Halo Infinite

Halo Infinite: How To Get On Top Of Tower?

Find out how to get on top of the tower to collect the skull in Halo Infinite.

Looking to collect all the skulls in Halo Infinite and unable to collect the skull on top of the tower? If you have completed The Tower mission you will have no difficulty in getting in the Tower. Although if you haven’t, the place would be swarming with enemies within and without. So we would suggest you complete the Tower mission before looking for the skull as it would get a bit more challenging with all the enemies. Now for all the skull hunters out looking for the skull on top of the tower, here’s a guide to find out how to get on top of the tower in Halo Infinite.

How to Climb to the Top of Tower in Halo Infinite?

Before getting on top of the tower, you will need to upgrade the Grapple shot as much as possible. With Quick Shot, it would be much easier to climb on top. All you need is a good aim and some skills to get on top of the tower. So, with that in mind, this is how to get on top of the tower.

  1. Aim Quickshot upwards on the large pillars and climb yourself on top of it. Head straight and move upwards.
  2. Climb on the round bumps after getting on top of the pillar.
  3. Walk on the large pillars and stop to grapple towards the top of the tower.
  4. Search for the red vents and use Quickshot to get on the ledge.
  5. Once you reach the top of the ledge, use Quickshot and aim for the top of the tower. Jump inside the tower and you can find the skull at the center of the tower.

You can also acquire this skull more easily if you have a stolen Banshee or an unlocked Wasp. This skull is a traditional IWHBYD skull that unlocks no gameplay effect but has an audio effect for fun.

If this helped you, make sure to check our other Halo Infinite Guides, walkthroughs, tips, and tricks right here at Gamer Tweak.

Shubham Nema

Hi! I am a Writer/Blogger/Cinephile/Quantum Physicist. The last one is not true but the rest of them sure are (I swear on Albert Einstein's theory of relativity).

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