PC Status | Overall this PC is performing as expected (48th percentile). This means that out of 100 PCs with exactly the same components, 52 performed better. The overall PC percentile is the average of each of its individual components. |
Processor | With a relatively low single core score, this CPU can handle email, light web browsing and basic audio/video playback, but it will struggle to handle CPU intensive tasks. Finally, with a gaming score of 35.3%, this CPU's suitability for 3D gaming is poor. |
Graphics | 2.05% is too low to play 3D games or use CAD packages. (Note: general computing tasks don't require 3D graphics) |
Boot Drive | 26.9% is low SSD score. With a better SSD this system will boot faster, make applications more responsive and reduce IO wait times. |
Memory | 6GB is enough RAM to run any version of Windows and it's sufficient for the vast majority of games. 6GB is also enough for moderate file and system caches which result in a very responsive system. |
OS Version | Although Windows 10 is not the most recent version of Windows, it remains a great option. |
System | Sony VPCSA35GX (all builds) |
Motherboard | Sony VAIO |
Memory | 3.8 GB free of 6 GB |
Display | 1366 x 768 - 32 Bit colors, 1366 x 768 - 32 Bit colors |
OS | Windows 10 |
BIOS Date | 20111123 |
Uptime | 0 Days |
Run Date | Oct 20 '20 at 07:40 |
Run Duration | 124 Seconds |
Run User | IRN-User |
Background CPU | 11% |
Actual performance vs. expectations. The graphs show user score (x) vs user score frequency (y).
Processor | Bench | Normal | Heavy | Server |
---|---|---|---|---|
35.3%
Below average
|
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Graphics Card | Bench | 3D DX9 | 3D DX10 | 3D DX11 |
---|---|---|---|---|
Intel HD 3000 (Mobile V1 1.1/1.2 GHz)
Sony(104D 907B) 2GB
Driver: aticfx64.dll Ver. 9.17.10.4229
|
2.05%
Terrible
|
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Drive | Bench | Sequential | Random 4k | Deep queue 4k |
---|---|---|---|---|
26.9%
Poor
|
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Memory Kit | Bench | Multi core | Single core | Latency |
---|---|---|---|---|
Unknown 6GB
null MHz
4096, 2048 MB
|
24.5%
Poor
|
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L1/L2/L3 CPU cache and main memory (DIMM) access latencies in nano seconds