Intel® Mobile Processors

Intel® Celeron® Mobile Processor

Number

 

Code Name

 

Release

 

Cores Threads

 

Speed

 

Cache

Bus

graphy

 

TDP

 

 

 

 

 

 

/

 

 

 

 

 

 

 

 

Processor

 

 

 

 

 

 

 

Clock

 

 

 

Litho-

 

Max

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

INTEL® CELERON® MOBILE PROCESSOR

 

 

 

 

 

 

 

 

N2910

 

Bay Trail

 

Roadmap

 

4 / 4

 

1.60 GHz

 

2 MB

 

22 nm

 

7.5 W

 

 

 

 

 

 

 

N2810

 

Bay Trail

 

Roadmap

 

2 / 2

 

2.00 GHz

 

1 MB

 

22 nm

 

7.5 W

N2805

 

Bay Trail

 

Roadmap

 

2 / 2

 

1.46 GHz

 

1 MB

 

22 nm

 

4.3 W

2980U

 

Haswell

 

Q3’13

 

2 / 2

 

1.60 GHz

 

2 MB

 

22 nm

 

15W

2955U

 

Haswell

 

Q3’13

 

2 / 2

 

1.40 GHz

 

2 MB

 

22 nm

 

15 W

2950M

 

Haswell

 

Q4’13

 

2 / 2

 

2.00 GHz

 

2 MB

 

22 nm

 

37 W

1047UE

 

Ivy Bridge

 

Q1’13

 

2 / 2

 

1.40 GHz

 

2 MB

5 GT/s DMI

22 nm

 

17 W

1037U

 

Ivy Bridge

 

Q1’13

 

2 / 2

 

1.80 GHz

 

2 MB

5 GT/s DMI

22 nm

 

17 W

1020M

 

Ivy Bridge

 

Q1’13

 

2 / 2

 

2.10 GHz

 

2 MB

5 GT/s DMI

22 nm

 

17 W

1020E

 

Ivy Bridge

 

Q1’13

 

2 / 2

 

2.20 GHz

 

2 MB

5 GT/s DMI

22 nm

 

17 W

1019Y

 

Ivy Bridge

 

Q2’13

 

2 / 2

 

1.00 GHz

 

2 MB

5 GT/s DMI

22 nm

 

10 W

1017U

 

Ivy Bridge

 

Q3’13

 

2 / 2

 

1.60 GHz

 

2 MB

5 GT/s DMI

22 nm

 

17 W

1007U

 

Ivy Bridge

 

Q1’13

 

2 / 2

 

1.50 GHz

 

2 MB

5 GT/s DMI

22 nm

 

17 W

1005M

 

Ivy Bridge

 

Q3’13

 

2 / 2

 

1.90 GHz

 

2 MB

5 GT/s DMI

22 nm

 

35 W

1000M

 

Ivy Bridge

 

Q1’13

 

2 / 2

 

1.80 GHz

 

2 MB

5 GT/s DMI

22 nm

 

35 W

U3405

 

Arrandale

 

Q1’10

 

2 / 2

 

1.06 GHz

 

2 MB

2.5 GT/s DMI

32 nm

 

18 W

U3400

 

Arrandale

 

Q2’10

 

2 / 2

 

1.06 GHz

 

2 MB

2.5 GT/s DMI

32 nm

 

18 W

T3500

 

Penryn

 

Q3’10

 

2 / 2

 

2.10 GHz

 

1 MB

800 MHz FSB

45 nm

 

35 W

T3100

 

Penryn

 

Q3’08

 

2 / 2

 

1.90 GHz

 

1 MB

800 MHz FSB

45 nm

 

35 W

SU2300

 

Penryn

 

Q3’09

 

2 / 2

 

1.20 GHz

 

1 MB

800 MHz FSB

45 nm

 

10 W

P4600

 

Arrandale

 

Q3’10

 

2 / 2

 

2.00 GHz

 

2 MB

2.5 GT/s DMI

32 nm

 

35 W

P4505

 

Arrandale

 

Q1’10

 

2 / 2

 

1.86 GHz

 

2 MB

2.5 GT/s DMI

32 nm

 

35 W

P4500

 

Arrandale

 

Q1’10

 

2 / 2

 

1.86 GHz

 

2 MB

2.5 GT/s DMI

32 nm

 

35 W

B840

 

Sandy Bridge

 

Q3’11

 

2 / 2

 

1.90 GHz

 

2 MB

5 GT/s DMI

32 nm

 

35 W

B830

 

Sandy Bridge

 

Q3’12

 

2 / 2

 

1.80 GHz

 

2 MB

5 GT/s DMI

32 nm

 

35 W

B820

 

Sandy Bridge

 

Q3’12

 

2 / 2

 

1.70 GHz

 

2 MB

5 GT/s DMI

32 nm

 

35 W

B815

 

Sandy Bridge

 

Q1’12

 

2 / 2

 

1.60 GHz

 

2 MB

5 GT/s DMI

32 nm

 

35 W

B810E

 

Sandy Bridge

 

Q2’11

 

2 / 2

 

1.60 GHz

 

2 MB

5 GT/s DMI

32 nm

 

35 W

B810

 

Sandy Bridge

 

Q1’11

 

2 / 2

 

1.60 GHz

 

2 MB

5 GT/s DMI

32 nm

 

35 W

B800

 

Sandy Bridge

 

Q2’11

 

2 / 2

 

1.50 GHz

 

2 MB

5 GT/s DMI

32 nm

 

35 W

B710

 

Sandy Bridge

 

Q3’11

 

1 / 1

 

1.60 GHz

 

1.5 MB

5 GT/s DMI

32 nm

 

35 W

927UE

 

Ivy Bridge

 

Q1’13

 

1 / 1

 

1.50 GHz

 

1 MB

5 GT/s DMI

22 nm

 

17 W

900

 

Penryn

 

Q1’09

 

1 / 1

 

2.20 GHz

 

1 MB

800 MHz FSB

45 nm

 

35 W

887

 

Sandy Bridge

 

Q3’12

 

2 / 2

 

1.50 GHz

 

2 MB

5 GT/s DMI

32 nm

 

17 W

877

 

Sandy Bridge

 

Q2’12

 

2 / 2

 

1.40 GHz

 

2 MB

5 GT/s DMI

32 nm

 

17 W

857

 

Sandy Bridge

 

Q3’11

 

2 / 2

 

1.20 GHz

 

2 MB

5 GT/s DMI

32 nm

 

17 W

847

 

Sandy Bridge

 

Q2’11

 

2 / 2

 

1.10 GHz

 

2 MB

5 GT/s DMI

32 nm

 

17 W

847E

 

Sandy Bridge

 

Q2’11

 

2 / 2

 

1.10 GHz

 

2 MB

5 GT/s DMI

32 nm

 

17 W

827E

 

Sandy Bridge

 

Q3’11

 

1 / 1

 

1.40 GHz

 

1.5 MB

5 GT/s DMI

32 nm

 

17 W

807UE

 

Sandy Bridge

 

Q4’11

 

1 / 1

 

1.00 GHz

 

1 MB

5 GT/s DMI

32 nm

 

10 W

807

 

Sandy Bridge

 

Q2’12

 

1 / 2

 

1.50 GHz

 

2 MB

5 GT/s DMI

32 nm

 

17 W

787

 

Sandy Bridge

 

Q3’11

 

1 / 1

 

1.30 GHz

 

1.5 MB

5 GT/s DMI

32 nm

 

17 W

725C

 

Gladden

 

Q2’12

 

1 / 2

 

1.30 GHz

 

1.5 MB

 

 

 

10 W

ULV 573

 

Merom

 

Q3’06

 

1 / 1

 

1.00 GHz

 

512 KB

533 MHz FSB

65 nm

 

10 W

575

 

Merom

 

Q3’06

 

1 / 1

 

2.00 GHz

 

1 MB

667 MHz FSB

65 nm

 

31 W

550

 

Merom

 

Q3’06

 

1 / 1

 

2.00 GHz

 

1 MB

533 MHz FSB

65 nm

 

31 W

Embedded Option

 

Integrated Graphics

# Displays

# Lanes

HT

x-VT

EPT

64

IS

EIST

TMT

Fast

Flex

XDB

Socket

Part #

Part #

Chipsets

 

 

 

of

PCIe

 

 

 

 

 

 

 

 

 

 

 

uFCBGA Tray

uFCPGA Tray

 

No

 

Yes

 

 

 

 

 

 

 

 

 

 

 

 

 

TBD

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

4

 

+

 

+

+

+

 

 

 

+

 

 

 

No

 

Yes

 

4

 

+

 

+

+

+

 

 

 

+

 

TBD

 

 

No

 

Yes

 

4

 

+

 

+

+

+

 

 

 

+

 

TBD

 

 

Yes

 

Yes

3

10

 

+

+

+

+

+

+

 

 

+

 

CL8064701479801

 

HM86, HM87, QM87

No

 

Yes

3

10

 

+

+

+

 

+

 

 

 

+

FCBGA1168

CL8064701523900

 

HM86, HM87, QM87

No

 

Yes

3

16

 

+

+

+

 

+

+

 

 

+

 

 

CW8064701487007

HM86, HM87, QM87

Yes

 

Yes

2

1

 

+

 

+

 

+

+

+

+

 

FCBGA1023

AV8063801116300

 

 

No

 

Yes

3

1

 

+

 

+

+

+

+

+

+

+

FCBGA1023

AV8063801442900

 

HM70, HM75, HM76, HM77, QM77, QS77, UM77

No

 

Yes

3

1

 

+

 

+

+

+

+

+

+

+

FCPGA988

AV8063801276200

AW8063801443700

HM70, HM75, HM76, HM77, QM77

Yes

 

Yes

3

1

 

+

 

+

+

+

+

+

+

+

FCBGA1023 / FCPGA988

AV8063801276200

AW8063801117700

 

No

 

Yes

3

1

 

+

+

 

+

+

+

+

+

+

FCBGA1023

AV8063801443502

 

 

No

 

Yes

3

1

 

+

+

+

+

+

+

+

+

+

FCBGA1023

AV8063801130300

 

 

No

 

Yes

3

1

 

+

+

+

+

+

+

+

+

+

FCBGA1023

AV8063801118700

 

HM70, HM75, HM76, HM77, QM77, QS77, UM77

No

 

Yes

3

1

 

+

+

+

+

+

+

+

+

+

FCPGA988

 

AW8063801121200

 

No

 

Yes

3

1

 

+

+

+

+

+

+

+

+

+

FCPGA988

 

AW8063801120200

HM70, HM75, HM76, HM77, QM77

Yes

 

Yes

 

 

 

+

 

+

+

+

+

+

+

+

BGA1288

CN80617006201AA

 

 

No

 

Yes

 

 

 

+

 

+

+

+

+

+

+

+

BGA1288

CN80617006039AA

 

HM55, HM57, QM57, QS57

No

 

 

 

 

 

 

 

 

 

 

 

 

 

 

PGA478

 

AW80577GG0451ML

GL40, GM45

Yes

 

No

 

 

 

 

 

+

 

 

 

 

 

+

BGA479, PGA478

AV80577NG0371M

AW80577GG0371ML

GL40, GM45

No

 

No

 

 

 

+

 

+

 

+

+

 

 

 

BGA956

AV850577UG0091ML

 

 

No

 

Yes

 

 

 

+

 

+

+

+

+

+

+

+

PGA988

 

CP80617005307AB

HM55, HM57, QM57

Yes

 

Yes

 

 

 

+

 

+

+

+

+

+

+

+

BGA1288

CN80617004545AF

 

HM55, QM57

Yes

 

Yes

 

 

 

+

 

+

+

+

+

+

+

+

PGA988

 

CP80617004803AA

HM55, HM57, QM57

No

 

Yes

2

16

 

+

 

+

+

+

+

+

+

+

PGA988

 

FF8062700998301

HM65, HM67, QM67

No

 

Yes

2

16

 

+

 

+

+

+

+

+

+

+

FCPGA988 / PGA988

 

FF8062700848702

 

No

 

Yes

2

16

 

+

 

+

+

+

+

+

+

+

FCPGA988 / PGA988

 

FF8062700848602

 

No

 

Yes

2

16

 

+

 

+

+

+

+

+

+

+

FCPGA988 / PGA988

 

FF8062701159901

 

Yes

 

Yes

2

16

 

+

 

+

+

+

+

+

+

 

FCBGA1023

AV8062700849802

 

HM65, QM67

Yes

 

Yes

2

16

 

+

 

+

+

+

+

+

+

+

PGA988

 

FF8062700848800

HM65, QM67

No

 

Yes

2

16

 

+

 

+

+

+

+

+

+

+

FCPGA988

 

FF8062701142600

HM65, HM67, QM67

No

 

Yes

2

16

 

+

 

+

+

+

+

+

+

+

PGA988

 

FF8062701084201

HM65, QM67

Yes

 

Yes

2

1

 

+

 

+

 

+

+

+

+

 

FCBGA1023

AV8063801129600

 

 

No

 

No

 

 

 

 

 

+

 

 

 

 

 

+

PGA478

 

AW80585NG0491MA

GL40, GM45

No

 

Yes

2

16

 

+

 

 

+

+

+

+

+

+

FCBGA1023

AV8062701085401

 

 

No

 

Yes

2

16

 

+

 

 

+

+

+

+

+

+

FCBGA1023

AV8062701085501

 

 

No

 

Yes

2

16

 

+

 

+

+

+

+

+

+

+

FCBGA1023

AV8062701149001

 

HM65, HM67, QM67, QS67, UM67

No

 

Yes

2

16

 

+

 

+

+

+

+

+

+

+

FCBGA1023

AV8062700852800

 

HM65, HM67, QM67, QS67, UM67

Yes

 

Yes

2

16

 

+

 

+

+

+

+

+

+

 

FCBGA1023

AV8062700849902

 

HM65, QM67

Yes

 

Yes

2

16

 

+

 

+

+

+

+

+

+

 

FCBGA1023

AV8062701082300

 

HM65

Yes

 

Yes

2

16

 

+

 

+

+

+

+

+

+

 

FCBGA1023

AV8062701188200

 

 

No

 

Yes

2

16

+

+

 

+

+

+

+

+

+

+

FCBGA1023

AV8062701079702

 

 

No

 

Yes

2

16

 

+

 

+

+

+

+

+

+

+

FCBGA1023

AV8062701079501

 

HM65, HM67, QS67, UM67

Yes

 

 

2

16

+

+

 

+

+

+

+

+

+

+

FCBGA1284

AV8062701147000

 

 

Yes

 

No

 

 

 

 

 

+

 

 

 

 

 

 

PBGA479

LE80537VE001512

 

GLE960

Yes

 

No

 

 

 

 

 

+

 

 

 

 

 

+

PPGA478

 

LF80537NF0411M

GL40, GM45

Yes

 

No

 

 

 

 

 

+

 

 

 

 

 

+

PBGA479, PPGA468

LE80537NE0411M

LF80537NE0411M

GL960, GLE960, GM965, GME965

Q4 INTEL PRODUCT GUIDE

18

 

 

Page 19
Image 19
Intel BX80647I74800MQ, BV80605001908AK Intel Celeron Mobile Processor, Bus Graphy, # Lanes, EPT Eist TMT, Socket Chipsets

BX80647I74800MQ, BV80605001908AK specifications

The Intel BX80647I74800MQ and BV80605001908AK are two CPUs from Intel’s diverse processor lineup, designed to cater to different segments of computing needs.

The Intel BX80647I74800MQ is part of the Intel Core i7 family, specifically developed for mobile platforms. This processor features a quad-core architecture, which allows it to handle multiple tasks efficiently, making it suitable for demanding applications like gaming, video editing, and data analysis. With a base frequency of 2.3 GHz and the capability to reach up to 3.7 GHz with Turbo Boost technology, it offers an excellent balance between performance and energy efficiency. The processor is built on the 22nm manufacturing process, which not only reduces power consumption but also improves thermal performance.

One of the key features of the i7-4800MQ is its support for Intel Hyper-Threading technology, allowing each core to handle two threads simultaneously. This significantly enhances multitasking abilities and facilitates smoother operation of resource-intensive applications. Additionally, it boasts a robust 8MB Intel Smart Cache, which improves data access speed and enhances overall performance during demanding tasks.

On the other hand, the BV80605001908AK refers to the Intel Core i5-5005U processor, designed for ultra-thin laptops and energy-efficient devices. This dual-core processor operates at a base frequency of 2.0 GHz, with a Turbo Boost capability of up to 2.8 GHz. Although it contains fewer cores compared to the i7-4800MQ, it is still engineered to provide reliable performance for everyday computing tasks, multimedia consumption, and light gaming.

The Core i5-5005U also integrates Intel HD Graphics 5500, enabling decent graphical performance for casual gaming and efficient video playback. Its power-efficient design results in lower thermal output, making it an ideal choice for portable devices where battery life is paramount.

Both processors utilize Intel's advanced technologies, including Intel VT-x for virtualization, which aids in running multiple operating systems on a single machine efficiently. They also support Intel 64 architecture, enhancing 64-bit processing capabilities and improving overall computing performance.

In summary, the Intel BX80647I74800MQ and BV80605001908AK processors serve distinct purposes within the Intel Core lineup, catering to both mobile computing enthusiasts and users requiring robust performance in ultra-thin systems. Each offers unique characteristics that cater to the diverse needs of modern users, ensuring they remain relevant in an ever-evolving technological landscape.