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Dronetag

Dronetag Scout

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Dronetag Scout
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Dronetag s.r.o. · The online version of this document is always the authoritative one.

Dronetag Scout

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.

  • In this photo is Dronetag Scout with One Dual-Band Omnidirectional Antenna, Four Directional Antennas and Holder for Four Directional Antennas.

What Scout Detects​

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.

note

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:

Remote ID Requirements by Country (as of October 2025)
Country / RegionStatusEffective Date    NotesSource
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 frameworkEASA
Belgium✅2024-01-01    Under EASA frameworkEASA
Bulgaria✅2024-01-01    Under EASA frameworkEASA
Croatia✅2024-01-01    Under EASA frameworkEASA
Cyprus✅2024-01-01    Under EASA frameworkEASA
Czech Republic✅2024-01-01    Under EASA frameworkEASA
Denmark✅2024-01-01    Under EASA frameworkEASA
Estonia✅2024-01-01    Under EASA frameworkEASA
Finland✅2024-01-01    Under EASA frameworkEASA
France✅2024-01-01    Under EASA frameworkEASA
Germany✅2024-01-01    Under EASA frameworkEASA
Greece✅2024-01-01    Under EASA frameworkEASA
Hungary✅2024-01-01    Under EASA frameworkEASA
Ireland✅2024-01-01    Under EASA frameworkEASA
Italy✅2024-01-01    Under EASA frameworkEASA
Latvia✅2024-01-01    Under EASA frameworkEASA
Lithuania✅2024-01-01    Under EASA frameworkEASA
Luxembourg✅2024-01-01    Under EASA frameworkEASA
Malta✅2024-01-01    Under EASA frameworkEASA
Netherlands✅2024-01-01    Under EASA frameworkEASA
Poland✅2024-01-01    Under EASA frameworkEASA
Portugal✅2024-01-01    Under EASA frameworkEASA
Romania✅2024-01-01    Under EASA frameworkEASA
Slovakia✅2024-01-01    Under EASA frameworkEASA
Slovenia✅2024-01-01    Under EASA frameworkEASA
Spain✅2024-01-01    Under EASA frameworkEASA
Sweden✅2024-01-01    Under EASA frameworkEASA
Iceland (EASA)✅2024-01-01    Under EASA frameworkEASA
Norway (EASA)✅2024-01-01    Under EASA frameworkEASA
Liechtenstein (EASA)✅2024-01-01    Under EASA frameworkEASA
Switzerland✅2024-01-01    Harmonized with EASA rulesEASA
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 mandatoryMLIT / JCAB
Singapore✅2025-12-01    B-RID required for UA > 250 gCAAS / Singapore Government
South Korea✅2024-01-01    2024-01-01    MOLIT / Korea Government
United Kingdom✅2026-01-01    Direct RID required under UK regimeCAA UK
Canada❌—    No national broadcast RID mandate to dateTransport Canada
Australia❌—    Under consultation for future Remote ID, no mandate yetAustralian Infrastructure / Govt
India❌—    Digital Sky / NPNT system in place, broadcast Remote ID not declaredDGCA India

Features​

Remote ID Compatibility

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.

Advanced Drone and Pilot Detection

Multiple independent radio modules operate in parallel, receiving and decoding all nearby Remote ID signals in real time.
Scout can identify:

  • Active drones, their pilots (take-off locations), and manufacturers/models
  • Every active Remote ID transmission in the area - with no upper limit on how many drones can be tracked simultaneously

💡 Scout can detect and visualize thousands (even millions) of drones at once, with zero false positives.

Intelligent Multi-Channel Scanning

Scout uses adaptive channel selection, automatically prioritizing the frequencies where active drones are broadcasting.
This approach ensures:

  • Higher positional accuracy for each detected drone
  • Continuous background scanning of other channels for new detections
  • Smarter bandwidth allocation, maximizing coverage and reliability in dense RF environments

The result: precise, real-time tracking with unmatched reliability - even in signal-heavy urban areas.

Modular Design and Custom Configurations

Scout’s architecture is fully modular and can be tailored to your specific operational needs.

Choose from:

  • Basic Omni Setup – compact dual-antenna system for standard operations
  • Directional Antennas – directional coverage for specific zones
  • 360° Multi-Directional Setup – full perimeter protection for critical infrastructure or city-wide deployments
  • Expansion modules for ADS-B, ADS-L, FLARM, and others
    → enabling complete airspace awareness across both crewed and uncrewed aviation layers.
Real-Time View and Data Logging

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:

  • Live airspace view with filters and history
  • Geofencing and alerts for unauthorized activity
  • Exportable logs for reporting or legal documentation
Seamless Cloud Integration

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.

Effortless Installation

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.

Built to Last

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.

Multi-GNSS Positioning & Timing

Scout integrates a multi-constellation GNSS receiver (GPS, Galileo, GLONASS, BeiDou). This module is critical for:

  • 🗺️ Precise Scout location on the map - shows exactly where each unit is deployed and where signals are captured.
  • ⏱️ High-precision GNSS time reference - provides micro-second-grade timestamps for every received Remote ID message, enabling tight synchronization between multiple Scouts and accurate sequencing of fast events.
  • 📏 Distance & bearing calculation to detected drones - by combining the Scout’s known position with the drone’s broadcasted GNSS data, the system can compute exact proximity and direction.
  • 🔒 Anti-spoofing & data validation - GNSS position/time are used to verify the plausibility of received messages (e.g., matching timestamps, expected distances and movement), helping detect spoofed or falsified signals.

Result: multi-GNSS gives Scout the geographic accuracy, timing precision, and signal integrity needed for trustworthy, high-resolution airspace monitoring.

🧠 Summary​

Dronetag Scout redefines Remote ID detection with:

  • Unlimited simultaneous drone tracking
  • Zero false positives
  • Full-band 2.4 GHz + 5 GHz scanning
  • Smart multi-channel tracking logic
  • Modular, scalable design
  • Real-time cloud connectivity and automatic updates
  • Rugged IP67 build ready for 24/7 operation

Simply put - it sees everything, everywhere, with total accuracy.


Optional Upgrades​

You can enhance your Scout with custom upgrades, tailored to your needs:

  • 4G Modem with SIM Card and LTE Antenna – Enable online cloud transmission for real-time data monitoring and integration.
  • Directional Antennas – Improve performance in high-interference environments or extend coverage with up to 4 antennas for 360° reception.
  • Older DJI Drones without Remote ID (planned feature) – Add extra sensors to detect legacy DJI models like Mini 2, Air 2, Mavic 2, Phantom 4 Pro.
  • On-Premise Deployment – Operate without cloud dependency for secure, private access.
  • ADS-B, ADS-L, FLARM and Other Protocol Support – Add additional aviation tech for full situational awareness.

Range​

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:

Detection Range​

  • Ability to sporadically pick up drone activity at greater distances.
Antenna typeUrban AreaRural Area
Omnidirectionalup to 5 km / 3.1 miup to 10 km / 6.2 mi
Directional (Sector)up to 10 km / 6.2 miup to 47 km / 29.3 mi

Tracking Range​

  • Real-time, continuous reception for reliable monitoring.
Antenna typeUrban AreaRural Area
Omnidirectionalup to 2 km / 1.2 miup to 4 km / 2.5 mi
Directional (Sector)up to 5 km / 3.1 miup 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.

Directional Antennas

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.

NOTICE

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.


Where to Start with Dronetag Scout​

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

Specification

ParameterValue
Weight2.2 kg without antennas
Dimensions220×345×104 mm without antennas
Power SupplyPoE + 802.3 at, PoE 802.3 af compatible
Operating Temperature-20°C to +50°C (-4°F to 122°F) ambient
Detection RangeUp to 10 km with Omnidirectional ant., up to 25 km with Directional ant.
Weather ProtectionIP67/NEMA-6
Remote ID TechnologiesBluetooth 4, Bluetooth 5 Long Range, Wi-Fi Beacon, Wi-Fi NAN
Supported Frequencies2.4 GHz Bluetooth, 2.4 GHz + 5 GHz Wi-Fi
Antenna connectors2x 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.


PoE injector​

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.

note

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.

warning

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:

  • Input: 100-240 V AC (50~60 Hz)
  • Output: 48.0 V DC 0.5 A
  • Overcurrent protection
  • Supports 10/100 Mbps Ethernet
  • 92.5x47x29.8 mm (±1 mm)
caution

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 SCOUT

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.

Variants of Scout

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.


Scout Antenna Options​

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.

2× Omnidirectional Antenna (Baseline)​

The Baseline model includes two omnidirectional antennas providing full 360° airspace coverage.

  • One antenna operates at 2.4 GHz, the other at 2.4 GHz + 5 GHz.
  • This configuration is fully sufficient for general airspace awareness and locations with clear line of sight — ideal when mounted on elevated or unobstructed positions.
  • Provides balanced detection performance for most deployments.
2× Omnidirectional Antenna + 1× Directional Antenna​

This configuration combines 360° coverage with extended range in one specific 90° direction.

  • Two omnidirectional antennas (2.4 GHz and 5 GHz) ensure full-area visibility.
  • One additional directional antenna extends detection range in a 90° sector at 2.4 GHz.
  • Perfect for installations where enhanced visibility is needed toward a single corridor or restricted zone.
2× Omnidirectional Antenna + 2× Directional Antenna​

Enhanced setup for dual-sector coverage.

  • Omnidirectional antennas maintain 360° baseline visibility.
  • Two directional antennas extend detection range in two 90° sectors (each at 2.4 GHz).
  • When aligned adjacently, the improved coverage area reaches up to 180°.
  • Ideal for wide facility perimeters or dual-zone observation.
2× Omnidirectional Antenna + 3× Directional Antenna​

Advanced version offering extended range in three directions.

  • Full omnidirectional baseline (2.4 GHz + 5 GHz).
  • Three directional antennas enhance range in three 90° sectors at 2.4 GHz.
  • When arranged in sequence, they can provide up to 270° of boosted coverage.
  • Recommended for installations requiring focused long-range detection on multiple approach paths.
1× Omnidirectional Antenna + 4× Directional Antenna​

Ultimate 360° detection configuration.

  • Four directional antennas provide full extended-range coverage (360°) on 2.4 GHz.
  • One omnidirectional antenna ensures complete 5 GHz visibility in all directions and also serves as a backup receiver for 2.4 GHz in case any directional antenna becomes jammed or experiences interference.
  • Designed for critical infrastructure, airports, or urban rooftops where maximum range and reliability are essential.

Installation Weight of Scout Variants​

Below are approximate total installation weights of different Dronetag Scout antenna configurations, including mounting holders and antennas.

note
  • Weights are approximate and may slightly vary depending on mounting configuration and accessories used.
  • All listed weights represent complete assembled units, ready for installation, including antenna holders where applicable. The directional antenna holder can also be purchased separately as an optional accessory. It is included by default only in the 4-sector antenna configuration, while the baseline variant does not include sector antennas or the holder.
Scout VariantWeight - kgWeight - lb
Baseline4.0 kg8.8 lb
2× Omni + 1× 90° Sector5.8 kg12.8 lb
2× Omni + 2× 90° Sector6.5 kg14.3 lb
2× Omni + 3× 90° Sector8.3 kg18.3 lb
1× Omni + 4× 90° Sector8.8 kg19.4 lb

Scout Hardware 3D Models​

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


Optional Add-Ons​

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.

LTE Modem​

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.

Yearly Cloud License​

Required to operate Scout in Cloud Mode, On-Premise Mode, or Sensor+ Mode.

  • Includes access to Dronetag Cloud, live visualization, data history, deduplication, and integrations.
  • Not required for Sensor Mode, where Scout is used for raw data collection and integration into your own system.
    The license can be activated independently of hardware configuration.

Coming Soon – Expansion Options​

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?

  • Baseline – ideal for standard airspace awareness.
  • Directional setups – increase range and precision for specific sectors.
  • LTE + Cloud License – unlock remote, real-time, and multi-sensor features for enterprise or security applications.

Operating Modes

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.


🛰️ Sensor Mode (Raw Data Receiver)​

Sensor mode diagram

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.

🔧 Features:​

  • Receives Remote ID signals from surrounding drones.
  • Decodes to JSON based on Open Drone ID specification.
  • Transmits detection data over Ethernet or LTE.
  • No dependencies — no registration, no internet required.
  • Ideal for system integrators or sensor network deployments.
  • Barebone: No included Dronetag support or cloud features.

📘 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.


🛰️ Scout Sensor+ Mode (Enhanced Sensor Mode)​

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.

warning

Sensor+ Mode is currently under development and will be available in a future firmware update.

🔧 Features:​

  • All Sensor Mode capabilities, plus:
  • Drone model/manufacturer detection onboard via live drone database
  • Automatic firmware & database updates
  • Remote troubleshooting support from Dronetag
  • Basic UI for visual monitoring (Scout Map Interface)
  • Advanced integrations into TAK, SAPIENT, and more

📘 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.


☁️ Cloud Mode​

Cloud mode diagram

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.

🔧 Features:​

  • Mobile & Web App access
  • Live drone tracking & alerts
  • Remote device management
  • Data deduplication & cloud logging
  • Flexible cloud integrations
  • Works over LTE or Ethernet

📘 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.


🏢 On-Premise Mode​

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.

🔧 Features:​

  • All Cloud Mode features, hosted locally
  • Full data privacy, no external dependencies
  • Integrates with secure/closed systems
  • Available as custom enterprise deployment

📩 For On-Premise deployments, please contact us at support@dronetag.com to discuss your requirements.


tip

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.

What is in the Box

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.

Scout Baseline​

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.

3D Model​

  • Scout Baseline – compact, omnidirectional setup for general coverage
    👉 View 3D model
PACKAGING SIZE INFO

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.

note

Each package contains power cords with both EU and US plugs.


Installation Prerequisites

This section describes the requirements for successful deployment of the Scout.

What is required to install and operate the Scout?​

  • Appropriate place to mount the Scout
  • Pole in the desired place with a diameter of 45 – 110 mm
  • Two 10 mm wrenches
  • Power outlet or Ethernet available with supported PoE
  • Ethernet cable dedicated for outdoor use (CAT5 and higher)
  • Ability and equipment to crimp your Ethernet cable
  • Safe and dry place for placing the PoE injector
  • Local network which will be used to operate the Scout
  • Ethernet port configured to 100 Mbit Full Duplex
  • Computer to connect to local network to configure Scout

Deployment Step-by-Step Guide

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.


1. Unpack Your Scout Device​

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.


2. Connect the PoE Injector to Power​

Use the Power over Ethernet (PoE) injector included with your Scout.

caution

Ensure that the injector matches the voltage and power specifications of the official Dronetag PoE injector to avoid damage.

Power supply note

The Scout PoE injector supports both EU and US power outlets and can be used with input voltages of 120 V or 240 V.

🔌 Connecting to the Scout


3. Plug in the Ethernet Cable and Connect to the Scout​

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


4. Access the Management Page​

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


5. Configure Cloud Mode​

To use your Scout with Dronetag Cloud and the Dronetag App, follow these steps:

5.1 🧑‍💻 Create a Dronetag Account & Register the Device​

  1. Go to dronetag.app or download the Dronetag app
  2. Sign up or log in.
  3. Add your Scout device using its serial number.

📘 Full guide to Cloud Mode & registration


6. Verify Functionality​

Before final deployment, confirm the Scout is working properly.

☁️ Cloud Mode Test (App)​

If you’re using Cloud Mode, test the connection and detection using the Dronetag App:

  1. Open dronetag.app (web or mobile)
  2. Log in to your account
  3. Navigate to your device
  4. Confirm:
    • The Scout shows as Standby
    • Live telemetry is updating
    • Remote ID drones are visible if nearby

📘 Using the Dronetag App

warning

Avoid testing Scout close to devices using 2.4 GHz or 5 GHz frequency. Examples of these devices are the following:

  • drone controllers
  • mobile hotspots
  • wearables
  • modern in-car Wi-Fi systems such as Apple CarPlay and Android Auto

Basically it is every smart device using wireless communication.


7. Choose an Optimal Installation Location​

Select a location that ensures minimal signal interference and maximum visibility to the sky.

📍 Best practices for site selection


8. Mount the Scout Securely​

Physically install the Scout in your chosen location.
Use the mounting hardware provided or your own reliable outdoor mounting solution.

🔧 Follow the mounting instructions


9. Start Scanning for Drones!​

You're now ready to begin real-time detection of Remote ID signals.

If you use Scout in Cloud Mode, head over to the Dronetag App to monitor live activity from your Scout device.


💡 Need Help?

If you encounter issues at any step, consult our Troubleshooting Guide for solutions to common problems, or contact support for direct assistance.

Choosing Location for Scout

What is the Right Location​

To get the most out of your Scout, location matters - a lot.

  • Choose a suitable and elevated spot for installation.
  • The receiver’s performance relies heavily on a clear, unobstructed view of its surroundings.
  • A rooftop, ideally the highest one in the area, often proves to be the perfect vantage point for maximum signal coverage.
tip

📡 For optimal range and accuracy, avoid mounting the Scout too close to any devices that transmit on 2.4 GHz or 5 GHz frequencies - such as Wi-Fi routers or other radio systems.

Factors Influencing Remote ID Signal Reception​

Signal reception isn’t just about hardware - it’s also about the environment. Several key factors can impact how well the Scout picks up Remote ID transmissions.

Ensuring Visual Line of Sight (VLOS)​

• Physical obstacles between the drone and the Scout - like buildings, trees, or terrain - can block or weaken signals.
• When possible, install the Scout in a spot with a clear view in the direction where drone activity is expected.

Signals in the 2.4 GHz and 5 GHz Frequency Bands​

• The Scout operates in frequency bands that are commonly shared with other technologies.
• Devices such as Wi-Fi routers, Bluetooth speakers, or even smart home hubs can cause interference.
• Keep the Scout as far away as possible from these types of devices.

Electromagnetic Noise​

• All electronics generate a certain amount of background noise, which can interfere with sensitive receivers like the Scout.
• Avoid installing the Scout near AC units, inverters, solar power stations, or other large electrical systems.

Transmission Power of the Drone’s Remote ID Signal​

• Not all drones are created equal - the power of the signal they transmit can vary greatly.
• This power level is defined by the drone manufacturer and local regulations, and while you can't control it, it's good to be aware that some drones may simply broadcast farther than others.

Mounting the Scout

Choose the Right Location​

Before installing the Scout receiver, make sure you have the proper location and infrastructure ready. This will save you time and ensure optimal performance from the start.


What You’ll Need for Installation​

To install the Scout, make sure you have the following:

  • A tall structure or mast/pole - the higher, the better.
    Ideally on the highest rooftop in the area, with a clear line of sight in all directions.
    The Scout cannot receive signals through buildings or large obstacles.

  • A stable power source:

    • Either a standard indoor power outlet near the Ethernet cable entry point, or
    • A PoE (Power over Ethernet) injector if direct power access is not available.
      The Scout has a low power consumption (under 10 W), so both options are easy to accommodate.
  • An outdoor-rated Ethernet cable (CAT5 or higher) with the ability to crimp RJ-45 connectors.

  • Minimal radio interference: Avoid placing the Scout close to Wi-Fi transmitters or other antennas operating at 2.4 GHz or 5 GHz.

Examples of devices using 2.4 GHz or 5 GHz

Drone controllers, mobile hotspots, wearables, and modern in-car Wi-Fi systems such as Apple CarPlay and Android Auto. Basically it is every device using wireless communication.


For best performance:

  • Choose a high, unobstructed position — the higher, the larger the detection range.
  • Avoid areas with dense urban obstacles, metallic surfaces, or sources of RF noise.
  • Ensure the Scout has a clear line of sight toward open space — it will not detect signals behind walls or buildings.
  • If you are unsure about the right location, contact our support.
    Send us the address of the intended installation site or photos from the rooftop view, and we’ll help you verify signal conditions using satellite data (e.g., Google Earth) and identify any potential interference sources.

Step-by-Step Guide​

Now that your location is ready, the power and network connection are prepared, and you’ve confirmed optimal conditions, follow these steps to mount and connect the Scout properly.
Carefully go through each step to ensure the best performance and long-term reliability of your installation.

Mount the Device​

  • To ensure optimal performance, the receiver should be mounted on an elevated structure like an existing pole, bracket, or mast.
  • If no such structure is available, a tripod can be used.

Mount the device to the desired place. Remember that the higher the place is, the better Scout will receive the Remote ID signal coming from the drones. While mounting the Scout, stick with the mounting manual and strictly follow the local regulations for electrical installation and surge and lightning protection.

1. Fix a Cross Bracket to Scout​

Fix the included cross bracket on the bottom of the enclosure with four (4) M6*12 bolts.

2. Mount the Pole Clamp​

Place two (2) pieces of the clamp around the pole and tighten them with the included M6*110 bolts, washers, and nuts.

3. Connect the pole clamp and Scout​

The pole clamp works for 45 – 110 mm diameter of pole and the cross bracket by securing the last piece of the mounting kit in place using M6*30 bolts, washers, and nuts.

caution

The Scout must be fixed so that antennas point perpendicular to the horizontal line.


Connect and Insulate the Cables​

5. Connect the PoE cable​
caution

Please note that you will need the ability to crimp your own Ethernet cable with an RJ-45 connector for any setup and connection.

Crimp your own Ethernet Cable​

warning

Use only CAT5 (or above) cabling with outdoor rating.

note
  • The non-LTE version of Scout receiver must be constantly connected to an internet router for data transmission to the Dronetag Cloud when used in Cloud Mode.
  • The Scout must be connected to the same network as the computer used to perform the initial configuration.
KEEP IN MIND

The receiver is designed for outdoor use, housed in a weather-resistant case. The Ethernet cable must be threaded through a cable gland and crimped inside for a secure connection.

6. Connect the Ethernet cable using the PoE injector​

After the PoE cable is connected, insulate it with the included PVC tape:

Insulate the Ethernet Cable Connector​

  • Clean the surface area of the connector that will be wrapped. Wrap a layer of PVC tape with a 50% overlap according to the rotation direction of the connector. Continue wrapping the PVC tape to about 10 mm below the end of the connector.
  • Wrap three additional layers with PVC tape with natural uncoiling force and a 50% overlap. Make sure to cover the head and the tail of the connector.

Mounting the Antennas

This guide explains how to install the directional antenna mount for Dronetag Scout.
Follow the steps carefully to ensure a secure installation and reliable antenna performance.

Antenna Connector Layout​
  • Scout Baseline - 2x Omnidirectional Antennas

  • Scout with 2x Omnidirectional Antennas + 1x Sector (Directional) Antenna

  • Scout with 2x Omnidirectional Antennas + 2x Sector (Directional) Antennas

  • Scout with 2x Omnidirectional Antennas + 3x Sector (Directional) Antennas

  • Scout with 1x Omnidirectional Antenna + 4x Sector (Directional) Antennas

Omnidirectional Antennas on Scout Baseline​

3D Model​

👉 View 3D model

Mount the 2.4 GHz Antenna​

Screw the antenna marked with the "1" sticker on its box to the connector marked with the same sticker

tip

In case you lost the sticker with the number or forgot what the number of the antenna was: the longer antenna has to be mounted on the left side of the device from the front view.

Mount the Dual-Band Antenna​

Screw the antenna marked with the "4" sticker on its box to the connector marked with the same sticker (the shorter antenna has to be mounted on the right side of the device from the front view)

tip

In case you lost the sticker with the number or forgot what the number of the antenna was: the shorter antenna has to be mounted on the right side of the device from the front view.

Correct Scout Orientation​

The Scout must be mounted perpendicular to the ground.
This ensures the omnidirectional antennas have a clean and even field of view.
If the unit is tilted, one side of the antennas points into the sky and the other into the ground, which reduces performance.

Insulate connectors​
  • Cut off about 50 cm of waterproof tape. Stretch it to double the length. Wrap three layers around the connector with a 50% overlap. Hold the tape in place with your hand for a few seconds.

  • Wrap three additional layers with PVC tape with natural uncoiling force and a 50% overlap. Make sure to cover the head and the tail of the connector.

Inserting the SIM Card

note

If you will operate the LTE version without connectivity ordered, plug your SIM card in first — OTHERWISE SKIP THIS STEP

To successfully change the SIM card and configure the APN, please follow these steps carefully. Adhere to this guide to ensure the process is completed correctly.

IMPORTANT

The new SIM card used in the Scout must not be protected by a PIN code.

Step-by-Step Guide:​

Unscrewing device bolts
  1. Disconnect the Scout from the Ethernet connection (which also serves as the power source).

  2. Unscrew all 12 bolts around the device perimeter.
    Use a screwdriver that fits the bolts correctly to avoid damage.

  3. Carefully flip the device over.

  4. Remove the cover and disconnect the micro-USB cable inside the device (1).

warning

Before plugging the micro-SIM card in, ensure the SIM card works by testing it in a mobile phone to verify it is active and has no PIN lock.

warning

Do not use a triple-cut (multi-size punch-out) SIM card. The stepped edges can catch on the connector contacts and damage them — use a proper single-size micro-SIM.

  1. Gently slide the micro-SIM card into the connector (2) — do not press on it or attempt to open the connector.
Inserting micro SIM card
  1. Reconnect the micro-USB cable to the same connector it was disconnected from in step 4.
caution

Do not skip this step. If the micro-USB cable stays disconnected, the LTE option will not appear in the management interface and the modem will not work.

  1. Verify Functionality:

There are two options to verify the SIM card functionality:

  • If you use your Scout in Sensor Mode, connect the Scout to your local network and check its LTE status on the network management page.
  • If you use your Scout in Cloud Mode, you can view the LTE status in the Dronetag App.

⚙️ LTE Configuration & Setup​

Further configuration of LTE connectivity and APN (if needed) is covered in our Networking Guide:

📘 SIM Card Installation and LTE Setup


✅ Verify LTE Functionality​

To confirm whether the Scout has connected to the mobile network, follow the instructions in the networking section:

🔍 Verify Functionality and LTE


  1. Reassemble the Device:

After confirming the device is functioning correctly, reattach the cover, carefully flip the device over, and tighten the 12 bolts (refer back to Step 2).

Screwing device bolts back
caution

Pay special attention to assembling the device properly to prevent water ingress and avoid damaging the device.

Take extra care about the correct position of the sealing.


Custom SIM Card Requirements​

Dronetag Scout supports custom LTE SIM cards for independent connectivity. While the hardware is globally compatible, successful operation depends on your carrier’s plan and network policies.

Verified US Carriers​

The following networks have been successfully tested and verified:

  • AT&T
  • T-Mobile
  • Verizon

Critical Connectivity Restrictions​

1. IMEI Whitelisting (Carrier Certification)​

  • Some carriers (especially for tablet or hotspot-specific plans) enforce an IMEI lock.
  • Dronetag Scout utilizes a Quectel modem that is not certified under specific carrier-proprietary programs (such as Verizon Open Development or AT&T IoT Certification).
  • If your plan is restricted to "certified devices only," the carrier will reject the connection based on the Scout's IMEI.

Solution: Use a "Bring Your Own Device" (BYOD) plan or a generic data/IoT plan that does not enforce hardware whitelisting.

2. FirstNet Incompatibility​

  • Dronetag Scout is not compatible with FirstNet SIM cards. The hardware does not support the specific bands or protocols required for this network.

3. Phone Plans vs. Data-Only Plans​

  • Avoid using SIM cards from standard smartphone plans. Carriers often detect the modem and block data or throttle it under hotspot/tethering limits.

Solution: Use dedicated data-only, mobile broadband, or IoT/M2M plans.


Network & Performance Tips​

  • LTE Only: Ensure your SIM supports 4G/LTE. SIM cards provisioned exclusively for 5G Standalone (SA) networks will not function in the Scout.
  • Local vs. Roaming SIMs: Global/roaming SIMs (e.g., Hologram, Emnify) work but may introduce higher latency. For time-critical operations, a local carrier SIM is recommended.
  • Coverage: Ensure your carrier provides LTE coverage in your area. Note that some carriers (like T-Mobile) use specific bands (e.g., B71) for rural coverage that may differ from standard phone reception.

Pre-Installation Checklist​

  • Disable PIN: Use a smartphone to ensure the SIM card has no PIN code lock enabled.
  • Verify Data: Confirm the SIM has an active data balance in another device.
  • APN Settings: Obtain the correct APN (Access Point Name) from your provider. You will need to enter this in the Dronetag App during configuration.

Quick Troubleshooting​

If the Scout fails to connect despite a valid SIM:

  • Contact your carrier to verify the plan isn't locked to a specific IMEI
  • Request the carrier to switch your line to a "Generic/BYOD" data profile

Examples of Installation

Dronetag Scout Baseline​
Dronetag Scout with 4 Directional Antennas and 1 Omnidirectional Antenna​
Dronetag Scout with 3 Directional Antennas and 1 Omnidirectional Antenna​

🔌 Connecting to the Scout

The Dronetag Scout features a built-in HTTPS management interface, accessible over your local network on port 443.
This interface allows you to:

  • Preview detected data
  • Configure network and system settings
  • Manage the device securely

To access the interface, you must first determine the Scout’s IP address on your network.

There are two ways to reach the Scout:

  1. Through your network (DHCP) — the Scout obtains an address from your network's DHCP server and you discover it using an mDNS/Bonjour browser.
  2. Directly with a static IP — no network or DHCP server is required; you connect a computer straight to the Scout and use its fallback address.

🔍 Finding the Scout on Your Network​

By default, the Scout is shipped with DHCP enabled. When powered and connected via Ethernet, the Scout will attempt to obtain an IP address automatically from your network's DHCP server.

If no DHCP server responds within 60 seconds, the Scout falls back to a static IP configuration — see Connecting Directly with a Static IP below. This fallback is temporary: the Scout keeps looking for a DHCP server and returns to a DHCP address automatically once one is available, so its address on your network may change from the fallback back to a DHCP-assigned one.

If you don’t know what IP address the Scout received from your DHCP server, use one of the following methods depending on your platform:

📱 Android – Bonjour Browser​

Bonjour Browser on Android showing the Dronetag Scout entry

Download Bonjour Browser on Google Play

Get it on Google Play
  1. Install and open the app.
  2. Locate Dronetag Scout in the list.
  3. The IP address and hostname will be shown.

🖥️ Connecting Directly with a Static IP​

If there is no DHCP server available — for example during first setup on a desk, in an isolated field deployment, or while troubleshooting — you can connect your computer directly to the Scout with an Ethernet cable.

How the fallback address works​

If the Scout does not receive an IP address from a DHCP server within 60 seconds after powering up, it automatically falls back to a static IP configuration:

  • IP Address: 192.168.100.100/24
  • Default Gateway: 192.168.100.1

This fallback keeps the Scout reachable whenever there is no DHCP server. It is temporary: while on the fallback the Scout keeps checking for a DHCP server in the background and automatically switches back to a DHCP address as soon as one becomes available, so on a network with working DHCP it will not stay on 192.168.100.100. If you need the Scout to hold a fixed address permanently, set a static IP in the management interface instead — see the note at the end of this section.

The Scout is powered over the Ethernet cable (PoE), so a direct connection always goes through the PoE injector included with your unit: connect your computer to the injector's LAN / Data port and the Scout to the PoE / Power+Data port.

Direct connection diagram: a host computer with static IP 192.168.100.10 connected through the PoE injector to the Dronetag Scout with fallback IP 192.168.100.100, reachable at https://192.168.100.100

To communicate, both devices must be in the same subnet. The Scout's fallback address is fixed, and you configure your computer to match:

SettingDronetag ScoutYour computer
IP address192.168.100.100 (fixed fallback)192.168.100.10 (recommended)
Subnet mask255.255.255.0 (/24)255.255.255.0 (/24)
Gateway192.168.100.1leave empty
DNS—leave empty
note

Any free address in the 192.168.100.2 – 192.168.100.254 range will work for your computer, except 192.168.100.100 (used by the Scout) and 192.168.100.1. The examples below use 192.168.100.10.

Setting a static IP on your computer​

🪟 Windows 10 / 11​

  1. Open Settings → Network & internet → Ethernet.
  2. Next to IP assignment, click Edit.
  3. Select Manual and switch IPv4 on.
  4. Fill in the values:
    • IP address: 192.168.100.10
    • Subnet mask: 255.255.255.0 (on Windows 11 this may be shown as Subnet prefix length: 24)
    • Gateway: leave empty
    • DNS: leave empty
  5. Click Save.

Alternatively, using the classic Control Panel (works on all Windows versions):

  1. Press Win + R, type ncpa.cpl, and press Enter.
  2. Right-click your Ethernet adapter and choose Properties.
  3. Select Internet Protocol Version 4 (TCP/IPv4) and click Properties.
  4. Choose Use the following IP address and enter 192.168.100.10 with subnet mask 255.255.255.0. Leave the gateway and DNS fields empty.
  5. Confirm with OK.

Verify the connection from Command Prompt or PowerShell:

ping 192.168.100.100

📖 Official guide: Microsoft – Change TCP/IP settings

Open the management interface​

Once your computer's static IP is configured and the Scout has been powered on for at least 60 seconds, open your browser and navigate to:

https://192.168.100.100
tip

When you are finished, switch your computer's Ethernet adapter back to automatic (DHCP) — otherwise it will not connect properly to regular networks.

Permanent static address for the Scout

The fallback address is only a temporary safety net for direct access when no DHCP server is available — the Scout returns to DHCP automatically once a server is reachable again, so it will not stay on 192.168.100.100 on a network that has DHCP. If you want the Scout to permanently use a specific static IP on your network, configure it in the management interface — see Configuring a Static IP Address. Setting a static IP there disables DHCP, so the Scout keeps that address and never falls back to — or returns to — DHCP.


🔐 Accessing the Interface​

Once you have the Scout's IP address:

  1. Open a web browser.
  2. Navigate to: https://<Scout-IP> (replace <Scout-IP> with the actual IP address, e.g., https://192.168.1.42).
  3. Because the Scout uses a self-signed certificate, your browser will likely show a security warning.
    • Proceed by allowing the insecure connection. This may appear as "Advanced > Proceed to IP", depending on your browser.
  4. Log in using the default credentials provided by Dronetag Support.

The Scout includes a login-protected management UI. The default username and password are printed on the sticker on the bottom part of each Scout.

caution

Upon first login, please change the default credentials to a secure username and password known only to you.

Important: Write down your new credentials securely. If you perform a factory reset on the unit, it will revert to the default login credentials.

🔧 Configuring a Trusted Certificate​

To avoid browser security warnings and enable a trusted HTTPS connection, you can configure the Scout with a certificate trusted by your system.

You can find certificate management options in the Configuration section of the interface.

Here, you can:

  • Upload a certificate signed by your internal Certificate Authority (CA), or
  • Generate a Certificate Signing Request (CSR) to obtain a signed certificate from your CA.

Once installed, the trusted certificate will replace the default self-signed one, ensuring seamless and secure access from trusted devices.

For a detailed description, please refer to the system configuration page.

🛠️ Troubleshooting Connectivity​

If you're unable to access the Scout’s interface, refer to the detailed network troubleshooting section.

🌐 Networking

The Dronetag Scout is equipped with a 100 Mbps Ethernet port that supports both DHCP and static IP address configurations. These settings can be modified through the device’s web-based management interface.

For instructions on accessing the interface, refer to the Connect to the Management Interface section.


🔌 Power over Ethernet (PoE)​

The Scout’s Ethernet port is designed to be powered via PoE (Power over Ethernet) using the following standards:

  • IEEE 802.3af Type 1 (also known as PoE)
  • IEEE 802.3at Type 2 (also known as PoE+)
  • Voltage: 48V DC
warning

Do not use passive PoE injectors, such as those used by some Ubiquiti or Mikrotik devices, which often provide lower, non-standard voltages (e.g., 24V).
These will not power the Scout and may cause improper operation.

To power the Scout correctly:

  • Use a compatible PoE switch that supports 802.3af Type 1 or 802.3at Type 2, or
  • Use the included PoE injector supplied with your unit.
    Refer to What’s in the Box for more details.
Power supply note

The Scout PoE injector supports both EU and US power outlets and can be used with input voltages of 120 V or 240 V.


📥 DHCP and the Static IP Fallback​

By default the Scout's Ethernet is configured for DHCP, and it is designed to stay reachable even when no DHCP server is available:

  1. On start-up the Scout requests an address over DHCP and waits up to 60 seconds for a response.
  2. If a DHCP server answers, the Scout uses the address it is given — the normal case on a managed network.
  3. If no DHCP server answers within 60 seconds, the Scout falls back to a fixed static IP so it always stays reachable for a direct connection:
    • IP Address: 192.168.100.100/24
    • Default Gateway: 192.168.100.1

Automatic return to DHCP​

The static address is only a fallback, not a permanent setting — its job is to keep the Scout reachable while the network is unavailable. The Scout therefore keeps retrying DHCP in order to re-establish normal connectivity as soon as it returns: while on the fallback it checks in the background, roughly every couple of minutes, whether a DHCP server has become available.

As soon as DHCP works again, the Scout automatically switches back to a DHCP-assigned address — it does not stay on the static fallback once the network recovers. These background checks do not interrupt the fallback address, so the Scout remains reachable at 192.168.100.100 the whole time, right up until it obtains a DHCP lease.

Want a permanent static IP?

The 192.168.100.100 fallback is temporary — the Scout leaves it again the moment DHCP is restored. If you want the Scout to keep a fixed address that never changes, set a static IP in the Networking tab (see Configuring a Static IP Address below). Configuring a static address there disables DHCP, so the Scout uses only the address you set and never falls back to — or returns to — DHCP. This is the recommended way to run the Scout on a fixed address, even if that address is in the same range as the default fallback.


🔧 Configuring a Static IP Address​

Scout Management StaticIP

To assign a static IP:

  1. Navigate to the Networking tab within the web management interface.
  2. Enter the desired static IP address using CIDR notation, for example:
    192.168.1.61/24
    • The /24 suffix corresponds to the subnet mask 255.255.255.0.

💡 Not sure what subnet mask to use? Try jodies.de IP Calculator to determine the correct value.

Setting a static IP disables DHCP

When you configure a static IP here, the Scout uses only this address: DHCP is disabled and the 192.168.100.100 fallback no longer applies. The Scout will not request a DHCP lease or switch back to DHCP while a static IP is set. To return to automatic addressing, disable the static IP option in this same tab.


🌍 Setting Gateway and DNS​

If you need the Scout to send data to other networks or access internet services:

  • Set the Default Gateway (usually your router's IP address).
  • Optionally configure one or more DNS servers to enable domain name resolution instead of using raw IPs.

These settings are especially important if the Scout is connecting to cloud platforms or remote endpoints.


⏰ Time Synchronization (NTP)​

The Scout normally keeps its clock accurate automatically — it takes the time from the LTE network, GNSS, or the internet. You can add your own NTP server (by IP or hostname) in the NTP IP/host field of the Networking tab; it is added to the pool of time sources the Scout uses.

Set an NTP server on networks without internet access

On an isolated network with no internet access, the Scout cannot reach public time servers, so its clock can drift and the timestamps in your data may be wrong. On such networks we strongly recommend configuring a reachable NTP server (for example one running on your local network) so the Scout keeps accurate time and your data stays correctly timestamped.


📶 SIM Card Installation and LTE Setup​

For LTE functionality, the Scout must be equipped with an LTE modem, which can be included when purchasing the unit.

You can also use your own SIM card—please refer to the SIM Card Installation Guide for detailed instructions.

warning

We do not provide support for connectivity issues arising from third-party SIM cards.

If the LTE option does not appear in the Scout’s management UI, this means the device is not equipped with an LTE modem module.

APN (Access Point Name)​

Each SIM card provider supplies an APN, usually listed on their website. Enter it in the Desired APN field so the Scout can establish a mobile data connection.

The APN you set is applied on every start-up. If you change it and the new value fails to connect while the previous one was working, the Scout automatically reverts to the last working APN, so a typo won’t leave the device offline. You can also enter the APN for a new SIM before swapping cards, so the Scout comes up correctly with the new one already configured.

SIM PIN​

If the inserted SIM is protected by a PIN, the Networking tab shows a SIM PIN field. Enter the PIN and select Unlock SIM to bring the modem online. The Scout remembers a PIN that works and re-applies it automatically after a restart, so you only have to enter it once. PIN protection stays enabled on the card — it is only unlocked, never disabled.

warning

Enter the correct PIN. Repeated wrong attempts can permanently lock the SIM (a PUK lock), after which it must be recovered with the PUK code from your provider.

We recommend using a SIM card with no PIN code to avoid accidentally locking the card. If the Scout tries a stored PIN and it turns out to be wrong, it discards that PIN and stops retrying so it cannot exhaust the attempts and PUK-lock the SIM.

Provisioned SIM cards

When the Scout ships with a Dronetag-provided SIM, its APN and PIN are configured at the factory. While that SIM is inserted, these fields are hidden and cannot be changed — replace the SIM with your own if you want to set them yourself.


Verify Functionality and LTE​

Scout Management LTE Networking Tab
note

This section applies only to Scouts with LTE connectivity.

To verify LTE connectivity:

  1. Connect to the Scout’s Management Interface
    Follow the instructions in Connect to the Management Interface to access the Scout’s web UI.

  2. Open the Networking Tab
    Once logged in, navigate to the Networking section in the management interface.

  3. Check the LTE (4G) Switch
    Confirm that the 4G switch is set to ON to enable LTE functionality.

  4. Configure the APN
    If your cellular provider requires specific APN settings, enter the APN value into the designated field in the networking tab.

  5. Save Changes
    Click the Update 4G connection button to save and apply your changes.

tip

If no data connection is established, double-check the APN settings and re-enter them if necessary. If the SIM is PIN-locked, make sure you have entered the correct SIM PIN and unlocked it (see SIM PIN above).

To further troubleshoot, test the SIM card in a mobile phone to confirm it has active service and good network coverage.


⚖️ Choosing between Ethernet and 4G​

When the Scout has both an Ethernet connection and a working 4G connection, it normally sends its internet traffic — the Dronetag cloud, AWS instances and other remote integration servers — over Ethernet, keeping 4G as a backup. Traffic to devices on your local network always stays on Ethernet and is never sent over 4G.

Two switches in the 4G section of the Networking tab let you change this behaviour.

Prioritize 4G​

Turn Prioritize 4G on to make the Scout prefer the 4G connection for all internet traffic, even while Ethernet is connected. This is useful when the Ethernet network is used only for local access and does not provide reliable internet. Traffic to your local network still goes out over Ethernet as usual. This switch is off by default.

Automatic 4G failover​

Automatic 4G failover lets the Scout switch to 4G on its own, and is on by default. Roughly once a minute the Scout checks whether the remote servers your integrations rely on can still be reached over Ethernet:

  • If they can be reached over Ethernet, the Scout keeps using Ethernet.
  • If they cannot be reached over Ethernet but are reachable over 4G, the Scout automatically switches its internet traffic to 4G.
  • As soon as the Ethernet connection can reach those servers again, the Scout switches back to Ethernet.

A few things to keep in mind:

  • The check only runs while 4G is enabled and connected.
  • Servers on your local network are ignored — failover reacts only to a loss of internet connectivity, not to local traffic.
  • If Prioritize 4G is on, that manual choice always wins and the connection stays on 4G.

In a typical installation you can leave both switches at their defaults: the Scout uses Ethernet whenever it provides working internet access and falls back to 4G only when it doesn’t.


🔒 VPN Access​

The Scout can be configured to use a VPN (Virtual Private Network) to provide access to the device even when you are not directly connected to its Ethernet port. This is useful when the Scout is deployed in a remote network and needs to be reached securely for maintenance, diagnostics, or integration with other services.

Using a VPN also helps securely transfer data by adding another layer of privacy between the Scout and the systems communicating with it.

warning

VPN is available only in Sensor+ mode or Cloud mode. It is not part of the Sensor mode.


WireGuard​

Scout Management WireGuard VPN Configuration

Scout currently supports WireGuard configuration from the management interface. A WireGuard configuration can be uploaded to the Scout and then enabled or disabled from the VPN section in the Networking page.

WireGuard can be used to:

  • reach the Scout remotely without direct local Ethernet access
  • route traffic securely to resources available inside the VPN network
  • add an additional privacy layer for communication between the Scout and your remote infrastructure

When preparing a WireGuard configuration for Scout:

  • configure the client tunnel address in the [Interface] section
  • configure the reachable VPN subnet in [Peer] AllowedIPs
  • do not use 0.0.0.0/0 in AllowedIPs; this value is explicitly forbidden by Scout

Current implementation limitations:

  • AllowedIPs must be present in the [Peer] section
  • only one IPv4 network in AllowedIPs is currently supported, optionally together with the Scout address itself as /32
  • the Scout currently expects the [Interface] Address to be inside the AllowedIPs subnet
  • 0.0.0.0/0 is explicitly blocked and full-tunnel VPN routing is not supported in the current implementation
  • if additional routes are needed beyond the main VPN subnet, they are not yet supported by the current UI flow

Example of a valid Scout WireGuard configuration:

# File must be named wg0.conf
[Interface]
# Private key assigned to this Scout client
PrivateKey = <scout-private-key>
# Tunnel address of this Scout inside the VPN subnet
Address = 192.168.205.85/32
# Optional DNS server reachable through the VPN
DNS = 192.168.205.1

[Peer]
# Public key of the remote WireGuard server or peer
PublicKey = <server-public-key>
# Scout supports one IPv4 VPN subnet here, optionally with the Scout address itself
AllowedIPs = 192.168.205.0/24, 192.168.205.85/32
# Remote server endpoint
Endpoint = 94.230.157.236:51821

In this example:

  • the Scout tunnel address 192.168.205.85/32 belongs to the allowed VPN subnet 192.168.205.0/24
  • the Scout address itself is also explicitly listed in AllowedIPs, which is allowed
  • traffic for the VPN subnet is routed through WireGuard
  • default routing for all device traffic is not used

🛠️ Troubleshooting Connectivity​

If you're unable to access the Scout’s interface, try the following steps to identify and resolve common issues:

✅ Double-Check Network Settings​

  • Ensure your computer is on the same subnet as the Scout.
  • If your network uses DHCP, confirm the DHCP server is running and has available IP addresses.
  • If DHCP is not available, verify that your computer is manually configured to access the Scout’s fallback static IP (192.168.100.100/24).
    • Example manual IP for your computer: 192.168.100.10

Inspect the Ethernet port on your router/switch and if you have the device opened you can check these on the Scout mini computer:

  • Green LED: Indicates a successful physical link.
  • Amber/Yellow LED: Indicates network activity (blinks when data is being transferred).
  • No lights: The cable may be faulty, the port may be disabled, or there may be no physical connection.

⚙️ Configure Ethernet Speed and Duplex​

Some switches or routers may experience auto-negotiation issues with the Scout. To resolve this, manually set the Ethernet port configuration in your switch or router's management interface to:

  • Speed: 100 Mbps
  • Duplex: Full duplex

This setting can often be found under port settings or advanced configuration in your network equipment's UI.

🔄 Reset the Scout to Factory Defaults​

If you've made changes to the network configuration and can no longer access the device:

  • Perform a factory reset to restore default settings.
  • After resetting, the Scout will attempt to obtain an IP address via DHCP and fall back to its static IP (192.168.100.100) if no DHCP server is available.

Refer to the Factory Reset Instructions for detailed steps.

Sensor configuration


Scout Dronetag Forwarding

Integrations control where and how the Scout sends telemetries. Scout can run multiple Forwarders in parallel. If any instance is not processing the data fast enough, other instances are not affected.

There are two basic forwarders:

  • Dronetag forwarders (one for Cloud and one for On-Premise) that can be only enabled/disabled and very basically configured
  • JSON forwarders are versatile and intended for user's integration.

See the data format description at the bottom of this page.

Dronetag Forwarders​

Scout Dronetag Forwarding

Dronetag Cloud is the only (user-visible) permanent forwarder. It cannot be deleted but can be disabled. By disabling the cloud forwarder, you will not be able to see the Scout nor its detections in Dronetag App.

You can add an On-Premise Dronetag integration to have full control of your data with all benefits of our cloud backend.

The Dronetag Forwarder can be used simultaneously with any other forwarders. For further details on how to operate the Scout in Cloud/On-Premise, please refer to this page.

JSON Forwarders​

JSON forwarders are intended for user integration.

All custom forwarders can be secured and support compression and batching.

Scout Dronetag Forwarding Basic MQTT Settings

It is better to specify port into URL, otherwise 1883 is used. For plain MQTT(s) protocol, only host:port is necessary. If you are going to use WebSockets then you can specify path as well, otherwise / will be used.

  • MQTT over WebSockets: Connect to MQTT broker using WebSockets instead of native MQTT protocol. Useful when you can only use HTTP/WebSocket connections (e.g., behind restrictive firewalls).
  • Drones Topic: MQTT topic for drone detections. Topics are like directories in a filesystem. Template: use {sn} for full serial or {sn4} for last 4 digits. Example: myorg/receivers/scout1/drones
  • Aviation Topic: Separate MQTT topic for aviation data. If empty, aviation data is sent to the Drones Topic.
  • Status Topic: Separate MQTT topic for Scout status/heartbeat. If empty, status is sent to the Drones Topic.

Here follow common options no matter the basic protocol (HTTP/MQTT).

Basic Settings​

These are the fundamental options required for every forwarder:

  • Enabled: Turn this forwarder on or off. When disabled, no data is sent through this forwarder.
  • URL: The destination where to send the data. Please, do not try to guess protocol - use clickable options to enable secured connection, mTLS and/or change the protocol to web sockets.
  • Sources: Select which types of data to forward: drones (detected drone telemetry), aviation (manned aircraft data from aviation module), status (Scout health and position updates). Please note that drones and aviation are restricted by a global filter on altitude and radius.
  • Client Timeout: How long (in seconds) to wait for the server to respond before considering the connection broken. Default is 15 seconds. Increase this if your connection is not reliable or slow.

Batching​

Batching groups multiple messages before sending them. This reduces network traffic and server load but adds slight delay. Here you control those delays and how the data are formatted.

  • Enable Batching: Turn message batching on or off. Useful for high-volume scenarios.
  • Batch as JSON Array: When enabled, messages are grouped as [msg1, msg2, ...]. When disabled, messages are joined with a separator.
  • Items Separator: Character(s) between messages when batching is enabled: nothing (no separator), \r\n (carriage return + newline), or \n (newline).
  • Batch Size: Maximum number of messages to group before sending. Leave at 0 to disable, or set to a number like 100.
  • Batch Timeout: Maximum seconds to wait before sending a batch, even if it's not full. Example: 0.1 sends batches every 100ms. Disabled if set to 0.

Example: With Batch Size = 100 and Timeout = 0.1 seconds, batches are sent when either 100 messages arrive OR 0.1 seconds pass, whichever happens first.

Compression​

  • Compression: Reduce bandwidth usage by compressing data before sending. Beware that for HTTP the data is optionally compressed only when it makes sense. The compression is then noted in Content-Encoding header (with value "gzip"). If selected for MQTT, the data are compressed always because there is no way how to hint on data compression.

Security Settings​

Scout Dronetag Forwarding Security Settings

Configure how the Scout securely communicates with your server.

TLS/SSL Server Encryption​

This section relates only to verification of the server certificate. This is the most common part of security and you most likely need to get this right.

  • Secured: Enable TLS encryption for the connection. If your server uses HTTPS or MQTTs, enable this.
  • Verify Server Cert: Check if the server's certificate is valid and not expired. Disable only for testing with self-signed certificates. Warning: Disabling this makes you vulnerable to man-in-the-middle attacks.
  • Verify Server Domain/IP: Check if the certificate's hostname (CN field) matches the server you're connecting to. Enable this to prevent connection to impostor servers.
  • Server CA Certificate: Your custom CA certificate in PEM format (.pem or .crt file). This tells the Scout which certificate authority to trust. Typically needed when your organization has its own internal CA. Beware that it has to be the top-level CA in the server's certificate. Not an intermediate one.

Client Certificates​

This section allows you to specify your client certificates for mTLS. Quite usual in the MQTT world but more and more in HTTP also.

  • Client Certificate: Upload a certificate to authenticate the Scout to your server. Required if your server checks client certificates (mutual TLS). File format: PEM.
  • Client Private Key: The private key corresponding to your client certificate. Only needed if your key isn't embedded in the certificate file.
  • Client Key Password: If your private key is encrypted, enter the password here.

Authentication Settings​

For servers that require login credentials:

  • Username: Username for HTTP Basic Auth or MQTT authentication. Leave empty if using token-based authentication.
  • Password/Token: Password for Basic Auth or API token. Stored securely. For MQTT, this can be your password or token depending on your broker's configuration.

Sensors Range and Altitude Limiting​

Air Traffic Sensor Thresholds

You can select thresholds for drones and aviation data:

  • ignore thresholds (radius, altitude): object farther OR higher than the limits will be silently dropped
  • tracking thresholds (radius, altitude): objects closer AND lower than the limits will be tracked

Tracking means that the messages will not be rate limited. Every message will be forwarded. Rate-limiting means that only one message per (configurable) X seconds per object will be sent. Good limits are especially useful for aviation where average data consumption near a mid-sized airport with no limits is around 150MB/day.

Default limits​

By default, rate limiting and ignore is turned off for drones by setting all values to 0.

Aviation is limited by default because the air traffic visibility is on long distances that are not useful for normal operations. Hence the aviation traffic is ignored if further away than 100km regardless of altitude (ignore threshold). Aviation tracking (not rate-limited) happens by default for any traffic within 10km radius and bellow 1000m of altitude (landing objects).

caution

The BEAST and ADSBExchange integrations are not affected by these limits. They relay the receiver's raw, undecoded BEAST stream, which carries no positions the Scout could filter on - everything the receiver hears is forwarded regardless of radius or altitude. Beast Reduction only limits the per-aircraft update rate, not the coverage.

Formats​

All JSON-based forwarders support two formats: dri and odid. DRI format contains raw OpenDroneID message (as bytes) as it was received by the antenna. ODID message is parsed and transformed OpenDroneID message so it is more pleasant to work with.

Each message is sent separately unless Batching is configured. See above details about batching messages.


JSON ODID Fields​

KeyTypeExampleDescription
snstr1000033Serial number
macstrMAC in format XX:YY:ZZ:AA:BB:CC; synthesized from the ICAO/device address for aviation traffic
counterint13Counter of received messages (0 for aviation)
rssiint-57Signal strength in dBm
techstr[2]B5Receiving tech: B4, B5, WN, WB (drone Remote ID); AB, AL, UT, FL, OG (aviation)
recv_idintReceiver ID
module_idint2Antenna/module number
module_typeint11Internal module type; the receiving frequency in MHz for aviation (1090, 978, 868)
msg_typeint15ODID message type; aviation always arrives as 15 (Pack)
noise_floorint | null-98Noise floor in dBm, when the receiving chip reports one
registrationobject | null-Drone maker/model resolved offline from the Remote ID serial. Only available on Scout Sensor+ with a valid license, null otherwise
odiddict-This contains a preprocessed payload of the protocol. Regarding the possible values and message structure refer to ODID Library. Also for more details see the full protocol description below

Machine-readable schema​

The authoritative, versioned description of the whole JSON+ODID message is published as a JSON Schema (draft 2020-12) generated directly from the sensor's typed data models — every field carries a description with its units, valid ranges and null semantics, including how aviation traffic (ADS-B, ADS-L, UAT, FLARM, OGN) is flattened into the ODID structure (aircraft identifier in BasicID, flight number or callsign in SelfID, never a System message).

Download: scout-json-odid.schema-v1.0.json

The schema version (version and $id inside the file) is bumped whenever the wire format changes, so your integration can pin against a specific schema revision. Use it to generate typed client models or to validate received messages in CI.

warning

Textual JSON format with raw fields parsed from ODID sources below is just a representation formatted for clear understanding; the format sent will additionally be:

  • No indentation the object will be always a single line since it is sent in JSONL
  • All Invalid fields are processed and converted to null (Example: Lat,Lon 0,0 is converted to null)

Example JSON ODID Messages​

{
"sn": "D11234567812345678",
"mac": "ab:ab:bc:bc:de:de",
"counter": 24,
"rssi": -83,
"tech": "B4",
"recv_id": 0,
"module_id": 0,
"module_type": 10,
"msg_type": 1,
"noise_floor": null,
"registration": {
"maker": "Dronetag",
"model": "Beacon gen.2",
"type": "rid_module",
"certain": true
},
"odid": {
"BasicID": [
{
"UAType": 15,
"IDType": 1,
"UASID": "159112345678"
}
],
"Location": {
"Status": 2,
"Direction": 202.0,
"SpeedHorizontal": 16.5,
"SpeedVertical": 0.0,
"Latitude": 50.0835017,
"Longitude": 14.4328954,
"AltitudeBaro": 95.0,
"AltitudeGeo": 0.0,
"HeightType": 1,
"Height": 163.0,
"HorizAccuracy": 0,
"VertAccuracy": 0,
"BaroAccuracy": 0,
"SpeedAccuracy": 0,
"TSAccuracy": 0,
"Timestamp": "2026-06-01T09:49:11",
"TimestampEstimated": false
},
"SelfID": null,
"System": null,
"OperatorID": {
"OperatorIdType": 0,
"OperatorId": "d6lE0m0Hi2iNx"
}
}
}
warning

Bluetooth Legacy, e.g. tech=B4, sends each message type (System, Location...) separately. PACKED messages are not supported over B4. Aggregation may be introduced later. Aggregation was introduced in ScoutOS 2026.05.29. Bluetooth Legacy messages are aggregated until a valid Location message arrives and then the whole aggregate is sent further as PACKED message. The aggregate is then dumped with every updated Location message because other fields rarely change.

  • Note: This behavior can be similar with the other technologies; it depends on the implementation of the transmitter. Generally Wifi Beacon, Wifi NaN and Bluetooth 5 Long range send all of the information in a single pack but it is not guaranteed. We do not know any transmitter that would do so but it is possible. So take into account that not all of the information has to be valid when processing to prevent unnecessary crashes.

Heartbeat/Status​

If you select status source for your forwarder, you will receive a status message every 60 s These messages contain:

  • Basic device information
  • GNSS position (when GNSS is enabled)
  • LTE network status (when an LTE modem is present)
  • Sensors details

Example Heartbeat message:

{
"sn": "D11234567812345678",
"timestamp": 1780310741,
"receivers": 2,
"last_observation": 1780310741,
"gnss_available": true,
"gnss_position": [
50.073992633,
14.466609883
],
"gnss_satellites": 6,
"gnss_altitude": 262.5,
"gsm": {
"enabled": true,
"state": "connected",
"quality": 100,
"tech": "lte"
},
"sensors": [
{
"id": "RW1",
"uid": 2,
"source": "wifi/dri_wlp1s0u1u2",
"state": "ok",
"timestamp": 1780310741.7995672,
"tech": "RemoteID",
"messages": 0,
"filtered": 0,
"last_message_at": 0,
"last_status_at": 0,
"extras": {
"module_type": 10,
"module_type_name": "RW1",
"module_revision": 0
}
},
{
"id": "ADS-B",
"uid": 18873,
"source": "18873",
"state": "ok",
"timestamp": 1780310741.7998254,
"tech": "ADS-B",
"messages": 32588,
"filtered": 32588,
"last_message_at": 1780310741,
"last_status_at": 0,
"extras": {
"export_running": false,
"export_size": 0
}
}
]
}

Downloads​

Scout Sensor Format Specification (v2.5)

JSON+ODID schema (v1.0)

SCOUT datasheet (v2.4, superseded by the Format Specification)

Sensor+ configuration


Sensor+ offers advanced integrations with third-party servers.

TAK (Tactical Awareness Kit)​

TAK logo

TAK offers unsecured and secured communication. Secured communication uses certificates that come in three possible ways to the Scout client

  • as separate PEM files (one for CA - the server certificate, one for client certificate, and one for client's private key);
  • as P12 bundle - this file contains all three mentioned PEM files bundled together;
  • from enrollment process (will be described later)
note

If your Scout runs in Cloud Mode, you don't need this integration to get drone tracks into TAK - the Dronetag cloud can stream them to your TAK server for you over the integration portal. Use that route whenever you don't need the direct data flow from the Scout itself; the Sensor+ integration described here is what you want when the Scout must reach the TAK server on its own, without any cloud in the path. See Using Scout with the Dronetag App for a video walkthrough of the cloud route.

Basic settings​

TAK Basic Settings

URL: specify host (e.g. tak.example.com) or IP (e.g. 10.1.1.25). If your server uses standard ports (8088 unsecured, 8089 secured) then you don't need to specify the port. If you want to use unsecured UDP version, use "Force UDP" switch.

SOURCES: you should keep drones and status messages. The only meaningful change is (un)checking aviation if you don't want to see surrounding airplanes in your TAK.

Force UDP: if your server supports only UDP protocol then check this option. UDP cannot be secured nor verified ( connection failure will never be reported).

Security settings​

TAK Security Settings

The suggested setup is to have all security features enabled (security, verify server cert, verify server domain). This will ensure server certificate is enforced and thoroughly checked. If the server certificate doesn't have its domain/IP correctly filled in, then you can disable the domain/IP check to accept even such certificate and keep your comms secured. In this case, either your server needs to use globally recognized CA such as Let's Encrypt or you need to supply your CA's certificate into the first field "Server CA Certificate" in PEM format. There is the option to use p12 bundle with "P12 Trust Bundled RootCA" that will take CA certificate from the last certificate from the bundle.

CERTIFICATE VERIFY FAILED​
TAK Security Server Cert Not Trusted

The image on the right shows the error when Scout cannot verify server's certificate. Please note that the CA certificate must be server's root CA. It cannot be an intermediate CA. You have a few solutions

  1. If you are using p12 bundle and the server's certificate has the same RootCA as the certificate in the bundle then use "P12 Trust Bundled RootCA". This will extract the top-level certificate from the p12 bundle and use it as trusted certificate for verifying the server.
  2. If you are using p12 bundle (and have "P12 Trust Bundled RootCA" to "No") or not using the p12 at all - in both cases the "Server CA Certificate" will be used if you have checked "Verify Server Cert". Make sure it is the top-level rootCA.
  3. As a temporary fix, you can uncheck "Verify Server Cert" and "Verify Server Domain/IP" in case of problems and the client will simply accept any certificate that the server gives you. This is not secure at all of course.

Client Certificates​

TAK Security P12 Bundle

For secured communication from client to server, you must specify "Client Certificate" and "Client Key" either as separate PEM files or in a P12 bundle. If you upload both PEM and P12, only the P12 will be used. Optionally, PEM Key can be password protected. In this case use the "Client Key Password" field. Keys in P12 must not be password protected. Usually the bundle itself is protected hence the field "P12 Bundle Password".

If any of those displayed errors appear, that means your client certificates were rejected by the server or are outright invalid.

  • [SSL: TLSV1_ALERT_INTERNAL_ERROR] tlsv1 alert internal error
  • [SSL: TLSV13_ALERT_CERTIFICATE_REQUIRED] tlsv13 alert certificate required

ENROLLMENT​

TAK Security Authorization/Enrollment

If you don't have certificates but you were given username, password and optionally a passphrase then you should use those in the authentication section together with setting Enroll to "yes". Those credentials are used in standard enrollment process using Marti API on port 8446. We currently do not support custom certificates for secured communication during enrollment but it will be part of the next release. If your enrollment server is running at a different port or even URL, then use the provided Enrollment URL.

TAK Settings​

Friendlies: here you can define friendly drones one-per-line by their serial number or MAC address in standard colon-delimited format. You can optionally add callsign under which they will appear on the map. Separate the callsign by a comma. Example:

1596F319B877381F1BBF, blue1
1596F33DEC76E5C15FD3

TAK Data​

Scout sends the following messages to the server:

Heartbeat​

Scout is sending a heartbeat every 60s as a friendly ground sensor a-f-G-E-S instead of usual t-x-d-d. This will place Scout on the map with callsign "SCOUT-<last-4-digits-of-serial-number>" while the uid of those messages is "<serial-number>-sensor".

Drones​

Scout by default marks drones as Unknown affiliation. If the drone's serial number or MAC address were specified in the friendly settings, then they will be marked as Friend. Scout also distinguishes between fixed-wing and rotary drones. So the possible COT types reaching the server are one of

  • a-u-A-C-F-q resp. a-f-A-C-F-q for unknown fixed-wing drone resp. friendly one
  • a-u-A-C-H-q resp. a-f-A-C-H-q for unknown rotary drone resp. friendly one

Drone's callsign is [UA]snxxxx where snxxxx is the last 6 digits of the drone's serial number. If the serial number is not available then drone's MAC address is used instead (will have ":" inside).

Drone Operator​

Operator is visually linked to their drone by their callsign [OP]snxxxx that shares the drone's serial number. Operator is also linked to their drone on COT level by the link_to element. Operator's COT type is a simple ground unit a-u-G-U resp. a-f-G-U if the operator's drone is defined as friendly.

Example​

A single Remote ID detection produces up to two CoT events: the UAV track (from the drone's broadcast location) and a separate operator marker (from the drone's broadcast system message). The operator event references the drone via its <link> element, so the two appear connected on the map. Below is a real event pair emitted by a Scout with serial D19D2405DD799BF9B5 for a rotary drone broadcasting UAS ID MJJE3G894BIQV0Z:

<event version="2.0" type="a-u-A-C-H-q" uid="D19D2405DD799BF9B5-UAS-MJJE3G894BIQV0Z" how="m-g" time="2026-07-23T05:10:57.263681Z" start="2026-07-23T05:10:57.263717Z" stale="2026-07-23T05:11:27.263725Z">
<point lat="-48.8766700" lon="-123.3933300" le="3.0" hae="403.0" ce="10.0"/>
<detail>
<_flow-tags_ pytak-scout="2026-07-23T05:10:57.263739Z"/>
<contact callsign="[UA]BIQV0Z"/>
<track track="86.0" speed="0.0"/>
</detail>
</event>
<event version="2.0" type="a-u-G-U" uid="D19D2405DD799BF9B5-OP-MJJE3G894BIQV0Z" how="m-g" time="2026-07-23T05:10:57.264431Z" start="2026-07-23T05:10:57.264448Z" stale="2026-07-23T05:12:57.264454Z">
<point lat="-48.8766192" lon="-123.3933311" le="10.0" hae="405.5" ce="5.0"/>
<detail>
<_flow-tags_ pytak-scout="2026-07-23T05:10:57.264468Z"/>
<contact callsign="[OP]BIQV0Z"/>
<link relation="p-p" type="a-u-A-C-H-q" uid="D19D2405DD799BF9B5-UAS-MJJE3G894BIQV0Z"/>
</detail>
</event>

Aviation​

If your Scout has aviation modules and you enable aviation to be sent to the TAK integration the airplanes will appear as civilian fixed-wings a-u-A-C-F resp. helicopters a-u-A-C-H. In the UI, you should see their reported flight number (e.g. EJU39FN). If the flight number is not available then ICAO ID is used (which is a number).

GNSS Position of the Scout

Scout Location on the map

The Dronetag Scout is equipped with a GNSS receiver that enables:

  • Visibility on the map within our application
  • Time synchronization using the GNSS signal
  • Transmission of position data to the server via the network

Privacy Control​

All Scouts are delivered with GNSS location enabled by default. However, you can disable GNSS location or enter the location coordinates manually. Turning off GNSS will prevent leaking Scout's location over the network. It will not be visible in Heartbeat/Status messages nor in data. Disabling GNSS will not affect Scout's ability to correct its time using the embedded GNSS module.


Setting GNSS Location and Altitude Manually​

GNSS section in the System tab of the Scout management interface

To set the GNSS position manually, follow these steps:

  1. Connect to the Scout’s Management Interface Follow the instructions in Connect to the Management Interface to access the Scout’s web UI.

  2. Navigate to the GNSS Section Go to the System tab and scroll down to the GNSS section. The GNSS position toggle controls sending the positioning information over the network.

  3. Enter Coordinates Fill in the desired latitude and longitude coordinates into the GNSS position field. If empty, the receiver is using the internal GNSS Unit to determine its current position.

  4. Enter Altitude (optional) Fill in the desired altitude in meters into the GNSS altitude field. If empty, the altitude measured by the internal GNSS Unit is used.

  5. Save Your Changes Click the Update GNSS button to save the manual location.

⚙️ System Configuration

Changing the Username and Password​

To enhance your Scout's security, it is highly recommended to change the default login credentials.

  1. Access the Management Interface
    Navigate to the Scout’s management UI and go to the System tab.

  2. Authenticate with Current Password
    You will need to enter the current password to authorize changes.

    • The unit itself has a label with the default password on the bottom of the device's body, in case the packaging is lost.
    • If necessary, you can perform the reset to factory defaults, which resets the password as well.
  3. Set a New Password
    Enter your new password twice to prevent typographical errors.

  4. Save the Changes
    Click the Update Password button to apply the new credentials.

caution

Don't forget to store your new username and password securely. If you perform a factory reset, the login credentials will revert to the default values.


🔧 Configuring a Trusted Certificate​

Scout Upload CA/Cert

To avoid browser security warnings and enable a trusted HTTPS connection, you can configure the Scout with a certificate trusted by your system. You can manage certificates directly from the Configuration section of the Scout’s web interface. It provides the following options:

  • Add Certificate (CA Upload):
    Upload a Certificate Authority (CA) certificate that will be added to the Scout’s internal trust store.
    This is useful if your organization uses a private CA and you'd like to trust client certificates issued by it.

  • Upload HTTPS Certificate and Private Key:
    Use this to replace the default self-signed certificate with a certificate signed by your CA.
    This will allow the Scout’s interface to be accessed via HTTPS without browser warnings, assuming the certificate is trusted by your local system.

🔄 Automatic Fallback to Self-Signed Certificate​

If the uploaded HTTPS certificate becomes invalid or expires, the Scout will automatically regenerate a self-signed certificate.
This ensures that the device remains accessible via HTTPS, even if the trusted certificate can no longer be used.

tip

Using trusted certificates is especially helpful when integrating the Scout into enterprise networks or accessing it from managed devices with strict security policies.


📡 Status Reporting (Heartbeat)​

Scout Status Reporting settings

The Scout periodically sends a status message (heartbeat) describing its overall health: the number and state of its sensor modules, the time of the last detection, GNSS availability and position, and LTE modem state and signal quality.

The same status message feeds every connected service that subscribes to the status message source:

  • Dronetag Cloud — keeps the sensor shown as online in the Drone Scanner app and the Dronetag Cloud.
  • Advanced integrations that support status, such as TAK (the marker of the Scout itself), Sapient (sensor status reports), or Skydio (Marker for this Scout). See the Sensor+ configuration page for details on each integration.

⚙️ Configuring the Reporting Rate​

You can adjust the reporting behavior in the System tab under Status Reporting:

  • Fast reporting after start (enabled by default): right after start-up (or after a configuration change), status is first sent every 10 seconds and the rate gradually slows down until it reaches the interval below. This makes the Scout appear online promptly after installation or reboot while keeping the steady-state traffic low.
  • Send every (default 60 s): the steady-state interval between status messages.

When Fast reporting after start is disabled, the configured interval is used from the very first message.

tip

Keep the defaults unless you have a specific need. A shorter interval makes status changes (e.g. a sensor failure) visible sooner in all connected systems, at the cost of more traffic on a possibly metered LTE uplink. A longer interval saves data, but connected systems may consider the Scout offline if they expect more frequent status updates.


🛠️ System Maintenance Services​

Maintenance services in the System tab of the Scout management interface
warning

These services are not available on Scout EVK models.

Both of the following services operate only when the Scout is connected to our servers that handle these functions. They communicate securely via standard HTTPS connections, using asymmetric cryptography to ensure privacy and security. These services are accessible only by our team.

Dronetag Update Service​

This service automatically updates the Scout whenever a new firmware release is available. It helps you to stay up to date with the latest features, improvements, and security patches we develop.

For more details about the automatic updates and how to perform manual firmware updates when the Dronetag Update service is off or no internet connection is available, please refer to the Firmware Update page.

Remote Troubleshooting Service​

This service enables our support team to remotely connect to your Scout to help diagnose and resolve any issues you encounter. If users experience difficulty accessing the Scout's Ethernet port, remote troubleshooting via the 4G network connection can be utilized.

Control and Availability​

Both services can be enabled or disabled according to your preference. We recommend disabling the Remote Troubleshooting Service once the Scout has been installed, since most of the troubleshooting requests come during the Scout installation period.

warning

Currently, these services are available on all Dronetag Scout devices, but in the future, they will only be included in the Scout Sensor+ package and in the Cloud Mode, due to infrastructure costs associated with maintaining these connections.

Statistics​

Statistics setting in the System tab of the Scout management interface

The Scout can send statistics to Dronetag. These are system statistics and reception-quality metrics — mainly signal sensitivities and background noise — together with the system's internal health indicators. They are indispensable for debugging poor reception performance.

Statistics contain no drone positions and not the sensor's own position, and no passwords or textual settings are transmitted.

Diagnostics​

Diagnostics setting in the System tab of the Scout management interface

Send diagnostics to Dronetag is opt-in error tracking. When one of the services experiences an issue or error, the relevant information is sent to Dronetag to help diagnose it. A report includes the error details, partial logs, and this device's serial number.

warning

Unlike Statistics, diagnostics reports include partial logs that may contain sensitive information, such as the position of the sensor or of detected drones. Outgoing traffic is strictly rate-limited so metered connections are not drained.


🔄 System Factory Reset​

To restore your Scout device to its original factory settings, follow the instructions below.

This procedure will erase all local configuration, including network settings, APN, data privacy preferences, the password credentials (if updated), and custom changes.

ℹ️ Cloud registration is not erased — your Scout will remain linked to your Dronetag Cloud account.

Scout Factory Reset pins

🛠️ Reset Instructions​

  1. Locate the GPIO pins labeled Factory Reset (GPIO 21) and GND on the Mini Computer board.
    These two pins are directly next to each other.

  2. Connect the two pins using a jumper or a small conductive wire.

  3. While the pins are connected, power on the Scout using the PoE injector.

  4. Keep the pins connected and wait approximately 1 minute.

  5. After the reset completes, remove the jumper and reboot the device if necessary.

  6. To begin fresh setup after reset, see: 🔗 Scout Connection & Initial Configuration Guide

warning

This factory reset procedure does not apply to the Scout EVK model.

License

Dronetag Scout devices require valid licensing to ensure compliance with software usage terms and to unlock specific features. Licensing helps us provide ongoing updates, support, and new functionalities while ensuring proper usage across different deployment modes.


Licensing Requirements​

  • Scout EVK: A license is always required to operate the device.
  • Scout Sensor Mode: No license is required for basic Sensor Mode.
  • Scout Sensor+ Mode: A license is required for Sensor+ mode, which provides additional features.
  • Scout Cloud Mode: Requires a software license managed by our servers, not by the Scout device itself. This license is automatically handled and renewed on our side.

Checking Your License Status​

Current-generation Scouts

Licenses for current Scout units are provisioned and renewed remotely by Dronetag — there is no License tab on the management page and no license file to upload. If your license is active on your account, cloud features work; you can verify by checking that your Scout appears in the Dronetag App. To purchase or renew, contact support@dronetag.com with your serial number. The steps below apply to older units (Scout EVK) that still manage the license locally.

  1. Access the Scout’s Management Page.
    For detailed instructions on accessing the Management Interface, please refer to the Connecting to the Scout page.

  2. Navigate to the License tab to view license details, including the expiration date.

tip

Licenses for Scouts operated in Cloud Mode are automatically managed by our servers and typically do not require manual renewal.


Purchasing a License​

To obtain a new license:

  1. Contact our support team at support@dronetag.com.

  2. Provide your Scout’s serial number and specify the desired license validity period to help expedite your request.


Uploading a New License​

Once you have received your license file via email:

  1. Download the license file to your computer.

  2. Access the Scout’s Management Page.
    For detailed instructions, see the Connecting to the Scout page.

  3. Navigate to the License tab.

  4. Click Upload New License and select the license file.

  5. Confirm to activate the new license.


Licensing Summary​

DeviceLicense Required?
Scout EVKAlways required
Scout Sensor ModeNo license required for Sensor Mode
Scout Sensor+ ModeLicense required
Scout Cloud ModeSoftware license managed by our servers

If you have any questions or need assistance with licensing, please contact support@dronetag.com.

⬆️ Firmware Update

Scout Version

You can monitor the current firmware version of your Scout in the Management UI. For details on accessing the Management Interface, please refer to the Connecting to the Scout page.

Keeping your Scout's firmware up to date is essential to ensure your device runs smoothly and securely. Firmware updates often include important security patches, bug fixes, and new features that enhance performance and functionality.

Checking your firmware version regularly helps you stay informed about your device’s status. In the near future, this page will also include a detailed changelog documenting the latest features and improvements.

warning

We strongly encourage you to keep your Scout updated to prevent vulnerabilities and enjoy the full benefits of the latest enhancements.


🔄 Automatic Firmware Updates​

Dronetag Update service and Update Schedule options in the System tab

The firmware update process depends on the mode you are using and your device generation.

Firmware Updates in Sensor+ and Cloud Mode​

When using your Scout in Cloud Mode, firmware updates are handled automatically by the Dronetag Update service.

This service must be enabled for automatic updates to apply. You can manage this in the System Maintenance Services section.

Your device will always run the latest firmware version as soon as it’s released.

Choosing When Updates Happen​

Automatic updates are driven by the Dronetag Update service on the System tab, and you can control when the Scout checks for and applies them:

  • Continuous (default) — with the Dronetag Update toggle on, the Scout checks for new firmware regularly and installs updates as soon as they are released.
  • Scheduled — turn on Dronetag Update Schedule to restrict update checks to specific days of the week and a time of day. Continuous checking is turned off and the Scout only checks — and installs, if an update is available — at the times you choose. This is useful for keeping updates, and the reboot they trigger, inside a maintenance window.

The Dronetag Update service stays enabled while a schedule is active — the update service must keep running to perform the scheduled checks. Leaving no weekday selected means the check runs every day at the chosen time.

Time zone

You pick the day and time in your web browser's local time. When you save, the Scout converts it to its own clock, which runs on UTC (the Scout has no geographic time zone; its clock is kept accurate over the network). So the same schedule fires at the same real-world moment no matter where you set it from. Note that if your region observes daylight-saving time, a schedule set once keeps its fixed UTC moment and will therefore appear to shift by an hour across a DST change — re-save it if you want to realign it.

note

Applying an update reboots the Scout, so pick a scheduled time when a brief reboot is acceptable. See Automatic Reboot After the Update.


💾 Manual Firmware Updates for Scout​

Scout Firmware Update page

Manual firmware updates are performed from the Firmware Update page of the Management UI:

  1. Access the Management Page for your device.
  2. Navigate to the firmware update page at http://<Scout-IP>/update (replace <Scout-IP> with your device’s IP).

The page offers two ways of updating:

  • 🗘 Check Online — the Scout checks Dronetag servers for newer firmware and downloads and installs it on request. The Scout needs internet access for this.
  • Offline update — you upload a firmware bundle (a .local file provided by us) from your computer. This works even when the Scout itself has no internet access.

After a successful installation, the device reboots automatically.

🔎 Checking for Updates Online​

Scout Firmware Update page after checking for updates online
  1. Click the 🗘 Check Online button. The page shows the Installed and the Latest available firmware versions.
  2. If a newer firmware is available, an Update available badge appears and the button changes to ⬇ Download Update. Click it to download the update — a progress bar tracks the download.
  3. When the download finishes, the button changes to ▶ Apply Update. Click it to install the update. The installation log is streamed to the page.
  4. When the installation finishes, the device reboots automatically.
Online update: Check Online → Download Update → Apply Update → automatic reboot
Online update: Check Online → Download Update → Apply Update → automatic reboot

📤 Offline Update (Uploading a Firmware Bundle)​

Windows removes the .local extension from downloaded files!

When you download an update bundle on Windows, the file is often saved without the .local extension — you end up with e.g. ScoutOS-2026.07.13.mender instead of ScoutOS-2026.07.13.mender.local.

Rename the file and add the .local extension back before uploading it, otherwise the Scout cannot process the uploaded bundle.

  1. Download the update bundle (.local file) — the packages and the changelog can be found on the Firmware Changelog page.
  2. In the Offline update row, click Choose File and select the downloaded .local file. The upload starts immediately after the file is selected.
  3. The upload progress and the installation log are streamed to the page.
  4. When the installation finishes, the device reboots automatically.
Offline update: uploading a .local firmware bundle, installation, and automatic reboot
Offline update: uploading a .local firmware bundle, installation, and automatic reboot

🔁 Automatic Reboot After the Update​

Once the new firmware is installed (via either method), the Scout reboots automatically. The page dims and shows “Rebooting device…” while it waits for the device to come back online. You don’t need to do anything — the page detects the device again by itself.

When the device is back online, the page shows “Update installed — verifying system”. The Scout then verifies the new firmware for several minutes and finalizes the update.

warning

Keep the Scout powered during the entire update, and do not turn it off for at least 5 minutes after the reboot while the new firmware is being verified.

Waiting for reboot
Waiting for reboot
Reboot finished — system verification
Reboot finished — system verification

⚠️ Updating Scout EVK (Evaluation Kit)​

For Scout EVK, firmware updates are applied automatically:

  1. Connect the Scout EVK to a network with internet access.
  2. Keep the device powered on for at least 1 hour.
  3. The management software will automatically download and install the latest firmware.
warning

We strongly recommend upgrading to the latest Scout hardware and firmware for improved security and features.

For specific details on upgrading your Scout EVK to the latest version, please refer to the Scout EVK Upgrade page.


If you have any questions or run into issues during the update process, please contact our support team at support@dronetag.com.

Firmware Changelog

Following is a detailed list of changes to the Dronetag Scout firmware.

Please note that the changelog is very technical and can be hard to understand for non-technical users. You can use this changelog to check if a specific issue you are experiencing has been fixed in a newer firmware version, or to see what new small features are available.

If you find this information confusing, we recommend you check our What's new page instead, where we try to introduce the most important changes and features to all of our products.

Using Scout with the Dronetag App

caution

Using Scout with Dronetag App is only possible when Scout is used in Cloud Mode.

This guide walks you through using your Dronetag Scout device with the Dronetag app.

The application requires version v2.126.1 or higher.

The Dronetag App is available on multiple platforms, offering a seamless experience whether you use it on the web or on your mobile or tablet device. While the web version might be the most comfortable for some tasks, all features are fully accessible on mobile and tablets as well.

Available as Web App Download on the App Store Get it on Google Play

Registering Your Scout​

Before getting started, make sure you have a Dronetag account. You can sign up for free at dronetag.app.

To view your Scout’s data in the app, you’ll need to register the device to your account. Follow these steps:

  1. Navigate to the My Devices page.
  2. Click the Register new button in the top-right corner.
  3. Enter your Scout’s serial number.
tip

Some Scout kits come pre-registered to preconfigured accounts. If that’s your case, you have already received your log-in name and password from us. You may skip this step.

To verify if your device is already registered, head to the My Devices page and check if your Scout appears on the list.


Setting Your Data Privacy​

Before you start using the app, take a moment to review your data visibility settings.

Go to your profile page and click on Cloud Data Visibility. This setting determines whether your drone data is visible to the public or kept private.

caution

This setting affects all devices associated with your account. If a device is moved to a different account, it will follow that account’s visibility settings.


Checking the Status of Your Scout​

App Scout Device Detail

To check the status of your Scout in real-time:

  1. Navigate to the My Devices page.
  2. Select the device you want to check.

On this screen, you will be able to see a basic overview of its status, including:

  • Online/offline status
  • LTE - signal strength (if installed)
  • GNSS - number of satellites

Device configuration is not available in the app. To change settings, you need to connect to the Scout web interface. Learn more about Scout configuration here.

Device status: Scanning vs. Standby​

  • Scanning — the device is actively scanning and sending detection data to the cloud.
  • Standby — the device is not currently sending data to the cloud.

The difference is cloud data transmission, not detection capability.


Viewing Detections in Real-Time​

App Map Situation

From the app’s main map screen, you can see all drone traffic accessible to your account — including your own Scout and public drones from other users.

Click on icons in the map to view detailed information such as drone position, altitude, and speed.


Map Icon Legend​

UAV Location — Indicates the current position of a drone.

Operator Location — Shows the position of the drone operator, when available.

Receiver Location — Displays the location of a Remote ID receiver.


Browsing Detection History​

App Detections List

To view past detections:

  1. Tap the radar icon at the bottom of the map screen, or
  2. Go to your profile page and select My Detections.

This opens a list of all detections available to you.

Use the dropdown menu at the top to select a specific device (if you have more than one). Then choose the desired date — by default, it shows the current day.

note

We're improving this section with advanced filtering, sorting, and search tools to make it easier to navigate your detection history.


Viewing Detection Details​

You can open detailed views for each detection. What happens next depends on the age of the detection:

  • Live or recent detections: The map will automatically scroll to the detection's current position.
  • Older detections: You’ll be taken to a dedicated detail page showing all the information captured.

Tap the three-dot menu on the right for additional options.


Exporting Detection History​

You can export detection data and view it using mapping tools like Google Earth, QGIS, Mapbox, or OpenStreetMap (OSM).

To export:

  1. Open a detection detail screen in the app.
  2. Tap Export in the top-right corner and select the KML format.

Here’s how to open it in Google Earth:

  1. Visit Google Earth Web.
  2. Create a new project.
  3. Go to File → Open local KML file and select your exported file.

Streaming Scout Data to a TAK Server (Cloud Mode)​

In Cloud Mode your Scout's detections are not limited to the Dronetag App - the Dronetag cloud can also forward them to your own TAK server as Cursor-on-Target tracks, without any extra hardware or firmware on your side. The setup is done in the integration portal and is described in Setting up TAK Server integration.

A three-minute walkthrough by Tactical Tech Lab showing Dronetag Remote ID data appearing live on a TAK server through this cloud integration.

tip

If you need the Scout to reach your TAK server directly, without the cloud in the path, use the Sensor+ TAK integration instead - see Sensor+ configuration.


Using the Dronetag App on Mobile​

The Dronetag App is fully cross-platform — meaning you can access all features from your mobile device just as you would on the web.

Our app is available for both iOS and Android, allowing you to use it on your smartphone or tablet. You can download it from the App Store or Google Play.

Download on the App Store Get it on Google Play Available as Web App

All web app features — including device registration, real-time tracking, and detection history — are also available in the mobile app.

LED Indications

important

Please note the LED on the bottom is only available on models manufactured after April 2026. The LED can be found on the bottom of the device, as shown in the picture below.

The LED on the bottom of the device provides immediate, high-level feedback during installation and maintenance. It is designed to save you trips between the rooftop and your laptop by confirming power, network connectivity, and configuration validity at a glance.

LED Behavior Configuration​

You can customize how the LED behaves in the web UI settings to match your specific deployment needs:

  • LED ON: The LED runs continuously in all operating states. Ideal for field tests or tripod use.

  • LED OFF: The LED is fully disabled. Best for maximum stealth or security.

  • LED Auto-Off (Default): The LED stays active for 10 minutes after power-up to assist with installation, then turns off to prevent light pollution.

note

Even in Auto-Off or OFF mode, the LED will always light up if an error occurs. Once the error is cleared, it returns to its configured state.

Brightness Levels​

Adjust the visibility based on your environment:

  • Bright (Default): High visibility for daytime installations.

  • Medium: Balanced for general use.

  • Dim: Designed for sensitive environments; visible only at night when standing directly next to the unit.


Device States​

Possible states are the following:

Booting​

LED is solid yellow

Solid yellow indicates that the unit is powered and software services are starting. The device is not ready for operation yet. Please wait for the initialization process to complete, which typically takes a few moments after power-up.


Connection Issues​

LED is flashing yellow.

Fast blinking yellow means that although the configuration is valid, the unit cannot reach the LTE network or the data endpoint. Please check the following:

  1. APN settings: Verify they match your carrier's requirements.
  2. SIM card: Ensure it has an active data plan and the PIN request is disabled.
  3. Physical connection: Check the Ethernet cable or ensure your firewall isn't blocking communication with the endpoint.

Configuration Error​

LED is slowly blinking red.

Slow blinking red indicates that the configuration is incomplete or invalid. The device cannot start its services because some parameters are missing or wrong (e.g., incorrect mode, missing data endpoint, or missing SIM card). Please log in to the web UI and fix the configuration.


Internal Error​

LED is solid red.

Solid red signals a severe internal fault or hardware failure. This may be caused by a hardware issue or a system watchdog loop. Try to power cycle the unit. If the LED remains solid red after the restart, please contact support.


Normal Operation​

LED is slowly blinking white.

Slow blinking white means everything is working as expected. The configuration is valid, the device is connected to the network (LTE or Ethernet), the endpoint is reachable, and the unit is actively scanning and forwarding data.


Detection activity​

LED is flashing blue.

Fast blinking blue indicates that the device is currently detecting nearby aircraft (drones or low-altitude manned aviation) based on your configured thresholds. This is a real-time activity indicator useful for verifying test flights or local traffic.


Maintenance or Firmware Update​

LED is flashing magenta.

Fast blinking magenta indicates a critical system process, such as a firmware update or disk encryption. The device will reboot automatically once the process is complete.

WARNING: Do not disconnect the power during this time to avoid system corruption.


🛑 Troubleshooting

This page contains detailed troubleshooting information to help you identify and resolve the most common issues encountered while using the Dronetag Scout. Whether you’re facing connectivity problems, detection range limitations, or firmware concerns, the guidance below is designed to walk you through practical steps toward a solution.

Before contacting our support team, please ensure that your device is running the latest firmware version, as many issues are resolved through regular updates. You can follow our Firmware Update Guide for instructions on how to check and update your Scout.

We also encourage you to review the most common problems first, where we’ve listed known scenarios and their proven solutions. If you're still experiencing trouble after reviewing those, please proceed to the section on how to report a problem to our support team, where you’ll find a checklist of the information we need to assist you efficiently.

If you notice an issue not covered here, don’t hesitate to contact us at support@dronetag.com. Your feedback helps us improve and expand our documentation to serve you better.


How to report a problem to our Support Team​

1. Troubleshoot before you report a problem​

Carefully review the possible causes of the problem (described below) before reporting it.

2. Compose an Email​

To report a problem, send an email to our support team at support@dronetag.com.
Use the subject line: “Problem Report – [Insert Your Product Name]” to help us identify your request promptly.

3. Provide a Detailed Description​

Include the following details in your email:

  • Email Address: Your account email address.
  • Product Name: The product you are reporting the issue with.
  • Serial Number: 16-digit serial number from the bottom of the Scout or the management page.
  • Interface Used: Web browser and OS (e.g. Chrome on Windows 11, Safari on iOS 18, etc.)
  • Problem Definition: What is the problem? What were you expecting? What happened?
  • Steps to Reproduce: A clear list of steps to replicate the issue.
  • Video Recording: A short screen recording if the issue can be visualized.
  • Screenshot or Drone Scanner Record: Attach if applicable.
  • Additional Information: Logs, photos, or anything that might help us understand the situation.
4. Send the Email​

Double-check that all the information and attachments are included. Then send it to support@dronetag.com.
Our support team will get back to you as soon as possible.


🛠️ Troubleshooting Connectivity​

If you're unable to access the Scout’s interface, try the following steps to identify and resolve common issues:

✅ Double-Check Network Settings​
  • Ensure your computer is on the same subnet as the Scout.
  • If your network uses DHCP, confirm the DHCP server is running and has available IP addresses.
  • If DHCP is not available, verify that your computer is manually configured to access the Scout’s fallback static IP (192.168.100.100/24).
    • Example manual IP for your computer: 192.168.100.10
⚙️ Configure Ethernet Speed and Duplex​

Some switches or routers may experience auto-negotiation issues with the Scout. To resolve this, manually set the Ethernet port configuration in your switch or router's management interface to:

  • Speed: 100 Mbps
  • Duplex: Full duplex

This setting can often be found under port settings or advanced configuration in your network equipment's UI.

🔄 Reset the Scout to Factory Defaults​

If you've made changes to the network configuration and can no longer access the device:

  • Perform a factory reset to restore default settings.
  • After resetting, the Scout will attempt to obtain an IP address via DHCP and fall back to its static IP (192.168.100.100) if no DHCP server is available.

Refer to the Factory Reset Instructions for detailed steps.


Common issues​

Registration fails with "Device is already registered"​

This error has two common causes:

  1. The Scout has no active Cloud license. Scouts delivered without a Cloud license run in Sensor Mode (raw data output for integration into your own system) and are intentionally not registrable in the Dronetag App — this error is the expected behavior for them. To use the Dronetag App, a Cloud license is required; contact support@dronetag.com with your serial number to purchase or renew one. A Cloud license can be added at any time after purchase, without extra hardware.

  2. The Scout is registered to another account. Only one account can register a given Scout. Remove it from the original account first (Dronetag App > Profile > My Devices > Remove from account), then register it on the new account. Alternatively, keep the current registration and share detection data with other users. If you don't know which account owns the device, contact support with the serial number.

A licensed Scout that suddenly disappears from your device list usually means the Cloud license expired — contact support to renew it.

Device detects RID only at short distances​

Antenna performance can be affected by the surrounding environment: buildings, natural obstacles, nearby Wi-Fi/Bluetooth transmitters, or shielding (e.g. human body).

Ensure that:

  • Scout is not close to strong signal sources (Wi-Fi hotspots, towers, Bluetooth devices, etc.).
  • Antennas do not touch any object or surface.
  • Scout is not shielded or placed within 40 cm of another antenna.
  • Drones are in line of sight.
  • Minimal radio interference from nearby devices.
  • Omnidirectional antennas are mounted vertically.
  • Directional antennas are aimed 5°–10° above the horizon.
  • Scout antennas are connected correctly:
    • Front view: Longer antenna → left, shorter antenna → right
    • Antennas are tight and water-insulated.

Possible solution:

  1. Move the Scout to an open area with better visibility and fewer transmitters.
  2. Contact support with:
    • Photos of the Scout (360° view from its location)
    • Email the Scout is registered to
    • Scout serial number
    • Description of the issue and steps to replicate it
    • Device and OS info
    • Screenshot or screen recording
Device does not detect my Drone at all​

Test: Turn on a remote ID transmitter (drone must be airborne to transmit Remote ID).

  • Verify that the drone is broadcasting the Remote ID, check the manufacturer site for more details.
  • Use your mobile phone with Drone Scanner application. (Make sure that the phone is capable of receiving the technology that the drone is using)
  • Proceed to steps below
Device does not detect any RID at all​

Test: Turn on a remote ID transmitter (drone must be airborne to transmit Remote ID).

Ensure that:

  • Scout is online; check the Dronetag app and Management Web UI
  • Check the local scout map at https://<SCOUTIP>/map
  • You did not replace antennas with incompatible ones (use N-type male connector).
  • All cables are connected correctly.
  • Scout is visible in the Dronetag app or dronetag.app

Possible solution:

  1. Move to a more open environment with better signal reception.
  2. Contact support with the required information and attachments.
Scout is not working after the installation​

Usually caused by incorrectly connected cables.

Most common causes:

  • Network port not set to 100 Mbps
  • Incorrect PoE injector
  • Network/firewall misconfiguration

Ensure that:

  • All cables are connected properly.
  • The included PoE injector is used.
  • It is possible to Connect to the Management interface
  • All the settings, especially the network ones, are correct

Possible solution:

  1. Double-check all physical connections.
  2. Review Scout's configuration settings.
  3. Contact support with required documentation and photos.
Scout is not connecting to the local switch/router​

We have a dedicated in-depth troubleshooting section for networking here

Rattling sound inside the Scout / LTE stopped working after transport​

The LTE modem's USB cable can come loose from its connector during shipping or handling. Open the enclosure (see the SIM insertion guide for how to open it safely) and reconnect the USB cable to the free connector between the Ethernet port and the other USB cable (the middle, bottom one). The USB cable can be safely disconnected and reconnected during handling.

Management page shows "drireader.error: No DRI devices found"​

Check the age of the error shown in the red box. A large value (thousands of seconds) means it is an old, queued message that will clear itself — no action needed if detections work. If detections have genuinely stopped, open System on the management page, check how many modules are listed, use Obtain diagnostic logs, and send the logs to support.

Scout stopped working​

Double check that:

  • All cables are connected correctly. No accidental disconnection has happened.
  • PoE injector is plugged in and powered. Check the very dim LED on the PoE injector
  • Scout is configured correctly. Check that you can connect to the Management Web UI
  • Check your license using the Management Web UI.

Limited Warranty

Dronetag products are warranted to be defect-free in material and workmanship one year after the purchase. For the duration of the warranty period, Dronetag, at its sole option, will repair or replace any product which fails in normal use. Such repairs or replacement will be made at no charge to the customer for parts or labour, provided that the customer shall be responsible for any transportation cost.

Restrictions​

Warranty does not apply to cosmetic damage, consumable parts, damage caused by accident, abuse, misuse, water, fire or flood, damage caused by unauthorized servicing, or product that has been modified or altered.

Disclaimer​

We kindly advise that our company cannot assume responsibility for the installation of our product by the user or any potential loss incurred as a result. While we strive to provide comprehensive guidance and support, the responsibility for proper installation lies with the user. Should you require any further assistance or clarification, please do not hesitate to contact our customer support team. Your understanding is greatly appreciated.

Warranty Service​

Warranty repair service shall be provided directly by Dronetag. Proof of purchase for the product from Dronetag or an authorized reseller is required to obtain and better expedite warranty service. The customer is responsible for transportation costs involved in getting the unit to the Dronetag facility. It is recommended to use a shipping method with tracking and insurance.

Please email us at support@dronetag.com with a description of the problem you are experiencing. Also, please provide the model, serial number (if applicable), shipping address and a daytime contact number. You will be promptly contacted with further troubleshooting steps or return instructions.

Warranty Conditions​

The foregoing warranty shall apply only if:

  1. The Product has not been subjected to misuse, neglect or unusual physical, electrical or electromagnetic stress, or some other type of accident.
  2. No modification, alteration or addition has been made to the Product by persons other than Dronetag s.r.o. or Dronetag s.r.o.'s authorized representatives or otherwise approved by Dronetag s.r.o.
  3. The Product has been properly installed and used at all times in accordance, and in all material respects, with the applicable Product documentation.
  4. The Product's lightning protection, surge protection and ESD has followed local rules and Dronetag's instructions.

Dronetag s.r.o. does not warrant that the operation of the products is error-free or that operation will be uninterrupted. In no event shall Dronetag s.r.o. be responsible for damages or claims of any nature or description relating to system performance, including coverage, buyer’s selection of products for buyer’s application and/or failure of products to meet government or regulatory requirements.

Returns​

In the unlikely event a defect occurs, please work through the dealer or distributor from which this product was purchased.

If the Scout you want to return was bought directly from Dronetag, contact us at support@dronetag.com first and then send the product to the following address:

  • Dronetag s.r.o., Benesovska 2270/34, 10100 Prague, Czech Republic

Post-Warranty Service​

Besides warranty service, Dronetag also offers post-warranty repairs. Let us know at support@dronetag.com your problem, and we will try to do our best to find a solution for you.

Manufacturer​

The device is designed and assembled in the Czech Republic. Use the following facility address for any shipment of warranty or repair items.

  • Dronetag s.r.o., Benesovska 2270/34, 10100 Prague, Czech Republic

Declaration of Conformity

note

You can request the Declaration of Conformity document at support@dronetag.com.

Safety Notices

Dronetag Scout and Scout EVK have been created for the most straightforward handling possible. Still, the following safety notes must be followed to reduce the risk of accidents, injuries and device malfunction to a minimum. If misused, it has the potential for causing fire, electrical shock or personal injury. Dronetag is not liable for damages arising from the use or misuse of this product. To help ensure accident-free operation, follow these guidelines:

  • This and the Dronetag App manual must be read carefully, and all instructions must be followed. Special attention must be taken to all warnings and precautions.
  • Use only attachments/accessories specified by the manufacturer. Dronetag, s.r.o. carries no responsibility for using other than specified attachments/accessories.
  • The user is solely responsible for the risk while installing and using this device. Dronetag is not responsible for any injuries or accidents that are a result of installation of the Scout.
  • The LTE antenna used for this receiver must be installed to provide a separation distance of at least 20 cm from all human bodies and must not be located or operating in conjunction with any other antenna or transmitter.
  • Keep antennas of other devices as far from the Scout as possible, at least 40 cm.
  • Do not allow liquid, small particles or other foreign objects to get into the system. Follow the installation manual for proper installation.
  • Mounting the Scout or Scout EVK in an improper way may lead to injuring people or damaging property
  • Do not expose the system to conditions which exceed the Scout's or Scout EVK's or accessories' IP rating and operating temperature.
  • Keep the system and accessories, including cable ties and fasteners, out of the reach of small children.
  • If the system is brought directly from a cold location to a warm one, moisture may condense inside the system. If this occurs, the system may not operate properly. In this case, unplug all cables/accessories immediately and leave the device in a dry place for several hours.
  • Stop using the system and disconnect it from any connectors immediately if the device functions abnormally, produces unusual sounds or smells, or becomes too hot to touch.
  • Use outdoor rated Ethernet cable only.

Electric safety information​

  1. Compliance is required with respect to voltage, frequency, and current requirements indicated on the manufacturer’s label. Connection to a different power source than those specified may result in improper operation, damage to the equipment or pose a fire hazard if the limitations are not followed.

  2. There are no operator serviceable parts inside the Dronetag Scout and included PoE connector, except for replacing or installing a SIM card. Service should be provided only by a qualified service technician.

  3. Included PoE injector is provided with a detachable power cord which has an integral safety ground wire intended for connection to a grounded safety outlet.

    • Do not substitute the power cord with one that is not the provided approved type. Never use an adapter plug to connect to a 2-wire outlet as this will defeat the continuity of the grounding wire.
    • The equipment requires the use of the ground wire as a part of the safety certification, modification or misuse can provide a shock hazard that can result in serious injury or death.
    • Contact a qualified electrician or the manufacturer if there are questions about the installation prior to connecting the equipment.
    • Protective earthing is provided by Listed AC adapter. Building installation shall provide appropriate short-circuit backup protection.
    • Protective bonding must be installed in accordance with local national wiring rules and regulations.
  4. Follow all suitable local regulations for installation of electric devices.

  5. The maximum input voltage for PoE injector is 240V and should be applied only to included Power Cable.

  6. Do not put any DC voltage to any antenna connectors.

Avoid using this product in a location that can be submerged by water.

Lightning Protection​

Follow the local rules for installation of the lightning surge protection system when deploying the Scout and Scout EVK gateway, both outdoors and indoors. Such a protection system must be taken into consideration to ensure a fully functional gateway without interruptions or damage from lightning.

Avoid using this product during an electrical storm. There may be a remote risk of electric shock from lightning.

Outdoor Surge Protection System​

  • Antenna Grounding: Dronetag, s.r.o. recommends installing a lightning arrestor on all the antenna N-type terminals. The arrestors must be N-type Female to Male to fit the antenna and enclosure connectors. Ensure you use a 10 AWG or better wire to connect the screw terminals of the arrestors to the grounding rail mounted on the building wall (grounding bar in the case of field deployment).
  • Grounding of the Scout: We recommend grounding the device. We do not recommend grounding into the lightning conductor system. Additionally, it is recommended to use another 10 AWG or better grounding wire to connect the screw terminal on the bottom-left side of the gateway casing to the grounding rail (bar).
note

The grounding cable is included in the delivery of the Dronetag Scout.

Surge protector and lightning arrestor are not a part of the delivery of Dronetag Scout.

Indoor Surge Protection​

For protecting the indoor equipment and circuitry connected to the gateway, it is recommended to install an Ethernet surge protector. This device should be positioned along the cabling that connects the gateway to the PoE injector. Make sure you connect its grounding wire terminal to an appropriate building grounding point.

Routine Maintenance​

Regular maintenance of your Scout device helps ensure reliable operation and extends its lifespan. During maintenance checks, please verify the following:

  • Antenna Connections: Ensure all antennas are securely screwed in and have not loosened due to vibration or temperature fluctuations.
  • Antenna and Ethernet Port Insulation: Check that the insulation tape or protective seals applied to the antennas and the Ethernet port are intact and properly positioned to prevent moisture ingress.
  • Grounding Connection: Confirm that the grounding wire is firmly connected and not loose to maintain proper electrical safety and device protection.
  • Mounting Stability: Inspect the mounting hardware to make sure the Scout is securely fixed and there is no looseness that could cause mechanical stress or movement.

Perform these checks periodically, especially after harsh weather conditions or extended operation, to keep your Scout functioning optimally.

Limitation of Liability​

EXCEPT TO THE EXTENT PROHIBITED BY LOCAL LAW, IN NO EVENT WILL DRONETAG S.R.O. OR ITS SUBSIDIARIES, AFFILIATES OR SUPPLIERS BE LIABLE FOR DIRECT, SPECIAL, INCIDENTAL, CONSEQUENTIAL OR OTHER DAMAGES (INCLUDING LOST PROFIT, LOST DATA, OR DOWNTIME COSTS), ARISING OUT OF THE USE, INABILITY TO USE, OR THE RESULTS OF USE OF THE PRODUCT, WHETHER BASED IN WARRANTY, CONTRACT, TORT OR OTHER LEGAL THEORY, AND WHETHER OR NOT ADVISED OF THE POSSIBILITY OF SUCH DAMAGES

Should you fail to adhere to the recommendations in this document, Dronetag s.r.o. carries no responsibility for any damage your equipment incurs due to a lightning strike.

Dronetag s.r.o. carries no responsibility for usage or installation of Scout.

🔧 Scout EVK Upgrade Process

The Dronetag Scout EVK is an earlier evaluation kit model that will continue to receive essential updates and limited support. However, we strongly encourage all users to upgrade their units to the production-ready Dronetag Scout system.

The upgraded Scout offers a more robust system, improved long-term stability, and full access to all available features. Some important capabilities—such as factory reset, secure credential management, and cloud-based provisioning—are not available on the original Scout EVK.

This guide walks you through the upgrade process in detail, including:

  • How to request the upgrade
  • Flashing and using the required SD card images
  • Performing the physical upgrade
  • Registering the upgraded Scout with your account

After upgrading, your unit will receive a new serial number, and the old Scout EVK will need to be removed from your Dronetag Cloud account. You will register the new Scout using the provided serial number for continued access and management.

You may choose to flash the SD cards yourself or request pre-flashed cards from us. Instructions for both options are included below.


1. Submit a Scout EVK Upgrade Request​

Please send an email to support@dronetag.com with the following information:

  1. Original order number or name of your sales contact.
  2. Company name (if applicable).
  3. If using the Scout EVK with Dronetag Cloud, include the email address associated with the registered account.
  4. Serial number of your Scout EVK unit:
    • Located on the bottom of the unit, or
    • Found in the Dronetag mobile app under your account.

2. Choose Your Flashing Option​

Let us know how you want to handle the SD cards required for the upgrade. There are two SD cards involved:

  • Preparation SD Card – used to prepare the device
  • Scout System SD Card – contains your custom-provisioned system

Option A: I will flash the SD cards myself​

We will send you both SD card images and you can flash them manually.

  • Follow the instructions here to learn how to flash .img files onto SD cards.

Option B: I prefer to receive pre-flashed SD cards​

If you would like to receive ready-to-use SD cards, include the following shipping details in your request email:

  1. Shipping address
  2. Contact person
  3. Email address
  4. Phone number

Option C: Full Scout Unit Replacement​

If you're not comfortable performing any technical work, we can offer a full replacement of the Scout unit. The upgrade will be handled at our facility, and you would be responsible for shipping costs.


3. Performing the Upgrade​

Once you have received or prepared the required SD cards, follow the steps below to upgrade your Scout EVK.

There are two SD cards involved in the upgrade process:

If you are flashing the SD cards yourself, you can reuse a single SD card.
In this case, first flash it with the Preparation image, perform the preparation steps, then re-flash the same card with the Scout System image and continue with the remaining steps.

Whether you use one or two physical SD cards, the upgrade steps remain the same.

Warning

We recommend performing the upgrade on a tabletop setup rather than attempting it on an already installed Scout EVK in elevated or hard-to-reach locations.
Accessing the SD card slot can be difficult, and working at height introduces a risk of device damage or personal injury due to falls.


Step 2: Insert the Preparation SD Card​

Insert SD Card into the Mini computer
  1. Insert the Preparation SD Card into the mini computer inside the Scout.
  2. Power up the unit using the PoE connector.
  3. Wait approximately 1 minute. The mini computer will start blinking with a green ACT LED.
  4. Power down the device by unplugging the PoE cable.

Step 3: Insert the Scout System SD Card​

  1. Replace the Preparation SD Card with the Scout System SD Card.
  2. Power on the unit again.
  3. Leave the system running for at least 30 minutes.
    • During this time, the system formats and initializes itself.
    • Do not interrupt power during this process.

4. Post-Upgrade: Access and Configuration​

Once the upgrade is complete:

  • The Scout EVK will be accessible on your local network via DHCP using default settings. For more details refer to the configuration page
  • You can proceed with further configuration as needed.

Registering the Upgraded Scout​

With the SD cards, you will also receive a new serial number, which replaces the original Scout EVK identity.

  1. Remove the old Scout EVK from your Dronetag Cloud account.
  2. Register the upgraded Scout using the new serial number provided.

Accessing the Management UI​

The upgraded Scout includes a login-protected management interface.

  • The default username and password will be provided by Dronetag Support together with your SD cards or download package.
  • Upon first login, please change the credentials immediately to something known only to you.
Warning

Be sure to store your new login credentials safely.
If the device is factory reset, it will revert to the original default username and password provided by Dronetag. If you lose both the new and default credentials, you may be locked out of the management interface.


If you need help accessing the UI or updating credentials, reach out to support@dronetag.com.

✈️ SD Migration Card Preparation

💾 SD Card Preparation

Important

You are expected to already have the correct SD card images by applying to Scout EVK Upgrade Process

This page guides you through flashing new firmware onto a microSD card and upgrading your Scout to a newer generation.

Use a microSD card with at least 8 GB of capacity. This SD card is used during the Scout EVK upgrade process. All former data on the card will be permanently erased.

We recommend using a different SD card than the one currently used in your Scout EVK. This allows you to keep your original setup as a backup.

You can use either Windows or Linux to prepare the SD card.

If you are confident and understand the risks, you may reuse the existing card — but make sure to back up your current setup first.



🪟 Flashing the Image on Windows​

We recommend using balenaEtcher, a free and user-friendly tool for flashing SD cards.

Instructions:​

  1. Download and install balenaEtcher from https://etcher.balena.io.
  2. Insert the microSD card into your computer using an SD card reader.
  3. Open balenaEtcher.
  4. Click “Flash from file” and select the scoutsdimg.img file.
  5. Select the microSD card as the target device.
  6. Click “Flash!” to begin writing the image.
  7. Wait for the flashing and verification to complete. This may take several minutes.

Once done, you can safely eject the SD card.

Case Studies

Scout secured one of the Netherlands’ largest music festivals.​

Paaspop Music Festival Case Study

City of Helsinki Monitored Drone Operations with Scout.​

Helsinki Drone Monitoring Case Study

FAQ

What does Scout detect?​

Scout is drone-agnostic. It captures all Broadcast / Direct Remote ID signals (Wi-Fi and Bluetooth on 2.4 GHz and 5 GHz) from compliant drones and modules (e.g. DJI, Autel, Skydio). Data is forwarded to the Dronetag App or to your own system, depending on the operating mode.

note

Scout can only detect drones that actually transmit Remote ID.

tip

We are preparing an Aviation version of Scout, which will also support ADS-L, ADS-B, and FLARM to extend situational awareness to general aviation traffic.

Which drones is Scout compatible with?​

Scout is drone-agnostic - it detects Remote ID from any compliant drone or module. If a drone does not transmit Remote ID, Scout cannot detect it.

Do I need a license to use Scout?​
  • For basic operation (Sensor mode), no license is required.
  • If you want to use Cloud or On-Premise modes with the full visualization platform, a software license is required.
Can I purchase a license later?​

It is technically possible to start with Scout in Sensor mode and upgrade later by purchasing a license.

However, we strongly recommend deciding in advance:

  • Sensor mode requires integration of Scout’s raw data into your own platform, which often means additional costs and development effort.
  • Licensed modes (Cloud or On-Premise) give you a complete solution with our visualization platform, ready to use out of the box.
note

Because integration costs can be significant, it is best to choose the right mode before deployment.

What do I need for Scout deployment?​
  • Scout device
  • PoE power supply (included with Scout, Ethernet cable not included)
  • Internet connectivity (for Cloud mode) or a local server (for On-Premise)
  • Account in Dronetag App (for Cloud mode)
How can I operate Scout?​

Scout supports several operating modes:

  • Sensor – Raw detection data only, no license needed
  • Sensor+ - Raw detection data with our technical assistance, license is required
  • On-Premise – Local map and visualization without Internet
  • Cloud – Full remote monitoring via Dronetag App (requires Internet + license)

👉 More info: Scout Operating Modes Help

Where should I place Scout?​
  • Install outdoors or with a clear view of the sky.
  • Higher placement = better reception (rooftops, poles, towers).
  • Avoid obstacles like walls or large metal structures.
What type of antennas should I deploy Scout with?​
  • Scout Baseline comes with omnidirectional antennas.
  • For wider coverage or monitoring specific sectors, use directional antennas (e.g. 90° panels).
tip

The choice of antenna depends on the environment (urban vs. rural) and your monitoring goals.

In which countries can Scout be deployed?​

Scout can be deployed worldwide. It detects drones that comply with Remote ID standards in the EU, US, Japan, Singapore, and other regions adopting these rules.

caution

Even though Scout can be deployed anywhere in the world, it will only detect drones in countries where drones are required to broadcast a Remote ID signal.

Can Scout detect drones with no Remote ID?​

No. If a drone does not transmit Remote ID, Scout cannot detect it. This includes some sub-250 g drones or drones in regions where Remote ID is not required.

Does the drone have to be airborne to be detected?​

No. The drone does not need to be flying, but it must have a GNSS fix and the motors must be running. Once these conditions are met, the drone starts broadcasting Remote ID, and Scout can detect it.

tip

Some drones only start broadcasting Remote ID after take-off.

  • If your drone is powered on but not detected, try arming or taking off to trigger Remote ID transmission.
Where can I view detected data?​
  • Cloud Mode: Data shown in the Dronetag App, accessible remotely.
  • On-Premise Mode: Local server with Dronetag maps and visualization.
  • Sensor Mode: Raw detection data for integration into your own system.
Can Scout locate the pilot?​

Yes. When the Remote ID message includes pilot position, Scout can display it alongside drone data. When not, it shows you the take-off location.

What is the detection range and speed?​
  • Range: Up to 10 km with included omnidirectional antennas. Directional antennas (90° panels) extend range and focus detection.
  • Speed: Real-time detection with immediate data transfer.
How is Scout powered?​

Scout requires a PoE power supply (802.3af/at). It is designed for continuous operation in fixed installations.

How durable is Scout in the field?​

Scout comes in a weatherproof IP-rated enclosure, built for outdoor, 24/7 monitoring (rooftops, poles, towers). It works reliably in harsh environments.

Can Scout data be exported or integrated?​

Yes. Scout can deliver data via APIs for integration into C-UAS, UTM, or other third-party systems. In Sensor Mode, raw data can be fed directly to your platform.

How can I share situational awareness from Scout?​
note

Data from Scout can only be shared when used in Cloud Operating Mode.

In the Dronetag app, you can share live data from your Dronetag Scout with another user who also has a Dronetag account.

This allows them to see your device in their list and view its current position on the map in the app.

✅ The selected user will now see your Scout under My Devices, marked with a shared-device icon. They will also see the device’s position on their map in the app.

How fast is Scout deployment?​

Typically less than 15 minutes, depending on antenna installation and network connection.

How do I report a problem with my Scout?​

Open Scout's UI, head to System and scroll to the Report a problem section. Describe what happened and send the report to Dronetag - device logs and spectrum snapshots can be attached to help with the diagnosis.

Report a problem form in Scout&#39;s UI

Sending reports requires the Send diagnostics to Dronetag switch (in the Diagnostics section of the same page) to be enabled, and the Scout must have access to the internet to deliver the report - see the firewall rules below for the endpoint that needs to be allowed.

Scout without internet access

If your Scout cannot reach the internet, use the Download logs button in the Logs section of the same page and email the downloaded archive to support@dronetag.com. Please include a screenshot of the top header of Scout's UI - it shows the Scout version and serial number we need for the diagnosis:

Scout version and serial number in the UI header

Firewall rules for SCOUT's outbound connections?​

SCOUT is making multiple outbound connections as TCP/HTTPS.

All of them are initiated by the Scout over outbound HTTPS (TCP port 443) — no inbound connections or port forwarding are required. To allow the Scout on a restricted network, permit outbound TCP 443 for its IP/MAC address; no other ports or rules are needed.

Dronetag CLOUD

When using SCOUT with Dronetag App

  • api.dronetag.app

Dronetag MANAGEMENT platform

  • eu.hosted.mender.io
  • *.eu.hosted.mender.io

Dronetag AUTO-UPDATE endpoints

  • mender.blob.core.windows.net
  • c271964d41749feb10da762816c952ee.r2.cloudflarestorage.com

Statistics reporting

  • influxdb.devtools.dronetag.cz

Diagnostics and problem reports

  • sentry.dronetag.cz
Symptom of a blocked connection

The Scout works on the local network (management page reachable, local map shows detections) but appears offline in the Dronetag App. Check Scout's management page for a connection error and verify outbound 443 is allowed on your firewall.

Who typically uses Scout?​
  • Airports and heliports
  • Cities and municipalities
  • Critical infrastructure operators
  • Event organizers
  • Security and C-UAS providers needing permanent airspace monitoring

Source pages

Every chapter of this document is a page of the Dronetag help site. Use these addresses to reach the latest version.

  1. 1Introductionhelp.dronetag.cz/cs/dronetag-scout
  2. 2Specificationhelp.dronetag.cz/cs/dronetag-scout/specification
  3. 3Variants of Scouthelp.dronetag.cz/cs/dronetag-scout/scout-variants
  4. 4Operating Modeshelp.dronetag.cz/cs/dronetag-scout/operating-modes
  5. 5What is in the Boxhelp.dronetag.cz/cs/dronetag-scout/installation-guide/what-is-in-box
  6. 6Installation Prerequisiteshelp.dronetag.cz/cs/dronetag-scout/installation-guide/installation-prerequisities
  7. 7Deployment Step-by-Step Guidehelp.dronetag.cz/cs/dronetag-scout/installation-guide/deployment
  8. 8Choosing Location for Scouthelp.dronetag.cz/cs/dronetag-scout/installation-guide/location
  9. 9Mounting the Scouthelp.dronetag.cz/cs/dronetag-scout/installation-guide/mounting-scout
  10. 10Mounting the Antennashelp.dronetag.cz/cs/dronetag-scout/installation-guide/mounting-antennas
  11. 11Inserting the SIM Cardhelp.dronetag.cz/cs/dronetag-scout/installation-guide/inserting-sim
  12. 12Examples of Installationhelp.dronetag.cz/cs/dronetag-scout/installation-guide/examples-installation
  13. 13Connecting to the Scouthelp.dronetag.cz/cs/dronetag-scout/connect
  14. 14Networkinghelp.dronetag.cz/cs/dronetag-scout/configuration/networking
  15. 15Sensor configurationhelp.dronetag.cz/cs/dronetag-scout/configuration/scout-heartbeat-forwarders
  16. 16Sensor+ configurationhelp.dronetag.cz/cs/dronetag-scout/configuration/scout-integrations
  17. 17GNSS Position of the Scouthelp.dronetag.cz/cs/dronetag-scout/configuration/gnss
  18. 18System Configurationhelp.dronetag.cz/cs/dronetag-scout/configuration/system
  19. 19Licensehelp.dronetag.cz/cs/dronetag-scout/configuration/licenses
  20. 20Firmware Updatehelp.dronetag.cz/cs/dronetag-scout/firmware-update
  21. 21Firmware Changeloghelp.dronetag.cz/cs/dronetag-scout/firmware-changelog
  22. 22Using Scout with the Dronetag Apphelp.dronetag.cz/cs/dronetag-scout/using-app
  23. 23LED Indicationshelp.dronetag.cz/cs/dronetag-scout/led-indications
  24. 24Troubleshootinghelp.dronetag.cz/cs/dronetag-scout/troubleshooting
  25. 25Limited Warrantyhelp.dronetag.cz/cs/dronetag-scout/limited-warranty
  26. 26Declaration of Conformityhelp.dronetag.cz/cs/dronetag-scout/declaration-of-conformity
  27. 27Safety Noticeshelp.dronetag.cz/cs/dronetag-scout/safety-notices
  28. 28Scout EVK Upgrade Processhelp.dronetag.cz/cs/dronetag-scout/scout-evk/scout-evk-upgrade
  29. 29SD Card Preparationhelp.dronetag.cz/cs/dronetag-scout/scout-evk/sdcard-preparation
  30. 30Case Studieshelp.dronetag.cz/cs/dronetag-scout/case-studies
  31. 31FAQhelp.dronetag.cz/cs/dronetag-scout/faq