MPN SR206-RFB
Nível de stock
Intel® Turbo Boost Technology
Intel® Turbo Boost Technology dynamically increases the processor's frequency as needed by taking advantage of thermal and power headroom to give you a burst of speed when you need it, and increased energy efficiency when you don’t.
Intel® Hyper-Threading Technology
Intel® Hyper-Threading Technology (Intel® HT Technology) delivers two processing threads per physical core. Highly threaded applications can get more work done in parallel,...
G077159
2
No
Yes
5A992C
Yes
Server
40
3.0
1x4, 1x8, 1x16
3.0
46 bit
2S
AVX 2.0
Yes
8542310001
Yes
768 GB
Quad-channel
1600, 1866
DDR4-SDRAM
72,1 °C
VT-d, VT-x
786432 MB
768 GB
1,2 kg
No
QPI
Server/workstation
No
59 GB/s
2
83356
2,4 GHz
3,2 GHz
20 MB
Smart Cache
Haswell
8
Intel Xeon E5 v3
22 nm
Intel
E5-2630V3
64-bit
Intel Xeon E5-2600 v3
LGA 2011-v3
16
R2
8 GT/s
85 Watt
0.65 - 1.3 V
No
Yes
Yes
Yes
Yes
No
0.00
1.00
Yes
No
0.00
Yes
Yes
Yes
Yes
Yes
No
Yes
Yes
No
2.0
3,2 GHz
Yes
1 kg
8
8 GT/s
GT/s
63903513
Q3'14
768 GB
Intel Xeon v2
20480 KB
Intel Xeon Processor E5 v3 Family
Processor
Discontinued
DDR4-SDRAM
1 Ano(s)
52.5mm x 45mm mm
Intel® Turbo Boost Technology
Intel® Turbo Boost Technology dynamically increases the processor's frequency as needed by taking advantage of thermal and power headroom to give you a burst of speed when you need it, and increased energy efficiency when you don’t.
Intel® Hyper-Threading Technology
Intel® Hyper-Threading Technology (Intel® HT Technology) delivers two processing threads per physical core. Highly threaded applications can get more work done in parallel, completing tasks sooner.
Enhanced Intel SpeedStep® Technology
Enhanced Intel SpeedStep® Technology is an advanced means of enabling high performance while meeting the power-conservation needs of mobile systems. Conventional Intel SpeedStep® Technology switches both voltage and frequency in tandem between high and low levels in response to processor load. Enhanced Intel SpeedStep® Technology builds upon that architecture using design strategies such as Separation between Voltage and Frequency Changes, and Clock Partitioning and Recovery.
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