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YubHub-native raw fields carry `x-` prefix.","jobs":[{"@context":"https://schema.org","@type":"JobPosting","identifier":{"@type":"PropertyValue","name":"YubHub","value":"job_b158ae2e-034"},"title":"Senior Forward Deployed Software Engineer","description":"<p>We are seeking a Senior Forward Deployed Software Engineer who will work hands-on with software, networking, and autonomy, ensuring our autonomous service vessels perform reliably in operational settings.</p>\n<p>You will be deeply engaged in debugging and optimizing autonomy algorithms, refining system performance based on real-world data, and working closely with end-users to adapt our technology to mission needs.</p>\n<p>The ideal candidate will have 5+ years of experience developing autonomy or robotics systems, with a strong foundation in software engineering, and proficiency in programming skills in C++, Rust, Python, or similar languages.</p>\n<p>Responsibilities:</p>\n<ul>\n<li>Lead the design, development, and optimization of advanced software systems for autonomy, networking, and mission execution, with a focus on robust performance in dynamic maritime environments</li>\n<li>Drive field testing and deployment strategies, overseeing validation of autonomy, perception, and control systems under operational conditions, and proactively identifying systemic issues</li>\n<li>Own the analysis of mission-critical performance data, translating operational insights into high-impact software improvements that enhance system behavior, reliability, and responsiveness</li>\n<li>Architect and integrate new autonomy capabilities, ensuring compatibility across software, sensors, and vessel hardware, while maintaining a modular and scalable system design</li>\n<li>Partner directly with operators, mission planners, and end-users, translating feedback into actionable requirements and guiding the evolution of the autonomy stack to meet mission needs</li>\n<li>Lead incident response and root cause analysis for complex issues spanning software, hardware, and networking layers, and implement durable solutions that strengthen system resilience</li>\n<li>Mentor and collaborate with cross-functional teams, aligning autonomy development with broader product and mission goals, and elevating engineering practices across the organization</li>\n<li>Establish and maintain technical standards, authoring deployment protocols, diagnostic tools, and documentation to support the reliable scaling of autonomy systems in operational fleets</li>\n</ul>\n<p>Qualifications:</p>\n<ul>\n<li>5+ years of experience developing autonomy or robotics systems, with a strong foundation in software engineering</li>\n<li>Proficient programming skills in C++, Rust, Python, or similar languages, with experience building and maintaining performance-critical systems</li>\n<li>Deep technical background in robotics, autonomy, or embedded systems, particularly within maritime, aerospace, or defense sectors</li>\n<li>Strong understanding of networking protocols and distributed systems, including TCP/IP, UDP, DDS, and message-passing frameworks (e.g., ROS, ZeroMQ)</li>\n<li>Extensive hands-on experience with perception sensors such as cameras, radar, GPS, and IMUs, with emphasis on integration and real-time sensor fusion</li>\n<li>Proven ability to debug and resolve complex, cross-disciplinary issues, spanning software, hardware, networking, and autonomy behavior</li>\n<li>Experience adapting autonomy systems to real-world constraints, including variable environments, limited communications, and platform-specific limitations</li>\n<li>Willingness and capability to lead field deployments (up to 50%), with a history of testing and refining autonomous systems in operational maritime or expeditionary contexts</li>\n<li>Expertise in motion planning, control systems, and behavior architectures, including behavior trees and adaptive navigation algorithms</li>\n<li>Domain knowledge in maritime systems, naval operations, or defense technology, with an understanding of mission-critical operational needs</li>\n<li>Familiarity with distributed autonomy and multi-agent coordination, including decentralized planning and task-sharing in communication-limited settings</li>\n<li>Leadership in system integration, testing, and operationalization, collaborating across engineering, product, and field teams to deliver robust, deployable systems</li>\n</ul>\n<p>Benefits:</p>\n<ul>\n<li>Medical Insurance: Comprehensive health insurance plans covering a range of services</li>\n<li>Dental and Vision Insurance: Coverage for routine dental check-ups, orthodontics, and vision care</li>\n<li>Saronic pays 100% of the premium for employees and 80% for dependents</li>\n<li>Time Off: Generous PTO and Holidays</li>\n<li>Parental Leave: Paid maternity and paternity leave to support new parents</li>\n<li>Competitive Salary: Industry-standard salaries with opportunities for performance-based bonuses</li>\n<li>Retirement Plan: 401(k) plan</li>\n<li>Stock Options: Equity options to give employees a stake in the company’s success</li>\n<li>Life and Disability Insurance: Basic life insurance and short- and long-term disability coverage</li>\n<li>Additional Perks: Free lunch benefit and unlimited free drinks and snacks in the office</li>\n</ul>\n<p>Physical Demands:</p>\n<ul>\n<li>Prolonged periods of sitting at a desk and working on a computer</li>\n<li>Occasional standing and walking within the office</li>\n<li>Manual dexterity to operate a computer keyboard, mouse, and other office equipment</li>\n<li>Visual acuity to read screens, documents, and reports</li>\n<li>Occasional reaching, bending, or stooping to access file drawers, cabinets, or office supplies</li>\n<li>Lifting and carrying items up to 20 pounds occasionally (e.g., office supplies, packages)</li>\n</ul>\n<p>Additional Information:</p>\n<p>This role requires access to export-controlled information or items that require “U.S. Person” status. As defined by U.S. law, individuals who are any one of the following are considered to be a “U.S. Person”: (1) U.S. citizens, (2) legal permanent residents (a.k.a. green card holders), and (3) certain protected classes of asylees and refugees, as defined in 8 U.S.C. 1324b(a)(3)</p>\n<p style=\"margin-top:24px;font-size:13px;color:#666;\">XML job scraping automation by <a href=\"https://yubhub.co\">YubHub</a></p>","url":"https://yubhub.co/jobs/job_b158ae2e-034","directApply":true,"hiringOrganization":{"@type":"Organization","name":"Saronic Technologies","sameAs":"https://www.saronictechnologies.com/","logo":"https://logos.yubhub.co/saronictechnologies.com.png"},"x-apply-url":"https://jobs.lever.co/saronic/ae3b9b7a-adf7-4b51-99ab-a087964ac185","x-work-arrangement":"onsite","x-experience-level":"senior","x-job-type":"full-time","x-salary-range":null,"x-skills-required":["C++","Rust","Python","Software Engineering","Autonomy","Robotics","Networking","TCP/IP","UDP","DDS","ROS","ZeroMQ","Perception Sensors","Cameras","Radar","GPS","IMUs","Motion Planning","Control Systems","Behavior Architectures","Behavior Trees","Adaptive Navigation Algorithms","Maritime Systems","Naval Operations","Defense Technology","Distributed Autonomy","Multi-Agent Coordination","Decentralized Planning","Task-Sharing","Communication-Limited Settings"],"x-skills-preferred":[],"datePosted":"2026-04-17T12:57:37.119Z","jobLocation":{"@type":"Place","address":{"@type":"PostalAddress","addressLocality":"San Francisco"}},"employmentType":"FULL_TIME","occupationalCategory":"Engineering","industry":"Technology","skills":"C++, Rust, Python, Software Engineering, Autonomy, Robotics, Networking, TCP/IP, UDP, DDS, ROS, ZeroMQ, Perception Sensors, Cameras, Radar, GPS, IMUs, Motion Planning, Control Systems, Behavior Architectures, Behavior Trees, Adaptive Navigation Algorithms, Maritime Systems, Naval Operations, Defense Technology, Distributed Autonomy, Multi-Agent Coordination, Decentralized Planning, Task-Sharing, Communication-Limited Settings"},{"@context":"https://schema.org","@type":"JobPosting","identifier":{"@type":"PropertyValue","name":"YubHub","value":"job_d7a9ea24-44f"},"title":"Forward Deployed Software Engineer","description":"<p>We are seeking a Forward Deployed Software Engineer who will be at the forefront of integrating, deploying, and improving our autonomous systems in real-world environments. You will work hands-on with software, networking, and autonomy, ensuring our autonomous service vessels perform reliably in operational settings.</p>\n<p>This role blends software development, field deployment, and problem-solving to ensure our technology delivers real mission impact. You will be deeply engaged in debugging and optimizing autonomy algorithms, refining system performance based on real-world data, and working closely with end-users to adapt our technology to mission needs.</p>\n<p>Responsibilities:</p>\n<ul>\n<li>Develop and refine software for autonomy, networking, and mission execution, improving system performance in real-world maritime conditions</li>\n<li>Deploy and test ASV software in the field, identifying and resolving issues related to autonomy, perception, and control systems</li>\n<li>Analyze performance data from real-world missions, using insights to drive software improvements and optimize system behavior</li>\n<li>Integrate and validate new autonomy features, ensuring seamless interaction between software, sensors, and vessel hardware</li>\n<li>Work directly with operators and end-users, gathering feedback and adapting the system to operational requirements</li>\n<li>Troubleshoot and resolve software, hardware, and networking issues that arise during deployments</li>\n<li>Collaborate with cross-functional teams, including autonomy engineers, hardware developers, and field operations personnel, to enhance product capabilities</li>\n<li>Document best practices, deployment procedures, and debugging workflows to improve system reliability and scalability</li>\n</ul>\n<p>Qualifications:</p>\n<ul>\n<li>Strong software engineering skills, with experience in C++, Rust, Python, or similar languages</li>\n<li>Background in robotics, autonomy, or embedded systems, particularly in maritime, aerospace, or defense applications</li>\n<li>Understanding of networking protocols and distributed systems, including TCP/IP, UDP, and message-passing frameworks</li>\n<li>Ability to diagnose and debug complex systems, from low-level networking issues to high-level autonomy behaviors</li>\n<li>Ability to work in dynamic environments, where software must adapt to real-world constraints and unpredictable conditions</li>\n<li>Willingness to travel (up to 50%), spending time in the field testing and improving ASV systems in real-world maritime settings</li>\n<li>Experience developing autonomy software for real-world robotic systems, particularly in challenging environments like the ocean</li>\n<li>Familiarity with motion planning, behavior trees, and control algorithms for autonomous navigation</li>\n<li>Background in maritime systems, naval operations, or defense technology</li>\n<li>Knowledge of distributed autonomy architectures and multi-agent coordination</li>\n<li>Hands-on experience integrating and deploying robotic systems in the field</li>\n</ul>\n<p>Benefits:</p>\n<ul>\n<li>Medical Insurance: Comprehensive health insurance plans covering a range of services</li>\n<li>Dental and Vision Insurance: Coverage for routine dental check-ups, orthodontics, and vision care</li>\n<li>Saronic pays 100% of the premium for employees and 80% for dependents</li>\n<li>Time Off: Generous PTO and Holidays</li>\n<li>Parental Leave: Paid maternity and paternity leave to support new parents</li>\n<li>Competitive Salary: Industry-standard salaries with opportunities for performance-based bonuses</li>\n<li>Retirement Plan: 401(k) plan</li>\n<li>Stock Options: Equity options to give employees a stake in the company’s success</li>\n<li>Life and Disability Insurance: Basic life insurance and short- and long-term disability coverage</li>\n<li>Additional Perks: Free lunch benefit and unlimited free drinks and snacks in the office</li>\n</ul>\n<p>Physical Demands:</p>\n<ul>\n<li>Prolonged periods of sitting at a desk and working on a computer</li>\n<li>Occasional standing and walking within the office</li>\n<li>Manual dexterity to operate a computer keyboard, mouse, and other office equipment</li>\n<li>Visual acuity to read screens, documents, and reports</li>\n<li>Occasional reaching, bending, or stooping to access file drawers, cabinets, or office supplies</li>\n<li>Lifting and carrying items up to 20 pounds occasionally (e.g., office supplies, packages)</li>\n</ul>\n<p>Additional Information:</p>\n<p>This role requires access to export-controlled information or items that require “U.S. Person” status. As defined by U.S. law, individuals who are any one of the following are considered to be a “U.S. Person”: (1) U.S. citizens, (2) legal permanent residents (a.k.a. green card holders), and (3) certain protected classes of asylees and refugees, as defined in 8 U.S.C. 1324b(a)(3)</p>\n<p style=\"margin-top:24px;font-size:13px;color:#666;\">XML job scraping automation by <a href=\"https://yubhub.co\">YubHub</a></p>","url":"https://yubhub.co/jobs/job_d7a9ea24-44f","directApply":true,"hiringOrganization":{"@type":"Organization","name":"Saronic Technologies","sameAs":"https://www.saronictechnologies.com/","logo":"https://logos.yubhub.co/saronictechnologies.com.png"},"x-apply-url":"https://jobs.lever.co/saronic/864bb13f-0c0e-4548-99d6-3e3b7794c9d5","x-work-arrangement":"onsite","x-experience-level":"mid","x-job-type":"full-time","x-salary-range":null,"x-skills-required":["C++","Rust","Python","Networking protocols","Distributed systems","TCP/IP","UDP","Message-passing frameworks","Autonomy algorithms","Motion planning","Behavior trees","Control algorithms","Maritime systems","Naval operations","Defense technology","Distributed autonomy architectures","Multi-agent coordination"],"x-skills-preferred":[],"datePosted":"2026-04-17T12:56:23.725Z","jobLocation":{"@type":"Place","address":{"@type":"PostalAddress","addressLocality":"San Francisco"}},"employmentType":"FULL_TIME","occupationalCategory":"Engineering","industry":"Technology","skills":"C++, Rust, Python, Networking protocols, Distributed systems, TCP/IP, UDP, Message-passing frameworks, Autonomy algorithms, Motion planning, Behavior trees, Control algorithms, Maritime systems, Naval operations, Defense technology, Distributed autonomy architectures, Multi-agent coordination"}]}