AirNav RadarBox: The Best Flight Radar with the Most Accurate Coverage - Download for Free
AirNav RadarBox: A Comprehensive Guide
If you are an aviation enthusiast or professional who wants to track flights in real-time or access historical and analytical data on air traffic, you might be interested in AirNav RadarBox. AirNav RadarBox is a flight tracking solution that collects and displays flight data from various sources using advanced technology. In this article, we will explain what AirNav RadarBox is, how it works, how to download it, how to use it, how to get the most out of it. We will also compare it with other flight tracking solutions and share some user reviews.
How AirNav RadarBox Works
AirNav RadarBox works by receiving flight data from different sources and displaying it on a map or a table. The main source of flight data is ADS-B (Automatic Dependent Surveillance-Broadcast), which is a system that transmits information such as position, speed, altitude, identification from aircraft equipped with ADS-B transponders. AirNav Systems designs, produces and distributes ADS-B receivers that can pick up these signals from aircraft within range. There are currently over 10 thousand ADS-B receivers (also called stations or feeders) around the world that share data with AirNav RadarBox network.
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However, ADS-B is not the only source of flight data that AirNav RadarBox uses. It also integrates data from other sources such as:
FAA SWIM (System Wide Information Management), which is a system that provides flight data from the US air traffic control system, such as flight plans, departure and arrival times, flight status, and airport conditions.
Oceanic, which is a system that provides flight data from oceanic regions where ADS-B coverage is limited or unavailable, such as the North Atlantic, Pacific, and Indian Oceans.
MLAT (Multilateration), which is a system that calculates the position of aircraft that do not have ADS-B transponders by using the time difference of arrival of their Mode S signals at multiple stations.
Satellite ADS-C (Automatic Dependent Surveillance-Contract), which is a system that allows aircraft to report their position and other data to air traffic control via satellite communication.
HFDL (High Frequency Data Link), which is a system that allows aircraft to communicate with ground stations via high frequency radio waves.
FLIFO (Flight Information), which is a system that provides additional flight data from airlines and airports, such as gate numbers, baggage claim, terminal maps, and flight schedules.
ASDE-X (Airport Surface Detection Equipment), which is a system that provides ground movement data from airports, such as taxiing, takeoff, and landing.
FLARM (Flight Alarm), which is a system that provides collision avoidance data from gliders and light aircraft.
Australia ANSP (Air Navigation Service Provider), which is a system that provides flight data from the Australian air traffic control system.
MERGED, which is a system that combines data from multiple sources to provide the most accurate and complete flight data possible.
By using these sources, AirNav RadarBox can provide flight data for over 250 thousand flights per day, covering over 95% of the world's commercial flights and many general aviation flights. The flight data is updated every second and displayed on a map or a table with various filters and layers. You can also access historical and analytical data for up to 365 days in the past.
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How to Download AirNav RadarBox
If you want to use AirNav RadarBox, you have several options to download it for different devices and platforms. Here are the steps to download AirNav RadarBox:
For Windows PC: You can download the AirNav RadarBox software from the official website. You need to have Windows 7 or higher and at least 2 GB of RAM. After downloading the software, you need to install it on your PC and create an account or log in with your existing account. You can also connect your own ADS-B receiver to the software if you have one.
For Mac: You can download the AirNav RadarBox app from the Mac App Store. You need to have macOS 10.13 or higher and at least 4 GB of RAM. After downloading the app, you need to open it and create an account or log in with your existing account. You can also connect your own ADS-B receiver to the app if you have one.
For Android: You can download the AirNav RadarBox app from the Google Play Store. You need to have Android 5.0 or higher and at least 100 MB of free space. After downloading the app, you need to open it and create an account or log in with your existing account. You can also connect your own ADS-B receiver to the app if you have one.
For iOS: You can download the AirNav RadarBox app from the App Store. You need to have iOS 11.0 or higher and at least 100 MB of free space. After downloading the app, you need to open it and create an account or log in with your existing account. You can also connect your own ADS-B receiver to the app if you have one.
For web browser: You can access the AirNav RadarBox website from any web browser on any device. You need to have a stable internet connection and enable JavaScript and cookies. After opening the website, you need to create an account or log in with your existing account. You can also connect your own ADS-B receiver to the website if you have one.
How to Use AirNav RadarBox
After downloading AirNav RadarBox, you can start using it for various purposes. Here are some tips on how to use AirNav RadarBox features and functions:
To track live flights: You can use the map or the table view to see live flights around the world or in a specific region. You can zoom in or out, drag or scroll, click or tap on any flight to see more details, such as flight number, airline, aircraft type, origin, destination, altitude, speed, heading, etc. You can use the search box to find a specific flight by flight number, callsign, registration, or airport. You can also use the filters to narrow down your search by airline, aircraft type, altitude, speed, etc. You can also use the layers to add more information to the map, such as weather, NAVAIDs, waypoints, routes, etc.
To get flight alerts and emergencies: You can use the alerts feature to get notified of any changes or events related to a specific flight or a group of flights. You can set up alerts by email or push notification for various criteria, such as departure, arrival, delay, cancellation, diversion, squawk code, etc. You can also use the emergencies feature to see any flights that have declared an emergency or have an abnormal situation.
To access weather layers: You can use the weather layers feature to see various weather conditions that affect air traffic, such as clouds, precipitation, wind, temperature, pressure, etc. You can also see weather radar and satellite images, METAR and TAF reports, and SIGMET and AIRMET advisories.
To view NAVAIDs, waypoints and routes: You can use the NAVAIDs feature to see various navigational aids that help pilots navigate in the air, such as VORs, NDBs, DMEs, ILSs,