Intel Core 2 Duo T7250 vs Intel Celeron 887

What is the difference between Intel Core 2 Duo T7250 and Intel Celeron 887. Find out which CPU has better performance.

Performance (Benchmarks)

254Geekbench 5 Single-Core Score249
452Geekbench 5 Multi-Core Score442
PassMark CPU Mark Rating727
PassMark Single Thread Rating694

Processor Specs

Intel Core 2 Duo T7250ProcessorIntel Celeron 887
2000 MHzFrequency1500 MHz
2Cores2
2Threads2
35 WTDP17 W
GPUIntel HD Graphics for 2nd Generation Intel Processors
MeromCodenameSandy Bridge
PBGA479, PPGA478PackageFCBGA1023

Geekbench 5 Benchmark

254Single-Core Score249
273Multi-Core Score411
Geekbench 5.4.0 Tryout for Linux x86 (64-bit)BenchmarkGeekbench 5.2.3 Tryout for Windows x86 (64-bit)

System Information

Linux Mint 20.1 Ulyssa 5.4.0-72-generic x86_64Operating SystemMicrosoft Windows 10 Home (64-bit)
Dell Inc. Latitude D630ModelAcer Aspire V5-531
Dell Inc. 0KU184MotherboardAcer Aspire V5-531
Power PlanParas suoritusteho

CPU Specifications

Intel Core 2 Duo T7250NameIntel Celeron 887
1 Processor, 2 CoresTopology1 Processor, 2 Cores
GenuineIntel Family 6 Model 15 Stepping 13IdentifierGenuineIntel Family 6 Model 42 Stepping 7
2.00 GHzBase Frequency1.50 GHz
Maximum Frequency1.50 GHz
PackageSocket 1023 FCBGA
CodenameSandy Bridge
32.0 KB x 2L1 Instruction Cache32.0 KB x 1
32.0 KB x 2L1 Data Cache32.0 KB x 1
2.00 MB x 1L2 Cache256 KB x 1
L3 Cache2.00 MB x 1

Memory Information

3.83 GBSize4.00 GB
Frequency665 MHz
TypeDDR3 SDRAM
Channels1

Geekbench 5 result (single)

254Single-Core Score249
40Crypto Score32
295Integer Score259
202Floating Point Score 265
40
70.6 MB/sec
AES-XTS32
55.8 MB/sec
320
1.62 MB/sec
Text Compression (LZMA)340
1.72 MB/sec
340
16.1 Mpixels/sec
Image Compression270
12.8 Mpixels/sec
171
482.1 KTE/sec
Navigation (using Dijkstra's algorithm)252
711.2 KTE/sec
301
353.7 KElements/sec
HTML5226
265.6 KElements/sec
405
126.9 Krows/sec
SQLite226
70.7 Krows/sec
322
17.5 Mpixels/sec
PDF Rendering242
13.1 Mpixels/sec
258
82.1 KB/sec
Text Rendering254
80.9 KB/sec
352
2.74 Klines/sec
Clang265
2.06 Klines/sec
253
2.93 images/sec
Camera271
3.14 images/sec
130
162.8 Kpairs/sec
N-Body Physics245
306.5 Kpairs/sec
322
1993.1 FPS
Rigid Body Physics298
1845.5 FPS
75
4.13 Mpixels/sec
Gaussian Blur216
11.9 Mpixels/sec
300
2.31 images/sec
Face Detection298
2.29 images/sec
376
9.26 Mpixels/sec
Horizon Detection301
7.42 Mpixels/sec
360
17.7 Mpixels/sec
Image Inpainting413
20.2 Mpixels/sec
610
8.31 Mpixels/sec
HDR470
6.40 Mpixels/sec
356
285.5 Kpixels/sec
Ray Tracing267
214.4 Kpixels/sec
107
960.1 pixels/sec
Structure from Motion163
1.46 Kpixels/sec
138
4.42 Words/sec
Speech Recognition260
8.32 Words/sec
57
2.20 images/sec
Machine Learning143
5.51 images/sec

Geekbench 5 result (multi)

273Multi-Core Score411
42Crypto Score40
294Integer Score397
265Floating Point Score 503
42
73.3 MB/sec
AES-XTS40
69.7 MB/sec
353
1.79 MB/sec
Text Compression (LZMA)402
2.03 MB/sec
353
16.7 Mpixels/sec
Image Compression389
18.4 Mpixels/sec
279
785.8 KTE/sec
Navigation (using Dijkstra's algorithm)371
1.05 MTE/sec
252
296.2 KElements/sec
HTML5409
480.4 KElements/sec
394
123.5 Krows/sec
SQLite383
119.9 Krows/sec
359
19.5 Mpixels/sec
PDF Rendering417
22.6 Mpixels/sec
225
71.5 KB/sec
Text Rendering413
131.6 KB/sec
355
2.77 Klines/sec
Clang407
3.17 Klines/sec
167
1.94 images/sec
Camera382
4.43 images/sec
117
146.4 Kpairs/sec
N-Body Physics364
455.7 Kpairs/sec
373
2308.4 FPS
Rigid Body Physics498
3087.5 FPS
289
15.9 Mpixels/sec
Gaussian Blur509
28.0 Mpixels/sec
392
3.01 images/sec
Face Detection531
4.09 images/sec
430
10.6 Mpixels/sec
Horizon Detection546
13.5 Mpixels/sec
398
19.5 Mpixels/sec
Image Inpainting848
41.6 Mpixels/sec
655
8.93 Mpixels/sec
HDR965
13.2 Mpixels/sec
456
365.8 Kpixels/sec
Ray Tracing657
527.8 Kpixels/sec
155
1.39 Kpixels/sec
Structure from Motion356
3.19 Kpixels/sec
184
5.87 Words/sec
Speech Recognition448
14.3 Words/sec
63
2.45 images/sec
Machine Learning227
8.77 images/sec