PCGameBenchmarks

Can GeForce GTX 1660 SUPER run Genba no Kizuna?

Great

The GeForce GTX 1660 SUPER handles Genba no Kizuna well at 1080p, delivering approximately 995 FPS at High settings — above the 60 FPS target for smooth gameplay. It can also achieve smooth 1440p at around 746 FPS.

Genba no KizunaGeForce GTX 1660 SUPER FPS Data

Quality1080p1440p4K
Low999+ fps999+ fps622 fps
Medium999+ fps933 fps497 fps
High995 fps746 fps398 fps
Ultra808 fps606 fps323 fps

Estimated FPS · actual performance may vary based on drivers and settings

Minimum System Requirements

CPU
1Ghz
GPU
DirectX 9.0c compatible video card
RAM
1 GB

Genres

About

Genba no Kizuna, released in 2024, is an intriguing adventure indie game set in a mesozoic world filled with murder mystery elements. Players take on the roles of investigators, gathering clues, interrogating four suspects, and piecing together the narrative to uncover the truth behind the murder. This unique blend of engaging storytelling and puzzle-solving makes Genba no Kizuna a notable title for fans of mystery and adventure genres.

When it comes to PC performance, Genba no Kizuna is designed to be accessible, even for gamers using entry-level hardware. With a minimum GPU requirement of around 300 points, you can expect playable FPS on basic setups. For optimal performance, a modest system with a dedicated GPU in the low-end tier, such as the NVIDIA GeForce GT 1030 or AMD Radeon RX 550, should run the game smoothly at lower graphic settings, allowing for a steady frame rate throughout your investigative journey.

If you enjoy immersive storytelling and puzzle-solving, Genba no Kizuna is worth adding to your gaming library. Given its adventure indie classification and engaging premise, players looking for a captivating experience will likely find this title a delightful way to exercise their deductive skills while enjoying the vibrant graphics and atmospheric setting.

More Genba no Kizuna GPU benchmarks

Can GeForce GTX 1660 SUPER Run Genba no Kizuna? — 995 FPS at 1080p | PCGameBenchmarks