Milana Samsonova

Useless Loop, WA

Replacement and maintenance of thermal pads


Extending the life of an old GTX1080Ti

Video card maintenance experience

My story began from the moment I decided to take care of servicing my old video card GTX1080Ti. Yes, I understood that this was not the newest model, but it served me faithfully for many years. However, as often happens, problems began to appear over time.

Preparation for the procedure

Before starting work, I decided to prepare thoroughly. I started by studying the process of disassembling a video card. To avoid unpleasant surprises, I watched several video tutorials and read many forum discussions on the topic of replacing thermal paste, etc.thermal insulation.

Tools and materials

Next, I collected all the necessary tools and consumables. Screwdrivers, tweezers, isopropyl alcohol, and, of course, a new portion of thermal paste and thermal pads. I was ready for anything.

Video card status

When I started to take it apart video card, I was amazed at her condition. The dust accumulated inside was dense, but at least not wet, which is a good sign for maintenance. But the most surprising thing was to discover that some of the screws securing the top part with the fans were different and, apparently, the original screws had been replaced somewhere in the past.

Replacement of termopasty and termoprokladok

As I continued to disassemble the video card, I noticed that the diameter of the single fan was 85 mm, while it should have been 95 mm. This was one of the factors that could affect the video card overheating.

I then moved on to the main heatsink, which was secured to the board with five screws. Luckily they were big, which made them harder to lose. When removing the radiator, I discovered that the thermal pads were leaking, and some of them had to be replaced.

Performance optimization


Once the graphics card has been completely disassembled and clean, it's time to take care of it productivity. After all, despite its age, the GTX1080Ti is still capable of competing with newer models if configured correctly.


Settings


The first step I decided to pay attention to was the video card settings. The NVIDIA drivers that came with my computer have several settings that can be optimized to improve performance.

I started by setting the fans to more aggressive settings to provide better cooling for the graphics card under heavy loads. I also increased the core and memory frequencies, but with caution so as not to cause system stability. These settings could be adjusted to suit specific needs, but I stuck with moderate overclocking to avoid potential problems.


Stability check


After changing the settings I

Conducted several stability tests. While running various games and synthetic loads, I monitored the temperature and performance of the video card. It was important to make sure it didn't overheat and cause artifacts on the screen.


Energy management


Another important aspect of performance optimization was energy management. In the NVIDIA settings, you can configure the operating modes of the video card so that it consumes less energy in idle mode and more at maximum load. This helped reduce heat and reduce fan noise when the video card was not actively used.

results

After all my efforts, the GTX1080Ti video card began to work much more efficiently. Productivity increased, and the temperature remained at an acceptable level. I was pleased with the result and glad that I was able to bring life back to my trusty old graphics card.

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System optimization


But performance optimization is not limited to just the graphics card. To maximize its potential, I also decided to make changes to other aspects of my system.


Driver Update


The first step was updating video card drivers. New driver versions often include performance improvements and bug fixes. After installing the latest drivers, I ran performance tests again to make sure the graphics card was running at its maximum capabilities.


Cleaning the system of debris


Another important aspect of optimization is cleaning the system from garbage. Accumulated temporary files, unnecessary programs and services can slow down your computer. I conducted a deep scan of the system using special utilities and removed everything unnecessary. This made the operating system more responsive.


Improved cooling


To ensure stable and cool operation of the entire system, I also decided to improve the cooling system of the case. Adding additional fans and re-arranging the wiring helped reduce the overall temperature inside the computer. This not only improved the performance of the video card, but also extended the life of all components.


Temperature monitoring and control


For more precise control over temperature and performance, I installed a temperature monitoring and control program. This allowed me to monitor the health of the component in real time and, if necessary, adjust fan speed and clock speed.

Results

Servicing a video card turned out to be not such a difficult procedure as it initially seemed. With the right training and tools, I was able to improve her condition and prolong her life. Now she's ready again for long gaming sessions and heavy tasks.

5 out of 5 from 1 reviews

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