G-SYNC 101: Control Panel


G-SYNC Module

The G-SYNC module is a small chip that replaces the display’s standard internal scaler, and contains enough onboard memory to hold and process a single frame at a time.

The module exploits the vertical blanking interval (the span between the previous and next frame scan) to manipulate the display’s internal timings; performing G2G (gray to gray) overdrive calculations to prevent ghosting, and synchronizing the display’s refresh rate to the GPU’s render rate to eliminate tearing, along with the delayed frame delivery and adjoining stutter caused by traditional syncing methods.

G-SYNC Demo

The below Blur Busters Test UFO motion test pattern uses motion interpolation techniques to simulate the seamless framerate transitions G-SYNC provides within the refresh rate, when directly compared to standalone V-SYNC.

G-SYNC Activation

“Enable for full screen mode” (exclusive fullscreen functionality only) will automatically engage when a supported display is connected to the GPU. If G-SYNC behavior is suspect or non-functioning, untick the “Enable G-SYNC, G-SYNC Compatible” box, apply, re-tick, and apply.

Blur Buster's G-SYNC 101: Control Panel

G-SYNC Windowed Mode

“Enable for windowed and full screen mode” allows G-SYNC support for windowed and borderless windowed mode. This option was introduced in a 2015 driver update, and by manipulating the DWM (Desktop Windows Manager) framebuffer, enables G-SYNC’s VRR (variable refresh rate) to synchronize to the focused window’s render rate; unfocused windows remain at the desktop’s fixed refresh rate until focused on.

G-SYNC only functions on one window at a time, and thus any unfocused window that contains moving content will appear to stutter or slow down, a reason why a variety of non-gaming applications (popular web browsers among them) include predefined Nvidia profiles that disable G-SYNC support.

Note: this setting may require a game or system restart after application; the “G-SYNC Indicator” (Nvidia Control Panel > Display > G-SYNC Indicator) can be enabled to verify it is working as intended.

G-SYNC Preferred Refresh Rate

“Highest available” automatically engages when G-SYNC is enabled, and overrides the in-game refresh rate selector (if present), defaulting to the highest supported refresh rate of the display. This is useful for games that don’t include a selector, and ensures the display’s native refresh rate is utilized.

“Application-controlled” adheres to the desktop’s current refresh rate, or defers control to games that contain a refresh rate selector.

Note: this setting only applies to games being run in exclusive fullscreen mode. For games being run in borderless or windowed mode, the desktop dictates the refresh rate.

G-SYNC & V-SYNC

G-SYNC (GPU Synchronization) works on the same principle as double buffer V-SYNC; buffer A begins to render frame A, and upon completion, scans it to the display. Meanwhile, as buffer A finishes scanning its first frame, buffer B begins to render frame B, and upon completion, scans it to the display, repeat.

The primary difference between G-SYNC and V-SYNC is the method in which rendered frames are synchronized. With V-SYNC, the GPU’s render rate is synchronized to the fixed refresh rate of the display. With G-SYNC, the display’s VRR (variable refresh rate) is synchronized to the GPU’s render rate.

Upon its release, G-SYNC’s ability to fall back on fixed refresh rate V-SYNC behavior when exceeding the maximum refresh rate of the display was built-in and non-optional. A 2015 driver update later exposed the option.

This update led to recurring confusion, creating a misconception that G-SYNC and V-SYNC are entirely separate options. However, with G-SYNC enabled, the “Vertical sync” option in the control panel no longer acts as V-SYNC, and actually dictates whether, one, the G-SYNC module compensates for frametime variances output by the system (which prevents tearing at all times. G-SYNC + V-SYNC “Off” disables this behavior; see G-SYNC 101: Range), and two, whether G-SYNC falls back on fixed refresh rate V-SYNC behavior; if V-SYNC is “On,” G-SYNC will revert to V-SYNC behavior above its range, if V-SYNC is “Off,” G-SYNC will disable above its range, and tearing will begin display wide.

Within its range, G-SYNC is the only syncing method active, no matter the V-SYNC “On” or “Off” setting.

Currently, when G-SYNC is enabled, the control panel’s “Vertical sync” entry is automatically engaged to “Use the 3D application setting,” which defers V-SYNC fallback behavior and frametime compensation control to the in-game V-SYNC option. This can be manually overridden by changing the “Vertical sync” entry in the control panel to “Off,” “On,” or “Fast.”



3052 Comments For “G-SYNC 101”

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18koko
Member
18koko

Hi I just want to ask if I enable low latency mode in nvidia control panel and also enble ingame low latency mode (valorant nvidia reflex on+boost) will it conflict with each another? Do I enable both or no?

christofin
Member
christofin

Hello, thank you for the wonderful article. I’ve been using a g-sync compatible monitor for a long time and have always left g-sync on, vsync on, and a framerate cap in the Nvidia control panel at 156fps with a 160hz monitor.

I think as time has gone on I’ve become more sensitive to noticing microstuttering in games. For example PUBG is an absolute stutterfest and it’s something I used to not notice. Likewise with games with awful frame pacing issues in general like Dark Souls 3. I’ve always tried to stick to games that have very smooth frametimes, like Overwatch. But even now with the reflex patch, I’ve seen a few frametime spikes here and there in Overwatch and I have to admit that it does bother me.

My question to you is this: is there something I can do system wide to reduce frame time spikes? Would turning off vsync help? I saw in the article in the stuttering section, you mentioned that if the game has a pause, no settings can fix that, but are there any settings that could mitigate how noticeable it is?

I used to try to just throw money at the hardware to mitigate stuttering. I’ve upgraded my ram and power supply, for example. Right now I have a 9900k with a mild overclock and a 3090 founders edition running at stock. I do aggressively monitor what tasks I let run in the background and I generally keep software closed while I’m playing games. Is there anything else I can do to help reduce stuttering in various games?

MrSnave
Member
MrSnave

Hello, thanks for this incredible in depth post. I have one main question regarding G-Sync that I cant seem to wrap my head around.

My settings right now are: G-Sync On + V-sync On (NVCP) + in-game frame limit to 141 (144hz monitor) + Nvidia Low Latency On.

This works perfectly for games like fortnite where I am able to get the right FPS. however, in games like Mordhau my FPS cannot reach the 140 range. My question therefore is: what do i do in cases where the game cannot reach the optimal fps? do I limit my frames to a lower number that can be reached? or do I just leave it?
I hope to hear from you soon, and keep up the great work.

huzzl3
Member
huzzl3

Hey jorimt,

I’ve been having some graphics issues in games for a while that seem to be related to G-SYNC and figured I’d ask here.

Quick recap: I’ve been using G-SYNC for about 6 months and had used the settings you’ve recommended, and everything worked perfectly fine. On April 9th however, I installed the windows update 20H2 and Nvidia’s 465.89 (was previously using 461.92). Ever since then, I’ve had a few issues while playing games (LoL and BTD6, both fullscreen). These problems include:

* Parts of my screen flickering every few minutes
* sometimes, there’s some weird lag / delay in those games, that I’m convinced is not related to latency / packet loss (I have checked LoL’s net log reader tool and the issues occur even with 0 packet loss)
* Occasionally, my main monitor (144 Hz) locks to ~ 42 fps, until I reset some settings in NVCP or the windows refresh rate settings. This happens both in-game and out of games.

Here are some recordings:

https://streamable.com/hcbjz6 – Recording from my phone. Black flickering part towards the end.
https://imgur.com/a/T0ITbov – Screenshots that show screen flickering.
https://streamable.com/fui5nf – Note the red horizontal line flickering.
https://streamable.com/gqc8j3 – Some weird delay in games.

Setup: CPU is i7-10700, GPU is RTX2060. I play games only using my main monitor, which is G-SYNC compatible – AOC G2590PX (144 Hz). Second monitor is S27F350 (60 Hz).

As for settings, I use the ones recommended on here:
G-SYNC enabled for full-screen only, NVCP V-Sync on, NVCP Low Latency Mode on (have tried ultra as recommended by Nvidia, but same problems occur), NVCP Max framerate 141, in-game V-Sync turned off

For a while, lots of people had issues with Windows update KB5001330 (https://www.reddit.com/r/Windows10/comments/mqvhpa/kb5001330_bad_gaming_performance/), but eventually they released a fix (https://www.reddit.com/r/Windows10/comments/mxkl9a/microsoft_issues_emergency_fix_for_gaming/).
Unfortunately, that fix didn’t solve my problems. I’ve tried uninstalling both the Windows updates as well as the GPU drivers (using DDU) multiple times, but these issues remain.

Do you have any idea what could cause them or what I could do? Turning G-SYNC off and trying different settings (V-Sync on/off, in-game on/off, using in-game fps cap etc.) also results in delay, so I’d prefer using G-SYNC.

Best regards

Hardstyle0490
Member
Hardstyle0490

Hello @jorimt,
Can you contact me on WhatsApp

I would like to pay you and you help me to setup my gaming computer. Im struggeling with my g sync.
About 1hour of screenshare

Are you up ? 🙂
Bests regards

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