Instrukcja obsługi Fujitsu PRIMERGY TX150 Torre
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Version 5.1
November 2008
Pages 33
Performance Report
PRIMERGY TX150 S6
Abstract
This document contains a summary of the benchmarks executed for the PRIMERGY TX150 S6.
The PRIMERGY TX150 S6 performance data are compared with the data of other PRIMERGY models and discussed. In
addition to the benchmark results, an explanation has been included for each benchmark and for the benchmark envi-
ronment.
Contents
Technical Data ........................................................................................................................................................2
SPECcpu2006.........................................................................................................................................................3
SPECjbb2005..........................................................................................................................................................8
SPECpower_ssj2008 ............................................................................................................................................12
SPECweb2005......................................................................................................................................................17
StorageBench .......................................................................................................................................................21
OLTP-2..................................................................................................................................................................30
Literature...............................................................................................................................................................33
Contact..................................................................................................................................................................33
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White Paper ⏐Performance Report PRIMERGY TX150 S6 Version: 5.1, November 2008
Technical Data
The PRIMERGY TX150 S6 is a mono -socket tower server. It includes the Intel 3210 chipset, one Celeron, Pentium
Dual-Core, Core 2 Duo, Dual-Core Xeon or Quad-Core Xeon processor, up to 8 GB PC2-6400 DDR2-SDRAM, depend-
ing on the processor used a 800 MHz, 1067 MHz or 1333 MHz front-side bus, a Broadcom BCM5755 1-GBit LAN con-
troller, six PCI slots (2 x PCI-Express x8, 1 x PCI-Express x4, 3 x PCI 32-bit/33 MHz) and space for four 3.5” SAS or
SATA hard disks or up to 10 2.5” SAS hard disks. The SAS version of the PRIMERGY TX150 S5 has an 8-port SAS
controller with RAID 0, 1 and RAID-1E functionality or - alternatively - an 8-port SAS controller with RAID 0, 1, 10, 5, 50,
6 and RAID-60 functionality. The SATA version has a 6-port SATA controller with RAID 0, 1, 10 and optionally RAID 5
functionality.
As well as its predecessors the PRIMERGY TX150 S6 can be converted quickly and easily into a rack system with 5
height units for integration in 19-inch racks.
See http://docs.ts.fujitsu.com/dl.aspx?id=af1d8493-dfbb-478e-89c9-92e917929234 for detailed technical information.
© Fujitsu Technology Solutions 2009 Page 2 (33)
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White Paper ⏐Performance Report PRIMERGY TX150 S6 Version: 5.1, November 2008
SPECcpu2006∗
∗
∗
∗∗
Benchmark description
SPECcpu2006 is a benchmark to measure system efficiency during integer and floating point operations. It consists of an
integer test suite containing 12 applications and a floating point test suite containing 17 applications which are extremely
computing-intensive and concentrate on the CPU and memory. Other components, such as disk I/O and network, are not
measured by this benchmark.
SPECcpu2006 is not bound to a specific operating system. The benchmark is available as source code and is compiled
before the actual benchmark. Therefore, the compiler version used and its optimization settings have an influence on the
measurement result.
SPECcpu2006 contains two different methods of performance measurement: The first method (SPECint2006 and
SPECfp2006) determines the time required to complete a single task. The second method (SPECint_rate2006 and
SPECfp_rate2006) determines the throughput, i.e. how many tasks can be completed in parallel. Both methods are addi-
tionally subdivided into two measuring runs, "base" and "peak", which differ in the way the compiler optimization is used.
The "base" values are always used when results are published, the "peak" values are optional.
Benchmark Arithmetic Type Compiler
optimization Measuring result Application
SPECint2006 integer peak aggressive
SPECint_base2006 integer base conservative speed single threaded
SPECint_rate2006 integer peak aggressive
SPECint_rate_base2006 integer base conservative throughput multithreaded
SPECfp2006 floating point peak aggressive
SPECfp_base2006 floating point base conservative speed single threaded
SPECfp_rate2006 floating point peak aggressive
SPECfp_rate_base2006 floating point base conservative throughput multithreaded
The results represent the geometric mean of normalized ratios determined for the individual benchmarks. Compared with
the arithmetic mean, the geometric mean results in the event of differingly high single results in a weighting in favor of the
lower single results. “Normalized“ means measuring how fast the test system runs in comparison to a reference system.
The value of “1“ was determined for the SPECint_base2006, SPECint_rate_base2006, SPECfp_base2006 and
SPECfp_rate_base2006 results of the reference system. Thus a SPECint_base2006 value of 2 means for example that
the measuring system has executed this benchmark approximately twice as fast as the reference system. A
SPECfp_rate_base2006 value of 4 means that the measuring system has executed this benchmark about 4/[# base
copies] times as fast as the reference system. “# base copies“ here specifies how many parallel instances of the bench-
mark have been executed.
We do not submit all SPECcpu2006 measurements for publication at SPEC. So not all results appear on SPEC’s web
sites. As we archive the log data for all measurements, we are able to prove the correct realization of the measurements
any time.
Benchmark results
The PRIMERGY TX150 S6 was measured with eight different processor versions:
• Celeron 440
(Conroe-L, 1 core per chip, ½ MB L2 cache per chip)
• Pentium Dual-Core E2140, E2160 and E2200
(Allendale, 2 cores per chip, 1 MB L2 cache per chip)
• Core 2 Duo E4500 and E4600
(Allendale, 2 cores per chip, 2 MB L2 cache per chip)
• Core 2 Duo E7200
(Wolfdale, 2 cores per chip, 3 MB L2 cache per chip)
• Xeon 3065
(Conroe, 2 cores per chip, 4 MB L2 cache per chip)
∗ SPEC®, SPECint®, SPECfp® and the SPEC logo are registered trademarks of the Standard Performance Evaluation
Corporation (SPEC).
© Fujitsu Technology Solutions 2009 Page 3 (33)
Specyfikacje produktu
Marka: | Fujitsu |
Kategoria: | serwer |
Model: | PRIMERGY TX150 Torre |
Wysokość produktu: | 444 mm |
Szerokość produktu: | 205 mm |
Głębokość produktu: | 605 mm |
Waga produktu: | 28000 g |
Certyfikaty: | GS, CE, CSAc/us, ULc/us, FCC Class A, CB, RoHS, WEEE, VCCI, C-Tick, BSMI |
Ilość portów Ethernet LAN (RJ-45): | 1 |
Zakres temperatur (eksploatacja): | 10 - 35 °C |
Zakres wilgotności względnej: | 10 - 85 % |
Taktowanie procesora: | 2.4 GHz |
Typ procesora: | Intel® Xeon® |
Model procesora: | X3220 |
Liczba portów USB 2.0: | 8 |
Producent procesora: | Intel |
Liczba rdzeni procesora: | 4 |
Typ pamięci wewnętrznej: | DDR2-SDRAM |
Pamięć wewnętrzna: | 1 GB |
Obudowa: | Tower |
Maksymalna pojemność pamięci: | 8 GB |
Gniazdo procesora: | LGA 775 (Socket T) |
Układ płyty głównej: | Intel® 3210 |
Poziomy raid: | 1, 10 |
Liczba portów PS/2: | 2 |
Zasilanie: | AC 100 - 240V@50 - 60Hz |
Maksymalna liczba procesorów SMP: | 1 |
Liczba portów VGA (D-Sub): | 1 |
System operacyjny: | Microsoft Windows Server 2008, \nMicrosoft Windows Server 2003, \nNovell SUSE Linux Enterprise Server, \nRed Hat Enterprise Linux |
Cechy sieci: | Gigabit Ethernet |
Szybkośc odczytu CD: | 48 x |
Korekcja ECC: | Tak |
Gniazda pamięci: | 4x DIMM |
Całkowita pojemność przechowywania: | 0 GB |
Procesor ARK ID: | 28034 |
Technologia Intel® Hyper Threading (Intel® HT Technology): | Nie |
Technologia Intel® Turbo Boost: | Nie |
Technologia Intel® Quick Sync Video: | Nie |
Technologia Intel® InTru™ 3D: | Nie |
Technologia Intel® Clear Video HD (Intel® CVT HD): | Nie |
Nowe instrukcje AES (Intel® AES-NI): | Nie |
Technologia Udoskonalona Intel SpeedStep: | Tak |
Technologia Intel® Trusted Execution: | Nie |
Intel® Enhanced Halt State: | Tak |
Intel® Clear Video Technology dla MID (Intel® CVT for MID): | Nie |
Intel® VT-x with Extended Page Tables (EPT): | Nie |
Intel® 64: | Tak |
Technologia Wirtualizacji Intel® (Directed I/O) (VT-d): | Nie |
Technologia Intel® Clear Video: | Nie |
Technologia virtualizacji Intel® (VT-x): | Tak |
Hot-swap: | Tak |
Interfejs HDD: | SATA |
Liczba procesorów: | 1 |
Typ pamięci procesora: | L2 |
Cache procesora: | 8 MB |
Wskaźnik magistrali systemowej: | - GT/s |
Litografia procesora: | 65 nm |
Liczba wątków: | 4 |
Tryb pracy procesora: | 64-bit |
Nazwa kodowa procesora: | Kentsfield |
Pamięć ECC wspierana przez procesor: | Nie |
Termiczny układ zasilania (TDP): | 105 W |
Bezkonfliktowy procesor: | Nie |
Stepping: | B3 |
Kod procesora: | SL9UP |
Technologia Execute Disable Bit (EDB): | Tak |
Stan spoczynku: | Tak |
Technologie Thermal Monitoring: | Tak |
Wbudowane opcje dostępne: | Nie |
Typ magistrali: | FSB |
Wielkość opakowania procesora: | 37.5 x 37.5 mm |
Układ pamięci: | 1 x 1 GB |
Prędkość zegara pamięci: | 800 MHz |
Obsługa zasilania zapasowego (RPS): | Tak |
Szeregowe porty komunikacyjne: | 1 |
Parytet FSB: | Nie |
Tcase: | 62.2 °C |
Magistrala systemowa: | 1066 MHz |
Seria procesora: | Intel Xeon 3200 Series |
Intel® Wireless Display (Intel® WiDi): | Nie |
Technologia Intel® My WiFi (Intel® MWT): | Nie |
Technologia Intel® Anti-Theft (Intel® AT): | Nie |
Intel® Insider™: | Nie |
Technologia Intel® FDI: | Nie |
Intel® Flex Memory Access: | Nie |
Intel® Fast Memory Access: | Nie |
Intel® Demand Based Switching: | Nie |
Technologia Intel® Dual Display Capable: | Nie |
Intel® Rapid Storage Technology: | Nie |
Napędy optyczne: | DVD-ROM |
Sloty PCI: | 3 |
Współczynnik Magistrala/Rdzeń: | 9 |
Mapa typów obrazów: | <div><img src="https://ark.intel.com/inc/images/diagrams/diagram-5.gif" title="Block Diagram" /></div> |
Liczba przetwarzających tranzystorów: | 582 M |
Die Size przetwarzania: | 286 mm² |
Rozszerzenie PAE (Physical Address Extension): | 32 bit |
PCI Express x4 slots: | 1 |
PCI Express x8 slots: | 2 |
Szybkość odczytu DVD: | 16 x |
Zewnętrzne wnęki na napędy: | 3x 5.25", 1x 3.5", 6/8x 3.5" |
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