๐ Laurel, Maryland
Johns Hopkins Applied Physics Laboratory develops advanced technologies for national security, space exploration, and scientific research from its headquarters in Laurel, Maryland. The laboratory works on projects involving radar systems, electronic warfare, and autonomous robotics, contributing to both defense and civilian applications. Engineering disciplines include systems engineering, software development, and hardware design, focusing on real-time signal processing and complex system integration. With a diverse team of engineers and scientists, APL addresses challenges in RF and antenna design, ASIC development, and robotics, ensuring robust solutions for critical missions.
Robotics Engineer for Tailored Autonomous Systems
@ Johns Hopkins Applied Physics Laboratory
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2027 PhD Graduate - Subsea Robotics Engineer
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@ Johns Hopkins Applied Physics Laboratory
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@ Johns Hopkins Applied Physics Laboratory
2026 Graduate - RF Engineer - Spaceflight Missions
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Deputy Embedded Software Engineering Manager
@ Johns Hopkins Applied Physics Laboratory
UAV Robotics Engineer
@ Johns Hopkins Applied Physics Laboratory
Applied Quantum Computing Engineer
@ Johns Hopkins Applied Physics Laboratory
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@ Johns Hopkins Applied Physics Laboratory
Maritime Robotics Systems Engineer
@ Johns Hopkins Applied Physics Laboratory
2026 Internship - Robotics
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Radar Systems Engineer
@ Johns Hopkins Applied Physics Laboratory
Radar System Engineer
@ Johns Hopkins Applied Physics Laboratory
Radar Systems Engineer
@ Johns Hopkins Applied Physics Laboratory
Radar Cross Section Engineer
@ Johns Hopkins Applied Physics Laboratory
Senior ASIC Design Engineer
@ Johns Hopkins Applied Physics Laboratory
RF, Antenna and Electromagnetic Engineer
@ Johns Hopkins Applied Physics Laboratory
Electronic Warfare RF and Radar Engineer
@ Johns Hopkins Applied Physics Laboratory
2025 BS/MS Graduate Robotics Engineer
@ Johns Hopkins Applied Physics Laboratory
Radar Systems Engineer
@ Johns Hopkins Applied Physics Laboratory
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Johns Hopkins Applied Physics Laboratory develops advanced technologies for national security, space exploration, and scientific research from its headquarters in Laurel, Maryland. The laboratory works on projects involving radar systems, electronic warfare, and autonomous robotics, contributing to both defense and civilian applications. Engineering disciplines include systems engineering, software development, and hardware design, focusing on real-time signal processing and complex system integration. With a diverse team of engineers and scientists, APL addresses challenges in RF and antenna design, ASIC development, and robotics, ensuring robust solutions for critical missions.
Johns Hopkins Applied Physics Laboratory currently has 6 active embedded systems positions in 1 location. All positions are on-site, typical for hardware-focused roles requiring lab access and equipment. Recognized as a top-tier employer (90.0/100), Johns Hopkins Applied Physics Laboratory offers competitive compensation and strong career development paths in embedded engineering.
* Data represents job posting activity over the past 6 months: Feb 2026 through Jul 2026
Johns Hopkins Applied Physics Laboratory's hiring pace has moderated recently (3 openings this month vs 6 last month),
which is common after major hiring pushes or as projects move from development to deployment phases.
Over the past 6 months, Johns Hopkins Applied Physics Laboratory averaged 2.5 job postings per month,
with peak hiring in Jun 2026 (6 openings).
For embedded systems roles, hiring activity typically correlates with product development cycles,
especially for firmware teams during pre-production phases and hardware engineers during prototyping.
๐ -50% change
Consistent hiring velocity
Jun 2026
Python is the most in-demand skill at Johns Hopkins Applied Physics Laboratory,
appearing in 36% of all job listings (past and present).
This skill is important but not universal, indicating diverse technical needs across different product lines or teams.
Johns Hopkins Applied Physics Laboratory's technology stack spans 70 distinct skills and tools,
reflecting the multifaceted nature of embedded systems development.
The broad technical diversity (70 technologies) suggests work on complex,
multi-domain projects requiring both hardware and software expertise.
Engineers joining Johns Hopkins Applied Physics Laboratory should combine depth in key areas with adaptability. The mix of hardware skills (PCB design, schematics) and firmware expertise (RTOS, embedded C) indicates full-stack embedded development where engineers work across the hardware-software boundary. Candidates with adjacent skills (version control, testing frameworks, communication protocols) typically advance faster by contributing across the development lifecycle.
Johns Hopkins Applied Physics Laboratory's primary hiring focus is Electrical Engineer with
2 open positions. High-volume recruitment for a single role type typically indicates
either a growing team building similar capabilities or a newly formed department scaling rapidly.
Multiple openings in the same discipline create advantages for new hires:
stronger peer support networks, established onboarding processes, and clearer career progression paths
as the team matures. Engineers often find collaborative environments more conducive to professional growth.
Experience level distribution: 67% of openings target mid-level-level engineers.
Johns Hopkins Applied Physics Laboratory's engineering operations are concentrated in a single country across 2 locations. Multiple cities within one country often reflect regional talent pools or proximity to specific industry clusters (e.g., automotive in Detroit, semiconductors in Silicon Valley).
These employers share technical focus areas with Johns Hopkins Applied Physics Laboratory and are actively hiring embedded engineers. Exploring multiple companies helps candidates understand market compensation, compare technical challenges, and identify the best cultural and technical fit for their career goals.
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