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Crimson Moon vs Atomic Heart 2

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info General Information
Release Date
Sep 1, 2026 Oct 15, 2026
Developer
Team Metal Mundfish Studio
Publisher
ProbablyMonsters Focus Entertainment / VK Play
Genre(s)
Action-RPG / Soulslike / Roguelite Action RPG / First-Person Shooter
Engine
Unreal Engine 5.6 Unreal Engine 5
stars Ratings & Price
Content Rating
M (Mature 17+) Mature 17+ (M)
Avg. User Rating
3.8 / 5.0 4.5 / 5.0
Current Price (USD)
$19.99 $69.99
tune Key Specs
Quick Highlights
  • Multiplayer: 2-Player Co-op (Shared Life Pool)
  • Combat Style: Stamina-Based Soulslike / Fast-Paced Melee
  • Price Point: $19.99 (Standard Edition)
  • Progression Loop: Roguelite Runs with Permanent Gear Extraction
  • Combat System: Simultaneous Dual-Hand Execution
  • World Design: Massive Open World with Dynamic Weather
sports_esports Gameplay & Mechanics
Companions/Followers
  • Co-op Partner: Provides essential synergistic combat support, crowd control, and the ability to revive (at the cost of the shared life pool).
    Human Player
  • The Twin (Katya): Executes lethal, synchronized acrobatic strikes and deploys localized kinetic shielding to protect the player during massive firefights.
    Advanced Robotic Synthetic
  • Scavenger Drone: Can be temporarily hacked and commanded to retrieve out-of-reach loot, distract hostile patrols, or provide emergency illumination.
    Utility Automaton
Key Collectibles
  • Lore Scrolls: 50 unique documents hidden throughout the randomized Wards, detailing the fall of Gildenarch.
  • Abraxas Stones: Extremely secretive artifacts (Rot, War, Arcana) hidden behind complex, undocumented puzzles within specific Wards.
  • Synthetic Microelectronics: Looted from the destroyed chassis of high-tier military automatons; required for deep skill tree progression.
  • Elemental Cartridge Blueprints: Hidden deep within optional, heavily guarded underground bunkers and abandoned research facilities.
  • Narrative Chirpers: Scattered across the sprawling open world, providing terrifying audio logs of humanity's final days.
Key Themes
  • Gothic Horror
  • Angelic vs. Demonic Conflict
  • Apocalyptic Dystopia
  • High-Stakes Extraction
  • Religious Brutality
  • The overarching themes of Atomic Heart 2 plunge deeply into the morally complex territories of artificial intelligence ethics
  • absolute societal control
  • and the terrifying frontiers of transhumanism. Moving far beyond the immediate fallout of a contained facility disaster
  • the narrative critically examines the sociological and cultural collapse of a utopian dream turned into a global nightmare. It explores the dire geopolitical ramifications of a world heavily reliant on robotic automation suddenly facing a weaponized technological rebellion on a planetary scale. Themes of identity and consciousness are prominent
  • especially highlighted through the preservation of human minds in neuropolymer and their grotesque integration into synthetic robotic forms. The game acts as a stark
  • provocative satire of unchecked technological advancement
  • the hyper-commodification of society
  • and the blurred lines between organic and synthetic life
  • constantly challenging the player's perspective on human agency versus algorithmic dominance in a shattered world.
colorize Combat & Gear
Weapons Overview
  • Judgment Greatmace: Heavy Two-Handed
    A massive weapon dealing extreme staggering damage, favored for its internal 'Holy Lifesteal' mechanics on heavy attacks.
  • Revenant Blade: Fast One-Handed
    A quick-striking sword intrinsically bound with the 'Winter Solstice' Weapon Art, essential for Frost-encasement builds.
  • Sovereign's Shield: Defensive Off-Hand
    Provides massive damage mitigation and utilizes the 'Angelic Bulwark' Weapon Art to generate protective ground wards.
  • Secator: Energy Rifle
    A high-tech energy weapon drawing directly from the player's suit reserves, capable of continuous fire and devastating charged blasts.
  • Clusha: Heavy Melee
    A brutal kinetic melee tool repurposed from heavy construction equipment, perfect for crushing the armor of large automatons.
  • Zvezdochka: Heavy Melee
    An iconic, terrifying weapon utilizing spinning circular saws to sever robotic limbs with gruesome, mechanical efficiency.
Armor / Gear Sets
  • Nephilim Vanguard Set: Medium-weight armor prioritizing balanced damage mitigation and stamina recovery, ideal for standard melee builds.
  • Ceremonial Armor Set: A purely cosmetic, highly detailed armor override available exclusively through the Deluxe Edition upgrade.
  • Polymer Glove: Provides mass telekinesis, cryogenic shielding, electrical discharge, and integrated AI tactical support.
  • Advanced Military Suit: Features high-capacity internal power reserves to fuel energy weapons and offers modular slots for kinetic and elemental resistance upgrades.
Outfits/Customization
  • Sonai Magistrate Armor Set: An exclusive cosmetic armor skin granted immediately to players purchasing the game within the PlayStation 5 ecosystem.
  • Retrofuturistic Operative Gear: Players can customize aesthetic elements of P-3's uniform, unlocking unique Soviet-inspired military skins and specialized, practical survival gear through exploration.
trending_up Progression & Upgrades
Skills & Progression

Crimson Moon omits traditional RPG skill trees or classes. Progression is entirely dictated by physical loadouts and the 'Purification' economy. Players must survive a Hunt and extract to the hub to permanently 'purify' looted weapons and armor. Buildcrafting heavily relies on 'Weapon Arts'—powerful magical or physical skills intrinsically bound to specific gear (e.g., 'Winter Sun' for Frost encasement, 'Aura of the Burning Heart' for fire AoE). During a run, players also acquire 'Boons' via Nexus Gates; these are temporary, roguelite stat modifiers (like 'Toxic Strike' or 'Chalice of Conquest') that introduce localized volatility to builds but vanish upon extraction or death.

The game introduces a massive evolution in its role-playing mechanics, moving far beyond the linear crafting progression of its predecessor. The character development system is now incredibly robust, featuring complex, branching skill trees tailored to highly specific, diverse playstyles. At the core of this is the refined CHANCE module system, which allows players to dynamically swap Polymer Glove abilities—like mass telekinesis, cryogenic blasts, and localized shielding—in real-time during combat. Furthermore, the integration of simultaneous dual-hand mechanics means players can weave these abilities synchronously with firearm usage. The upgrade economy relies on scavenging distinct microelectronics and synthetic materials from destroyed automatons, allowing players to slot specialized elemental cartridges into their gear. This encourages constant tactical adaptation against dynamically shifting enemy types, rewarding players who master the synergy between deep biological upgrades and lethal hardware customization.

public World & Exploration
World & Level Design

The game rejects a contiguous open-world design in favor of highly compartmentalized, repeatable Wards (biomes) accessed via the Sanctus Clypeus hub. While the overarching geographical layout of each Ward remains static to allow players to master environmental routing, internal variables such as elite mob placements, hazard spawns, and loot caches are completely randomized per run. Documented Wards include the starting Prologue area, The Forsaken Streets, the Archspire Cathedral, Ramshorn Keep, Shoreditch Prison, and the endgame Elk Grove Academy. Each Ward features bespoke gothic architecture, unique enemy ecosystems, and specific environmental hazards.

Addressing the most vocal criticisms of the first game, Mundfish has completely dismantled the fragmented, hub-and-spoke map design. Atomic Heart 2 introduces a seamlessly integrated, massively scaled open world designed to facilitate authentic exploration rather than punishing it. The studio collaborated with elite architectural firms from the United Arab Emirates to conceptualize vast, functionally believable retrofuturistic cities and diverse biomes. The map is no longer cordoned by frustrating laser grids and infinitely respawning repair drones. Instead, players will traverse expansive urban ruins, overgrown industrial sectors, and fully explorable vertical environments like the expanded floating city of Chelomey. This topographical evolution is supported by brand-new vehicular traversal systems and dynamic weather cycles, ensuring the world feels like a cohesive, living entity rather than a series of disconnected, hostile combat arenas.

Playable Vehicles
  • None
    Crimson Moon focuses entirely on stamina-based melee combat and pedestrian traversal through dense gothic architecture; it does not feature vehicles.
  • Retrofuturistic Sedan: Civilian Transport
    A rugged, repurposed civilian car used by the player to traverse the vast distances between major cities and ruined industrial sectors.
  • Military Utility Rover: Heavy Transport
    A heavily armored, all-terrain vehicle designed to safely cross highly irradiated zones and ram through blockades of corrupted labor automatons.
Notable Fauna/Mounts
  • Hellgrowth Aberration: Parasitic Organic Corruption
    Environmental hazards and corrupted flora that actively hinder player movement and spawn low-tier enemies.
  • Sprouts
    Hostile biological entities capable of animating human corpses into grotesque, chaotic mutants that charge the player.
  • Cube Cryptids
    Bizarre, unpredictable creatures found within the spin-off MMO, The CUBE, displaying varying levels of hostility and rudimentary intelligence.
book Story & Characters
Main Characters
  • The Nephilim: Protagonist
    A human-angel hybrid engineered to eradicate the Infernal Legion, capable of entering a devastating 'Angel Mode'.
  • Mereda the Librarian: Quest Giver / Lore Master
    Stationed in Sanctus Clypeus, she tasks the Nephilim with specific hunts and translates collected Lore Scrolls.
  • Major Sergey Nechaev (Agent P-3): Protagonist
    A highly augmented, combat-hardened military operative navigating the global fallout and attempting to save his wife's consciousness.
  • Katya: Ally / Companion
    P-3's wife, whose consciousness is preserved in neuropolymer, temporarily occupying the highly advanced robotic chassis of a Twin.
  • Chariton (CHAR-les): Primary Antagonist
    A rogue, hyper-intelligent artificial intelligence responsible for the corruption of the Kollektiv network and the global robotic uprising.
  • Granny Zina: Ally
    A heavily armed, surprisingly resourceful survivor who assists P-3 with advanced weaponry and critical tactical information.
Example Missions
  • The Forsaken Streets: Primary Ward Progression
    Navigate the starting Ward, learn the extraction mechanics, and defeat the first gatekeeper Dead God.
  • Hunt for the Abraxas Stone: Secret Endgame Puzzle
    Solve undocumented environmental puzzles across multiple runs to uncover highly secretive lore artifacts.
  • The Polymer Awakening: Main Campaign
    Infiltrate a heavily fortified global communications hub to determine the status of the Kollektiv network and confront Chariton's localized AI subroutines.
  • The Chelomey Descent: Main Campaign Set-Piece
    Survive a chaotic, high-altitude escape sequence as the floating utopian city begins a catastrophic atmospheric re-entry.
  • Resurrection Protocol: Primary Side Mission
    Hunt down experimental cryptographic rings across diverse biomes to permanently fuse Katya's neuropolymer consciousness with a synthetic body.
people Multiplayer
Multiplayer Details

The software heavily focuses on two-player online cooperative play. Co-op is governed by a punishing 'shared life pool' mechanic; if one player dies repeatedly, the run is bankrupted for both, demanding extreme synergy. The dynamic difficulty algorithm scales immediately when a second Nephilim joins, massively inflating enemy health pools and aggression metrics. Loot drops and gold are subject to a 'first-come, first-served' pickup rule, requiring communication to ensure equitable distribution of vital unpurified gear.

While the mainline Atomic Heart 2 game remains a fiercely dedicated single-player RPG, Mundfish is addressing the massive demand for multiplayer engagement through an incredibly ambitious standalone spin-off titled 'The CUBE'. Announced alongside the sequel, The CUBE is a narrative-driven MMO shooter built upon proprietary, patented split-rendering technology. This mode tasks thousands of concurrent players with investigating a colossal, levitating Rubik's Cube structure that dynamically shifts its internal biomes and geometry in real-time. Players must form cooperative squads to navigate ever-changing, dungeon-like zones filled with bizarre cryptids and elemental anomalies. Rather than a zero-sum PvP experience, The CUBE emphasizes persistent character progression, cooperative puzzle-solving, and massive shared-world exploration, offering a chaotic, communal counterpoint to the isolated, curated narrative of the single-player campaign.

extension Editions & DLC
Available Editions

Team Metal opted for a highly disruptive pricing model. The Standard Edition retails globally for $19.99 (or regional equivalents like ₹1,897.22 in India), offering full access to the base game. The Deluxe Edition is positioned at $29.99 (also available as a $10 upgrade modularly). This premium tier includes purely cosmetic items—specifically the Ceremonial Armor Set and the Axe of the Gods weapon skin—and crucially, grants entitlement to the game's first major post-launch narrative expansion. PlayStation 5 purchasers (of either edition) exclusively receive the Sonai Magistrate Armor Set at launch.

While specific retail bundles are subject to publisher confirmation, standard industry practices and Mundfish's historical publishing model strongly indicate a multi-tiered release strategy. Players can expect a Standard Edition featuring the base game, likely accompanied by early pre-order bonuses such as exclusive weapon skins or early unlocks of elemental cartridges. A Deluxe Edition is anticipated to include a digital artbook showcasing the UAE-assisted architectural concepts, the heavy-metal infused original soundtrack, and exclusive in-game cosmetic armor sets. The highly coveted Ultimate Edition will likely feature the comprehensive Season Pass, guaranteeing access to future narrative expansions, much like the four DLCs that bridged the first game to the sequel. Collector's Editions may also feature physical merchandise, potentially including intricate replicas of the Polymer Glove or high-quality statuettes of the game's iconic, albeit controversial, robotic characters, catering to the franchise's dedicated fanbase.

Post-Launch Content / DLC

While specific details are tightly guarded by ProbablyMonsters (evidenced by a total lack of datamined leaks), a comprehensive post-launch roadmap is confirmed via the Deluxe Edition, which includes an expansion pass for the game's first major content drop. This DLC is expected to significantly expand the Wards of Gildenarch, introduce new Dead Gods, and potentially implement highly requested features like dual-wielding or dedicated ranged weaponry, which are unsupported in the 1.0 release.

Mundfish established a highly successful precedent with the original Atomic Heart by releasing four distinct narrative DLC expansions—Annihilation Instinct, Trapped in Limbo, Enchantment Under the Sea, and Blood on Crystal—which collectively bridged the gap to the sequel. It is widely expected that Atomic Heart 2 will adopt a similar, robust post-launch content strategy. These future DLCs will likely focus on expanding the lore of the global collapse, potentially allowing players to explore other devastated regions outside the primary map, or delving deeper into the psychological trauma and transhumanist themes surrounding Katya's neuropolymer consciousness. The season pass model will provide players with significant narrative branches, new elemental enemies to conquer, and advanced crafting schematics, ensuring the lifespan of the game extends well into the years following its initial release.

help_outline FAQ
Frequently Asked Questions
  • Q: Is Crimson Moon an open-world game?
    A: No. The game utilizes a hub-and-spoke roguelite structure. You deploy from the Sanctus Clypeus hub into 15-45 minute 'Hunts' within specific Wards that randomize enemy and loot placements each run.
  • Q: What happens when I die during a Hunt?
    A: If you exhaust your limited life pool and suffer a 'true death', the run immediately ends. You are sent back to the hub, and any unpurified loot or temporary Boons you collected during that run are permanently lost.
  • Q: How does the cooperative multiplayer work?
    A: Crimson Moon supports 2-player cross-platform co-op. However, you share a unified 'life pool' with your partner. If one player dies repeatedly, the entire run is bankrupted for both players. Enemy difficulty also scales up significantly.
  • Q: Can I rebind my keys on PC?
    A: At the 1.0 launch, manual keybinding was completely absent, forcing players to use rigid presets. Team Metal has acknowledged this as a severe oversight and promised immediate hotfixes to add custom keybindings.
  • Q: What are Weapon Arts and Boons?
    A: Weapon Arts are permanent magical or physical skills tied to specific gear (like shooting fireballs or freezing enemies). Boons are temporary, randomized stat modifiers found during a run (like applying poison on hit) that disappear when the run ends.
  • Q: Will Atomic Heart 2 feature a fully explorable open world?
    A: Yes. Mundfish has entirely abandoned the disjointed, hub-and-spoke map design of the first game. The sequel features a seamlessly interconnected, massive global open world complete with drivable vehicles, expansive biomes, and dynamic weather systems, designed in collaboration with real-world architectural firms.
  • Q: How has the combat system changed from the original game?
    A: The combat has undergone a massive evolution into a simultaneous dual-wielding system. Players can now cast devastating Polymer Glove abilities, like telekinesis or frost beams, at the exact same time as they fire energy weapons or swing heavy melee tools, allowing for incredibly fluid and aggressive tactical combinations.
  • Q: Is Atomic Heart 2 a multiplayer game?
    A: The main game, Atomic Heart 2, is a strictly single-player, narrative-driven Action RPG. However, Mundfish announced a simultaneous spin-off titled 'The CUBE', which is a massively multiplayer online (MMO) shooter utilizing patented split-rendering technology to create dynamically shifting, cooperative dungeons.
  • Q: What game engine is Atomic Heart 2 built on?
    A: The game is being developed on Unreal Engine 5. This allows the studio to utilize cutting-edge rendering technologies like Lumen for real-time global illumination and Nanite for virtualized geometry, providing an unprecedented level of visual fidelity and completely eliminating environmental pop-in.
  • Q: Did the developers use Generative AI tools to build the game?
    A: No. Despite industry trends, Mundfish CEO Robert Bagratuni stated firmly that while they researched AI tools during pre-production, they completely rejected integrating generative AI into their production pipeline, emphasizing their deep commitment to human creativity and traditional artistic development.
build Technical Details
Graphics & Visual Fidelity

Crimson Moon utilizes Unreal Engine 5.6 to achieve stunning AAA-equivalent visual fidelity. The art direction relies heavily on Lumen for real-time, path-traced global illumination, creating striking contrasts between divine angelic radiance and the gritty, Hellgrowth-infested urban decay of Gildenarch. The engine simulates dense volumetric fog and GPU-driven cloth physics for the Nephilim's armor. The 'Angel Mode' transformation is the visual centerpiece, generating golden, winged manifestations mid-combat. The uncompromising graphics require aggressive upscaling (DLSS 5 / FSR 4) to maintain the rigid 60 FPS necessary for soulslike combat.

Leveraging the absolute bleeding edge of Unreal Engine 5 technology, Atomic Heart 2 delivers a breathtaking leap in visual fidelity and environmental rendering. The integration of Lumen provides spectacular, real-time global illumination, allowing light to realistically bounce off the ubiquitous metallic surfaces, glass structures, and polymer pools of the retrofuturistic world. Nanite's virtualized micropolygon geometry completely eliminates the pop-in issues that plagued the first game, allowing the massive open world and towering architectural marvels to be rendered with unprecedented, meticulous detail. The art direction continues its striking blend of sterile, brutalist industrial design with the grotesque, chaotic body-horror of organic mutations. Dynamic weather systems, physically simulated fluid dynamics for the Polymer substances, and meticulously detailed particle effects for elemental combat combine to create one of the most visually arresting next-generation showcases in modern gaming.

Audio & Soundtrack

The audio design heavily complements the game's dark fantasy, heavy metal aesthetic. Combat is punctuated by the visceral, meaty impacts of heavy weapons shattering armor, and distinct, high-pitched audio cues that signal the tight frame windows for perfect parries. The musical score oscillates between solemn, choral chants within the safety of the Sanctus Clypeus hub, and aggressive, driving heavy metal instrumentation that kicks in dynamically during intense mob encounters and the massive 'Dead Gods' boss fights.

The sonic landscape of the Atomic Heart franchise is a critical pillar of its unique identity, famous for its jarring, brilliant juxtaposition of kinetic, heavy-metal combat tracks against upbeat, classical Soviet pop music. Following the acclaimed work of Mick Gordon and his contemporaries in the original title, the sequel promises an equally aggressive and atmospheric auditory experience. The sound design team has painstakingly recorded authentic industrial foley—the grinding of heavy gears, the screeching of tearing metal, and the sickening squelch of organic mutations—to ground the surreal combat in visceral realism. The soundtrack dynamically shifts based on player actions; seamlessly transitioning from eerie, ambient synth scores during stealth and exploration to thunderous, pulse-pounding metal the moment a player engages a horde of rogue automatons, ensuring the audio elevates every terrifying encounter.

User Interface (UI/UX)

The User Interface at launch received severe, unified criticism from the PC player base. Criticisms highlighted off-center text, unscaled HUD elements that made health bars difficult to read during chaotic combat, and a lack of auto-pickup for basic consumables. More critically, the 1.0 PC release lacked manual keybinding (forcing players into rigid presets where dodge and sprint shared a button) and featured a third-person lock-on camera that snapped violently or clipped through geometry when tracking highly mobile elite enemies. Team Metal has promised immediate hotfixes to rectify these severe UX friction points.

The user interface in Atomic Heart 2 has been thoroughly modernized to reflect the deeper RPG mechanics and the fast-paced nature of the simultaneous dual-wielding combat. Mundfish has streamlined the heads-up display (HUD) to be significantly less obtrusive than the original game, maximizing visual immersion within the stunning Unreal Engine 5 environments. A brand-new, intuitive radial wheel system allows for lightning-fast, real-time swapping of Polymer Glove abilities and elemental weapon cartridges without pausing the frantic action. Furthermore, the game features expansive, diegetic menu screens for the complex crafting and skill-tree interfaces, drawing heavy inspiration from the retrofuturistic computer terminals of the era. To accommodate player feedback, the UI also includes extensive customization options, allowing users to toggle objective markers, enemy health bars, and damage numbers to tailor their level of desired immersion.

Accessibility Options

Crimson Moon is inherently hostile to traditional accessibility standards by design, prioritizing extreme difficulty, punishing permanent-loss mechanics, and frame-perfect reaction times. However, the game does offer cooperative multiplayer as a means of mitigating difficulty, allowing a highly skilled player to 'carry' or support a less skilled partner (though the shared life pool makes this risky). The initial PC launch was notably poor for accessibility, entirely lacking custom keybindings, though this is actively being patched by the development team.

Following crucial post-launch patches applied to the original game, Mundfish has built Atomic Heart 2 with a profound, integrated commitment to player accessibility from day one. Recognizing that their deep RPG systems and frantic combat can be overwhelming, the game features a robust suite of customizable difficulty modifiers. Players can utilize auto-solve functions for the franchise's notoriously complex lockpicking and environmental puzzles, ensuring narrative pacing isn't stalled by mechanical hurdles. The inclusion of comprehensive colorblind modes, adjustable subtitle sizes with speaker backgrounds, and auto-Quick Time Event (QTE) resolution caters to a wide demographic. Furthermore, an auto-heal functionality and aim-assist toggles allow players with motor control difficulties to fully engage with the spectacular dual-wielding combat, guaranteeing that the compelling dystopian narrative is accessible to all players regardless of their physical gaming capabilities.

Gameplay Video
launchWatch launchWatch
Walkthrough/Guide
launchView launchView
settings_applications System Requirements
1080p (Full HD) - Recommended (High Preset, 60 FPS Target (DLSS/FSR Quality Mode))
CPU: Provides necessary headroom to process complex environmental physics and elite mob interactions without stuttering.
CPU (Laptop): Strong single-core performance is needed to keep the GPU fed during intensive, multi-enemy boss encounters.
GPU: Ensures smooth rendering of high-quality textures and stable performance when utilizing demanding Weapon Arts.
GPU (Laptop): Offers solid 1080p 60FPS performance thanks to advanced architecture and frame generation capabilities.
RAM: Strongly recommended to ensure no memory bottlenecks occur during extended co-op sessions.
Storage: Required to maintain instant load times when deploying from the Sanctus Clypeus hub to the Wards.
memoryCPU: Intel Core i7-10700K / AMD Ryzen 5 5600X
developer_boardGPU: NVIDIA GeForce RTX 3070 / AMD Radeon RX 6700 XT
laptop_macCPU (L): Intel Core i7-12700H / AMD Ryzen 7 6800H
laptop_windowsGPU (L): NVIDIA GeForce RTX 4060 Laptop GPU (115W+ TGP)
layersRAM: 32 GB
saveStorage (Tier): 50 GB NVMe SSD
memoryCPU: Intel Core i7-12700K / AMD Ryzen 7 5800X3D
developer_boardGPU: NVIDIA RTX 3080 / AMD RX 6800 XT
laptop_macCPU (L): Intel Core i7-13700HX / AMD Ryzen 9 6900HX
laptop_windowsGPU (L): NVIDIA RTX 4070 Laptop GPU (140W)
layersRAM: 16 GB
saveStorage (Tier): 120 GB NVMe SSD
1080p (Full HD) - Minimum (Low Preset, 30 FPS Target (DLSS/FSR Performance Mode))
CPU: Baseline required to calculate the complex hit-registration logic and basic enemy AI routines.
CPU (Laptop): Older mobile architectures will struggle; heavily reliant on aggressive upscaling to maintain a playable, though not ideal, 30 FPS.
GPU: The absolute minimum to render the basic lighting models, though it will severely struggle with the volumetric fog and particle density.
GPU (Laptop): Entry-level RTX cards must rely heavily on DLSS to offset the massive performance hit of Lumen lighting.
RAM: Mandatory baseline. 8GB is insufficient to handle the memory overhead of the dynamic ward generation.
Storage: Prevents catastrophic texture pop-in during fast-paced combat sequences.
memoryCPU: Intel Core i5-8400 / AMD Ryzen 5 2600
developer_boardGPU: NVIDIA GeForce GTX 1070 / AMD Radeon RX 5700
laptop_macCPU (L): Intel Core i7-9750H / AMD Ryzen 7 3750H
laptop_windowsGPU (L): NVIDIA GeForce RTX 3050 Ti Laptop GPU
layersRAM: 16 GB
saveStorage (Tier): 50 GB (SSD Recommended)
memoryCPU: Intel Core i5-12400T / AMD Ryzen 5 3600
developer_boardGPU: NVIDIA GTX 1070 / AMD RX Vega 56
laptop_macCPU (L): Intel Core i7-11800H / AMD Ryzen 7 5800H
laptop_windowsGPU (L): NVIDIA RTX 3060 Laptop GPU (130W)
layersRAM: 12 GB
saveStorage (Tier): 120 GB SSD
1440p (QHD/2K) - Ultra (Ultra preset, 60 FPS, 1440p Native)
CPU: Current generation powerhouse CPUs are necessary to feed the GPU data without bottlenecks at higher resolutions.
CPU (Laptop): Flagship mobile CPUs are required to handle the extreme geometry calculations of UE5 at Ultra settings.
GPU: High bandwidth and massive VRAM pools are essential to store the uncompressed texture assets at 1440p.
GPU (Laptop): Only the highest-tier mobile GPUs can brute-force Unreal Engine 5's Lumen at Ultra 1440p.
RAM: Highly recommended to entirely eliminate memory bottlenecks during extended play sessions.
Storage: Gen 4 speeds ensure instantaneous asset loading across the massive overworld.
memoryCPU: Intel Core i7-13700K / AMD Ryzen 9 7900X
developer_boardGPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
laptop_macCPU (L): Intel Core i9-13980HX / AMD Ryzen 9 7945HX
laptop_windowsGPU (L): NVIDIA RTX 4080 Laptop GPU (175W)
layersRAM: 32 GB
saveStorage (Tier): 120 GB NVMe SSD (Gen 4)
1440p (QHD/2K) - High (High/Max Preset, 60 FPS Target (DLSS/FSR Balanced))
CPU: Ensures the system never bottlenecks the GPU when rendering complex lighting and shadows at higher resolutions.
CPU (Laptop): Top-tier mobile processors necessary to calculate UE5 physics without causing frame pacing drops.
GPU: Delivers the rasterization overhead to manage path-traced lighting while keeping framerates strictly locked for parry timing.
GPU (Laptop): Required to maintain high frame rates at 1440p on laptops without drastically reducing visual fidelity.
RAM: Highly recommended for absolutely smooth gameplay.
Storage: Crucial for asset streaming at higher resolutions.
memoryCPU: Intel Core i5-13600K / AMD Ryzen 7 7700X
developer_boardGPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
laptop_macCPU (L): Intel Core i9-13900HX / AMD Ryzen 9 7845HX
laptop_windowsGPU (L): NVIDIA GeForce RTX 4080 Laptop GPU (175W TGP)
layersRAM: 32 GB
saveStorage (Tier): 50 GB NVMe SSD
2160p (UHD/4K) - Ultra / Enthusiast (Max Preset, 60 FPS Target (DLSS/FSR Quality or Native))
CPU: Eliminates all system bottlenecks, ensuring that every gothic environment is rendered flawlessly with maximum simulation complexity.
CPU (Laptop): The pinnacle of mobile processing power required to drive ultra-high-resolution UE5 calculations.
GPU: Massive rasterization and VRAM capacity required to render 4K textures and handle the intense volumetric fog and particle systems natively.
GPU (Laptop): Essential for attempting 4K gaming on a mobile platform, relying heavily on DLSS upscaling to maintain fluid motion.
RAM: Ensures the system never bottlenecks during maximum memory saturation events.
Storage: Provides instantaneous asset loading; estimated size requirement for full 4K texture pack installation.
memoryCPU: Intel Core Ultra 7 / AMD Ryzen 7 9700X
developer_boardGPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT
laptop_macCPU (L): Intel Core i9-14900HX
laptop_windowsGPU (L): NVIDIA GeForce RTX 4090 Laptop GPU (175W TGP)
layersRAM: 32 GB
saveStorage (Tier): 135 GB NVMe SSD
2160p (UHD/4K) - Extreme (Max preset, 60 FPS, 4K Native)
CPU: The absolute pinnacle of current consumer CPU technology is required to maintain perfectly stable frametimes at 4K.
CPU (Laptop): Only the latest flagship mobile silicone can attempt 4K gaming in this engine without upscaling.
GPU: 24GB of VRAM and massive rasterization horsepower are the only way to achieve native 4K 60FPS in this title.
GPU (Laptop): The apex of mobile graphics is mandatory, though upscaling via DLSS/FSR is still highly recommended.
RAM: Mandatory for extreme resolutions to handle the immense dataset of the game world.
Storage: Top-tier storage hardware to ensure flawless data streaming directly to the GPU memory.
memoryCPU: Intel Core i9-14900K / AMD Ryzen 9 7950X3D
developer_boardGPU: NVIDIA RTX 4090 / AMD RX 7900 XTX
laptop_macCPU (L): Intel Core i9-14900HX
laptop_windowsGPU (L): NVIDIA RTX 4090 Laptop GPU (175W)
layersRAM: 32 GB
saveStorage (Tier): 120 GB NVMe SSD (Gen 4/5)
save Overall Storage
Spec: 50 GB NVMe SSD
Note: While the footprint is relatively small for a UE5 title, an NVMe SSD is highly recommended to stream complex geometry and textures seamlessly during rapid traversal.
Type: NVMe
Spec: 120+ GB NVMe SSD
Note: An NVMe Solid State Drive is mandatory. Traditional HDDs cannot stream Nanite geometry fast enough, resulting in game-breaking pop-in and loading stalls.
Type: NVMe
desktop_windows Operating System
Spec: Windows 10 / 11 (64-bit)
Explanation: Requires a modern 64-bit architecture to manage the memory overhead required for UE5's rendering pipeline and dynamic environmental generation.
Spec: Windows 10 / Windows 11 (64-bit required)
Explanation: A 64-bit operating system architecture is strictly required to address the massive memory pools utilized by Unreal Engine 5's asset streaming.
gamepad DirectX Version
Spec: DirectX 12 Ultimate
Explanation: Strictly required to leverage hardware-accelerated ray tracing features associated with Lumen lighting and advanced shading techniques.
Spec: DirectX 12 Ultimate
Explanation: DX12 is required to utilize hardware-accelerated ray tracing and modern rendering APIs native to the engine.
info_outline Other Game Notes
  • Crimson Moon utilizes heavily modified Unreal Engine 5.6 rendering pipelines, specifically relying on Lumen for real-time global illumination and dense volumetric fog. It natively supports cutting-edge upscaling technologies like DLSS 5 and FSR 4 to offset massive computational overhead.
  • Laptop Performance Note: Laptop users will experience severe thermal stress. The high-speed combat pacing paired with Lumen lighting requires sustained GPU and CPU clocks. Thermal throttling will directly impact the frame-perfect parry windows critical for survival.
  • Laptop Consideration: G P U T G P: A high TGP (130W+) is absolutely vital for mobile GPUs to maintain 60 FPS while Lumen global illumination calculates dynamic shadows from the 'Angel Mode' transformations.
  • Laptop Consideration: Cooling Thermals: Aggressive cooling solutions are highly recommended. Frame drops during the erratic attack patterns of the 'Dead Gods' bosses will likely result in immediate player death and loss of unpurified loot.
  • Laptop Consideration: C P U Power Limits: PL1/PL2 limits must be sustained at high wattage; dropping below base clocks will result in stuttering when environmental destruction physics trigger during heavy AoE attacks.
  • Laptop Consideration: M U X Switch Optimus: A dedicated MUX switch bypassing Optimus is mandatory. The game's parry windows are extremely tight; any display latency introduced by Optimus will render high-level play impossible.
  • Optimization Detail: Upscaling Tech: NVIDIA DLSS 5, AMD FSR 4 (Multi-Frame Generation Supported)
  • Optimization Detail: Key Settings Impact: Volumetric Fog and Post-Processing (specifically Motion Blur) should be reduced on lower-end systems to stabilize frame pacing during chaotic, multi-enemy encounters.
  • Game Name: Crimson Moon
  • System requirements are highly demanding due to the implementation of Unreal Engine 5's Lumen and Nanite technologies.
  • Laptop Performance Note: Laptop hardware often performs significantly below desktop counterparts with identical naming schemes. Due to the intensive ray-traced lighting and virtualized geometry in Atomic Heart 2, laptops will strictly require high-TGP GPUs and robust cooling to avoid severe thermal throttling during open-world traversal.
  • Laptop Consideration: G P U T G P: A minimum Total Graphics Power (TGP) of 130W is heavily recommended for RTX 30-series or 40-series laptop GPUs to maintain stable frame pacing.
  • Laptop Consideration: Cooling Thermals: Dual-fan vapor chamber cooling systems are strongly advised; prolonged combat scenarios with elemental polymorphs will heavily spike CPU/GPU junction temperatures.
  • Laptop Consideration: C P U Power Limits: Ensure your laptop's PL1 and PL2 limits allow for sustained high clock speeds. CPU bottlenecks will cause severe stuttering during dynamic open-world entity spawning.
  • Laptop Consideration: M U X Switch Optimus: Bypassing NVIDIA Advanced Optimus via a hardware MUX switch is practically mandatory to reduce latency and maximize frame rates in the dual-wielding combat loops.
  • Optimization Detail: Upscaling Tech: NVIDIA DLSS 5 support is currently being evaluated by the developers; AMD FSR 3.0 is expected to be supported at launch.
  • Optimization Detail: Key Settings Impact: Lowering Volumetric Fog and Shadow Resolution yields the highest performance gains without severely degrading the core retrofuturistic aesthetic.
  • Game Name: Atomic Heart 2
build Optimization Details
  • Upscaling Tech: NVIDIA DLSS 5, AMD FSR 4 (Multi-Frame Generation Supported)
  • Key Settings Impact: Volumetric Fog and Post-Processing (specifically Motion Blur) should be reduced on lower-end systems to stabilize frame pacing during chaotic, multi-enemy encounters.
  • Upscaling Tech: NVIDIA DLSS 5 support is currently being evaluated by the developers; AMD FSR 3.0 is expected to be supported at launch.
  • Key Settings Impact: Lowering Volumetric Fog and Shadow Resolution yields the highest performance gains without severely degrading the core retrofuturistic aesthetic.
laptop Laptop Considerations
  • G P U T G P: A high TGP (130W+) is absolutely vital for mobile GPUs to maintain 60 FPS while Lumen global illumination calculates dynamic shadows from the 'Angel Mode' transformations.
  • Cooling Thermals: Aggressive cooling solutions are highly recommended. Frame drops during the erratic attack patterns of the 'Dead Gods' bosses will likely result in immediate player death and loss of unpurified loot.
  • C P U Power Limits: PL1/PL2 limits must be sustained at high wattage; dropping below base clocks will result in stuttering when environmental destruction physics trigger during heavy AoE attacks.
  • M U X Switch Optimus: A dedicated MUX switch bypassing Optimus is mandatory. The game's parry windows are extremely tight; any display latency introduced by Optimus will render high-level play impossible.
  • G P U T G P: A minimum Total Graphics Power (TGP) of 130W is heavily recommended for RTX 30-series or 40-series laptop GPUs to maintain stable frame pacing.
  • Cooling Thermals: Dual-fan vapor chamber cooling systems are strongly advised; prolonged combat scenarios with elemental polymorphs will heavily spike CPU/GPU junction temperatures.
  • C P U Power Limits: Ensure your laptop's PL1 and PL2 limits allow for sustained high clock speeds. CPU bottlenecks will cause severe stuttering during dynamic open-world entity spawning.
  • M U X Switch Optimus: Bypassing NVIDIA Advanced Optimus via a hardware MUX switch is practically mandatory to reduce latency and maximize frame rates in the dual-wielding combat loops.

info_outline Feature details based on available data. System requirements and performance estimates may vary.

laptop_chromebook Laptop Recommendations

Common Recommendations (Handles All Compared Games)

check_circle_outline Recommended based on listed requirements for Full HD (1080p).
ASUS TUF A15 with RTX 3050 and Ryzen 7
ASUS TUF A15 with RTX 3050 and Ryzen 7
  • memory AMD Ryzen 7 7435HS
  • developer_board NVIDIA GeForce RTX 3050
  • layers 32GB DDR5-4800MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 3050 Ti Laptop GPU / NVIDIA RTX 3060 Laptop GPU (130W)
HP Omen 16 (RTX 5060 & Ryzen 9 8940HX)
HP Omen 16 (RTX 5060 & Ryzen 9 8940HX)
  • memory AMD Ryzen 9 8940HX Processor
  • developer_board NVIDIA GeForce RTX 5060 Laptop GPU
  • layers 32GB DDR5-5200MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 3050 Ti Laptop GPU / NVIDIA RTX 3060 Laptop GPU (130W)
HP Victus 15 (RTX 4050 & Ryzen 7)
HP Victus 15 (RTX 4050 & Ryzen 7)
  • memory AMD Ryzen 7 7445HS
  • developer_board NVIDIA GeForce RTX 4050
  • layers 16GB (2x8GB) DDR5 5600MHz SO-DIMM
  • track_changes Target GPU: NVIDIA GeForce RTX 3050 Ti Laptop GPU / NVIDIA RTX 3060 Laptop GPU (130W)
MSI Pulse GL66 with RTX 3070 and i7 12th Gen
MSI Pulse GL66 with RTX 3070 and i7 12th Gen
  • memory Intel Core i7-12700H
  • developer_board NVIDIA GeForce RTX 3070
  • layers 32GB DDR4-3200MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4060 Laptop GPU (115W+ TGP) / NVIDIA RTX 4070 Laptop GPU (140W)
Lenovo Legion Pro 5i (i9-14900HX, RTX 4060)
Lenovo Legion Pro 5i (i9-14900HX, RTX 4060)
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4060
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4060 Laptop GPU (115W+ TGP) / NVIDIA RTX 4070 Laptop GPU (140W)
check_circle_outline Recommended based on listed requirements for QHD (1440p).
HP OMEN 16 with RTX 4080 and intel i9 14th Gen
HP OMEN 16 with RTX 4080 and intel i9 14th Gen
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080 Laptop GPU
  • layers 64 GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4080 Laptop GPU (175W TGP)
GIGABYTE AORUS Elite 16 (RTX 5070 & Intel Core Ultra 9 275HX)
GIGABYTE AORUS Elite 16 (RTX 5070 & Intel Core Ultra 9 275HX)
  • memory Intel Core Ultra 9 Processor 275HX (Series 2)
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4080 Laptop GPU (175W TGP)
MSI Katana 15 HX (RTX 5070 & Intel i7 14th Gen)
MSI Katana 15 HX (RTX 5070 & Intel i7 14th Gen)
  • memory Intel Core i9-14900HX Processor
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4080 Laptop GPU (175W TGP)
check_circle_outline Recommended based on listed requirements for UHD (4K).
Lenovo Legion Pro 7 16IRX9H with RTX 4090
Lenovo Legion Pro 7 16IRX9H with RTX 4090
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4090
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4090 Laptop GPU (175W TGP)
LG Gram Pro 17 with RTX 5050
LG Gram Pro 17 with RTX 5050
  • memory Intel Core Ultra 9 285H (Series 2) , 14 cores (6 Performance cores + 8 Efficient cores), 20 threads
  • developer_board NVIDIA GeForce RTX 5050 Laptop GPU
  • layers 32GB (2x16GB) DDR5 8400MHz SO-DIMM
  • track_changes Target GPU: NVIDIA GeForce RTX 4090 Laptop GPU (175W TGP)
HP OMEN Ultra Slim 16 (RTX 5070 & Intel i9)
HP OMEN Ultra Slim 16 (RTX 5070 & Intel i9)
  • memory Intel Core Ultra 9 285H
  • developer_board NVIDIA GeForce RTX 5070
  • layers 32GB (2x16GB) DDR5 4800MHz SO-DIMM
  • track_changes Target GPU: NVIDIA GeForce RTX 4090 Laptop GPU (175W TGP)

For Crimson Moon Specifically

check_circle_outline Recommended based on listed requirements for Full HD (1080p).
ASUS TUF A15 with RTX 3050 and Ryzen 7
ASUS TUF A15 with RTX 3050 and Ryzen 7
  • memory AMD Ryzen 7 7435HS
  • developer_board NVIDIA GeForce RTX 3050
  • layers 32GB DDR5-4800MHz
  • track_changes Target GPU: NVIDIA GeForce GTX 1070 / AMD Radeon RX 5700
HP Omen 16 (RTX 5060 & Ryzen 9 8940HX)
HP Omen 16 (RTX 5060 & Ryzen 9 8940HX)
  • memory AMD Ryzen 9 8940HX Processor
  • developer_board NVIDIA GeForce RTX 5060 Laptop GPU
  • layers 32GB DDR5-5200MHz
  • track_changes Target GPU: NVIDIA GeForce GTX 1070 / AMD Radeon RX 5700
HP Victus 15 (RTX 4050 & Ryzen 7)
HP Victus 15 (RTX 4050 & Ryzen 7)
  • memory AMD Ryzen 7 7445HS
  • developer_board NVIDIA GeForce RTX 4050
  • layers 16GB (2x8GB) DDR5 5600MHz SO-DIMM
  • track_changes Target GPU: NVIDIA GeForce GTX 1070 / AMD Radeon RX 5700
ASUS TUF Gaming  A16 with RTX 4050
ASUS TUF Gaming A16 with RTX 4050
  • memory AMD Ryzen 7 7445HS
  • developer_board NVIDIA GeForce RTX 4050
  • layers 16GB DDR5 5600MHz SO-DIMM
  • track_changes Target GPU: NVIDIA GeForce GTX 1070 / AMD Radeon RX 5700
Dell Alienware M16 Gaming Laptop with RTX 4080
Dell Alienware M16 Gaming Laptop with RTX 4080
  • memory AMD Ryzen 9 7845HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers Up to 64GB DDR5
  • track_changes Target GPU: NVIDIA GeForce GTX 1070 / AMD Radeon RX 5700
XMG Apex 16 Max (RTX 5070 Ti & Ryzen 9)
XMG Apex 16 Max (RTX 5070 Ti & Ryzen 9)
  • memory AMD Ryzen 9 9955HX
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 64GB DDR5-5600MHz (Dual-Channel)
  • track_changes Target GPU: NVIDIA GeForce GTX 1070 / AMD Radeon RX 5700
MSI Pulse GL66 with RTX 3070 and i7 12th Gen
MSI Pulse GL66 with RTX 3070 and i7 12th Gen
  • memory Intel Core i7-12700H
  • developer_board NVIDIA GeForce RTX 3070
  • layers 32GB DDR4-3200MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 3070 / AMD Radeon RX 6700 XT
Lenovo Legion Pro 5i (i9-14900HX, RTX 4060)
Lenovo Legion Pro 5i (i9-14900HX, RTX 4060)
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4060
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 3070 / AMD Radeon RX 6700 XT
MSI Creator M16 HX with RTX 4070
MSI Creator M16 HX with RTX 4070
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4070
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 3070 / AMD Radeon RX 6700 XT
ASUS ROG Strix Scar 17 Se with RTX 3080 Ti  and i9
ASUS ROG Strix Scar 17 Se with RTX 3080 Ti and i9
  • memory Intel Core i9-12950HX
  • developer_board NVIDIA GeForce RTX 3080 Ti
  • layers 32GB DDR5-4800MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 3070 / AMD Radeon RX 6700 XT
HP OMEN 16 with RTX 4080 and intel i9 14th Gen
HP OMEN 16 with RTX 4080 and intel i9 14th Gen
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080 Laptop GPU
  • layers 64 GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 3070 / AMD Radeon RX 6700 XT
GIGABYTE AORUS Elite 16 (RTX 5070 & Intel Core Ultra 9 275HX)
GIGABYTE AORUS Elite 16 (RTX 5070 & Intel Core Ultra 9 275HX)
  • memory Intel Core Ultra 9 Processor 275HX (Series 2)
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 3070 / AMD Radeon RX 6700 XT
MSI Katana 15 HX (RTX 5070 & Intel i7 14th Gen)
MSI Katana 15 HX (RTX 5070 & Intel i7 14th Gen)
  • memory Intel Core i9-14900HX Processor
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 3070 / AMD Radeon RX 6700 XT
Dell Alienware 16X Aurora (RTX 5070 & Intel Core Ultra 9 275HX)
Dell Alienware 16X Aurora (RTX 5070 & Intel Core Ultra 9 275HX)
  • memory Intel Core i9-14900HX Processor
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 3070 / AMD Radeon RX 6700 XT
check_circle_outline Recommended based on listed requirements for QHD (1440p).
HP OMEN 16 with RTX 4080 and intel i9 14th Gen
HP OMEN 16 with RTX 4080 and intel i9 14th Gen
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080 Laptop GPU
  • layers 64 GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
GIGABYTE AORUS Elite 16 (RTX 5070 & Intel Core Ultra 9 275HX)
GIGABYTE AORUS Elite 16 (RTX 5070 & Intel Core Ultra 9 275HX)
  • memory Intel Core Ultra 9 Processor 275HX (Series 2)
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
MSI Katana 15 HX (RTX 5070 & Intel i7 14th Gen)
MSI Katana 15 HX (RTX 5070 & Intel i7 14th Gen)
  • memory Intel Core i9-14900HX Processor
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
Dell Alienware 16X Aurora (RTX 5070 & Intel Core Ultra 9 275HX)
Dell Alienware 16X Aurora (RTX 5070 & Intel Core Ultra 9 275HX)
  • memory Intel Core i9-14900HX Processor
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
Lenovo Thinkpad T1G Gen 8 (RTX 5070 & Ultra 9)
Lenovo Thinkpad T1G Gen 8 (RTX 5070 & Ultra 9)
  • memory Intel Core Ultra 9 285H (Arrow Lake-H)
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 64GB LPDDR5x-8533MT/s (LPCAMM2)
  • track_changes Target GPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
Acer Predator Helios Neo 18 2024 With Rtx 4080
Acer Predator Helios Neo 18 2024 With Rtx 4080
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers 64GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
ASUS ROG Strix G18 with RTX 4080 and intel i9 14th Gen
ASUS ROG Strix G18 with RTX 4080 and intel i9 14th Gen
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
MSI Vector 17 HX with RTX 4080 in 2025
MSI Vector 17 HX with RTX 4080 in 2025
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
ASUS ROG Strix Scar 18 Gaming Laptop with RTX 4080
ASUS ROG Strix Scar 18 Gaming Laptop with RTX 4080
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
Dell Alienware M16 Gaming Laptop with RTX 4080
Dell Alienware M16 Gaming Laptop with RTX 4080
  • memory AMD Ryzen 9 7845HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers Up to 64GB DDR5
  • track_changes Target GPU: NVIDIA GeForce RTX 4070 / AMD Radeon RX 7800 XT
check_circle_outline Recommended based on listed requirements for UHD (4K).
LG Gram Pro 17 with RTX 5050
LG Gram Pro 17 with RTX 5050
  • memory Intel Core Ultra 9 285H (Series 2) , 14 cores (6 Performance cores + 8 Efficient cores), 20 threads
  • developer_board NVIDIA GeForce RTX 5050 Laptop GPU
  • layers 32GB (2x16GB) DDR5 8400MHz SO-DIMM
  • track_changes Target GPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT
HP OMEN Ultra Slim 16 (RTX 5070 & Intel i9)
HP OMEN Ultra Slim 16 (RTX 5070 & Intel i9)
  • memory Intel Core Ultra 9 285H
  • developer_board NVIDIA GeForce RTX 5070
  • layers 32GB (2x16GB) DDR5 4800MHz SO-DIMM
  • track_changes Target GPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT
Thunderobot Radiant 16 (RTX 5070 Ti & Intel i9 14th Gen)
Thunderobot Radiant 16 (RTX 5070 Ti & Intel i9 14th Gen)
  • memory Intel Core i9-14900HX Processor
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 64GB DDR5-5600MHz (commonly listed as 4800MHz by some retailers, but 5600MHz is common for 14th Gen HX with DDR5)
  • track_changes Target GPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT
Lenovo Legion Pro 7i Gen 10 with RTX 5070 Ti
Lenovo Legion Pro 7i Gen 10 with RTX 5070 Ti
  • memory Intel Core Ultra 9 Processor 275HX
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 64GB DDR5-6400MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT
GIGABYTE AORUS Master 16 (RTX 5070 Ti & Intel Core Ultra 9 275HX)
GIGABYTE AORUS Master 16 (RTX 5070 Ti & Intel Core Ultra 9 275HX)
  • memory Intel Core Ultra 9 Processor 275HX (Series 2)
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT
MSI Vector 16 HX with RTX 5070 Ti
MSI Vector 16 HX with RTX 5070 Ti
  • memory Intel Ultra 7 255HX
  • developer_board NVIDIA GeForce RTX 5070 Ti
  • layers 32GB DDR5 5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT
GIGABYTE A16 Pro (RTX 5070 Ti & Intel Core Ultra 7)
GIGABYTE A16 Pro (RTX 5070 Ti & Intel Core Ultra 7)
  • memory Intel Core Ultra 7 240H
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 32GB LPDDR5X 5600MHz
  • track_changes Target GPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT
XMG Fusion 16 (RTX 5070 & Ultra 9)
XMG Fusion 16 (RTX 5070 & Ultra 9)
  • memory Intel Core Ultra 9 275HX
  • developer_board GeForce RTX 5070 Laptop Laptop GPU
  • layers 64GB DDR5-6400MHz (Single-Channel)
  • track_changes Target GPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT
Lenovo Legion Pro 5i Gen 10 (RTX 5070 Ti & Intel Core Ultra 9 275HX)
Lenovo Legion Pro 5i Gen 10 (RTX 5070 Ti & Intel Core Ultra 9 275HX)
  • memory Intel Core Ultra 9 275HX
  • developer_board NVIDIA GeForce RTX 5070 Ti
  • layers 32GB
  • track_changes Target GPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT
Acer Predator Helios Neo 16S (RTX 5070 Ti & Intel Ultra 9 275HX)
Acer Predator Helios Neo 16S (RTX 5070 Ti & Intel Ultra 9 275HX)
  • memory Intel Core Ultra 9 275HX
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 32 GB DDR5 6400MHz (2x16GB)
  • track_changes Target GPU: NVIDIA GeForce RTX 5070 Ti / AMD Radeon RX 9070 XT

For Atomic Heart 2 Specifically

check_circle_outline Recommended based on listed requirements for Full HD (1080p).
MSI Pulse GL66 with RTX 3070 and i7 12th Gen
MSI Pulse GL66 with RTX 3070 and i7 12th Gen
  • memory Intel Core i7-12700H
  • developer_board NVIDIA GeForce RTX 3070
  • layers 32GB DDR4-3200MHz
  • track_changes Target GPU: NVIDIA GTX 1070 / AMD RX Vega 56
Acer Nitro V with RTX 4060 and i9 13th Gen
Acer Nitro V with RTX 4060 and i9 13th Gen
  • memory Intel Core i9-13900H
  • developer_board NVIDIA GeForce RTX 4060
  • layers 16GB DDR5-5200MHz
  • track_changes Target GPU: NVIDIA GTX 1070 / AMD RX Vega 56
Lenovo Legion Pro 5i (i9-14900HX, RTX 4060)
Lenovo Legion Pro 5i (i9-14900HX, RTX 4060)
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4060
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GTX 1070 / AMD RX Vega 56
Asus Rog Strix Scar 15 with RTX 3070 Ti and i9 12th Gen
Asus Rog Strix Scar 15 with RTX 3070 Ti and i9 12th Gen
  • memory Intel Core i9-12900H
  • developer_board NVIDIA GeForce RTX 3070 Ti
  • layers 16GB DDR5-4800MHz
  • track_changes Target GPU: NVIDIA GTX 1070 / AMD RX Vega 56
ASUS TUF A15 with RTX 3050 and Ryzen 7
ASUS TUF A15 with RTX 3050 and Ryzen 7
  • memory AMD Ryzen 7 7435HS
  • developer_board NVIDIA GeForce RTX 3050
  • layers 32GB DDR5-4800MHz
  • track_changes Target GPU: NVIDIA GTX 1070 / AMD RX Vega 56
ASUS ROG Strix G15 with RTX 3060 and Ryzen 7
ASUS ROG Strix G15 with RTX 3060 and Ryzen 7
  • memory AMD Ryzen 7 6800H
  • developer_board NVIDIA GeForce RTX 3060
  • layers 16GB DDR5-4800MHz
  • track_changes Target GPU: NVIDIA GTX 1070 / AMD RX Vega 56
ASUS ROG Zephyrus G15 Ultra with RTX 3080 and Ryzen 9
ASUS ROG Zephyrus G15 Ultra with RTX 3080 and Ryzen 9
  • memory AMD Ryzen 9 5900HS
  • developer_board NVIDIA GeForce RTX 3080
  • layers 16GB DDR4-3200MHz
  • track_changes Target GPU: NVIDIA GTX 1070 / AMD RX Vega 56
MSI Katana 15 with RTX 4070
MSI Katana 15 with RTX 4070
  • memory Intel Core i7-13620H
  • developer_board NVIDIA GeForce RTX 4070
  • layers 16GB DDR5-4800MHz
  • track_changes Target GPU: NVIDIA GTX 1070 / AMD RX Vega 56
Alienware M18 with RTX 4070
Alienware M18 with RTX 4070
  • memory Intel Core i7-14700HX
  • developer_board NVIDIA GeForce RTX 4070
  • layers 16GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GTX 1070 / AMD RX Vega 56
MSI Creator M16 HX with RTX 4070
MSI Creator M16 HX with RTX 4070
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4070
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA GTX 1070 / AMD RX Vega 56
ASUS ROG Strix G16 with RTX 4070
ASUS ROG Strix G16 with RTX 4070
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4070
  • layers 16GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 3080 / AMD RX 6800 XT
MSI Cyborg 15 (RTX 5050 & Intel 7)
MSI Cyborg 15 (RTX 5050 & Intel 7)
  • memory Intel Core Ultra 7 255H
  • developer_board NVIDIA GeForce RTX 5060 Laptop GPU
  • layers 16GB DDR5-5600MHz (Dual-Channel)
  • track_changes Target GPU: NVIDIA RTX 3080 / AMD RX 6800 XT
HP Omen 16 (RTX 5060 & Ryzen 9 8940HX)
HP Omen 16 (RTX 5060 & Ryzen 9 8940HX)
  • memory AMD Ryzen 9 8940HX Processor
  • developer_board NVIDIA GeForce RTX 5060 Laptop GPU
  • layers 32GB DDR5-5200MHz
  • track_changes Target GPU: NVIDIA RTX 3080 / AMD RX 6800 XT
ASUS ROG Strix Scar 17 Se with RTX 3080 Ti  and i9
ASUS ROG Strix Scar 17 Se with RTX 3080 Ti and i9
  • memory Intel Core i9-12950HX
  • developer_board NVIDIA GeForce RTX 3080 Ti
  • layers 32GB DDR5-4800MHz
  • track_changes Target GPU: NVIDIA RTX 3080 / AMD RX 6800 XT
HP Victus 15 (RTX 4050 & Ryzen 7)
HP Victus 15 (RTX 4050 & Ryzen 7)
  • memory AMD Ryzen 7 7445HS
  • developer_board NVIDIA GeForce RTX 4050
  • layers 16GB (2x8GB) DDR5 5600MHz SO-DIMM
  • track_changes Target GPU: NVIDIA RTX 3080 / AMD RX 6800 XT
ASUS TUF Gaming  A16 with RTX 4050
ASUS TUF Gaming A16 with RTX 4050
  • memory AMD Ryzen 7 7445HS
  • developer_board NVIDIA GeForce RTX 4050
  • layers 16GB DDR5 5600MHz SO-DIMM
  • track_changes Target GPU: NVIDIA RTX 3080 / AMD RX 6800 XT
HP OMEN 16 with RTX 4080 and intel i9 14th Gen
HP OMEN 16 with RTX 4080 and intel i9 14th Gen
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080 Laptop GPU
  • layers 64 GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 3080 / AMD RX 6800 XT
GIGABYTE AORUS Elite 16 (RTX 5070 & Intel Core Ultra 9 275HX)
GIGABYTE AORUS Elite 16 (RTX 5070 & Intel Core Ultra 9 275HX)
  • memory Intel Core Ultra 9 Processor 275HX (Series 2)
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 3080 / AMD RX 6800 XT
MSI Katana 15 HX (RTX 5070 & Intel i7 14th Gen)
MSI Katana 15 HX (RTX 5070 & Intel i7 14th Gen)
  • memory Intel Core i9-14900HX Processor
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 3080 / AMD RX 6800 XT
check_circle_outline Recommended based on listed requirements for QHD (1440p).
HP OMEN 16 with RTX 4080 and intel i9 14th Gen
HP OMEN 16 with RTX 4080 and intel i9 14th Gen
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080 Laptop GPU
  • layers 64 GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
GIGABYTE AORUS Elite 16 (RTX 5070 & Intel Core Ultra 9 275HX)
GIGABYTE AORUS Elite 16 (RTX 5070 & Intel Core Ultra 9 275HX)
  • memory Intel Core Ultra 9 Processor 275HX (Series 2)
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
MSI Katana 15 HX (RTX 5070 & Intel i7 14th Gen)
MSI Katana 15 HX (RTX 5070 & Intel i7 14th Gen)
  • memory Intel Core i9-14900HX Processor
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
Dell Alienware 16X Aurora (RTX 5070 & Intel Core Ultra 9 275HX)
Dell Alienware 16X Aurora (RTX 5070 & Intel Core Ultra 9 275HX)
  • memory Intel Core i9-14900HX Processor
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
Lenovo Thinkpad T1G Gen 8 (RTX 5070 & Ultra 9)
Lenovo Thinkpad T1G Gen 8 (RTX 5070 & Ultra 9)
  • memory Intel Core Ultra 9 285H (Arrow Lake-H)
  • developer_board NVIDIA GeForce RTX 5070 Laptop GPU
  • layers 64GB LPDDR5x-8533MT/s (LPCAMM2)
  • track_changes Target GPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
Acer Predator Helios Neo 18 2024 With Rtx 4080
Acer Predator Helios Neo 18 2024 With Rtx 4080
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers 64GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
ASUS ROG Strix G18 with RTX 4080 and intel i9 14th Gen
ASUS ROG Strix G18 with RTX 4080 and intel i9 14th Gen
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
MSI Vector 17 HX with RTX 4080 in 2025
MSI Vector 17 HX with RTX 4080 in 2025
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
ASUS ROG Strix Scar 18 Gaming Laptop with RTX 4080
ASUS ROG Strix Scar 18 Gaming Laptop with RTX 4080
  • memory Intel Core i9-14900HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
Dell Alienware M16 Gaming Laptop with RTX 4080
Dell Alienware M16 Gaming Laptop with RTX 4080
  • memory AMD Ryzen 9 7845HX
  • developer_board NVIDIA GeForce RTX 4080
  • layers Up to 64GB DDR5
  • track_changes Target GPU: NVIDIA RTX 4070 Ti / AMD RX 7900 XT
check_circle_outline Recommended based on listed requirements for UHD (4K).
LG Gram Pro 17 with RTX 5050
LG Gram Pro 17 with RTX 5050
  • memory Intel Core Ultra 9 285H (Series 2) , 14 cores (6 Performance cores + 8 Efficient cores), 20 threads
  • developer_board NVIDIA GeForce RTX 5050 Laptop GPU
  • layers 32GB (2x16GB) DDR5 8400MHz SO-DIMM
  • track_changes Target GPU: NVIDIA RTX 4090 / AMD RX 7900 XTX
HP OMEN Ultra Slim 16 (RTX 5070 & Intel i9)
HP OMEN Ultra Slim 16 (RTX 5070 & Intel i9)
  • memory Intel Core Ultra 9 285H
  • developer_board NVIDIA GeForce RTX 5070
  • layers 32GB (2x16GB) DDR5 4800MHz SO-DIMM
  • track_changes Target GPU: NVIDIA RTX 4090 / AMD RX 7900 XTX
Thunderobot Radiant 16 (RTX 5070 Ti & Intel i9 14th Gen)
Thunderobot Radiant 16 (RTX 5070 Ti & Intel i9 14th Gen)
  • memory Intel Core i9-14900HX Processor
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 64GB DDR5-5600MHz (commonly listed as 4800MHz by some retailers, but 5600MHz is common for 14th Gen HX with DDR5)
  • track_changes Target GPU: NVIDIA RTX 4090 / AMD RX 7900 XTX
Lenovo Legion Pro 7i Gen 10 with RTX 5070 Ti
Lenovo Legion Pro 7i Gen 10 with RTX 5070 Ti
  • memory Intel Core Ultra 9 Processor 275HX
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 64GB DDR5-6400MHz
  • track_changes Target GPU: NVIDIA RTX 4090 / AMD RX 7900 XTX
GIGABYTE AORUS Master 16 (RTX 5070 Ti & Intel Core Ultra 9 275HX)
GIGABYTE AORUS Master 16 (RTX 5070 Ti & Intel Core Ultra 9 275HX)
  • memory Intel Core Ultra 9 Processor 275HX (Series 2)
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 32GB DDR5-5600MHz
  • track_changes Target GPU: NVIDIA RTX 4090 / AMD RX 7900 XTX
MSI Vector 16 HX with RTX 5070 Ti
MSI Vector 16 HX with RTX 5070 Ti
  • memory Intel Ultra 7 255HX
  • developer_board NVIDIA GeForce RTX 5070 Ti
  • layers 32GB DDR5 5600MHz
  • track_changes Target GPU: NVIDIA RTX 4090 / AMD RX 7900 XTX
GIGABYTE A16 Pro (RTX 5070 Ti & Intel Core Ultra 7)
GIGABYTE A16 Pro (RTX 5070 Ti & Intel Core Ultra 7)
  • memory Intel Core Ultra 7 240H
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 32GB LPDDR5X 5600MHz
  • track_changes Target GPU: NVIDIA RTX 4090 / AMD RX 7900 XTX
XMG Fusion 16 (RTX 5070 & Ultra 9)
XMG Fusion 16 (RTX 5070 & Ultra 9)
  • memory Intel Core Ultra 9 275HX
  • developer_board GeForce RTX 5070 Laptop Laptop GPU
  • layers 64GB DDR5-6400MHz (Single-Channel)
  • track_changes Target GPU: NVIDIA RTX 4090 / AMD RX 7900 XTX
Lenovo Legion Pro 5i Gen 10 (RTX 5070 Ti & Intel Core Ultra 9 275HX)
Lenovo Legion Pro 5i Gen 10 (RTX 5070 Ti & Intel Core Ultra 9 275HX)
  • memory Intel Core Ultra 9 275HX
  • developer_board NVIDIA GeForce RTX 5070 Ti
  • layers 32GB
  • track_changes Target GPU: NVIDIA RTX 4090 / AMD RX 7900 XTX
Acer Predator Helios Neo 16S (RTX 5070 Ti & Intel Ultra 9 275HX)
Acer Predator Helios Neo 16S (RTX 5070 Ti & Intel Ultra 9 275HX)
  • memory Intel Core Ultra 9 275HX
  • developer_board NVIDIA GeForce RTX 5070 Ti Laptop GPU
  • layers 32 GB DDR5 6400MHz (2x16GB)
  • track_changes Target GPU: NVIDIA RTX 4090 / AMD RX 7900 XTX

info_outline Laptop recommendations are estimates based on available component benchmarks and game requirements. Actual performance may vary depending on settings, drivers, cooling, power limits, etc. Prices and availability subject to change. As an Amazon Associate, we earn from qualifying purchases.

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