Array Labs
Electrical Design Engineer
About this role
Array Labs seeks an Electrical Design Engineer to develop digital and mixed-signal electronics for advanced radar satellites. You'll design and validate critical systems from concept through orbital qualification, directly impacting the performance and reliability of earth observation technology.
What you'll do
- Design high-speed digital interfaces and mixed-signal electronics for radar payloads and satellite platforms
- Develop precision clocking, timing distribution, and power regulation circuits
- Create system monitoring, telemetry, and fault-tolerant avionics hardware
- Conduct hardware validation and bring-up testing through qualification phases
- Collaborate with RF, antenna, mechanical, and systems engineers on integrated solutions
- Optimize designs for power efficiency, stability, and on-orbit reliability
What they're looking for
- Digital and mixed-signal circuit design
- High-speed digital interface design
- Power regulation and distribution systems
- Hardware prototyping and bring-up
- Satellite or aerospace systems experience
- Fault-tolerant system design
- Test and validation methodologies
- CAD and simulation tools
Opens the application — the Jobs AI extension fills it for you. Set up autofill
Opens the official application on the employer’s site. No login required.
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 your experience designing high-speed digital interfaces—what protocols have you worked with, and how did you handle signal integrity challenges?
- Describe a time you designed a power regulation or control circuit. What were the key performance requirements, and how did you validate it?