AMD Athlon II Neo N36L vs Intel Celeron SU2300

What is the difference between AMD Athlon II Neo N36L and Intel Celeron SU2300. Find out which CPU has better performance.

Performance (Benchmarks)

167Geekbench 5 Single-Core Score164
315Geekbench 5 Multi-Core Score290
PassMark CPU Mark Rating445
PassMark Single Thread Rating500

Processor Specs

AMD Athlon II Neo N36LProcessorIntel Celeron SU2300
1300 MHzFrequency1200 MHz
2Cores2
2Threads2
12 WTDP10 W
ChamplainCodenamePenryn
Socket ASB2PackageBGA956

Geekbench 5 Benchmark

167Single-Core Score165
313Multi-Core Score284
Geekbench 5.2.5 for Windows x86 (64-bit)BenchmarkGeekbench 5.2.3 Tryout for Windows x86 (64-bit)

System Information

Microsoft Windows 10 Pro (64-bit)Operating SystemMicrosoft Windows 10 Pro (64-bit)
HP ProLiant MicroServerModelGeneric
MotherboardZOTAC MCP7A
BalancedPower PlanBalanced

CPU Specifications

AMD Athlon II Neo N36LNameIntel Celeron SU2300
1 Processor, 2 CoresTopology1 Processor, 2 Cores
AuthenticAMD Family 16 Model 6 Stepping 3IdentifierGenuineIntel Family 6 Model 23 Stepping 10
1.30 GHzBase Frequency1.20 GHz
1.30 GHzMaximum Frequency1.20 GHz
Socket ASB2PackageSocket P (478)
ChamplainCodenamePenryn
64.0 KB x 2L1 Instruction Cache32.0 KB x 2
64.0 KB x 2L1 Data Cache32.0 KB x 2
1.00 MB x 2L2 Cache1.00 MB x 1

Memory Information

16.00 GBSize4.00 GB
399 MHzFrequency533 MHz
DDR3 SDRAMTypeDDR3 SDRAM
2Channels2

Geekbench 5 result (single)

167Single-Core Score165
25Crypto Score23
193Integer Score179
133Floating Point Score 158
25
44.3 MB/sec
AES-XTS23
40.4 MB/sec
257
1.30 MB/sec
Text Compression (LZMA)237
1.20 MB/sec
211
10.00 Mpixels/sec
Image Compression209
9.89 Mpixels/sec
212
598.3 KTE/sec
Navigation (using Dijkstra's algorithm)199
559.8 KTE/sec
195
229.5 KElements/sec
HTML5146
172.0 KElements/sec
185
58.0 Krows/sec
SQLite183
57.5 Krows/sec
187
10.1 Mpixels/sec
PDF Rendering186
10.1 Mpixels/sec
174
55.5 KB/sec
Text Rendering161
51.3 KB/sec
215
1.67 Klines/sec
Clang169
1.32 Klines/sec
127
1.47 images/sec
Camera140
1.62 images/sec
120
150.7 Kpairs/sec
N-Body Physics111
139.0 Kpairs/sec
171
1059.7 FPS
Rigid Body Physics181
1123.2 FPS
89
4.88 Mpixels/sec
Gaussian Blur97
5.34 Mpixels/sec
119
0.92 images/sec
Face Detection185
1.42 images/sec
138
3.41 Mpixels/sec
Horizon Detection211
5.19 Mpixels/sec
248
12.1 Mpixels/sec
Image Inpainting230
11.3 Mpixels/sec
279
3.81 Mpixels/sec
HDR318
4.33 Mpixels/sec
171
137.2 Kpixels/sec
Ray Tracing197
158.3 Kpixels/sec
82
730.4 pixels/sec
Structure from Motion111
994.9 pixels/sec
161
5.13 Words/sec
Speech Recognition169
5.40 Words/sec
50
1.93 images/sec
Machine Learning75
2.89 images/sec

Geekbench 5 result (multi)

313Multi-Core Score284
49Crypto Score41
364Integer Score303
248Floating Point Score 282
49
86.0 MB/sec
AES-XTS41
71.2 MB/sec
498
2.52 MB/sec
Text Compression (LZMA)397
2.01 MB/sec
409
19.3 Mpixels/sec
Image Compression382
18.1 Mpixels/sec
341
962.5 KTE/sec
Navigation (using Dijkstra's algorithm)273
769.7 KTE/sec
382
448.5 KElements/sec
HTML5280
328.9 KElements/sec
358
112.1 Krows/sec
SQLite332
104.1 Krows/sec
362
19.6 Mpixels/sec
PDF Rendering310
16.8 Mpixels/sec
324
103.3 KB/sec
Text Rendering256
81.5 KB/sec
414
3.23 Klines/sec
Clang287
2.23 Klines/sec
245
2.84 images/sec
Camera243
2.82 images/sec
228
285.2 Kpairs/sec
N-Body Physics192
239.7 Kpairs/sec
333
2060.2 FPS
Rigid Body Physics327
2028.0 FPS
126
6.90 Mpixels/sec
Gaussian Blur273
15.0 Mpixels/sec
234
1.80 images/sec
Face Detection338
2.60 images/sec
267
6.57 Mpixels/sec
Horizon Detection355
8.74 Mpixels/sec
466
22.9 Mpixels/sec
Image Inpainting376
18.4 Mpixels/sec
522
7.11 Mpixels/sec
HDR580
7.90 Mpixels/sec
343
275.4 Kpixels/sec
Ray Tracing359
287.9 Kpixels/sec
158
1.41 Kpixels/sec
Structure from Motion197
1.77 Kpixels/sec
298
9.52 Words/sec
Speech Recognition267
8.55 Words/sec
94
3.64 images/sec
Machine Learning106
4.11 images/sec