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Kapta Space

Spaceborne radar systems using metasurface antennas

Director of Manufacturing - Spaceborne Radar Payloads

Full-Time
$215k - $250k/yr
Expert
Bachelor's
Redmond, WA, USA
In Person
No H1B Sponsorship
US Citizenship, US Top Secret Clearance Required

About the job

Requirements
  • A bachelor's degree in Manufacturing Engineering, Mechanical Engineering, Electrical Engineering, Industrial Engineering, or a related technical field is required.
  • At least 10 years of experience in electronics, aerospace, defense, space, radio frequency, or other high-reliability manufacturing environments is required.
  • At least 5 years of manufacturing leadership or management experience is required.
  • Demonstrated experience manufacturing complex electronic assemblies or systems is required.
  • Experience taking hardware from prototype or development through qualification and production is required.
  • Strong understanding of printed circuit board assembly, electronic integration, harnessing, mechanical assembly, and system-level integration is required.
  • Experience with manufacturing processes for high-reliability or mission-critical hardware is required.
  • Experience implementing manufacturing processes, documentation, tooling, fixtures, and production controls is required.
  • Strong understanding of configuration management, quality systems, nonconformance management, and hardware traceability is required.
  • Demonstrated ability to build and lead technical manufacturing teams is required.
  • Eligible to obtain and maintain an active U.S. Top Secret/Sensitive Compartmented Information security clearance is required.
  • Applicants must be U.S. citizens, lawful U.S. permanent residents, refugees, asylees, or eligible to obtain applicable export authorizations.
Responsibilities
  • Lead all manufacturing activities for space-qualified radar, radio frequency, microwave, digital, and electronic assemblies.
  • Develop and execute the manufacturing strategy for 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 hardware delivery to program milestones.
  • Drive continuous improvement in throughput, yield, cycle time, labor efficiency, and manufacturing cost.
  • Manage facilities maintenance and sustainability initiatives to ensure reliable business operations infrastructure.
  • Oversee manufacturing of complex, high-reliability electronic assemblies and systems from prototype through qualification and production.
  • Establish processes for printed circuit board assembly, electronic box builds, radio frequency and microwave assemblies, harnesses, mechanical integration, and system-level integration and testing.
  • Ensure processes address workmanship, contamination control, electrostatic discharge control, handling, cleanliness, and configuration management for space-qualified hardware.
  • Support production of engineering development units, qualification units, flight units, and spares.
  • Partner with engineering to develop Design for Manufacturability, Design for Assembly, and Design for Test practices.
  • Develop standardized work instructions, manufacturing processes, travelers, routings, tooling, fixtures, and work-cell layouts.
  • Implement lean manufacturing and continuous-improvement methodologies for medium-to-high-volume, high-complexity space hardware.
  • Establish manufacturing key performance indicators for 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 transition prototype production to higher-rate manufacturing without compromising reliability.
  • Partner 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, including AS9100, NASA, ECSS, IPC, and J-STD-001.
  • Establish process controls, inspection points, acceptance criteria, and manufacturing records.
  • Participate in root-cause investigations and corrective and preventive actions.
  • Maintain hardware traceability and configuration control throughout manufacturing.
  • Support customer audits, qualification activities, failure investigations, and production readiness reviews.
  • 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 printed circuit board assembly, machining, plating, radio frequency electronics assembly, and other specialty suppliers.
  • Develop manufacturing talent and create career paths for technicians, engineers, supervisors, and managers.
  • Establish a data-driven operating cadence for production performance.
  • Identify manufacturing risks before they affect program schedules.
  • Balance quality, schedule, cost, and technical risk in operational decisions.
  • Establish manufacturing processes, ownership, and performance metrics during the first 12 months.
  • Assess 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 Design for Manufacturability and Design for Assembly and accelerate transition from development to production.
Desired Qualifications
  • Experience manufacturing space-qualified radar, radio frequency, microwave, phased-array, electronically scanned array, or related sensing electronics.
  • Experience with radio frequency and 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, electromagnetic compatibility/electromagnetic interference, and related testing.
  • Experience with NASA, Department of Defense, 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 enterprise resource planning or materials requirements planning 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.

About the company

Kapta Space develops spaceborne radar systems for LEO satellites using metasurface antennas to create electronically steerable arrays, enabling high-resolution Earth observation for defense and commercial customers. Its on-orbit sensors perform SAR, InSAR, and GMTI, delivering imagery regardless of weather or daylight. It differentiates by using metasurface ESAs to reduce cost, complexity, and power versus traditional AESAs, led by Echodyne veterans with early DoD funding and seed rounds to accelerate demonstrations. The goal is to build a persistent space-based radar constellation that provides geospatial data for defense and civilian monitoring of infrastructure and land displacement.

Company Size

11-50

Company Stage

Seed

Total Funding

$5M

Headquarters

Seattle, Washington

Founded

2022

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Simplify's Take

What believers are saying

  • DARPA awarded Kapta up to $1.75 million in December 2025 for spaceborne radar.
  • Kapta’s website updated August 6, 2026, signaling active commercial positioning and product progress.
  • The February 2025 seed round added MetaVC, Entrada, and Blue Collective behind on-orbit demonstrations.

What critics are saying

  • Kapta still lacks a public orbital demonstration in September 2026, prolonging technical risk.
  • DARPA funding concentration leaves Kapta exposed if the 2025 prototype slips or fails.
  • ICEYE, Umbra, and Capella already sell operational SAR; Kapta risks becoming irrelevant before launch.

What makes Kapta Space unique

  • Kapta Space’s metasurface antennas promise radar satellites cheaper and lower-power than AESA systems.
  • Its Ku-band spaceborne radar targets SAR, InSAR, and GMTI from LEO satellites.
  • Founders Milton Perque and Adam Bily bring Echodyne metasurface expertise and satellite engineering experience.

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Growth & Insights and Company News

Headcount

6 month growth

↑ 16%

1 year growth

↑ 16%

2 year growth

↑ 40%
Venture Capital Investor
Feb 28th, 2025
Kapta Space Closes Seed Round

Kapta Space has emerged from stealth mode with a $5 million seed funding round led by MetaVC Partners, with participation from Entrada Ventures and Blue Collective.

SatNow
Feb 24th, 2025
Kapta Space to Develop the Next Generation of Advanced Spaceborne Radar Systems

Kapta Space to develop the next generation of advanced spaceborne radar systems.

PR Newswire
Feb 21st, 2025
Kapta Space Launches out of Stealth Mode to Develop the Next Generation of Advanced Spaceborne Radar Systems

/PRNewswire/ -- Kapta Space, a Seattle-based space tech startup, today came out of stealth mode and announced that it has raised a $5 million seed round to...

Business Insider
Feb 21st, 2025
Kapta Space secures $5M seed funding

Kapta Space, a Seattle-based startup, emerged from stealth with $5 million in seed funding led by MetaVC Partners, with Entrada Ventures and Blue Collective also participating. The company develops electronically steerable, radar-based imaging technology for space. Kapta aims to launch low-cost satellites for improved imaging and analytics. Previously, it raised $500k in pre-seed funding and received a $1.8 million grant from the Department of Defense in 2023.