Intel Celeron N2840 vs Intel Core 2 Duo T5270

What is the difference between Intel Celeron N2840 and Intel Core 2 Duo T5270. Find out which CPU has better performance.

Performance (Benchmarks)

214Geekbench 5 Single-Core Score198
384Geekbench 5 Multi-Core Score349
579PassMark CPU Mark Rating
671PassMark Single Thread Rating

Processor Specs

Intel Celeron N2840ProcessorIntel Core 2 Duo T5270
2160 MHzFrequency1400 MHz
2580 MHzMaximum Frequency
2Cores2
2Threads2
7 WTDP35 W
Intel HD Graphics for Intel Atom Processor Z3700 SeriesGPU
Bay Trail-M, SilvermontCodenameMerom
Socket 1170 BGAPackagePPGA478

Geekbench 5 Benchmark

218Single-Core Score199
358Multi-Core Score359
Geekbench 5.4.1 Tryout for Windows x86 (64-bit)BenchmarkGeekbench 5.3.1 Tryout for Windows x86 (64-bit)

System Information

Microsoft Windows 10 Home (64-bit)Operating SystemMicrosoft Windows 10 Pro N (64-bit)
Hewlett-Packard HP Stream Notebook PC 13ModelHewlett-Packard HP 540
Hewlett-Packard 802AMotherboardHewlett-Packard 3618
BalancedPower PlanBalanced

CPU Specifications

Intel Celeron N2840NameIntel Core 2 Duo T5270
1 Processor, 2 CoresTopology1 Processor, 2 Cores
GenuineIntel Family 6 Model 55 Stepping 8IdentifierGenuineIntel Family 6 Model 15 Stepping 13
2.17 GHzBase Frequency1.40 GHz
2581 MHzMaximum Frequency1.40 GHz
Socket 1170 BGAPackageSocket P (478)
Bay Trail-MCodenameMerom
32.0 KB x 2L1 Instruction Cache32.0 KB x 2
24.0 KB x 2L1 Data Cache32.0 KB x 2
1.00 MB x 1L2 Cache2.00 MB x 1

Memory Information

1.89 GBSize4.00 GB
666 MHzFrequency329 MHz
DDR3 SDRAMTypeDDR2 SDRAM
2Channels2

Geekbench 5 result (single)

218Single-Core Score199
33Crypto Score28
247Integer Score216
185Floating Point Score 192
33
56.8 MB/sec
AES-XTS28
49.3 MB/sec
312
1.58 MB/sec
Text Compression (LZMA)314
1.59 MB/sec
326
15.4 Mpixels/sec
Image Compression260
12.3 Mpixels/sec
276
778.8 KTE/sec
Navigation (using Dijkstra's algorithm)217
613.1 KTE/sec
229
269.3 KElements/sec
HTML5200
234.3 KElements/sec
235
73.5 Krows/sec
SQLite226
70.9 Krows/sec
269
14.6 Mpixels/sec
PDF Rendering206
11.2 Mpixels/sec
231
73.5 KB/sec
Text Rendering193
61.6 KB/sec
194
1.51 Klines/sec
Clang200
1.56 Klines/sec
189
2.19 images/sec
Camera159
1.85 images/sec
127
158.9 Kpairs/sec
N-Body Physics108
134.9 Kpairs/sec
230
1425.7 FPS
Rigid Body Physics214
1323.0 FPS
101
5.55 Mpixels/sec
Gaussian Blur123
6.78 Mpixels/sec
191
1.47 images/sec
Face Detection231
1.78 images/sec
232
5.72 Mpixels/sec
Horizon Detection260
6.40 Mpixels/sec
313
15.4 Mpixels/sec
Image Inpainting292
14.3 Mpixels/sec
411
5.60 Mpixels/sec
HDR411
5.60 Mpixels/sec
193
155.4 Kpixels/sec
Ray Tracing243
195.0 Kpixels/sec
157
1.41 Kpixels/sec
Structure from Motion141
1.27 Kpixels/sec
188
6.01 Words/sec
Speech Recognition224
7.17 Words/sec
89
3.46 images/sec
Machine Learning81
3.14 images/sec

Geekbench 5 result (multi)

358Multi-Core Score359
54Crypto Score52
380Integer Score385
362Floating Point Score 353
54
95.0 MB/sec
AES-XTS52
91.2 MB/sec
401
2.03 MB/sec
Text Compression (LZMA)542
2.74 MB/sec
407
19.3 Mpixels/sec
Image Compression442
20.9 Mpixels/sec
340
959.7 KTE/sec
Navigation (using Dijkstra's algorithm)333
939.2 KTE/sec
357
419.5 KElements/sec
HTML5358
419.9 KElements/sec
450
140.9 Krows/sec
SQLite437
137.1 Krows/sec
470
25.5 Mpixels/sec
PDF Rendering399
21.6 Mpixels/sec
368
117.3 KB/sec
Text Rendering319
101.7 KB/sec
358
2.79 Klines/sec
Clang409
3.19 Klines/sec
297
3.44 images/sec
Camera289
3.34 images/sec
214
268.3 Kpairs/sec
N-Body Physics212
265.9 Kpairs/sec
500
3100.5 FPS
Rigid Body Physics388
2402.4 FPS
265
14.6 Mpixels/sec
Gaussian Blur338
18.6 Mpixels/sec
357
2.75 images/sec
Face Detection440
3.39 images/sec
444
10.9 Mpixels/sec
Horizon Detection455
11.2 Mpixels/sec
531
26.1 Mpixels/sec
Image Inpainting484
23.7 Mpixels/sec
798
10.9 Mpixels/sec
HDR735
10.0 Mpixels/sec
398
319.8 Kpixels/sec
Ray Tracing452
362.8 Kpixels/sec
302
2.71 Kpixels/sec
Structure from Motion254
2.27 Kpixels/sec
358
11.4 Words/sec
Speech Recognition344
11.0 Words/sec
171
6.63 images/sec
Machine Learning134
5.18 images/sec