Full-Time

Scientist

Strategic Defense

Updated on 9/8/2026

Anduril

Anduril

5,001-10,000 employees

AI-enabled defense hardware and software systems

Compensation Overview

$253k - $336k/yr

+ Equity grants

Washington, DC, USA

In Person

Travel to customer and test locations is required as needed.

Bachelor's, Master's, PhD

Category
Engineering Management
Required Skills
Python
MATLAB
Simulink
C/C++

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Requirements
  • 10–15 years of relevant engineering experience developing, integrating, testing, or fielding complex defense, aerospace, radar, missile, weapon, battle-management, or command-and-control systems.
  • A sustained record of hands-on technical work in systems engineering, software engineering, controls, electrical engineering, aerospace engineering, radar engineering, modeling and simulation, integration and test, or a closely related discipline.
  • Demonstrated engineering experience with fire-control systems or engagement chains, including several of the following: engagement-quality tracks, weapon assignment, engagement planning, sensor-to-shooter integration, fire-control interfaces, timing and latency, weapon-control functions, safety interlocks, or engagement testing.
  • Demonstrated experience with sensor tasking or sensor resource management, including task planning, revisit scheduling, search and track allocation, track-quality management, multi-sensor coordination, or closed-loop tasking based on mission objectives.
  • Working knowledge of integrated air and missile defense missions and threats, including a meaningful subset of cruise missiles, ballistic missiles, hypersonic threats, fixed-wing aircraft, rotary-wing aircraft, and other airborne threats.
  • Experience developing and analyzing end-to-end system architectures that integrate multiple sensors, command-and-control nodes, fire-control elements, communications networks, and effectors.
  • Experience translating operational needs and concepts of operation into technical requirements, architectures, interface definitions, and verification plans.
  • Experience with sensor fusion, tracking, battle management, mission planning, resource allocation, or real-time decision systems.
  • Experience conducting quantitative engineering trades and performance analysis using Python, MATLAB/Simulink, C++, or equivalent analytical environments.
  • Experience integrating and testing complex hardware/software systems in laboratory, field, range, or operational environments.
  • Strong understanding of systems-engineering practices across the development lifecycle, including requirements management, interface control, architecture, integration, verification, validation, and technical risk management.
  • Ability to communicate clearly with software, hardware, test, operations, and customer teams and work effectively from detailed technical discussions through senior design reviews.
  • Bachelor’s degree in engineering, computer science, physics, mathematics, or another relevant technical field.
  • Ability to obtain and maintain a U.S. security clearance.
Responsibilities
  • Lead system and mission architecture for end-to-end integrated air and missile defense kill chains spanning sensing, track formation, identification, threat evaluation, weapon assignment, engagement planning, fire-control execution, and kill assessment.
  • Define and mature fire-control functionality, including engagement-quality track requirements, sensor-to-shooter interfaces, weapon-control integration, timing and latency budgets, safety constraints, and engagement-sequence logic.
  • Develop dynamic sensor-tasking approaches that allocate and coordinate distributed sensors based on threat priority, track quality, geometry, resource availability, defended-asset priorities, and anticipated engagement needs.
  • Translate operational concepts, threat scenarios, and customer needs into testable system requirements, behaviors, interfaces, and performance measures.
  • Decompose mission objectives into subsystem requirements and maintain traceability from operational need through architecture, implementation, verification, and validation.
  • Perform and review technical analyses involving detection and tracking performance, sensor coverage, track quality, discrimination, system latency, raid handling, resource allocation, engagement timelines, and probability of mission success.
  • Build and use modeling and simulation environments to evaluate architectures, algorithms, sensor and effector pairings, system-of-systems behavior, and mission performance against representative threat sets.
  • Work directly with software engineers to implement battle-management, fire-control, sensor-management, track-management, and decision-support capabilities.
  • Integrate government-furnished, commercial, allied, and Anduril sensors and effectors through well-defined interfaces and open-system architectures.
  • Plan and execute software-in-the-loop, hardware-in-the-loop, laboratory, range, flight, and live-fire integration and test activities.
  • Diagnose system behavior using logs, telemetry, test data, and quantitative analysis; identify root causes and drive technical issues to closure.
  • Develop engineering artifacts such as system architectures, interface definitions, requirements, sequence diagrams, state machines, trade studies, test plans, safety analyses, and verification evidence.
  • Engage directly with operational users, government technical organizations, program offices, laboratories, and industry partners to resolve technical issues and shape deployable solutions.
  • Provide technical leadership and mentorship while remaining personally involved in engineering analysis, design reviews, integration, and test.
  • Support field demonstrations, exercises, and deployments, including travel to customer and test locations as required.
Desired Qualifications
  • Direct experience with one or more operational air or missile defense ecosystems, such as IBCS, AEGIS, C2BMC, THAAD, Patriot, LTAMDS, Sentinel, G/ATOR, NASAMS, or comparable U.S. or allied systems.
  • Experience developing or integrating battle-management and command-and-control software for layered air and missile defense.
  • Deep knowledge of radar search, detection, track formation, discrimination, track correlation, measurement scheduling, or sensor resource management.
  • Experience with integrated fire-control networks, cooperative engagement, composite tracking, or remote sensor-to-shooter engagements.
  • Knowledge of interceptor and weapon-system behavior, including launch envelopes, guidance concepts, in-flight target updates, defended-asset planning, and engagement sequencing.
  • Experience designing for contested communications, intermittent connectivity, distributed operations, electronic attack, cyber constraints, or degraded sensor environments.
  • Experience with tactical data links, military messaging, government reference architectures, and defense interface standards.
  • Experience with model-based systems engineering and tools such as Cameo/MagicDraw, SysML, UAF, or DoDAF.
  • Experience supporting flight tests, range tests, live-fire tests, operational demonstrations, or fielded mission systems.
  • Master’s degree or doctorate in a relevant technical field.
  • Active U.S. Secret or Top Secret clearance.

Anduril builds defense hardware and software for military and security use, funding its own R&D and selling finished products at fixed prices rather than using traditional contracts. Its Lattice OS is an AI-powered command-and-control platform that connects sensors, drones, and other assets to form a real-time operational picture and automatically detect, track, and classify objects for operators. It differentiates itself by delivering ready-to-use, fast-deployed products through a private, product-focused development model rather than long, cost-plus procurement cycles. The goal is to provide rapid, field-ready capabilities that improve situational awareness and decision speed for national security and allied partners.

Company Size

5,001-10,000

Company Stage

Series H

Total Funding

$11.5B

Headquarters

Costa Mesa, California

Founded

2017

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Simplify Jobs

Simplify's Take

What believers are saying

  • June 17, 2026 Air Force selected Anduril for CCA production, validating autonomy software.
  • September 3, 2026 Hermeus chose Lattice for Quarterhorse Mk 2 mission autonomy.
  • May 2026 funding raised $5 billion at $61 billion valuation, funding expansion.

What critics are saying

  • August 12, 2026 Anduril protested DHS, risking a November 20 loss and rework.
  • August 21, 2026 Navy canceled Seattle shipyard work, killing Anduril's MASC path.
  • If CCA, Guam, and DHS awards slip, Anduril becomes a hype-driven prime without repeat revenue.

What makes Anduril unique

  • Lattice unifies sensors, autonomy, and command-and-control across air, land, sea, and space.
  • Anduril self-funds R&D, then sells production hardware like software, compressing procurement cycles.
  • Its stack now spans CCA aircraft, Guam defense, undersea drones, and border systems.

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Benefits

Full Family Health Coverage

16 Weeks Paid Leave for All Caregivers

Family Planning & Support

Incentivized Time Off

Mental Health Resources

Financial Planning

Unlimited Provisions

Professional Development

Growth & Insights and Company News

Headcount

6 month growth

-5%

1 year growth

-11%

2 year growth

-11%
Securities.io
Sep 3rd, 2026
Hermeus taps Anduril Mission Autonomy for Quarterhorse Mk 2.

Hermeus taps Anduril Mission Autonomy for Quarterhorse Mk 2. Published September 3, 2026 Tomas Eriksen Defense Technology & Maritime Autonomy, AI Research Agent Hermeus has selected Anduril's Lattice for Mission Autonomy software stack for its Quarterhorse Mk 2 high-Mach aircraft, Anduril announced on September 3, 2026. The agreement is Anduril's first commercial deal to integrate its mission autonomy solution with a third-party Group 5 aircraft, and the companies plan a first mission autonomy flight on Quarterhorse Mk 2 in 2027. Under the agreement, Anduril will integrate Lattice for Mission Autonomy with the Quarterhorse Mk 2, enabling collaborative missions and providing a common human-machine interface for operators to interact with the aircraft across the entire mission cycle. Hermeus is a defense aviation company focused on the rapid design, build, and test of high-Mach and hypersonic aircraft. Anduril described the agreement as a strategic milestone for both companies. For Anduril, it presents an opportunity to validate the company's end-to-end autonomy software on a third-party high-Mach aircraft. For Hermeus, Anduril said, the selection of Lattice unlocks the next phase of Quarterhorse testing as the company works to demonstrate the operational relevance of the Quarterhorse platform. End-To-End autonomy package. Anduril said fielding mission autonomy demands an end-to-end capability: software that enables multiple aircraft to collaborate autonomously to complete complex missions, combined with the software and hardware interface operators use to interact with those systems. Lattice for Mission Autonomy integrates operational analysis and threat modeling, training and rehearsals, pre-mission planning, mission execution, and post-mission debrief within a single software platform. Operators will use Anduril's Menace-T C4 solution as the physical interface for those interactions with the aircraft. According to the announcement, Air Force operators are already using that capability to generate sorties with semi-autonomous aircraft. Lattice for Mission Autonomy is also flying in the Air Force's Collaborative Combat Aircraft (CCA) program. On June 17, 2026, the U.S. Air Force selected the Lattice for Mission Autonomy stack for the next phase of the CCA program, under a contract to move mission autonomy from concept to production-ready capability. In that announcement, Anduril said its revamped mission autonomy stack flew the YFQ-44A prototype for the first time on February 24, 2026, and flew a second, more complex mission in March 2026. The company said the stack is fully compliant with the Air Force's Autonomy Government Reference Architecture (A-GRA), a standard intended to ensure cross-compatibility between autonomy software and aircraft hardware. Anduril said Hermeus's decision validates the CCA program's emphasis on modularity, adding that the same software powering the current phase of the CCA program is now enabling a new generation of high-speed aircraft. By integrating Lattice, Hermeus joins a larger family of autonomous systems capable of coordinated robotic flight, the company said. Quarterhorse test campaign. According to Anduril's announcement, Hermeus flew its first aircraft in 2025 and reached supersonic speeds with Quarterhorse Mk 2.1 just 364 days later, a pace Anduril said made Hermeus the fastest venture in aviation history to achieve supersonic flight. The program recently deployed a demo payload and will soon fly its second aircraft, Mk 2.2, which was built in under a year, the announcement said. Quarterhorse Mk 2.1 reached a top speed of Mach 1.21 on May 26, 2026, Hermeus announced, completing its first supersonic flight on its third test flight out of Spaceport America over White Sands Missile Range airspace. The company said the flight came 364 days after the maiden flight of its first aircraft, Mk 1. Quarterhorse Mk 2.1 is the first of three F-16-scale supersonic aircraft in Hermeus's development roadmap and is powered by the Pratt & Whitney F100 engine; Pratt & Whitney is an RTX business. Hermeus said it is already building and testing Quarterhorse Mk 2.2, with Mk 2.3 to follow, and that each aircraft in the roadmap is designed to push performance further toward sustained high-Mach flight. The autonomy agreement follows an expansion of Hermeus's government work. On May 28, 2026, the company announced a $159 million contract modification with the Defense Innovation Unit (DIU), increasing the total contract ceiling to $219 million to demonstrate high-Mach flight and high-speed payload release. Hermeus described the award as one of the largest contracts ever awarded by the DIU and said it is partnering with the U.S. Air Force and U.S. Navy to execute the expanded scope. Under that agreement, Hermeus will conduct a series of flight tests in 2026 and 2027 intended to prove the aircraft can maintain high speeds while carrying and releasing payloads at high velocity. The company said all flight data from the campaign will inform service experimentation and future acquisition decisions. Anduril said its team and Hermeus are already working closely to integrate Lattice for Mission Autonomy with Quarterhorse and to test the combined system's performance ahead of the first mission autonomy flight on Quarterhorse Mk 2, planned for 2027. Tomas Eriksen is an AI-generated markets research agent at Securities.io, covering Defense Technology & Maritime Autonomy and the public companies, market infrastructure and investable technologies shaping that field. Tomas Eriksen monitors defense autonomy, uncrewed aircraft and vessels, counter-UAS, sensing, secure communications, manufacturing scale and material government contracts from Anduril, Shield AI, Saronic and peers. Coverage follows a strategic, procurement-focused, ethically alert perspective, prioritizing first-party announcements, company fundamentals, competitive positioning and developments with material relevance for investors. Articles authored by Tomas Eriksen are AI-generated and reviewed by Securities.io's editorial team to ensure factual accuracy, source quality and responsible coverage. Content is provided for educational purposes and does not constitute investment advice.

Defense Daily
Aug 30th, 2026
Anduril ramping up Undersea drone production line through 2027; aims to ready extra large production line by end of year.

Anduril ramping up Undersea drone production line through 2027; aims to ready extra large production line by end of year. Sunday, August 30th, 2026 NEWPORT, R.I. - Anduril Industries is working to ramp up the production of its current Dive-LD large Autonomous Undersea Vehicle (AUV) production line at its Quonset Point, R.I., facility to maximum capacity by the end of 2027 and hopes to complete the second line focused on extra large DIVE-XL vehicles by the end of this year, company officials told Defense Daily last week. The company's 150,000 square-foot Rhode Island AUV production facility came online in late 2025 and "in the... Not a subscriber or registered user yet? Please contact us at [email protected] or call us at 888-707-5814 (Monday - Thursday 9:00 a.m. - 5:30 p.m. and Friday 9:00 a.m. - 3:00 p.m. ET.), to start a free trial, get pricing information, order a reprint, or post an article link on your website.

Interesting Engineering
Aug 24th, 2026
Power at the tactical edge.

Power at the tactical edge. The PRISM program will test whether Chariot can bring those energy resources under a single management architecture. The contract carries a 12-month delivery timeline, with brigade deployments scheduled for this fall. Founded in August 2024, Chariot has raised $41 million in venture funding. Andreessen Horowitz led its $34 million Series A. Warmoth previously worked at Anduril Industries, where he helped scale counter-drone programs. Chariot now focuses on a less visible part of the defense technology stack. The company does not build drones or electronic warfare systems. Instead, it is developing the power infrastructure needed to keep those technologies running. As military operations become more dependent on connected systems, electricity itself becomes a tactical resource. The Army's upcoming deployment will test whether software-defined power management can make that resource more efficient at the tactical edge. Get the latest in engineering, tech, space & science - delivered daily to your inbox. You may unsubscribe at any time. Aamir is a seasoned tech journalist with experience at Exhibit Magazine, Republic World, and PR Newswire. With a deep love for all things tech and science, he has spent years decoding the latest innovations and exploring how they shape industries, lifestyles, and the future of humanity.

North Columbus News
Aug 24th, 2026
Central Ohio Real Estate and Development Summit discusses MLS future and regional growth needs.

Central Ohio Real Estate and Development Summit discusses MLS future and regional growth needs. Columbus REALTORS hosted the Central Ohio Real Estate and Development Summit at the Hilton Columbus at Easton on Aug. 18, bringing together industry leaders to discuss workforce development, infrastructure, and the evolving real estate landscape. The event began with Kristin Easterday of defense contractor Anduril presenting a virtual tour of Arsenal One, a $900 million self-funded manufacturing campus in Pickaway County. The project is expected to create over 4,000 jobs in the next decade and utilizes digitally driven production systems based on drone defense technology. Easterday said this initiative is changing how the region approaches workforce planning, infrastructure investments, and overall growth. Later sessions shifted focus to real estate industry models. Realtor.com CEO Damian Eales joined Columbus REALTORS CEO Brent Swander to discuss their company's three-decade relationship with the National Association of REALTORS (NAR) and multiple listing service (MLS) systems. Eales said these structures have kept agents central to transactions while offering consumers transparency that is uncommon internationally. He also argued that the United States' cooperative MLS model outperforms less collaborative markets in Europe and Australia. A panel discussion followed with Dan Troup, CEO of Broker Public Portal; Jessica Edgerton, CEO of CMLS; Molly Morgan, Chair of MLS Board of Directors; and NAR First Vice President Colin Mullane in conversation with Columbus REALTORS President Gloria Alonso Cannon. Panelists each made arguments supporting an open MLS system as beneficial for both agents and consumers. Matt McCollister from The Montrose Group spoke about regional development trends alongside Columbus REALTORS Treasurer Kristy Daniel. They addressed Central Ohio's rapid expansion in data centers, logistics operations, and advanced manufacturing sectors - and highlighted challenges related to infrastructure capacity and public sentiment. McCollister noted that approximately 20,000 new housing units are needed annually for Central Ohio's population growth, but current construction rates fall short. The summit concluded with a keynote debate between Rob Hahn (Industry Relations Podcast co-host) and Michael Wurzer (CEO of FBS/Flexmls), moderated by Jeremy Pape. Their discussion covered topics such as fragmentation within MLSs nationwide, private listings issues, technological changes ahead for listing services - and whether or not "the MLS is doomed." "We didn't build this program to give our members easy answers," said Gloria Alonso Cannon. "We built it to make sure they're in the room when the hard questions get asked because the future of this industry is being shaped right now."

Defence Leaders
Aug 24th, 2026
Anduril demonstrates missile-defense battle manager during Valiant Shield 2026.

Anduril demonstrates missile-defense battle manager during Valiant Shield 2026. Anduril has demonstrated a prototype battle-management system designed to coordinate U.S. air and missile defenses in the Western Pacific. The company showcased the capability during Valiant Shield 2026, a multinational exercise involving U.S. forces across multiple domains. Anduril said the demonstration came less than six months after the U.S. Army awarded it a contract to develop the system for the Guam Defense System. Integrating a regional defense network. During the 11-day exercise, Anduril integrated air-defense assets from the Army, Air Force, Navy and Missile Defense Agency into its battle manager. The system uses Anduril's Lattice software to combine data from those systems into a common operational picture. It also tracked weapons status and interceptor inventories across air, land and sea-based defenses. The battle manager then assessed available missile-defense capacity and recommended which system should engage a simulated threat. According to Anduril, the software used real-time optimization to help prioritize engagements while conserving interceptor stocks. The company described the exercise as the first delivery to the U.S. Department of War of a system combining a common operating picture, weapons availability and automated engagement recommendations. Testing with operators. Anduril personnel trained operators throughout the exercise while testing the system against simulated threats. The tests used operational command-and-control, sensor and interceptor systems already protecting the region. Engineers worked directly with operators to make daily changes to the prototype. Anduril said Verity Integrated Systems also supported the development effort. The company said the prototype will undergo further testing and refinement following the exercise. Anduril's earlier contract announcement provides additional background on the Western Pacific battle-management programme. Anduril's contract announcement