Security Engineer, Systems Security
Saronic Technologies - Austin, TX, Austin, Texas, United States
Posted Apr 3, 2026
Benefits
- Parental leave
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- Non-birth-parent leave
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- Family-building benefits
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- Fertility benefits: Not verified
- Adoption assistance: Not verified
- Surrogacy assistance: Not verified
- Mental health support
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- Relocation assistance
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- Childcare support
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- Learning budget
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- 401(k) match
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Schedule
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- Weekend work
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Application
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Where they hire
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About this role
Security Engineer, Systems Security Austin, TX, Austin, Texas, United States Saronic Technologies is a leader in revolutionizing autonomy at sea, dedicated to developing state-of-the-art solutions that enhance maritime operations through autonomous and intelligent platforms. Security at Saronic is a force multiplier. We're seeking a Security Engineer at the senior-level or above to own the product security and authorization lifecycle for Saronic's autonomous surface vessels. You will serve as the responsible security engineer for one or more vessel programs, owning the security posture from design through production, authorization, and operational deployment. This is a hands-on security engineering role; not a GRC or project management role. No single compliance framework covers autonomous surface vessels today. DoD authorization processes are evolving, commercial maritime regulators are still drafting the MASS Code, and classification societies are issuing their first autonomous vessel certifications. You'll identify the frameworks that apply, architect the vessel's security to satisfy them, and drive authorization to completion. Where standards don't yet exist, you'll define them. Key Responsibilities: - Own the security posture for one or more vessel programs from architecture through fielding, serving as the responsible security engineer for the product - Drive threat modeling across vessel subsystems including embedded compute, communications, navigation, propulsion controls, sensor fusion, and C2 interfaces and define security architectures, trust boundaries, and segmentation strategies based on findings - Identify and mitigate security risks unique to autonomous maritime platforms, including GPS/GNSS spoofing, RF interference, sensor manipulation, supply chain compromise, and physical access threats - Own the end-to-end authorization
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