacity, staffing, equipment, tooling, and facility requirements.
  • Build a high-performing manufacturing organization with clear accountability, processes, and performance metrics.
  • Establish production schedules and ensure on-time delivery of hardware to program milestones.
  • Drive continuous improvement in throughput, yield, cycle time, labor efficiency, and manufacturing cost.
  • Manage all facilities maintenance and sustainability initiatives ensuring reliable and repeatable business operations infrastructure across all departmental functions.

Space Hardware Production

  • Oversee the manufacturing of complex, high-reliability electronic assemblies and systems from prototype through qualification and production.
  • Establish robust processes for PCB assembly, electronic box builds, RF/microwave assemblies, harnesses, mechanical integration, and system-level integration and test.
  • Ensure manufacturing processes are appropriate for space-qualified hardware, including workmanship, contamination control, ESD control, handling, cleanliness, and configuration management.
  • Support production of engineering development units, qualification units, flight units, and spares.
  • Partner with engineering to develop Design for Manufacturability (DFM), Design for Assembly (DFA), and Design for Test (DFT) practices.

Production Process & Operational Excellence

  • Develop standardized work instructions, manufacturing processes, travelers, routings, tooling, fixtures, and work-cell layouts.
  • Implement lean manufacturing and continuous-improvement methodologies appropriate for a range of medium-to-high volume, high-complexity space hardware.
  • Establish manufacturing KPIs including first-pass yield, schedule adherence, cycle time, labor hours, rework, scrap, and warranty costs.
  • Identify production bottlenecks and implement corrective actions.
  • Develop scalable processes that can transition from prototype production to higher-rate manufacturing without compromising reliability.

Quality & Mission Assurance

  • Partner closely with Quality and Mission Assurance to maintain compliance with applicable space and aerospace quality requirements.
  • Ensure manufacturing operations comply with applicable workmanship standards and customer requirements, such as AS9100, NASA, ECSS, IPC, J-STD-001, and related space/aerospace standards, as applicable.
  • Establish strong process controls, inspection points, acceptance criteria, and manufacturing records.
  • Participate in root-cause investigations and corrective/preventive actions.
  • Maintain complete hardware traceability and configuration control throughout the manufacturing process.
  • Support customer audits, qualification activities, failure investigations, and production readiness reviews.

Supply Chain & Supplier Management

  • Partner with Supply Chain and Engineering to establish manufacturing requirements for critical suppliers.
  • Identify and mitigate manufacturing risks associated with long-lead, obsolete, constrained, or single-source components.
  • Support qualification and development of PCBA, machining, plating, RF electronics assembly, and other specialty suppliers.
Required Qualifications
  • Bachelor’s degree in Manufacturing Engineering, Mechanical Engineering, Electrical Engineering, Industrial Engineering, or a related technical field.
  • 10+ years of experience in electronics, aerospace, defense, space, RF, or other high-reliability manufacturing environments.
  • 5+ years of manufacturing leadership or management experience.
  • Demonstrated experience manufacturing complex electronic assemblies or systems.
  • Experience taking hardware from prototype/development through qualification and production.
  • Strong understanding of PCB assembly, electronic integration, harnessing, mechanical assembly, and system-level integration.
  • Experience with manufacturing processes for high-reliability or mission-critical hardware.
  • Experience implementing manufacturing processes, documentation, tooling, fixtures, and production controls.
  • Strong understanding of configuration management, quality systems, nonconformance management, and hardware traceability.
  • Demonstrated ability to build and lead technical manufacturing teams.
  • Strong analytical, problem-solving, communication, and cross-functional leadership skills.
  • Eligible to obtain and maintain an active U.S. Top Secret/SCI security clearance.
Preferred Qualifications
  • Experience manufacturing space-qualified radar, RF, microwave, phased-array, AESA, or related sensing electronics.
  • Experience with RF/microwave electronics and high-frequency assemblies.
  • Experience with military, defense, or commercial satellite programs.
  • Experience with environmental qualification and acceptance testing, including thermal cycling, thermal vacuum, vibration, shock, EMC/EMI, and related testing.
  • Experience with NASA, DoD, or commercial space customer requirements.
  • Familiarity with AS9100, IPC-A-610, J-STD-001, IPC/WHMA-A-620, NASA workmanship standards, ECSS, and related requirements.
  • Experience with ERP/MRP systems and production planning.
  • Experience scaling manufacturing organizations and production capacity.
  • Experience with vertically integrated manufacturing environments.
  • Lean/Six Sigma or other continuous-improvement experience.
Leadership Expectations

The Director of Manufacturing will be expected to be a hands-on operational leader who can move comfortably between strategic planning and the factory floor.

The successful candidate will:

  • Build a culture of quality, accountability, urgency, and continuous improvement.
  • Develop manufacturing talent and create clear career paths for technicians, engineers, supervisors, and managers.
  • Establish a data-driven operating cadence for production performance.
  • Proactively identify manufacturing risks before they affect program schedules.
  • Make sound decisions balancing quality, schedule, cost, and technical risk.
  • Work effectively in a fast-paced environment where products and processes are continually evolving.
  • Maintain a strong focus on delivering reliable hardware on schedule.
Success in the First 12 Months

The successful candidate will be expected to:

  • Establish clear manufacturing processes, ownership, and performance metrics.
  • Assess current production capacity, staffing, equipment, tooling, and facility constraints.
  • Improve production predictability and schedule adherence.
  • Establish a scalable production-readiness process for new products.
  • Strengthen manufacturing documentation, traceability, and configuration control.
  • Build and develop a strong manufacturing organization.
  • Establish a roadmap for increasing production capacity while maintaining space-grade quality and reliability.
  • Partner with Engineering to improve DFM/DFA and accelerate the transition from development to production.
  • Create a manufacturing organization capable of supporting the company’s next stage of growth.
The estimated salary range for this role reflects base pay only and is influenced by a variety of factors. Actual offers may vary based on—though not limited to—a candidate’s experience, education or training, specialized expertise, and the needs of the business. In addition to base pay, full-time roles include competitive equity grants that reward innovation, impact, and long-term growth. Our total compensation philosophy is designed to recognize excellence while fostering a culture of collaboration, curiosity, and shared success.
U.S. Citizenship, Lawful Permanent Residency, or Refugee/Asylee Status Required
To conform to U.S. Government space technology export regulations, including the International Traffic in Arms Regulations (ITAR), Kapta Employees must be U.S. citizens, lawful U.S. permanent residents (i.e., current Green Card holder), or lawfully admitted into the U.S. as a refugee or granted asylum, or be eligible to obtain the required authorizations from the U.S. Department of State or Commerce as applicable.

Kapta Space is committed to a diverse and inclusive workplace. We believe that diversity drives innovation, strengthens our team, and broadens our capabilities. We are an equal opportunity employer and do not discriminate on the basis of race, national origin, gender, gender identity, sexual orientation, protected veteran status, disability, age, or other legally protected status. We welcome applicants from all backgrounds and encourage individuals from underrepresented groups to apply.

Kapta Space does not engage with external recruiters or agencies without prior written agreement. If you are a recruiter (individual or agency) and wish to engage with Kapta Space for talent acquisition, please email hr@kaptaspace.com.

We may use artificial intelligence (AI) tools to assist our recruitment team but do not replace human judgment. All final hiring decisions are made by humans.