The iconic Spanish Netflix show Money Heist Fans of Money Heist or La Casa de Papel might be happy to learn that the eagerly anticipated spin-off, Berlin, will be available on Netflix sometime in December 2023.
This has generated a lot of discussion because Berlin, also known as Andrés de Fonollosa, is one of the series’ most well-liked characters and is portrayed by Pedro Alonso. The writing has received a lot of praise for the series’ five seasons’ worth of great character development. On February 7, Netflix unveiled a brief teaser that gave us an idea of what to anticipate.
Netflix had given the news of this spin-off ahead of the release of Money Heist season 5, part 2, with a caption, “We already met Berlin in#LaCasaDePapeland now is the time for Andrés de Fonollosa. We can already announce that in 2023 the spin-off of his life will arrive.”
From the world of Money Heist, BERLIN comes to Netflix this December. pic.twitter.com/C5w03stHmw
— Netflix UK & Ireland (@NetflixUK) February 7, 2023
Expectations for Money Heist: Berlin
The series, which will focus on the early years of Berlin’s life, was filmed in Spain and Madrid. The past of Berlin was somewhat addressed in Season 5 of the main series, but there is still a lot we don’t know about this beloved character. He does have five ex-wives, as we learned. We also look forward to seeing how his bond with his brother, The Professor, develops.
The Cast
A new team has been introduced in the teaser as well as in some latest images shared by Netflix on Twitter.
- Michelle Jenner as Keila
- Begoña Vargas as Cameron
- Julio Peña as Roi
- Tristán Ulloa as Damián
- Joel Sánchez as Bruce
More About Berlin
At Netflix’s Tudum event last year, Pina described the plot of Money Heist: Berlin as “a voyage through the character’s golden era, when he robbed across Europe mad in love.” What’s On Netflix reports that “We might also witness more of the theft Berlin committed in Paris’ Champs-Élysées, where he took 434 diamonds. Additionally, we might witness more of his struggle with Helmer myopathy.