PC Status | Overall this PC is performing above expectations (74th percentile). This means that out of 100 PCs with exactly the same components, 26 performed better. The overall PC percentile is the average of each of its individual components. |
Processor | With a good single core score, this CPU can easily handle the majority of general computing tasks. Despite its good single core score this processor isn't appropriate for workstation use due to its relatively weak multi-core performance. Finally, with a gaming score of 64%, this CPU's suitability for 3D gaming is above average. |
Boot Drive | 162% is an exceptional SSD score. This drive is suitable for heavy workstation use, it will facilitate fast boots, responsive applications and allow for fast transfers of multi-gigabyte files. |
Memory | 24GB is enough RAM to run any version of Windows and it's far more than any current game requires. 24GB will also allow for large file and system caches, virtual machine hosting, software development, video editing and batch multimedia processing. |
OS Version | Although Windows 7 is still a viable option, it's now 15 years and 2 months old. This system should be upgraded to Windows 10 which is generally faster and has an improved set of core utilities including better versions of explorer and task manager. |
System | IBM System x3500 M3 Server -[7380AC1]- (all builds) |
Motherboard | IBM 69Y4357 |
Memory | 22.4 GB free of 24 GB @ 1.1 GHz |
OS | Windows 7 |
BIOS Date | 20180607 |
Uptime | 0 Days |
Run Date | Aug 18 '22 at 12:23 |
Run Duration | 135 Seconds |
Run User | CAN-User |
Background CPU | 5% |
Actual performance vs. expectations. The graphs show user score (x) vs user score frequency (y).
Processor | Bench | Normal | Heavy | Server |
---|---|---|---|---|
Intel Xeon E5620
Node 1 Socket 1, 1 CPU, 4 cores, 8 threads
Base clock 2.4 GHz
|
64%
Good
|
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Memory Kit | Bench | Multi core | Single core | Latency |
---|---|---|---|---|
Unknown 6x4GB
6 of 16 slots used
24GB DIMM
|
44.2%
Average
|
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L1/L2/L3 CPU cache and main memory (DIMM) access latencies in nano seconds