Amd opteron 6274 vs xeon: AMD Opteron 6274 vs Intel Xeon E5-4650 @ 2.70GHz [cpubenchmark.net] by PassMark Software

AMD Opteron 6274 vs Intel Xeon E5-2650: What is the difference?

34points

AMD Opteron 6274

34points

Intel Xeon E5-2650

vs

61 facts in comparison

AMD Opteron 6274

Intel Xeon E5-2650

Why is AMD Opteron 6274 better than Intel Xeon E5-2650?

  • 2.2x faster CPU speed?
    16 x 2.2GHzvs8 x 2GHz
  • 0.3GHz higher turbo clock speed?
    3.1GHzvs2.8GHz
  • 256KB bigger L1 cache?
    768KBvs512KB
  • 14MB bigger L2 cache?
    16MBvs2MB
  • 0.75MB/core more L2 cache per core?
    1MB/corevs0.25MB/core
  • Has FMA4?

Why is Intel Xeon E5-2650 better than AMD Opteron 6274?

  • 20W lower TDP?
    95Wvs115W
  • 4MB bigger L3 cache?
    20MBvs16MB
  • Uses multithreading?
  • 1.5MB/core more L3 cache per core?
    2. 5MB/corevs1MB/core

Which are the most popular comparisons?

Intel Xeon E5-2650

vs

Intel Xeon E5-2670

Intel Xeon E5-2650

vs

Intel Xeon E3-1230 v2

Intel Xeon E5-2650

vs

Intel Xeon E5-2640

Intel Xeon E5-2650

vs

Intel Xeon E5-2620

Intel Xeon E5-2650

vs

Intel Xeon E5-2660

Intel Xeon E5-2650

vs

Intel Xeon E5-2450

Intel Xeon E5-2650

vs

Intel Xeon E5-2643

Intel Xeon E5-2650

vs

Intel Xeon E5-2420

Intel Xeon E5-2650

vs

Intel Xeon E5-2680

Intel Xeon E5-2650

vs

Intel Xeon Silver 4210

Price comparison

User reviews

Performance

CPU speed

16 x 2.2GHz

8 x 2GHz

The CPU speed indicates how many processing cycles per second can be executed by a CPU, considering all of its cores (processing units). It is calculated by adding the clock rates of each core or, in the case of multi-core processors employing different microarchitectures, of each group of cores.

CPU threads

More threads result in faster performance and better multitasking.

turbo clock speed

3.1GHz

2.8GHz

When the CPU is running below its limitations, it can boost to a higher clock speed in order to give increased performance.

L3 cache

A larger L3 cache results in faster CPU and system-wide performance.

L1 cache

A larger L1 cache results in faster CPU and system-wide performance.

L2 cache

A larger L2 cache results in faster CPU and system-wide performance.

L2 core

1MB/core

0.25MB/core

More data can be stored in the L2 cache for access by each core of the CPU.

clock multiplier

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

The clock multiplier controls the speed of the CPU.

Has an unlocked multiplier

✖AMD Opteron 6274

✖Intel Xeon E5-2650

Some processors come with an unlocked multiplier which makes them easy to overclock, allowing you to gain increased performance in games and other apps.

Memory

Supports ECC memory

✔AMD Opteron 6274

✔Intel Xeon E5-2650

Error-correcting code memory can detect and correct data corruption. It is used when is it essential to avoid corruption, such as scientific computing or when running a server.

maximum memory bandwidth

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

51.2GB/s

This is the maximum rate that data can be read from or stored into memory.

DDR memory version

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

DDR (Double Data Rate) memory is the most common type of RAM. Newer versions of DDR memory support higher maximum speeds and are more energy-efficient.

maximum memory amount

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

The maximum amount of memory (RAM) supported.

RAM speed

1600MHz

1600MHz

It can support faster memory, which will give quicker system performance.

memory channels

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

More memory channels increases the speed of data transfer between the memory and the CPU.

bus speed

3.2GHz

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

The bus is responsible for transferring data between different components of a computer or device.

bus transfer rate

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

The bus is responsible for transferring data between different components of a computer or device.

eMMC version

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

A higher version of eMMC allows faster memory interfaces, having a positive effect on the performance of a device. For example, when transferring files from your computer to the internal storage over USB.

Features

uses multithreading

✖AMD Opteron 6274

✔Intel Xeon E5-2650

Multithreading technology (such as Intel’s Hyperthreading or AMD’s Simultaneous Multithreading) provides increased performance by splitting each of the processor’s physical cores into virtual cores, also known as threads. This way, each core can run two instruction streams at once.

SSE version

SSE is used to speed up multimedia tasks such as editing an image or adjusting audio volume. Each new version contains new instructions and improvements.

Has AES

✔AMD Opteron 6274

✔Intel Xeon E5-2650

AES is used to speed up encryption and decryption.

Has AVX

✔AMD Opteron 6274

✔Intel Xeon E5-2650

AVX is used to help speed up calculations in multimedia, scientific and financial apps, as well as improving Linux RAID software performance.

bits executed at a time

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

NEON provides acceleration for media processing, such as listening to MP3s.

front-end width

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

The CPU can decode more instructions per clock (IPC), meaning that the CPU performs better

Has F16C

✖AMD Opteron 6274

✖Intel Xeon E5-2650

F16C is used to speed up tasks such as adjusting the contrast of an image or adjusting volume.

Has FMA3

✖AMD Opteron 6274

✖Intel Xeon E5-2650

FMA3 is used to speed up tasks such as adjusting the contrast of an image or adjusting volume.

Has FMA4

✔AMD Opteron 6274

✖Intel Xeon E5-2650

FMA4 is used to speed up tasks such as adjusting the contrast of an image or adjusting volume.

Benchmarks

Cinebench R20 (multi) result

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

Cinebench R20 is a benchmark tool that measures a CPU’s multi-core performance by rendering a 3D scene.

Cinebench R20 (single) result

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

Cinebench R20 is a benchmark tool that measures a CPU’s single-core performance by rendering a 3D scene.

Geekbench 5 result (multi)

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

Geekbench 5 is a cross-platform benchmark that measures a processor’s multi-core performance. (Source: Primate Labs, 2023)

Geekbench 5 result (single)

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

Geekbench 5 is a cross-platform benchmark that measures a processor’s single-core performance. (Source: Primate Labs, 2023)

PassMark result

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

This benchmark measures the performance of the CPU using multiple threads.

PassMark result (single)

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

This benchmark measures the performance of the CPU using a single thread.

performance per watt

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

This means the CPU is more efficient, giving a greater amount of performance for each watt of power used.

Blender (bmw27) result

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

The Blender (bmw27) benchmark measures the performance of a processor by rendering a 3D scene. More powerful processors can render the scene in less time.

Blender (classroom) result

Unknown. Help us by suggesting a value. (AMD Opteron 6274)

Unknown. Help us by suggesting a value. (Intel Xeon E5-2650)

The Blender (classroom) benchmark measures the performance of a processor by rendering a 3D scene. More powerful processors can render the scene in less time.

Price comparison

Which are the best Enterprise CPUs?

AMD Opteron 6274 vs Intel Xeon E5607


Comparative analysis of AMD Opteron 6274 and Intel Xeon E5607 processors for all known characteristics in the following categories: Essentials, Performance, Memory, Compatibility, Advanced Technologies, Virtualization, Security & Reliability.
Benchmark processor performance analysis: PassMark — Single thread mark, PassMark — CPU mark.

AMD Opteron 6274

Buy on Amazon


vs

Intel Xeon E5607

Buy on Amazon

 

Differences

Reasons to consider the AMD Opteron 6274

  • CPU is newer: launch date 9 month(s) later
  • 12 more cores, run more applications at once: 16 vs 4
  • 12 more threads: 16 vs 4
  • Around 37% higher clock speed: 3.1 GHz vs 2.26 GHz
  • 3x more L1 cache, more data can be stored in the L1 cache for quick access later
  • 16x more L2 cache, more data can be stored in the L2 cache for quick access later
  • 2x more L3 cache, more data can be stored in the L3 cache for quick access later
  • 2. 1x better performance in PassMark — CPU mark: 10313 vs 4969









Launch date November 2011 vs February 2011
Number of cores 16 vs 4
Number of threads 16 vs 4
Maximum frequency 3.1 GHz vs 2.26 GHz
L1 cache 768 KB vs 64 KB (per core)
L2 cache 16 MB vs 256 KB (per core)
L3 cache 16 MB vs 8192 KB (shared)
PassMark — CPU mark 10313 vs 4969

Reasons to consider the Intel Xeon E5607

  • Around 44% lower typical power consumption: 80 Watt vs 115 Watt
  • Around 4% better performance in PassMark — Single thread mark: 1009 vs 974



Thermal Design Power (TDP) 80 Watt vs 115 Watt
PassMark — Single thread mark 1009 vs 974

Compare benchmarks


CPU 1: AMD Opteron 6274
CPU 2: Intel Xeon E5607



PassMark — Single thread mark

CPU 1
CPU 2


PassMark — CPU mark

CPU 1
CPU 2





Name AMD Opteron 6274 Intel Xeon E5607
PassMark — Single thread mark 974 1009
PassMark — CPU mark 10313 4969

Compare specifications (specs)



















































AMD Opteron 6274 Intel Xeon E5607
Architecture codename Interlagos Westmere EP
Family AMD Opteron
Launch date November 2011 February 2011
Launch price (MSRP) $909 $135
OPN Tray OS6274WKTGGGU
Place in performance rating 1739 1868
Price now $210 $310
Series AMD Opteron 6200 Series Processor Legacy Intel® Xeon® Processors
Value for money (0-100) 6. 82 3.23
Vertical segment Server Server
Processor Number

E5607
Status

Launched
64 bit support
Base frequency 2.2 GHz 2.26 GHz
Die size 316 mm 239 mm
L1 cache 768 KB 64 KB (per core)
L2 cache 16 MB 256 KB (per core)
L3 cache 16 MB 8192 KB (shared)
Manufacturing process technology 32 nm 32 nm
Maximum core temperature 69°C
Maximum frequency 3. 1 GHz 2.26 GHz
Number of cores 16 4
Number of threads 16 4
Transistor count 2400 million 1170 million
Unlocked
Bus Speed

4.8 GT/s QPI
Number of QPI Links

2
VID voltage range

0. 750V-1.350V
Supported memory frequency 2000 MHz
Supported memory types DDR3 DDR3 800/1066
ECC memory support

Max memory channels

3
Maximum memory bandwidth

25.6 GB/s
Maximum memory size

288 GB
Max number of CPUs in a configuration 2 2
Sockets supported G34 FCLGA1366
Thermal Design Power (TDP) 115 Watt 80 Watt
Low Halogen Options Available

Package Size

42. 5mm X 45mm
Fused Multiply-Add (FMA)
Intel® Advanced Vector Extensions (AVX)
Intel® AES New Instructions
Enhanced Intel SpeedStep® technology

Idle States

Instruction set extensions

Intel® SSE4.2
Intel 64

Intel® Demand Based Switching

Intel® Hyper-Threading technology

Intel® Turbo Boost technology

Physical Address Extensions (PAE)

40-bit
Thermal Monitoring

AMD Virtualization (AMD-V™)
Intel® Virtualization Technology (VT-x)

Intel® Virtualization Technology for Directed I/O (VT-d)

Intel® VT-x with Extended Page Tables (EPT)

Execute Disable Bit (EDB)

Intel® Trusted Execution technology (TXT)

Navigation

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AMD
Opteron 4226

0003

Core

16

10 (166. 7%) better than

vs

6

Threads

16

4 (33.3%) better than

vs

12

Number of transistors

2 million

1 million (100%) better than

vs

1 million

Power Demand (TDP)

115 W

-15 W (-11.5%) better than

vs

130 W

Benefits of Intel Xeon X5690

Comparison winner

Base frequency

3.466 GHz

At 1.266 GHz (57.5%) better than

vs

2.2 GHz

Maximum frequency

3.73 GHz

0. 63 GHz (20.3%) better than

vs

3.1 GHz

Release price

$205

-704 $ (-77.4%) better than

vs

909 $

Value for money

33%

27.5% (500%) better than

vs

5.5%

Passmark

6844

3695 (117.3%) better than

vs

3149

General

Type

Server Server

Architecture code name

Interlagos Westmere-EP

Cores

A large number of cores improves performance in multi-threaded applications.
At the moment, increasing the number of processor cores is one of the priorities for increasing performance.

16

10 (166.7%) better than

6

Threads

More threads help the cores process information more efficiently. Real performance will be noticeable in very specific tasks (video editing, databases).

16

4 (33.3%) better than

12

Base frequency

2.2 GHz 3.466 GHz

At 1.266 GHz (57.5%) better than

Process

32 nm 32 nm

Chip size

316 mm2 239 mm2

Number of transistors

2 million

1 million (100%) better than

1 million

Maximum frequency

Faster clocked processors perform more calculations per second and thus provide better performance.

3.1GHz 3.73 GHz

Better than

at 0.63 GHz (20.3%)

Support 64 bit

Max. number of processors in configuration

2 2

Socket

G34 FCLGA1366

AMD-V

Exit price

909 $ $205

-704 $ (-77.4%) better than

Value for money

The sum of all the advantages of the device divided by its price. The more%, the better the quality per unit price in comparison with all analogues.

5.5% 33%

27.5% (500%) better than

Maximum core temperature

n/a 79°C

TXT

Intel Trusted Execution Technology for hardware-based malware protection. For each protected program, the processor allocates its own isolated section of RAM.

Demand Based Switching

n/a +

PAE

n/a 40 bit

FMA

+ no data

Level 1 cache

The fastest level of cache that works directly with the kernel. The larger the cache, the better the performance.

768 Kb (total) 64 KB (per core)

Level 2 cache

8.00391 MB (per core) 256 KB (per core)

L3 cache

16 Mb 12288 Kb (total)

Power Demand (TDP)

The calculated heat output shows the average heat dissipation in load operation,
the larger the value, the more the requirements for cooling and power consumption increase.

115W

-15 W (-11.5%) better than

130 W

EDB

n/a +

Permissible core voltage

n/a 0.75V-1.35V
6844

3695 (117.3%) better than

Technologies and additional instructions

Extended instructions

n/a Intel® SSE4.2

Turbo Boost

n/a 1.0

Idle States

Enhanced SpeedStep (EIST)

Technology from Intel that allows the processor to slow down to its lowest frequency to conserve power when the processor is idle.

Hyper-Threading

Intel hardware technology that allows multiple threads to be processed on each processor core. For server applications, the performance improvement is up to 30%.

AES-NI

Technology from Intel that speeds up the AES encryption process.

+ +

AVX

The presence of AVX commands improves performance in floating point and processor-intensive operations
applications.

RAM parameters

RAM types

DDR3 DDR3-800, DDR3-1066, DDR3-1333

Allowable memory

The maximum amount of RAM that can be used with this processor.

no data 288 GB

Number of memory channels

n/a 3

ECC memory support

EEC memory is designed specifically for systems with high requirements for data processing reliability.
This type of memory automatically recognizes errors that occur. Commonly used in server computers.

Virtualization Technologies

VT-x

EPT

VT-d

Intel virtualization technology allows you to forward devices on the PCI bus to the guest operating system so that it can work with them using its standard tools.

Integrated graphics

Home / processor / AMD Opteron 6274 VS Intel Xeon E3-1235

AMD Opteron 6274

4%

Devicelist

VS

Intel Xeon E3-1235 9000

4%

Evaluation DVICELIS0003

We compared the specifications of AMD Opteron 6274 and Intel Xeon E3-1235 and compiled a list of advantages and a comparison table for you. Find out which one to choose in 2023.

Advantage AMD Opteron 6274

Core

16

12 (300%) better than

vs

4

Threads

16

8 (100%) better than

vs

8

Number of transistors

2 million

1 million (100%) better than

vs

1 million

Benefits of Intel Xeon E3-1235

Comparison winner

Base frequency

3.2 GHz

At 1 GHz (45.5%) better than

vs

2.2 GHz

Maximum frequency

3.6 GHz

At 0. 5 GHz (16.1%) better than

vs

3.1 GHz

Release price

$287

-622 $ (-68.4%) better than

vs

909 $

Value for money

20.2%

14.7% (267.3%) better than

vs

5.5%

Power Demand (TDP)

95 W

-20 W (-17.4%) better than

vs

115 W

Passmark

4380

1231 (39.1%) better than

vs

3149

General

Type

Server Server

Architecture code name

Interlagos Sandy Bridge

Cores

A large number of cores improves performance in multi-threaded applications.
At the moment, increasing the number of processor cores is one of the priorities for increasing performance.

16

12 (300%) better than

4

Threads

More threads help the cores process information more efficiently. Real performance will be noticeable in very specific tasks (video editing, databases).

16

8 (100%) better than

8

Base frequency

2.2 GHz 3.2 GHz

At 1 GHz (45.5%) better than

Process

32 nm 32 nm

Chip size

316 mm2 216 mm2

Number of transistors

2 million

1 million (100%) better than

1 million

Maximum frequency

Faster clocked processors perform more calculations per second and thus provide better performance.

3.1GHz 3.6 GHz

Better than

at 0.5 GHz (16.1%)

Support 64 bit

Max. number of processors in configuration

2 1

Socket

G34 LGA1155

AMD-V

Release price

909 $ $287

-622 $ (-68.4%) better than

Value for money

The sum of all the advantages of the device divided by its price. The more%, the better the quality per unit price in comparison with all analogues.

5.5% 20.2%

14.7% (267.3%) better than

Maximum core temperature

n/a 73 °C

vPro

TXT

Intel Trusted Execution Technology for hardware-based malware protection. For each protected program, the processor allocates its own isolated section of RAM.

PCI Express revision

no data 2.0

Number of PCI-Express lanes

n/a 20

Demand Based Switching

n/a +

Identity Protection

n/a +

Flex Memory Access

n/a +

Quick Sync

n/a +

FMA

+ no data

FDI

n/a +

Fast Memory Access

n/a +

Level 1 Cache

The fastest level of cache that works directly with the core. The larger the cache, the better the performance.

768 Kb (total) 64 KB (per core)

Level 2 cache

8.00391 MB (per core) 256 KB (per core)

L3 cache

16 Mb 8 MB (total)

Power Demand (TDP)

The calculated heat output shows the average heat dissipation in load operation,
the larger the value, the more the requirements for cooling and power consumption increase.

115W 95 W

-20 W (-17.4%) better than

EDB

n/a +

InTru 3D

n/a +
Benchmarks

Passmark

3149 4380

1231 (39. 1%) better than

Technology and additional instructions

Extended instructions

n/a Intel® SSE4.1, Intel® SSE4.2, Intel® AVX

Turbo Boost

n/a 2.0

Idle States

Enhanced SpeedStep (EIST)

Technology from Intel that allows the processor to slow down to its lowest frequency to conserve power when the processor is idle.

Thermal Monitoring

Hyper-Threading

Intel hardware technology that allows multiple threads to be processed on each processor core. For server applications, the performance improvement is up to 30%.

AES-NI

Technology from Intel that speeds up the AES encryption process.

+ +

AVX

The presence of AVX commands improves performance in floating point and processor-intensive operations
applications.

RAM parameters

RAM types

DDR3 DDR3-1066, DDR3-1333

Allowable memory

The maximum amount of RAM that can be used with this processor.

n/a 32 GB

Number of memory channels

n/a 2

ECC memory support

EEC memory is designed specifically for systems with high requirements for data processing reliability.

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