Ondas is pushing deeper into the autonomous defense market and has unveiled a broad suite of systems designed to link air, ground, and AI‑driven capabilities into a single operational network. As militaries confront faster, lower‑flying, and increasingly unmanned threats, the company says that it is positioning autonomy as the first layer of engagement. Ondas says that it is not building standalone platforms for a bygone battlefield, but one where autonomous systems that are integrated into one unified system-of-systems will allow technology to be the first contact with the enemy, before troops are exposed. The company’s unified architecture is built to connect air‑defense assets, aerial intelligence platforms, ground robotics, loitering systems, sensors, and AI‑powered command software, with the goal of creating an autonomous force able to sense, decide, orchestrate, execute, and assess across multiple domains without waiting for human operators to process every step. Iron Wave is built around unmanned ground vehicles and containerized deployment modules, combining ground and air defense for forward‑deployed units. It is designed to give frontline forces an autonomous buffer before personnel are exposed. Dual Shield brings a truck‑mounted counter‑UAS system for maneuvering forces, offering mobile layered protection against drones in contested environments. MODUS adds a modular low‑altitude sensing and response layer for dismounted troops, extending autonomous protection to the tactical edge. Scout Cyber‑over‑RF provides a mobile counter‑UAS capability for small teams that need rapid, flexible protection against hostile drones. Iron Arrow, the company’s new long‑range interceptor, is designed to scale autonomous air defense against unmanned platforms. At the center of the architecture is LADOS, a newly unveiled orchestration system that links sensors, autonomous systems, communications, and effectors into one operational ecosystem. It is built to enable synchronized mission execution and real‑time situational awareness across air and ground environments. The rollout follows a series of moves by