Data as of Sep 19, 2026 · Based on 52 AI responses from ChatGPT Search and Google AI Mode · See how Parse measures this
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The software platform you are referring to is **Unitus** , which serves as the command-and-control (C2) and integration software for Honeywell Aerospace's **SAMURAI** (Stationary and Mobile UAS Reveal and Intercept) counter-UAS…
The software platform you are referring to is Unitus , which serves as the command-and-control (C2) and integration software for Honeywell Aerospace's SAMURAI (Stationary and Mobile UAS Reveal and Intercept) counter-UAS system.
Would you like to know more about how Unitus and SAMURAI handle open architecture standards (MOSA) or how they deploy on mobile vs. stationary platforms?
If you mean **a software C2 layer that combines radar, EO/IR cameras, RF sensing/jamming, and interceptors/effectors into one common operating picture**, several products fit that description: - **UNIFY.C2** — explicitly designed as a Counter-UAS “mission layer,” fusing radar, RF, EO/IR, Remote ID and other feeds into…
If you mean a software C2 layer that combines radar, EO/IR cameras, RF sensing/jamming, and interceptors/effectors into one common operating picture, several products fit that description:
If you're asking for the specific software that “fuses radar + cameras + jammers + interceptors”, rather than a general C-UAS system, UNIFY.C2 is particularly close to that description: it is explicitly positioned as the software mission/COP layer sitting above heterogeneous sensors and countermeasure systems.
The software platform used by the U.S. military to fuse radar, cameras, electronic warfare jammers, and kinetic interceptors into a single common operating picture is **FAAD C2** (**Forward Area Air Defense Command and…
The software platform used by the U.S. military to fuse radar, cameras, electronic warfare jammers, and kinetic interceptors into a single common operating picture is FAAD C2 (Forward Area Air Defense Command and Control).
Would you like to explore how FAAD C2 handles multi-sensor data correlation , or look into specific hardware configurations like FS-LIDS and M-LIDS?
If you mean **one software layer that combines radar, EO/IR cameras, RF sensing, jammers, and hard-kill/interceptor effectors into a single counter-UAS operating picture**, several platforms fit, but **UNIFY.C2** is probably the closest match. - **UNIFY.C2** — vendor-agnostic C-UAS command-and-control platform that…
If you mean one software layer that combines radar, EO/IR cameras, RF sensing, jammers, and hard-kill/interceptor effectors into a single counter-UAS operating picture, several platforms fit, but UNIFY.C2 is probably the closest match.
If you're thinking of a specific U.S. defense program/product, tell me the context (e.g. military base, vehicle-mounted system, airport, or a particular company), and I can identify the exact software.
The software architecture responsible for fusing multi-modal inputs—such as radar, optical/thermal cameras, radio frequency (RF) sensors, jammers, and kinetic or non-kinetic interceptors—into a single, cohesive interface is broadly classified as a **Command and Control (C2)** or **C4I (Command, Control,…
The software architecture responsible for fusing multi-modal inputs—such as radar, optical/thermal cameras, radio frequency (RF) sensors, jammers, and kinetic or non-kinetic interceptors—into a single, cohesive interface is broadly classified as a Command and Control (C2) or C4I (Command, Control, Communications, Computers, and Intelligence) software platform.
Rather than being tied to a single proprietary box, this capability is achieved through open-architecture sensor-fusion and C2 software frameworks. Examples used across defense and critical infrastructure include:
The primary purpose of this software layer is to prevent "multi-screen chaos," reduce false alarms via real-time data correlation, and provide operators with a single pane of glass to detect, track, identify, and authorize a response.
If you are looking at a specific military program, commercial vendor , or deployment scale (such as tactical mobile vs. fixed site infrastructure), let me know so I can give you the exact system nomenclature.
Several counter-UAS (C-UAS) command-and-control (C2) software platforms are designed to fuse **radar, EO/IR cameras, RF sensors, jammers, and interceptors/effectors** into a single common operating picture (COP). The exact answer depends on the vendor ecosystem, but notable examples include: - UNIFY.C2 — A C-UAS…
Several counter-UAS (C-UAS) command-and-control (C2) software platforms are designed to fuse radar, EO/IR cameras, RF sensors, jammers, and interceptors/effectors into a single common operating picture (COP). The exact answer depends on the vendor ecosystem, but notable examples include:
If you mean the military term rather than a specific vendor, the category is usually called a Counter-UAS Command and Control (C2) / Battle Management System (BMS) or C-UAS Common Operating Picture (COP). These systems sit between:
For a defense acquisition context, the closest generic phrase would be: “a sensor-agnostic C-UAS C2 system with multi-sensor fusion and effector orchestration.”
If you mean **a software layer that combines radar + EO/IR cameras + electronic/RF sensors + jammers/interceptors into a single counter-UAS common operating picture**, several products fit—but the closest matches are: - **VAERN Systems — CORE/HAMMER/STRIKER:** explicitly fuses radar, passive RF and EO/IR into one…
If you mean a software layer that combines radar + EO/IR cameras + electronic/RF sensors + jammers/interceptors into a single counter-UAS common operating picture, several products fit—but the closest matches are:
If “interceptors” specifically means kinetic interceptors rather than just jammers, VAERN is the clearest match in the sources I found: its architecture explicitly connects the fused C2 picture to RF jammers and kinetic interceptors.
If you're trying to identify one particular vendor/product from a description you have in mind, give me any clue—country, military program, company, or approximate year—and I can narrow it down.
The software you are referring to is **SkyDome** (specifically **SkyDome Manager** ), developed by **Fortem Technologies**.[](https://euro-sd.com/2026/04/articles/technology/50377/c-uas-options-techniques-and-acquisition/)…
The software you are referring to is SkyDome (specifically SkyDome Manager ), developed by Fortem Technologies.
If you'd like, I can dive deeper into:
Let me know how you'd like to proceed!
The primary U.S. Department of Defense software system utilized to integrate and fuse radar, cameras, electronic warfare (jammers), and kinetic effectors/interceptors into a single operational picture for Counter-Unmanned Aircraft Systems (C-UAS) is **FAAD C2** (**Forward Area Air Defense Command and…
The primary U.S. Department of Defense software system utilized to integrate and fuse radar, cameras, electronic warfare (jammers), and kinetic effectors/interceptors into a single operational picture for Counter-Unmanned Aircraft Systems (C-UAS) is FAAD C2 (Forward Area Air Defense Command and Control).
Developed by Northrop Grumman and designated by the U.S. Army as the interim joint standard for C2 in countering drone threats, FAAD C2 successfully connects multi-sensor detection (such as search/track radars and electro-optical/infrared cameras) with layered mitigation options—ranging from soft-kill electronic jammers to hard-kill interceptors like the Coyote drone.
(Note: Other advanced modular commercial and defense platform architectures—such as MBDA's Sky Warden, DefSecIntel's EIRSHIELD, and MatrixSpace's AI Platform—also provide multi-sensor fusion software to tie disparate detection and mitigation layers into a unified tactical display.)
If you're looking into specific implementations, would you like to know more about how FAAD C2 coordinates soft-kill versus hard-kill options, or are you exploring commercial C-UAS architecture for critical infrastructure?
The software you’re probably thinking of is **HENSOLDT ELYSION Mission Core**. It is a vendor-agnostic C2/integration layer designed to fuse **radar, RF sensors, EO/IR cameras and other sensors** into a common operating picture and then connect those tracks to effectors such as **jammers, spoofers, interceptor drones…
The software you’re probably thinking of is HENSOLDT ELYSION Mission Core. It is a vendor-agnostic C2/integration layer designed to fuse radar, RF sensors, EO/IR cameras and other sensors into a common operating picture and then connect those tracks to effectors such as jammers, spoofers, interceptor drones and hard-kill systems.
A few close alternatives:
If your key requirement is specifically “radar + cameras + jammers + interceptors, all in one operating picture,” ELYSION is the closest match from the descriptions I found.