Dronetag Scout is a stationary Remote ID receiver, designed to detect compliant drones within its coverage area, providing robust operational awareness. Remote ID technology enables the identification and tracking of drones that meet regulatory standards, enhancing situational awareness and safety in shared airspace.
With Dronetag Scout, users can monitor drone activities, receive real-time data on drone identification, location, heading, speed, height (barometric and GNSS), status, take-off location, and operator location - helping ensure compliance with local airspace regulations. Its stationary design is ideal for fixed installations, offering a reliable solution for consistent, real-time insight into drone operations in the vicinity.
Dronetag Scout supports all Remote ID technologies Wi-Fi Beacon, Wi-Fi NaN, Bluetooth 4 Legacy and Bluetooth 5 Long Range (LE Coded PHY) for Remote ID detection.
The Dronetag Scout is drone-agnostic and captures all Broadcast/Direct Remote ID data from drones that comply with Remote ID standards, such as DJI, Autel, and Skydio - up to 10 km in the EU, US, and Japan (with more regions expected to adopt these standards soon). The data can be sent in real-time to the Dronetag App for data visualization and airspace alerts or can be sent raw to third-party platforms without Dronetag apps being involved. It works regardless of whether the drone has built-in Remote ID capabilities or uses an external module.
Please note: the Scout device detects only Remote ID signals - if the drone does not broadcast any Remote ID, the Scout will not detect it.
Here you can find all information about Remote ID.
In countries where Remote ID is not mandatory, Scout can only detect drones that have an active Remote ID transmission (for example: Canada, Australia, New Zealand, and others).
Keep in mind that Remote ID broadcasting behavior depends on each drone’s firmware version and location awareness.
Many drones use their built-in GNSS position and firmware rules to automatically enable or disable Remote ID transmission depending on the country they are currently flying in.
This means that the same drone may be detectable in one region but not visible in another, depending on whether its firmware recognizes that Remote ID regulations apply in that specific airspace.
For a detailed and up-to-date list of Remote ID compatible drones, please contact the official agencies:
| Country / Region | Status | Effective Date | Notes | Source |
|---|---|---|---|---|
| EU / EASA framework | ✅ | 2024-01-01 | Mandatory Direct Remote ID for specific category and class-marked in open. | EASA (easa.europa.eu) |
| Austria | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Belgium | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Bulgaria | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Croatia | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Cyprus | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Czech Republic | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Denmark | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Estonia | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Finland | ✅ | 2024-01-01 | Under EASA framework | EASA |
| France | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Germany | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Greece | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Hungary | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Ireland | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Italy | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Latvia | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Lithuania | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Luxembourg | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Malta | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Netherlands | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Poland | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Portugal | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Romania | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Slovakia | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Slovenia | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Spain | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Sweden | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Iceland (EASA) | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Norway (EASA) | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Liechtenstein (EASA) | ✅ | 2024-01-01 | Under EASA framework | EASA |
| Switzerland | ✅ | 2024-01-01 | Harmonized with EASA rules | EASA |
| USA | ✅ | 2024-03-16 | Mandatory under 14 CFR Part 89 (except in FRIA areas) | eCFR / FAA (ecfr.gov) |
| Japan | ✅ | 2022-06-20 | Registration and Remote ID functionality mandatory | MLIT / JCAB |
| Singapore | ✅ | 2025-12-01 | B-RID required for UA > 250 g | CAAS / Singapore Government |
| South Korea | ✅ | 2024-01-01 | 2024-01-01 | MOLIT / Korea Government |
| United Kingdom | ✅ | 2026-01-01 | Direct RID required under UK regime | CAA UK |
| Canada | ❌ | — | No national broadcast RID mandate to date | Transport Canada |
| Australia | ❌ | — | Under consultation for future Remote ID, no mandate yet | Australian Infrastructure / Govt |
| India | ❌ | — | Digital Sky / NPNT system in place, broadcast Remote ID not declared | DGCA India |
Supports Bluetooth 2.4 GHz (4 Legacy and 5 Long Range) and Wi-Fi Beacon / NaN Remote ID technologies across both 2.4 GHz and 5 GHz bands - fully compliant with ASTM F3411-22A, ASD-STAN EN 4709-002, FAA, EASA, and MLIT standards.
Scout continuously scans all available Bluetooth and Wi-Fi channels, ensuring that no drone goes undetected - even those transmitting on non-standard or less-used frequencies.
Multiple independent radio modules operate in parallel, receiving and decoding all nearby Remote ID signals in real time.
Scout can identify:
💡 Scout can detect and visualize thousands (even millions) of drones at once, with zero false positives.
Scout uses adaptive channel selection, automatically prioritizing the frequencies where active drones are broadcasting.
This approach ensures:
The result: precise, real-time tracking with unmatched reliability - even in signal-heavy urban areas.
Scout’s architecture is fully modular and can be tailored to your specific operational needs.
Choose from:
If used in Cloud Mode, you can visualize detections instantly in the Dronetag App (Android, iOS, or Web), or integrate data into your C-UAS / UTM system via API, MQTT, webhooks and other options.
If used in Cloud Mode, all detections are automatically stored and timestamped for analysis, investigation, or evidence.
Features include:
When connected to the internet, Scout transmits detections securely to the Dronetag Cloud (if used in Cloud Mode) for real-time synchronization, multi-sensor deduplication, and API access.
Cloud-connected Scouts receive automatic firmware and database updates for new drone models and protocol improvements - ensuring your system always performs at its peak.
Deploy Scout anywhere with pole or wall mounting options.
Power and data are combined through PoE / PoE+, minimizing cabling and simplifying setup.
An optional 4G module provides flexible online access when wired networks aren’t available.
As a passive receiver, Scout creates no radio interference and operates silently in any environment.
Constructed with an IP67-rated aluminum enclosure, internal heating, and industrial-grade components, Scout runs reliably in extreme conditions from –20 °C to +50 °C.
Supports multi-GNSS positioning (GPS, Galileo, GLONASS, BeiDou) for precise localization.
Scout integrates a multi-constellation GNSS receiver (GPS, Galileo, GLONASS, BeiDou). This module is critical for:
Result: multi-GNSS gives Scout the geographic accuracy, timing precision, and signal integrity needed for trustworthy, high-resolution airspace monitoring.
Dronetag Scout redefines Remote ID detection with:
Simply put - it sees everything, everywhere, with total accuracy.
You can enhance your Scout with custom upgrades, tailored to your needs:
The range is defined by the Remote ID transmitter power on the drone and the environment in which the receiver is located. For this User Guide, we divided it into Detection Range and Tracking Range:
| Antenna type | Urban Area | Rural Area |
|---|---|---|
| Omnidirectional | up to 5 km / 3.1 mi | up to 10 km / 6.2 mi |
| Directional (Sector) | up to 10 km / 6.2 mi | up to 47 km / 29.3 mi |
| Antenna type | Urban Area | Rural Area |
|---|---|---|
| Omnidirectional | up to 2 km / 1.2 mi | up to 4 km / 2.5 mi |
| Directional (Sector) | up to 5 km / 3.1 mi | up to 20 km / 12.5 mi |
Tests were based on real internal testing. Drones were flown at different altitudes and distances. A Dronetag Beacon (Bluetooth) and DJI Mavic 3 (Wi-Fi) were used as transmitters, and results comply with EU signal power regulations.
With directional antennas, both detection and tracking ranges may nearly double, depending on placement and environment. This is especially useful for installations covering a specific sector or overcoming interference.
Detection range can vary significantly based on environmental conditions, obstacles, and interference. Urban environments may cause range reductions. Learn more about factors influencing Remote ID detection.
To explore what your Dronetag Scout can do and how to best deploy it for your use case, start with the overview of supported Operating Modes:
🔍 See all available modes and choose the right one for your mission
We recommend using the Scout in Cloud Mode together with the Dronetag App — it's the easiest way to set up, manage, and monitor your system. It offers full feature access including real-time tracking, data storage, alerts and remote control.
👉 Follow our guide to get started with Cloud Mode and the Dronetag App
| Parameter | Value |
|---|---|
| Weight | 2.2 kg without antennas |
| Dimensions | 220×345×104 mm without antennas |
| Power Supply | PoE + 802.3 at, PoE 802.3 af compatible |
| Operating Temperature | -20°C to +50°C (-4°F to 122°F) ambient |
| Detection Range | Up to 10 km with Omnidirectional ant., up to 25 km with Directional ant. |
| Weather Protection | IP67/NEMA-6 |
| Remote ID Technologies | Bluetooth 4, Bluetooth 5 Long Range, Wi-Fi Beacon, Wi-Fi NAN |
| Supported Frequencies | 2.4 GHz Bluetooth, 2.4 GHz + 5 GHz Wi-Fi |
| Antenna connectors | 2x to 5x N-type female connector for Remote ID (number of connectors may differ, depending on Scout configuration) 1x RJ45 waterproof jack |
For further details or inquiries, contact Dronetag Support.
The PoE injector is a device that allows you to combine power and network connectivity to your PoE enabled devices using the same Cat5/5e or Cat6 twisted pair cable.
If you want to use your own PoE switch, it must conform to IEEE 802.3af/at and support at least 0.5A at 48V.
The PoE injector should be placed indoors. It has to be placed in a dry area without extreme temperatures (intended for home temperatures only - 0 to 40˚C). The PoE injector is not waterproof.
PoE Features:
Connection to Scout should be configured to 100Mbit Full Duplex.
Dronetag s.r.o. carries no responsibility for wrong usage or wrong installation.
LTE version of Dronetag Scout, with ordered connectivity, includes micro-SIM card, which is already plugged in the device.
When there is no connectivity ordered, Scout comes with no micro-SIM card plugged in the device and the user needs to plug in their own micro-SIM card. Here is a Step-by-Step Guide on how to do it.
Dronetag Scout is available in several configurations tailored to your monitoring needs.
Each setup combines omnidirectional and directional antennas to achieve the ideal coverage pattern for your environment.
Dronetag Scout is available in multiple antenna configurations, allowing you to tailor the system to your specific monitoring needs.
Depending on your deployment — whether you need 360° situational awareness or extended range in one or more directions — you can choose from several combinations of omnidirectional and directional antennas for optimal airspace coverage.
The Baseline model includes two omnidirectional antennas providing full 360° airspace coverage.
This configuration combines 360° coverage with extended range in one specific 90° direction.
Enhanced setup for dual-sector coverage.
Advanced version offering extended range in three directions.
Ultimate 360° detection configuration.
Below are approximate total installation weights of different Dronetag Scout antenna configurations, including mounting holders and antennas.
| Scout Variant | Weight - kg | Weight - lb |
|---|---|---|
| Baseline | 4.0 kg | 8.8 lb |
| 2× Omni + 1× 90° Sector | 5.8 kg | 12.8 lb |
| 2× Omni + 2× 90° Sector | 6.5 kg | 14.3 lb |
| 2× Omni + 3× 90° Sector | 8.3 kg | 18.3 lb |
| 1× Omni + 4× 90° Sector | 8.8 kg | 19.4 lb |
To help you better understand the physical setup and mounting options, we provide 3D models of our Scout configurations.
These models can be viewed directly in your browser or downloaded using the links below for your own planning, integration, or installation workflows.
Below are the most common Scout setups:
Scout Baseline – compact, omnidirectional setup for general coverage
👉 View 3D model
Scout (1× Omni + 4× 90° Sector) – extended configuration for maximum coverage and directional detection
👉 View 3D model
Beyond antenna configurations, customers can independently select additional modules and software options according to their operational needs.
Each Scout unit can be customized with connectivity and data-service features tailored to the deployment scenario.
Adds integrated LTE connectivity, enabling real-time data transmission without Ethernet connection.
Ideal for remote deployments or temporary installations where wired internet is unavailable.
The LTE module can be added to any Scout configuration, regardless of antenna setup.
Required to operate Scout in Cloud Mode, On-Premise Mode, or Sensor+ Mode.
Future versions of Scout will support optional modules such as ADS-B, ADS-L, FLARM and others, further extending detection capabilities beyond Remote ID to provide complete situational awareness across both crewed and uncrewed aviation.
💡 Need help choosing?
Dronetag Scout supports multiple operational modes to suit different deployment scenarios and customer needs — from low-overhead standalone integrations to cloud-connected systems with advanced features and visualization tools.
This page provides a quick overview of the available modes to help you choose the best configuration for your use case.

Simplest & Most Autonomous Option
Sensor Mode turns the Scout into a dependable, plug-and-play Remote ID receiver. It captures compliant drone broadcasts and outputs decoded data via MQTT or HTTP webhooks — no cloud, no registration, and no subscription required.
📘 Learn how to connect to the Scout: Connecting to Scout
🔧 Configure sensor integrations: Scout Sensor Mode Configuration
Sensor Mode is a standalone mode offering pure hardware functionality with robust output. Perfect for those who just need data — no fluff.
Smarter Detection with Integrated Intelligence
Sensor+ Mode builds on Sensor Mode by adding real-time drone classification and enterprise-grade support. It’s designed for users who need a more intelligent system with simplified integration and enhanced situational awareness.
Sensor+ Mode is currently under development and will be available in a future firmware update.
📘 Learn how to connect to the Scout: Connecting to Scout
🔧 Configure integrations: Scout Heartbeat Forwarders
Sensor+ is ideal for professional users who want intelligent outputs, real-time classification, and the assurance of active maintenance and support.

End-to-End Solution with Mobile & Web Access
Cloud Mode enables the full suite of Dronetag capabilities — from setup to data visualization — all managed through the Dronetag App. Designed for easy deployment with mobile and web control, Cloud Mode brings real-time insight anywhere you go.
📘 Detailed instructions: Using the Dronetag App with Scout
Cloud Mode is the best choice for users who want everything managed, visualized, and integrated in one seamless platform.
Cloud Power, Your Infrastructure
On-Premise mode mirrors the Cloud Mode’s capabilities but runs entirely within your infrastructure. Ideal for sensitive or regulated deployments (e.g. defense, government, critical infrastructure), it offers complete control over data privacy and system access.
📩 For On-Premise deployments, please contact us at support@dronetag.com to discuss your requirements.
Want a quick overview of Scout's operating modes? Check out our Scout Operating Modes Guide for a detailed breakdown.
For detailed setup instructions for each mode, see the relevant sections in the Getting Started Guide.
At Dronetag, we strive to deliver the most functional and reliable solutions for your Remote ID needs.
Each Scout package is carefully assembled to ensure you have everything required for a smooth and efficient setup.
Once you receive your Scout device with its basic configuration, you should find everything neatly packed in the delivery box. Here’s what to expect when unboxing your new Scout system:
This image illustrates the standard contents included in the Scout baseline package.

The Scout package comes in a sturdy box with the following dimensions:
450 mm x 300 mm x 150 mm / 17.7" x 11.8" x 5.9"
This compact size ensures the contents are well-protected during transport while still being easy to handle.
Once you receive your Scout device with the directional antennas configuration, you’ll find everything neatly packed in the delivery box. Here’s what to expect when unboxing your new Scout system.
This image illustrates the standard contents included in the package of Scout with directional antennas.

The Scout with directional antennas package comes in a box with adjustable height and has the following maximal dimensions:
450 mm x 350 mm x 250 mm / 17.7" x 13.8" x 9.8"
The actual height depends on the specific Scout configuration. This size ensures the contents are well-protected during transport while still being easy to handle.
Once you receive your Scout device with the directional antennas configuration, you’ll find everything neatly packed in the delivery box. Here’s what to expect when unboxing your new Scout system.
This image illustrates the standard contents included in the package of Scout with directional antennas.



The Scout with directional antennas package comes in a box with adjustable height and has the following maximal dimensions:
450 mm x 350 mm x 250 mm / 17.7" x 13.8" x 9.8"
The actual height depends on the specific Scout configuration. This size ensures the contents are well-protected during transport while still being easy to handle.
Once you receive your Scout device with the directional antennas configuration, you’ll find everything neatly packed in the delivery box. Here’s what to expect when unboxing your new Scout system.
This image illustrates the standard contents included in the package of Scout with directional antennas.

The Scout with directional antennas package comes in a box with adjustable height and has the following maximal dimensions:
450 mm x 350 mm x 250 mm / 17.7" x 13.8" x 9.8"
The actual height depends on the specific Scout configuration. This size ensures the contents are well-protected during transport while still being easy to handle.
Once you receive your Scout device with the directional antennas configuration, you’ll find everything neatly packed in the delivery box. Here’s what to expect when unboxing your new Scout system.
This image illustrates the standard contents included in the package of Scout with directional antennas.


This Scout variant includes a holder for four directional antennas for free.
The Scout with directional antennas package comes in a box with adjustable height and has the following maximal dimensions:
450 mm x 350 mm x 250 mm / 17.7" x 13.8" x 9.8"
The actual height depends on the specific Scout configuration. This size ensures the contents are well-protected during transport while still being easy to handle.
Each package contains power cords with both EU and US plugs.
This section describes the requirements for successful deployment of the Scout.
This guide walks you through the full process of deploying your Dronetag Scout device—from unboxing to live drone detection in the field. Each step includes helpful links to relevant documentation, so you can get started quickly and confidently.
Begin by unboxing your Dronetag Scout and verifying that all components are present. Before physical deployment, connect the device to your local network to verify functionality.
Use the Power over Ethernet (PoE) injector included with your Scout.
Ensure that the injector matches the voltage and power specifications of the official Dronetag PoE injector to avoid damage.
The Scout PoE injector supports both EU and US power outlets and can be used with input voltages of 120 V or 240 V.
Connect the Ethernet cable between the Scout and your network via the PoE injector. To access the management interface, you’ll need the device’s local IP address.
Connect the Ethernet cable between the Scout and your network via the PoE injector. To access the management interface, you’ll need the device’s local IP address.
🔍 Find out how to locate the IP address
Before proceeding, ensure your SIM card is properly installed and configured for LTE connectivity. For detailed instructions on SIM card installation and LTE setup, please refer to our comprehensive guide here:
📘 SIM Card Installation and LTE Setup
This step is crucial to enable LTE functionality and ensure your Scout connects reliably to the mobile network.
Scout can be provided with connectivity by Dronetag; please check your ordering information before opening up the Scout. The unit comes pre-configured correctly and you don't need to do any configuration.
Open the Scout’s Management Page in your browser (e.g., https://[Scout-IP]).
Here, you can view diagnostics, network info, and configure operational parameters.
📘 Learn how to configure the network correctly
To use your Scout with Dronetag Cloud and the Dronetag App, follow these steps:
📘 Full guide to Cloud Mode & registration
Before final deployment, confirm the Scout is working properly.