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Core i5-1035G1 vs Athlon 3000G


Description
The i5-1035G1 is based on Ice Lake architecture while the 3000G is based on Zen+.

Using the multithread performance as a reference, the i5-1035G1 gets a score of 171.6 k points while the 3000G gets 95.8 k points.

Summarizing, the i5-1035G1 is 1.8 times faster than the 3000G. To get a proper comparison between both models, take a look to the data shown below.

Specs
CPUID
706e5
810f81
Core
Ice Lake-U
Picasso
Architecture
Base frecuency
1 GHz
3.5 GHz
Boost frecuency
3.6 GHz
3.5 GHz
Socket
BGA 1526
AM4
Cores/Threads
4/8
2/4
TDP
15 W
35 W
Cache L1 (d+i)
4x32+4x48 kB
2x64+2x32 kB
Cache L2
4x512 kB
2x512 kB
Cache L3
6144 kB
4096 kB
Date
August 2019
November 2019
Mean monothread perf.
55.37k points
43.82k points
Mean multithread perf.
171.65k points
95.84k points

AVX2 optimized benchmark
The benchmark in mode III (AVX2), like AVX1, is optimized to used 256 bits registers beside the second version of the Advanced Vector Extensions (AVX). The first AVX2 compatible CPU was released in 2013.
Monothread
i5-1035G1
3000G
Test#1 (Integers)
21.5k
13.02k (x0.61)
Test#2 (FP)
17.71k
20.56k (x1.16)
Test#3 (Generic, ZIP)
7.92k
4.81k (x0.61)
Test#1 (Memory)
8.24k
5.43k (x0.66)
TOTAL
55.37k
43.82k (x0.79)

Multithread

i5-1035G1

3000G
Test#1 (Integers)
73.03k
27.29k (x0.37)
Test#2 (FP)
68.19k
49.37k (x0.72)
Test#3 (Generic, ZIP)
24.89k
13.57k (x0.55)
Test#1 (Memory)
5.54k
5.61k (x1.01)
TOTAL
171.65k
95.84k (x0.56)

Performance/W
i5-1035G1
3000G
Test#1 (Integers)
4869 points/W
780 points/W
Test#2 (FP)
4546 points/W
1411 points/W
Test#3 (Generic, ZIP)
1660 points/W
388 points/W
Test#1 (Memory)
369 points/W
160 points/W
TOTAL
11443 points/W
2738 points/W

Performance/GHz
i5-1035G1
3000G
Test#1 (Integers)
5972 points/GHz
3719 points/GHz
Test#2 (FP)
4919 points/GHz
5873 points/GHz
Test#3 (Generic, ZIP)
2201 points/GHz
1374 points/GHz
Test#1 (Memory)
2290 points/GHz
1553 points/GHz
TOTAL
15381 points/GHz
12519 points/GHz

Monothread performance graph
Monothread performance graphics gives the performance vs time. They are useful to measure the time it takes to the CPU to reach the maximum performance.

Usually, CPU's performance will be steady during these tests but if it has a slow frequency strategy, the first samples will show a lower score.


Test#1 (Integers) [points vs time]

grafica bm.hardlimit.com


Test#2 (FP) [points vs time]

grafica bm.hardlimit.com


Test#3 (Generic, ZIP) [points vs time]

grafica bm.hardlimit.com


Test#1 (Memory) [points vs time]

grafica bm.hardlimit.com

Multithread performance graph
Multithread graphs measure the performance against a heavy load during certain time.

If CPU's TDP doesn't limit the frequency and the machine is properly cooled, performance should remain steady vs time. Otherwise, the performance score will oscillate or decrease over time.


Test#1 (Integers) [points vs time]

grafica bm.hardlimit.com


Test#2 (FP) [points vs time]

grafica bm.hardlimit.com


Test#3 (Generic, ZIP) [points vs time]

grafica bm.hardlimit.com


Test#1 (Memory) [points vs time]

grafica bm.hardlimit.com

Hardlimit Benchmark Central - Ver. 3.11.4