Intel Celeron 887 vs AMD E2-3000M

What is the difference between Intel Celeron 887 and AMD E2-3000M. Find out which CPU has better performance.

Performance (Benchmarks)

249Geekbench 5 Single-Core Score246
442Geekbench 5 Multi-Core Score431
727PassMark CPU Mark Rating
694PassMark Single Thread Rating

Processor Specs

Intel Celeron 887ProcessorAMD E2-3000M
1500 MHzFrequency1800 MHz
Maximum Frequency2400 MHz
2Cores2
2Threads2
17 WTDP35 W
Intel HD Graphics for 2nd Generation Intel ProcessorsGPURadeon HD 6380G
Sandy BridgeCodenameLlano
FCBGA1023PackageSocket FS1 (905)

Geekbench 5 Benchmark

249Single-Core Score247
411Multi-Core Score423
Geekbench 5.2.3 Tryout for Windows x86 (64-bit)BenchmarkGeekbench 5.1.0 Tryout for Windows x86 (64-bit)

System Information

Microsoft Windows 10 Home (64-bit)Operating SystemMicrosoft Windows 10 Home (64-bit)
Acer Aspire V5-531ModelHewlett-Packard HP Pavilion g6 Notebook PC
Acer Aspire V5-531MotherboardHewlett-Packard 169B
Paras suoritustehoPower PlanRecomendado por HP

CPU Specifications

Intel Celeron 887NameAMD E2-3000M
1 Processor, 2 CoresTopology1 Processor, 2 Cores
GenuineIntel Family 6 Model 42 Stepping 7IdentifierAuthenticAMD Family 18 Model 1 Stepping 0
1.50 GHzBase Frequency1.80 GHz
1.50 GHzMaximum Frequency2.40 GHz
Socket 1023 FCBGAPackageSocket FS1 (905)
Sandy BridgeCodenameLlano
32.0 KB x 1L1 Instruction Cache64.0 KB x 2
32.0 KB x 1L1 Data Cache64.0 KB x 2
256 KB x 1L2 Cache512 KB x 2
2.00 MB x 1L3 Cache

Memory Information

4.00 GBSize6.00 GB
665 MHzFrequency667 MHz
DDR3 SDRAMTypeDDR3 SDRAM
1Channels

Geekbench 5 result (single)

249Single-Core Score247
32Crypto Score35
259Integer Score277
265Floating Point Score 217
32
55.8 MB/sec
AES-XTS35
60.6 MB/sec
340
1.72 MB/sec
Text Compression (LZMA)311
1.57 MB/sec
270
12.8 Mpixels/sec
Image Compression347
16.4 Mpixels/sec
252
711.2 KTE/sec
Navigation (using Dijkstra's algorithm)289
813.8 KTE/sec
226
265.6 KElements/sec
HTML5281
330.5 KElements/sec
226
70.7 Krows/sec
SQLite251
78.7 Krows/sec
242
13.1 Mpixels/sec
PDF Rendering284
15.4 Mpixels/sec
254
80.9 KB/sec
Text Rendering253
80.8 KB/sec
265
2.06 Klines/sec
Clang278
2.17 Klines/sec
271
3.14 images/sec
Camera219
2.54 images/sec
245
306.5 Kpairs/sec
N-Body Physics162
203.3 Kpairs/sec
298
1845.5 FPS
Rigid Body Physics282
1745.9 FPS
216
11.9 Mpixels/sec
Gaussian Blur161
8.85 Mpixels/sec
298
2.29 images/sec
Face Detection171
1.32 images/sec
301
7.42 Mpixels/sec
Horizon Detection203
5.01 Mpixels/sec
413
20.2 Mpixels/sec
Image Inpainting397
19.5 Mpixels/sec
470
6.40 Mpixels/sec
HDR451
6.15 Mpixels/sec
267
214.4 Kpixels/sec
Ray Tracing262
210.3 Kpixels/sec
163
1.46 Kpixels/sec
Structure from Motion148
1.32 Kpixels/sec
260
8.32 Words/sec
Speech Recognition216
6.90 Words/sec
143
5.51 images/sec
Machine Learning128
4.93 images/sec

Geekbench 5 result (multi)

411Multi-Core Score423
40Crypto Score64
397Integer Score478
503Floating Point Score 363
40
69.7 MB/sec
AES-XTS64
111.2 MB/sec
402
2.03 MB/sec
Text Compression (LZMA)608
3.08 MB/sec
389
18.4 Mpixels/sec
Image Compression602
28.5 Mpixels/sec
371
1.05 MTE/sec
Navigation (using Dijkstra's algorithm)424
1.20 MTE/sec
409
480.4 KElements/sec
HTML5497
583.7 KElements/sec
383
119.9 Krows/sec
SQLite446
139.7 Krows/sec
417
22.6 Mpixels/sec
PDF Rendering498
27.0 Mpixels/sec
413
131.6 KB/sec
Text Rendering410
130.7 KB/sec
407
3.17 Klines/sec
Clang492
3.83 Klines/sec
382
4.43 images/sec
Camera375
4.34 images/sec
364
455.7 Kpairs/sec
N-Body Physics278
348.3 Kpairs/sec
498
3087.5 FPS
Rigid Body Physics489
3031.2 FPS
509
28.0 Mpixels/sec
Gaussian Blur257
14.1 Mpixels/sec
531
4.09 images/sec
Face Detection296
2.28 images/sec
546
13.5 Mpixels/sec
Horizon Detection336
8.29 Mpixels/sec
848
41.6 Mpixels/sec
Image Inpainting687
33.7 Mpixels/sec
965
13.2 Mpixels/sec
HDR791
10.8 Mpixels/sec
657
527.8 Kpixels/sec
Ray Tracing395
317.0 Kpixels/sec
356
3.19 Kpixels/sec
Structure from Motion244
2.19 Kpixels/sec
448
14.3 Words/sec
Speech Recognition365
11.7 Words/sec
227
8.77 images/sec
Machine Learning214
8.28 images/sec