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Principal Technical Lead Engineer, Rocket Engine Avionics & Control Systems
Job in
Seattle, King County, Washington, 98127, USA
Listed on 2026-06-04
Listing for:
Blue Origin LLC
Full Time
position Listed on 2026-06-04
Job specializations:
-
Engineering
Systems Engineer, Aerospace / Aviation / Avionics
Job Description & How to Apply Below
Greater Seattle Area:
Huntsville, ALtime type:
Full time posted on:
Posted Todayjob requisition :
R64371
Application close date:
Applications will be accepted on an ongoing basis until the requisition is closed.
At Blue Origin, we envision millions of people living and working in space for the benefit of Earth. We’re working to develop reusable, safe, and low-cost space vehicles and systems within a culture of safety, collaboration, and inclusion. Join our team of problem solvers as we add new chapters to the history of spaceflight! This role is part of the Blue Origin Engines business unit, where our focus is the design, development, manufacturing, and testing of engines and propulsion systems.
Built for multiple uses, our family of engines is powering the next generation of rockets for commercial, civil, national security, and human spaceflight.
This position resides within the Avionics & Control Products (ACP) organization, part of the Engine Business Unit. As a Principal Technical Lead Engineer for Rocket Engine Avionics & Control Systems, you will serve as the primary technical authority for all avionics systems within a specific rocket engine program. In this role you will define and drive the technical architecture, own the avionics system technical baseline for your assigned engine, lead design reviews with full technical approval authority, and ensure all avionics and control system deliverables are executed to the highest standards of safety, performance, and reliability.
The successful candidate is a seasoned technical leader and recognized expert in avionics and control systems. Your effectiveness stems from four integrated competency areas: (1) Technical Expertise — deep domain knowledge in aerospace electronics, embedded software, controls algorithms, sensors, actuators, power systems, and data networks, combined with systems-level thinking that anticipates downstream impacts of design decisions; (2) Technical Leadership — sound judgment that balances innovation with reliability, fluency in design reviews, failure analysis acumen, and confident decision-making under uncertainty;
(3) People & Team Dynamics — mentorship mindset, cross-functional influence, composure under pressure, and a collaborative style that fosters innovation and resilience; and (4) Strategic Vision & Organizational Impact — tying technical decisions to mission success and business goals, identifying organizational gaps before they escalate, and communicating a compelling technical vision across all levels. You hold yourself and your teams to the highest standards of engineering rigor.
There is no “standard day” for this role. You will lead a multi-disciplinary engineering team across all engineering development phases, from customer use case elicitation all the way to full-scale hot-fire test and flight operations. On any given day you may be architecting a new generation engine control system, leading a failure review board, reviewing a control algorithm for stability margins, driving interface negotiations with vehicle teams, or mentoring a group of engineers through a gnarly systems integration challenge.
Your breadth of expertise and technical judgment are the constant that ties it all together.
Position requires up to 10% travel to rocket engine test sites.
** Responsibilities:
*** Own the avionics and control system technical baseline for the assigned rocket engine program; define and drive the technical vision, architecture, and long-term engineering roadmap for that program’s avionics and control systems.
* Lead decomposition and allocation of engine-specific avionics requirements; establish and maintain system-level requirements, interface control documents, and design standards for avionics and engine control subsystems.
* Lead all design reviews for the assigned engine avionics systems with full technical approval authority; participate as a non-advocate reviewer for cross-program architectural decisions.
* Identify, characterize, and drive resolution of complex system-level technical risks across multiple…
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