Uploaded May 2026 | Updated September 2026, 3 weeks ago
A large boulder, a treacherous crater or a gust of wind could jeopardise a smooth landing on Mars. Before the ExoMars Rosalind Franklin rover mission launches for the Red Planet in 2028, a replica of the landing platform went through worst-case touchdown conditions – and survived.
Thinking of every possible landing scenario, European engineers dropped a full-scale model onto a sled to test its stability in case the spacecraft touched down at an angle. A magnetic sledge released the lander at varying speeds – up to four metres per second –on a platform tilted at 20 degrees.
In every test, the four legs of the descent module absorbed the impact.
These sled-based tests were the final series of the landing platform drop test campaign conducted at the ALTEC facilities in Turin, Italy.
“This campaign proves how robust the ExoMars landing system is. The tests delivered critical data on the platform’s stability under challenging conditions, and on the ability of its legs to cope with a harsh touchdown,” says Pietro Baglioni, ExoMars rover team leader for the Rosalind Franklin mission.
The campaign also demonstrated the performance of the touchdown sensors, a critical detection function that automatically shut downs the engines upon landing. Installed in all four legs of the descent module, the sensors detect when the spacecraft approaches the surface and trigger engine shutdown. If the sensors are too slow to communicate with the propulsion system, the rocket plumes could blast martian soil upwards, potentially damaging and overturning the spacecraft.
“We want to make sure that we don’t tip over at landing. These results are fundamental to increasing confidence in the reliability of the ExoMars landing sequence,” Pietro adds.
Teams from Thales Alenia Space and Airbus are using the results from this campaign to feed computer models that simulate further landing scenarios on Mars. The Rosalind Franklin rover mission is set to arrive at the martian surface in 2030.
Credits: Thales Alenia Space/ALTEC
Access the video on the ESA video library: https://www.esa.int/ESA_Multimedia/Videos/2026/05/Landing_sideways
Our main YouTube channel: youtube.com/@EuropeanSpaceAgency
We are Europe's gateway to space. Our mission is to shape the development of Europe's space capability and ensure that investment in space continues to deliver benefits to the citizens of Europe and the world. Check out https://www.esa.int/ to get up to speed on everything space related.
Copyright information about our videos is available here: https://www.esa.int/ESA_Multimedia/Terms_and_Conditions
A large boulder, a treacherous crater or a gust of wind could jeopardise a smooth landing on Mars. Before the ExoMars Rosalind Franklin rover mission launches for the Red Planet in 2028, a replica of the landing platform went through worst-case touchdown conditions – and survived.
Thinking of every possible landing scenario, European engineers dropped a full-scale model onto a sled to test its stability in case the spacecraft touched down at an angle. A magnetic sledge released the lander at varying speeds – up to four metres per second –on a platform tilted at 20 degrees.
In every test, the four legs of the descent module absorbed the impact.
These sled-based tests were the final series of the landing platform drop test campaign conducted at the ALTEC facilities in Turin, Italy.
“This campaign proves how robust the ExoMars landing system is. The tests delivered critical data on the platform’s stability under challenging conditions, and on the ability of its legs to cope with a harsh touchdown,” says Pietro Baglioni, ExoMars rover team leader for the Rosalind Franklin mission.
The campaign also demonstrated the performance of the touchdown sensors, a critical detection function that automatically shut downs the engines upon landing. Installed in all four legs of the descent module, the sensors detect when the spacecraft approaches the surface and trigger engine shutdown. If the sensors are too slow to communicate with the propulsion system, the rocket plumes could blast martian soil upwards, potentially damaging and overturning the spacecraft.
“We want to make sure that we don’t tip over at landing. These results are fundamental to increasing confidence in the reliability of the ExoMars landing sequence,” Pietro adds.
Teams from Thales Alenia Space and Airbus are using the results from this campaign to feed computer models that simulate further landing scenarios on Mars. The Rosalind Franklin rover mission is set to arrive at the martian surface in 2030.
Credits: Thales Alenia Space/ALTEC
Access the video on the ESA video library: https://www.esa.int/ESA_Multimedia/Videos/2026/05/Landing_sideways
Our main YouTube channel: youtube.com/@EuropeanSpaceAgency
We are Europe's gateway to space. Our mission is to shape the development of Europe's space capability and ensure that investment in space continues to deliver benefits to the citizens of Europe and the world. Check out https://www.esa.int/ to get up to speed on everything space related.
Copyright information about our videos is available here: https://www.esa.int/ESA_Multimedia/Terms_and_Conditions

![Looking for Lyrids from Orbit
This timelapse was published by ESA astronaut Sophie Adenot on social media with the following caption:
[English] Day 085, orbit 1316 — Did you know you can spot the International Space Station using only your eyes? From the ground, it looks like a very bright star moving across the sky at roughly the speed of a commercial airliner. But unlike an aircraft, it has no headlights or flashing navigation lights. Its brightness comes from the solar panels, which are positioned to catch sunlight and reflect it back towards Earth.
To find out when we’ll be passing overhead and where to look in the sky, check out spotthestation.nasa.gov… I won’t be able to see you, even if you wave very enthusiastically, but I’m thinking of you from up here!
[French] Jour 085, orbite 1316 — Saviez-vous que vous pouvez observer la Station spatiale internationale à l’oeil nu ? Depuis le sol, la Station apparaît comme une étoile très brillante qui traverse le ciel à peu près à la vitesse d’un avion de ligne. Mais contrairement à un avion, elle n’a ni phares, ni feux de position clignotants. Ce sont ses panneaux solaires, orientés pour recevoir la lumière du Soleil, qui la rendent si lumineuse lorsque vous la voyez depuis la Terre.
Pour savoir quand nous passons au-dessus de vos têtes et où nous chercher dans le ciel, rendez-vous sur le site spotthestation.nasa.gov… Je ne pourrai pas vous voir, même si vous faites de grands signes, mais je pense à vous depuis là-haut !
Credits: European Space Agency (ESA)
Footage: ESA/NASA
Access the video on the ESA video library: https://www.esa.int/ESA_Multimedia/Videos/2026/05/Looking_for_Lyrids_from_Orbit
Our main YouTube channel: https://www.youtube.com/@EuropeanSpaceAgency
We are Europes gateway to space. Our mission is to shape the development of Europes space capability and ensure that investment in space continues to deliver benefits to the citizens of Europe and the world. Check out https://www.esa.int/ to get up to speed on everything space related.
Copyright information about our videos is available here: https://www.esa.int/ESA_Multimedia/Terms_and_Conditions Looking for Lyrids from Orbit](https://i.ytimg.com/vi/gU8qYIWAQ0o/mqdefault.jpg)








