Sandy Bridge


Sandy Bridge is the codename for Intel's 32 nm microarchitecture used in the second generation of the Intel Core processors. The Sandy Bridge microarchitecture is the successor to Nehalem and Westmere microarchitecture. Intel demonstrated an A1 stepping Sandy Bridge processor in 2009 during Intel Developer Forum, and released first products based on the architecture in January 2011 under the Core brand.
Sandy Bridge is manufactured in the 32 nm process and has a soldered contact with the die and IHS, while Intel's subsequent generation Ivy Bridge uses a 22 nm die shrink and a TIM between the die and the IHS.

Technology

Upgraded features from Nehalem include:

CPU

All Sandy Bridge processors with one, two, or four cores report the same CPUID model 0206A7h and are closely related. The stepping number cannot be seen from the CPUID but only from the PCI configuration space. The later Sandy Bridge-E processors with up to eight cores and no graphics are using CPUIDs 0206D6h and 0206D7h. Ivy Bridge CPUs all have CPUID 0306A9h to date, and are built in four different configurations differing in the number of cores, L3 cache and GPU execution units:
Die codenameCPUIDSteppingCoresGPU
EUs
L3
cache
Socket
Sandy Bridge-HE-40206A7hD24128 MBLGA 1155, Socket G2,
BGA-1023, BGA-1224
Sandy Bridge-H-20206A7hJ12124 MBLGA 1155, Socket G2,
BGA-1023
Sandy Bridge-M-20206A7hQ0263 MBLGA 1155, Socket G2,
BGA-1023
Sandy Bridge-EP-80206D6hC18none20 MBLGA 2011
Sandy Bridge-EP-80206D7hC28none20 MBLGA 2011
Sandy Bridge-EP-40206D6hM04none10 MBLGA 2011
Sandy Bridge-EP-40206D7hM14none10 MBLGA 2011

Performance

  • The average performance increase, according to IXBT Labs and Semi Accurate as well as many other benchmarking sites, at clock to clock is 11.3% compared to the Nehalem generation, which includes Bloomfield, Clarkdale, and Lynnfield processors.
  • Around twice the integrated graphics performance compared to Clarkdale's.

    List of Sandy Bridge processors

1Processors featuring Intel's HD 3000 graphics are set in bold. Other processors feature HD 2000 graphics, HD graphics or no graphics core.
  • This list may not contain all the Sandy Bridge processors released by Intel. A more complete listing can be found on Intel's website.

    Desktop platform

Suffixes to denote:
  • K – Unlocked
  • P – Versions clocked slightly higher than similar models, but with onboard-graphics deactivated
  • S – Performance-optimized lifestyle
  • T – Power-optimized lifestyle
  • X – Extreme performance and unlocked
  • C – Embedded/Communications - BGA packaging
a Note: Released as third-generation Sandy Bridge-E high-end desktop processors.

Server platform

All 1600/2600/4600-series models:
  • support 40 PCI Express 3.0 lanes
  • support DMI 2.0
  • support LGA 2011 as a socket with varying scalabilities
Suffixes to denote:
  • L – Low power
  • W – Optimized for workstations

    Mobile platform

  • Core i5-2515E and Core i7-2715QE processors have support for ECC memory and PCI express port bifurcation.
  • All mobile processors, except Celeron and Pentium, use the HD 3000 iGPU.
Suffixes to denote:
  • M – Mobile processors
  • * UM – Ultra low power mobile
  • * LM – Low power mobile
  • * M – Dual-core mobile
  • * QM – Quad-core mobile
  • * XM – Quad-core extreme mobile
  • E – Embedded mobile processors
  • * QE – Quad-core
  • * LE – Low power
  • * UE – Ultra low power

    Cougar Point chipset flaw

On 31 January 2011, Intel issued a recall on all 67-series motherboards due to a flaw in the Cougar Point Chipset. A hardware problem exists, in which the chipset's SATA II ports may fail over time, causing failure of connection to SATA devices, though data is not at risk. Intel claims that this problem will affect only 5% of users over 3 years; however, heavier I/O workloads can exacerbate the problem. This hardware bug cannot be fixed by BIOS update.
Intel stopped production of flawed B2 stepping chipsets and began producing B3 stepping chipsets with the silicon fix. Shipping of these new chipsets started on 14 February 2011 and Intel estimated full recovery volume in April 2011. Motherboard manufacturers and computer manufacturers stopped selling products that involved the flawed chipset and offered support for affected customers. Options ranged from swapping for B3 motherboards to product refunds.
Sandy Bridge processor sales were temporarily on hold, as one cannot use the CPU without a motherboard. However, processor release dates were not affected. After two weeks, Intel continued shipping some chipsets, but manufacturers had to agree to a set of terms that will prevent customers from encountering the bug.

Limitations

Overclocking

With Sandy Bridge, Intel has tied the speed of every bus to a single internal clock generator issuing the basic Base Clock. With CPUs being multiplier locked, the only way to overclock is to increase the BClk, which can be raised by only 5–7% without other hardware components failing. As a work around, Intel made available K/X-series processors, which feature unlocked multipliers; with a multiplier cap of 57 for Sandy Bridge. For the Sandy Bridge-E platform, there is alternative method known as the BClk ratio overclock.
During IDF 2010, Intel demonstrated an unknown Sandy Bridge CPU running stably overclocked at 4.9 GHz on air cooling.

Chipset

Non-K edition CPUs can overclock up to four bins from its turbo multiplier.

vPro remote-control

Sandy and Ivy Bridge processors with vPro capability have security features that can remotely disable a PC or erase information from hard drives. This can be useful in the case of a lost or stolen PC. The commands can be received through 3G signals, Ethernet, or Internet connections. AES encryption acceleration will be available, which can be useful for video conferencing and VoIP applications.

Intel Insider

Sandy and Ivy Bridge processors contain a DRM technology that some video streaming web sites rely on to restrict use of their content. Such web sites offer 1080p streaming to users with such CPUs and downgrade the quality for other users.

Software development kit

With the introduction of the Sandy Bridge microarchitecture, Intel also introduced the Intel Data Plane Development Kit to help developers of communications applications take advantage of the platform in packet processing applications, and network processors.

Roadmap

Intel demonstrated the Haswell architecture in September 2011, released in 2013 as the successor to Sandy Bridge and Ivy Bridge.

Fixes

In 2015, Microsoft released a microcode update for selected Sandy Bridge and Ivy Bridge CPUs for Windows 7 and up that addresses stability issues. However, the update negatively impacts Pentium G3258 and Core i3-4010U CPU models.