Key takeaways
- The best FragPunk settings for FPS are fullscreen at your monitor’s native resolution, VSync off, NVIDIA Reflex enabled where available, low-latency graphics options, and enough texture quality to keep the image readable without exhausting VRAM. Recommended FragPunk settings for competitive…
The best FragPunk settings for FPS are fullscreen at your monitor’s native resolution, VSync off, NVIDIA Reflex enabled where available, low-latency graphics options, and enough texture quality to keep the image readable without exhausting VRAM.
Recommended FragPunk settings for competitive FPS
Use these as a strong starting point, then adjust only one setting at a time. The goal is not simply the lowest possible graphics quality: excessive blur, shimmering edges, or unreadable effects can make enemies harder to track.
| Setting | Competitive recommendation | Why it matters |
|---|---|---|
| Display mode | Fullscreen | Usually gives the most consistent presentation and simplest refresh-rate control |
| Resolution | Native monitor resolution | Keeps character outlines and distant targets sharper |
| Refresh rate | Highest available | Reduces displayed motion persistence and improves responsiveness |
| VSync | Off | Avoids adding a frame of synchronization delay; use a frame cap if tearing is distracting |
| NVIDIA Reflex | On + Boost, if available | Reduces the render queue; Boost can maintain higher GPU clocks at the cost of power and heat |
| Motion blur | Off | Preserves target clarity while turning or taking damage |
| Field of view | Start around field-of-view 100–105 | Balances peripheral awareness with target size; choose the highest value you can track comfortably |
| Shadows | Low | Reduces GPU work and avoids overly heavy shadow contrast |
| Effects | Low or Medium | Low improves clarity during ability-heavy fights; Medium can make some effects easier to read |
| Textures | Medium or High, depending on VRAM | Texture quality mostly affects memory use rather than input latency |
| Post-processing | Low | Limits distracting image effects and usually improves clarity |
| Anti-aliasing | Low or Medium | Reduces jagged edges without the softness of aggressive temporal processing |
Step-by-step setup for lower input latency
1. Set the correct display mode and refresh rate
Choose fullscreen if FragPunk offers a reliable exclusive-fullscreen option on your system. Confirm the game is actually running at your monitor’s maximum refresh rate rather than defaulting to 60 Hz. A 144 Hz monitor updates every approximately 6.94 milliseconds, while a 60 Hz display updates every 16.67 milliseconds. That difference affects how quickly a newly rendered frame can appear.
Use native resolution first. Lowering resolution can increase FPS, but it also makes targets less defined. If your GPU is struggling, test a lower resolution or an in-game resolution scale before immediately lowering every visual setting.
2. Turn off synchronization and blur features
Disable VSync when your priority is the lowest practical latency. VSync can prevent tearing, but depending on the rendering path it may make the game feel less immediate. Turn off motion blur, depth-of-field effects, film grain, chromatic aberration, and similar cosmetic options if they are available.
If tearing is severe, cap FPS slightly below your monitor’s refresh rate. For example, on a 144 Hz display, try a cap around 138–141 FPS; on 240 Hz, try approximately 230–237 FPS. The exact cap is less important than keeping frame delivery stable. An unstable 240 FPS that repeatedly falls to 100 can feel worse than a consistent 140 FPS.
3. Enable the lowest-latency GPU option
On compatible NVIDIA hardware, enable NVIDIA Reflex. Start with “On”; use “On + Boost” if GPU clock fluctuations cause inconsistent frame pacing or if your system has enough cooling headroom. Boost can increase power consumption, so it is not automatically better for every laptop.
On other hardware, prioritize a stable frame rate, disable unnecessary driver-level image processing, and avoid stacking multiple latency features from both the game and the driver. Use only one frame limiter at first so you can identify which option produces the smoothest frame pacing.
Clarity-focused graphics settings
Textures: spend VRAM here before spending it on effects
Texture quality is often the best place to retain visual detail. Medium textures are a sensible default for systems with around 4–6 GB of dedicated VRAM, while High textures are more practical on GPUs with 8 GB or more. This is not a strict rule: resolution, texture streaming, and future patches change the actual requirement.
When VRAM is full, the symptoms can include sudden stutter, delayed texture loading, or inconsistent asset quality. If that happens, lower textures one step before lowering the resolution. The calculation is simple: a 1920 × 1080 frame contains about 2.07 million pixels, while 2560 × 1440 contains about 3.69 million—roughly 78% more pixels for the GPU to process. That does not mean the game needs 78% more VRAM, because textures are separate from the frame buffer, but it explains why higher resolution can expose a GPU memory and bandwidth limit.
Shadows, effects, and post-processing
Set shadows to Low first. Shadows can consume substantial GPU time and may create dark areas that compete with character silhouettes. Set effects to Low if explosions, abilities, or particles obscure targets; use Medium if Low makes important ability boundaries difficult to distinguish.
Keep post-processing Low. Higher settings may add visual polish, but competitive players generally benefit more from a clean image than from bloom, heavy ambient effects, or other cinematic treatment. If an option specifically adds sharpening, use a small amount rather than maximum sharpening, which can create bright halos around edges.
Anti-aliasing and upscaling
Use Low or Medium anti-aliasing first. If the image shimmers around fences and thin geometry, increase anti-aliasing one step before changing textures. If you need more performance, use a quality-oriented upscaling mode rather than an aggressive performance mode. The lower the internal render resolution, the greater the risk that distant enemies become soft or difficult to separate from the background.
Scalable presets by hardware level
| System class | Suggested resolution | Graphics preset | Priority adjustment |
|---|---|---|---|
| Entry-level gaming laptop or older desktop GPU | 1080p, or 900p if necessary | Low; textures Medium if memory allows | Reduce effects and shadows first; use a stable FPS cap |
| Mainstream 1080p gaming PC | 1920 × 1080 | Low/Medium mix; textures Medium or High | Keep native resolution and lower post-processing before textures |
| Strong 1080p high-refresh system | 1920 × 1080 | Medium with Low shadows and effects | Target consistent delivery for 144–240 Hz rather than maximum peak FPS |
| Mainstream 1440p gaming PC | 2560 × 1440 | Low/Medium mix; textures High if VRAM remains available | Lower effects or use quality upscaling if frame rate dips in fights |
| High-end GPU and fast CPU | 1440p or higher | Medium/High, with competitive effects and blur disabled | Keep image clarity, then cap FPS for consistent frame pacing |
This matrix is more useful than copying someone else’s exact preset. A fast GPU paired with a weak CPU may not gain much from lowering resolution, because the CPU still has to process game logic, player updates, and draw calls. In that situation, lower effects may help only marginally; a stable cap and background-process cleanup can matter more.
How to tune FPS without sacrificing responsiveness
- Load a repeatable practice area or a busy match scenario.
- Record the average frame rate and, more importantly, whether movement feels uneven during fights.
- Lower shadows, effects, and post-processing one at a time.
- If performance is still insufficient, test quality upscaling or reduce resolution scale slightly.
- Choose a frame cap that your system can maintain during heavy action, not just in an empty area.
For a 144 Hz monitor, a stable range near 120–144 FPS is often preferable to large swings between 200 and 80 FPS. For a 240 Hz monitor, aim for the highest sustained rate your CPU and GPU can deliver, but do not let the refresh-rate target force visibly inconsistent frame times.
Common problems and fixes
The game looks blurry
Confirm native resolution, check that resolution scale is 100%, and reduce aggressive upscaling. Then test a lower anti-aliasing level or modest sharpening. Blurriness is usually caused by internal resolution or temporal processing, not by texture quality.
FPS is high but aiming feels delayed
Disable VSync, enable the available low-latency mode, close overlays, and check whether an external frame limiter is conflicting with the in-game limiter. Also check that the monitor is set to its maximum refresh rate in the operating system.
Stutters occur when abilities or new areas appear
Lower textures if dedicated VRAM is nearly full, close background applications, and allow the game to finish any shader compilation or asset streaming process. If temperatures are high, reduce Boost behavior or improve laptop cooling; thermal throttling can create worse frame pacing than a lower fixed FPS target.
Final recommended preset
For most competitive players, use fullscreen, native resolution, maximum refresh rate, VSync Off, NVIDIA Reflex On or the equivalent low-latency option, motion blur Off, field-of-view around 100–105, Low shadows, Low post-processing, Low or Medium effects, Medium-to-High textures according to VRAM, and Low-to-Medium anti-aliasing. Afterward, cap FPS at a level the system can sustain during the busiest FragPunk fights. That combination preserves target clarity while prioritizing responsive, consistent gameplay.
When Settings Aren’t Enough: Upgrade Options
If the lowest sensible settings still can’t hold a steady frame rate in FragPunk, a newer graphics card is the upgrade that changes the most. These cards cover the usual budget-to-midrange steps.

ASUS Dual NVIDIA GeForce RTX 5060 8GB GDDR7 OC Edition (PCIe 5.0, 8GB GDDR7, DLSS 4, HDMI 2.1b, DisplayPort 2.1b, 2.5-Slot Design, Axial-tech Fan Design, 0dB Technology), 3 Year Warranty
Included for 'Best FragPunk Settings for FPS' because the listing specifies 8GB GDDR7 and DLSS 4, details this guide uses to compare options.
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ASUS Dual GeForce RTX 5060 Ti 16GB GDDR7 OC Edition Gaming Graphics Card
Included for 'Best FragPunk Settings for FPS' as a relevant option in this category; details come from the product listing.
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ASRock Radeon RX 9060 XT Challenger 16GB OC, RDNA 4, 3290MHz Boost, 16GB GDDR6 128-bit, PCIe 5.0, Dual Fans, 0dB Silent, LED Indicator, DisplayPort 2.1a, HDMI 2.1b
Included for 'Best FragPunk Settings for FPS' because the listing specifies RDNA 4 and 3290MHz Boost, details this guide uses to compare options.
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