Quick Answer
For Deadlock, a 1080p or 1440p 165Hz monitor suits the fast MOBA-shooter pace, with 240Hz the competitive step up. A 1080p 165Hz IPS panel near R4,500 covers most players; a 1440p 165Hz IPS near R6,500 adds map clarity. Target 144fps-plus on a Ryzen 5 7600 and RTX 4060-class GPU.
Refresh, Resolution and Map Awareness
Deadlock blends shooter aim with MOBA map awareness, so both smooth motion and a clear, detailed screen help. A 165Hz panel sharpens motion for tracking and flicking, while a 1440p resolution shows more of the lane and map than 1080p. The game runs past 144fps at 1080p on a Ryzen 5 7600 and RTX 4060-class GPU, so the monitor leads the experience. Competitive players may prefer 1080p 240Hz for pure reaction speed; others choose 1440p 165Hz for clarity.
Picks and Budget at SA Prices
A 1080p 165Hz IPS monitor near R4,500 is the value pick; a 1440p 165Hz IPS near R6,500 adds detail for map awareness; a 1080p 240Hz IPS near R6,500-R9,000 is the competitive choice. The R4,500 panel justifies the budget claim for most players, delivering high refresh and good colour. Look for a 1ms GtG response and FreeSync or G-Sync support, and pair with a capable build so frame rates exceed the refresh. For a Deadlock player splitting time between aim and map-reading, the 1440p 165Hz IPS near R6,500 is the balanced pick, trading a little refresh for the lane visibility that aids rotations.
FAQ
What monitor suits Deadlock?
A 1080p 165Hz IPS for value, a 1440p 165Hz IPS for map clarity, or a 1080p 240Hz IPS for competition. All keep Deadlock's fast action smooth on a capable build.
What FPS does Deadlock run at?
Past 144fps at 1080p on a Ryzen 5 7600 and RTX 4060-class GPU, so a 165Hz monitor stays fully fed during gameplay.
Is 1440p worth it for Deadlock?
Yes if you value map awareness. The extra resolution shows more of the lane and map, and capable builds still hold well above 144fps at 1440p.
a 1080p 165Hz IPS near R4,500 covers most players; step to 1440p 165Hz for map clarity or 1080p 240Hz for competitive reactions.