Dota 2 bottleneck calculator
AMD A10-5800K and NVIDIA GeForce GTX 295
Dota 2
1280 × 800
1 monitor
1. Select game
Currently selected:
Dota 2
2. Select processor
Currently selected:
AMD A10-5800K
3. Select graphic card
Currently selected:
NVIDIA GeForce GTX 295
4. Select resolution
Currently selected:
1280 × 800 resolution
(1 monitor)
Calculation result
Bottleneck percentage
In a system configuration featuring the AMD A10-5800K and NVIDIA GeForce GTX 295, the NVIDIA GeForce GTX 295 could potentially act as a bottleneck to the AMD A10-5800K performance in the Dota 2 with 1280 × 800 and 1 monitor. While the AMD A10-5800K is well-equipped to manage strenuous computational tasks, the NVIDIA GeForce GTX 295 limited graphical prowess may compromise the overall system efficiency. This disparity could lead to decreased performance and less effective utilization of system resources. To rectify this imbalance, an upgrade to a more capable graphics card that complements the AMD A10-5800K processing abilities is advisable.
With a screen resolution of 1280 × 800 and 1 monitor, this configuration demonstrates a 4.2% graphics card bottleneck when performing Dota 2.
Processor and graphic card utilizations
In a computing setup featuring the AMD A10-5800K and NVIDIA GeForce GTX 295, under the context of Dota 2 with a screen resolution of 1280 × 800 and 1 monitor, the processor is expected to have an utilization rate of 72.1%, while the graphics card is projected to be utilized at 83.2%.
It's crucial to understand that these figures signify theoretical maximums based on typical CPU-to-GPU workload distribution ratios for certain tasks or gaming experiences. Achieving these high levels of utilization in real-world settings can be a challenging endeavor.
Playability
- Playable
- Frames per second
-
A game is considered "playable" if it can consistently run at 60 FPS on high settings. This ensures a smooth and visually appealing gaming experience free from lags or stutters.
Heatmap of bottleneck
During gameplay scenarios, your AMD A10-5800K might not operate at its full potential due to the constraints imposed by the NVIDIA GeForce GTX 295. In such cases, the NVIDIA GeForce GTX 295 may struggle to swiftly process and relay data, resulting in underutilization of the AMD A10-5800K. Therefore, the NVIDIA GeForce GTX 295 will be operating at its maximum capacity, leaving the AMD A10-5800K capabilities untapped.
In the hierarchy of bottlenecks, a graphics card bottleneck is often considered less severe than a processor bottleneck. When a graphics card bottleneck occurs, the NVIDIA GeForce GTX 295 operates at its uppermost limits, thereby allowing you to extract the best performance possible from the card. This ensures that you benefit from the full scope of the NVIDIA GeForce GTX 295 features.
One distinct advantage of not maxing out the AMD A10-5800K is the enhanced ability to efficiently manage other background tasks. As the AMD A10-5800K is not operating at full capacity while gaming, it can allocate computational resources to other ongoing activities like background processes or multitasking, without any performance trade-offs. This contributes to a smoother and more flexible overall system operation.
To gain a deeper understanding of these potential bottlenecks, consider referring to our heatmap. On the heatmap, the X-axis depicts the CPU Score, and the Y-axis signifies the GPU Score. This visualization can help identify the relationship between various CPUs and GPUs, giving you valuable insights into how to better balance your system.
By matching your AMD A10-5800K CPU Score with the NVIDIA GeForce GTX 295 GPU Score on the heatmap, you can more accurately assess how these components interact and pinpoint where bottlenecks may occur. Utilizing this heatmap analysis can guide you in making informed hardware decisions that lead to a more balanced and effective computing setup tailored to your specific needs.
General bottleneck calculations
The bottleneck calculations presented here are geared specifically towards in-game scenarios, providing valuable insights into how your hardware configuration could impact gaming performance. However, it's crucial to understand that bottlenecks can manifest in various types of tasks and applications. Below, you will find bottleneck calculations segmented into three primary categories: General Tasks, CPU Intensive Tasks, and GPU Intensive Tasks. This segmentation allows for a more nuanced understanding of how your system's components interact under different types of workloads.
General tasks bottleneck result
For general tasks that include web browsing, video streaming, office applications, and basic multitasking, the bottleneck result offers a comprehensive look at how well your CPU and GPU are balanced. If the bottleneck percentage leans heavily towards either the CPU or GPU, it might be beneficial to consider an upgrade for the more taxed component to ensure smoother system performance.
CPU intensive tasks bottleneck result
When it comes to CPU intensive tasks, such as video editing, 3D rendering, or scientific computing, the bottleneck calculation primarily focuses on whether your processor is powerful enough to handle these workloads efficiently. Here, a high bottleneck percentage for the CPU would indicate that your processor is the limiting factor, making tasks slower than they could be with a more robust CPU.
GPU intensive tasks bottleneck result
In scenarios involving GPU intensive tasks—like advanced gaming, graphical rendering, or video processing—the bottleneck calculation highlights the efficiency of your graphics card in relation to the overall system. A high bottleneck percentage on the GPU side would suggest that your graphics card is the limiting component, potentially hindering your system's ability to deliver optimal graphical performance.
Bottleneck solutions
Replace processor
If your graphic card is causing the bottleneck but you're considering replacing your processor, reconsider this approach. Unless your processor is already on the verge of becoming outdated, upgrading it might not offer a significant performance boost, particularly in graphics-heavy tasks.
- AMD Athlon II X4 559 Full details
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- Intel Core i5-680 Full details
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- Intel Core i3-3245 Full details
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- Intel Core i5-660 Full details
- Intel Pentium G4500T Full details
- AMD Phenom II X4 B95 Full details
- AMD Phenom II X4 840 Full details
- AMD Athlon II X4 650 Full details
- Intel Core2 Extreme X9650 Full details
- Intel Pentium J4205 Full details
- Intel Pentium G3470 Full details
- Intel Core i3-3250 Full details
- Intel Celeron G4900 Full details
- Intel Xeon E5-2407 Full details
- Intel Xeon E5607 Full details
- Intel Xeon E5530 Full details
- Intel Xeon X5365 Full details
- Intel Xeon E5-2403 Full details
- Intel Xeon X3363 Full details
- Intel Xeon E5606 Full details
- Intel Xeon E5440 Full details
- Intel Xeon X5450 Full details
- Intel Xeon X3360 Full details
- Intel Atom C3558 Full details
Impact of Changing Screen Resolution
Increasing the resolution in this scenario will only make the bottleneck worse, as the GPU will be under even more stress, leading to lower frame rates and reduced graphical quality. It won't significantly ease the load on the already underutilized processor.
Read moreReplace graphic cards
When the graphic card becomes a system bottleneck, upgrading it can provide a significant boost in performance. Opt for a card that better matches the capabilities of your processor to get a more balanced system. This will also enable you to run games and applications at higher settings, offering a vastly improved user experience.
- AMD Radeon HD 5830 Full details
- AMD Radeon HD 7750 Full details
- NVIDIA GeForce GTX 550 Ti Full details
- AMD Radeon Vega 10 Full details
- NVIDIA GeForce GTX 555 Full details
- AMD Radeon Vega 9 Full details
- AMD Radeon RX Vega11 Full details
- AMD Radeon HD 6790 Full details
- AMD Radeon RX Vega 10 Full details
- AMD Radeon E8860 Full details
- NVIDIA GeForce GTX 275 Full details
- AMD Radeon 540X Full details
- AMD Radeon 550X Full details
- AMD Radeon R9 255 Full details
- AMD Radeon R7 FX-9830P Radeon Full details
- AMD Radeon RX Vega 8 Full details
- NVIDIA GeForce GT 740 Full details
- AMD Radeon HD 4890 Full details
- NVIDIA GeForce GTX 285 Full details
- AMD Radeon 630 Full details
- NVIDIA GeForce GTX 280 Full details
- AMD Radeon HD 4870 X2 Full details
- AMD Radeon Vega 6 Full details
- NVIDIA GeForce GTS 450 Full details
- AMD Radeon HD 5770 Full details
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- NVIDIA Quadro K2000 Full details
- NVIDIA Quadro K2000D Full details
- AMD FirePro M4000 Full details
- NVIDIA Quadro K3000M Full details
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- AMD FirePro W600 Full details
- AMD FirePro W5130M Full details
- NVIDIA Quadro 4000 Full details
- AMD FirePro W4100 Full details
- AMD FirePro V5900 Full details
- NVIDIA Quadro 4000M Full details
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- AMD FirePro 3D V5800 Full details
- NVIDIA Quadro FX 5800 Full details
- AMD FirePro 3D V8700 Full details
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- AMD Firepro W4190M Full details
Impact of Changing Screen Resolution
If your graphics card is bottlenecking the system, lowering the screen resolution will allow the card to handle data more efficiently, resulting in higher frames per second. However, it's worth noting that lower resolutions will require less data processing from the CPU, which could create a new bottleneck there.
Read moreOffers for AMD A10-5800K
Product name | Merchant | Available | Price |
Merchant
Available
Price
|
---|---|---|---|---|
AMD AD580KWOHJBOX A10 5800K QC APUS BLK EDTN TRINITY 100W FM2 4MB 3800MHZ BOX |
Yes | 34.95 $ |
Yes
|
|
AMD A10-5800K 3.80GHz Socket FM2 Desktop OEM CPU AD580KWOA44HJ 1 new from 78.00 $. 2 used from 34.00 $. Last updated 1 hours ago. |
Yes | 78.02 $ |
Yes
|
Product pricing and availability information was updated as of the date and time listed, but is subject to change. If you choose to purchase a product from a retailer, the price and availability displayed on their website at the time of purchase will apply. We may earn a commission from qualifying purchases made through the links to participating retailers on this site. However, this does not impact the products or prices that are displayed or the order in which prices are listed.
Bottleneck calculator types
Select purpose bottleneck calculator
Before selecting a bottleneck calculator, consider your primary computing tasks. For general activities like web browsing and office work, the calculator evaluates the balance between your CPU and GPU. If you focus on CPU-intensive tasks like video editing or 3D rendering, the tool will highlight processor performance. For GPU-centric tasks such as gaming or graphical rendering, it will assess the efficiency of your graphics card. Choose the appropriate calculator to accurately identify potential system bottlenecks for your specific use-case.
Select game bottleneck calculator
By selecting a game from the list, the calculator will analyze potential bottlenecks specifically tailored to that game's system requirements and graphical demands. This allows you to optimize your setup for a smoother, more responsive gaming experience. Choose the game that aligns with your interests to get the relevant bottleneck analysis.