Array Labs
Board Design Engineer
About this role
Array Labs is seeking a Board Design Engineer to contribute to the development of their advanced radar satellite systems. This role involves designing and validating printed circuit assemblies that enhance radar payloads and processing systems for real-time Earth observation.
What you'll do
- Design and layout printed circuit assemblies for radar systems
- Validate circuit designs and ensure their functionality
- Collaborate with engineers across various disciplines
- Manage design processes from schematic to qualification
- Contribute to signal integrity and processing throughput enhancements
- Support the development of high-density digital and mixed-signal designs
What they're looking for
- Circuit design and layout
- Mixed-signal design expertise
- Power regulation knowledge
- RF-interface design experience
- Familiarity with small satellite constraints
- Collaboration and communication skills
- Problem-solving abilities
- Experience with manufacturing and bring-up processes
Benefits
- Impactful work in advanced radar systems
- Contributions to global disaster response capabilities
- Opportunity to work with cutting-edge technology
- Dynamic and growing engineering team
- Innovative environment focused on real-time data solutions
- [unknown]
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Array Labs
Array Labs builds advanced radar satellite constellations that provide real-time Earth observation and 3D mapping for disaster response, infrastructure monitoring, and intelligence applications. The company is hiring engineers across hardware design, systems architecture, software development, RF testing, and signal processing to develop and validate next-generation satellite payloads and coordinated fleet operations.
View all jobs at Array LabsLikely interview questions
- Walk us through a board design you've led from schematic to manufacturing—what were the key design decisions and challenges you faced?
- Describe your experience with high-speed signal integrity and mixed-signal board layout. How do you approach managing crosstalk and noise in dense designs?