AMD A4-3305M vs Intel Core 2 Duo T5800

What is the difference between AMD A4-3305M and Intel Core 2 Duo T5800. Find out which CPU has better performance.

Performance (Benchmarks)

249Geekbench 5 Single-Core Score245
439Geekbench 5 Multi-Core Score419

Processor Specs

AMD A4-3305MProcessorIntel Core 2 Duo T5800
1900 MHzFrequency2000 MHz
2500 MHzMaximum Frequency
2Cores2
2Threads2
35 WTDP35 W
Radeon HD 6480GGPU
LlanoCodenameMerom
Socket FS1 (905)PackagePPGA478

Geekbench 5 Benchmark

249Single-Core Score244
456Multi-Core Score167
Geekbench 5.4.0 Tryout for Windows x86 (64-bit)BenchmarkGeekbench 5.4.1 Tryout for Linux x86 (64-bit)

System Information

Microsoft Windows 10 Pro (64-bit)Operating SystemPeppermint Ten
Hewlett-Packard HP ProBook 4535sModelSony Corporation VGN-FW21L
Hewlett-Packard 168BMotherboardSony Corporation VAIO
BalancedPower Plan

CPU Specifications

AMD A4-3305MNameIntel Core 2 Duo T5800
1 Processor, 2 CoresTopology1 Processor, 2 Cores
AuthenticAMD Family 18 Model 1 Stepping 0IdentifierGenuineIntel Family 6 Model 15 Stepping 13
1.90 GHzBase Frequency2.00 GHz
2.49 GHzMaximum Frequency
Socket FS1 (905)Package
LlanoCodename
64.0 KB x 2L1 Instruction Cache32.0 KB x 2
64.0 KB x 2L1 Data Cache32.0 KB x 2
512 KB x 2L2 Cache2.00 MB x 1

Memory Information

8.00 GBSize2.93 GB
665 MHzFrequency
DDR3 SDRAMType

Geekbench 5 result (single)

249Single-Core Score244
35Crypto Score31
283Integer Score279
212Floating Point Score 204
35
61.8 MB/sec
AES-XTS31
54.7 MB/sec
330
1.67 MB/sec
Text Compression (LZMA)245
1.24 MB/sec
343
16.2 Mpixels/sec
Image Compression331
15.7 Mpixels/sec
296
834.4 KTE/sec
Navigation (using Dijkstra's algorithm)260
734.0 KTE/sec
281
330.2 KElements/sec
HTML5285
334.4 KElements/sec
272
85.3 Krows/sec
SQLite375
117.6 Krows/sec
291
15.8 Mpixels/sec
PDF Rendering297
16.1 Mpixels/sec
254
80.9 KB/sec
Text Rendering252
80.4 KB/sec
279
2.18 Klines/sec
Clang336
2.61 Klines/sec
218
2.52 images/sec
Camera183
2.12 images/sec
148
185.6 Kpairs/sec
N-Body Physics136
169.9 Kpairs/sec
282
1744.5 FPS
Rigid Body Physics325
2011.6 FPS
146
8.05 Mpixels/sec
Gaussian Blur81
4.45 Mpixels/sec
176
1.36 images/sec
Face Detection259
1.99 images/sec
205
5.06 Mpixels/sec
Horizon Detection365
8.99 Mpixels/sec
392
19.2 Mpixels/sec
Image Inpainting342
16.8 Mpixels/sec
456
6.22 Mpixels/sec
HDR598
8.15 Mpixels/sec
262
210.3 Kpixels/sec
Ray Tracing330
264.8 Kpixels/sec
151
1.36 Kpixels/sec
Structure from Motion102
912.7 pixels/sec
199
6.37 Words/sec
Speech Recognition174
5.56 Words/sec
126
4.87 images/sec
Machine Learning62
2.38 images/sec

Geekbench 5 result (multi)

456Multi-Core Score167
73Crypto Score34
520Integer Score177
380Floating Point Score 169
73
126.8 MB/sec
AES-XTS34
60.2 MB/sec
635
3.21 MB/sec
Text Compression (LZMA)184
955.5 KB/sec
645
30.5 Mpixels/sec
Image Compression204
9.65 Mpixels/sec
492
1.39 MTE/sec
Navigation (using Dijkstra's algorithm)186
523.8 KTE/sec
509
597.6 KElements/sec
HTML5166
195.1 KElements/sec
514
161.0 Krows/sec
SQLite232
72.6 Krows/sec
557
30.2 Mpixels/sec
PDF Rendering221
12.0 Mpixels/sec
435
138.4 KB/sec
Text Rendering126
40.3 KB/sec
521
4.06 Klines/sec
Clang184
1.43 Klines/sec
419
4.85 images/sec
Camera126
1.46 images/sec
277
347.2 Kpairs/sec
N-Body Physics87
109.1 Kpairs/sec
504
3119.9 FPS
Rigid Body Physics222
1378.2 FPS
268
14.7 Mpixels/sec
Gaussian Blur175
9.63 Mpixels/sec
303
2.33 images/sec
Face Detection229
1.76 images/sec
354
8.73 Mpixels/sec
Horizon Detection215
5.30 Mpixels/sec
718
35.2 Mpixels/sec
Image Inpainting229
11.2 Mpixels/sec
853
11.6 Mpixels/sec
HDR355
4.84 Mpixels/sec
540
433.9 Kpixels/sec
Ray Tracing233
186.7 Kpixels/sec
282
2.53 Kpixels/sec
Structure from Motion121
1.08 Kpixels/sec
298
9.51 Words/sec
Speech Recognition178
5.69 Words/sec
215
8.30 images/sec
Machine Learning47
1.82 images/sec