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Celeron G1610T vs Core i5-M 540


Description
The G1610T is based on Ivy Bridge architecture while the i5-M 540 is based on Westmere.

Using the multithread performance as a reference, the G1610T gets a score of 38.6 k points while the i5-M 540 gets 29.5 k points.

Summarizing, the G1610T is 1.3 times faster than the i5-M 540. To get a proper comparison between both models, take a look to the data shown below.

Specs
CPUID
306a9
20652
Core
Ivy Bridge
Arrandale
Architecture
Base frecuency
2.3 GHz
1.2 GHz
Boost frecuency
2.3 GHz
2.8 GHz
Socket
LGA 1155
FC-PGA10
Cores/Threads
2/2
2/4
TDP
35 W
35 W
Cache L1 (d+i)
32+32 kB
2x32+2x32 kB
Cache L2
256 kB
2x256 kB
Cache L3
2048 kB
3072 kB
Date
December 2012
January 2010
Mean monothread perf.
20.84k points
15.05k points
Mean multithread perf.
38.59k points
29.54k points

SSE3 optimized benchmark
The benchmark in mode I (SSE) is optimized for the use of SIMD instructions with 128 bits register and the SSE set up to version 3. Nearly every modern CPU has support for this mode.
Monothread
G1610T
i5-M 540
Test#1 (Integers)
7.87k
6.7k (x0.85)
Test#2 (FP)
7.14k
4.54k (x0.64)
Test#3 (Generic, ZIP)
3.04k
2.48k (x0.81)
Test#1 (Memory)
2.79k
1.32k (x0.48)
TOTAL
20.84k
15.05k (x0.72)

Multithread

G1610T

i5-M 540
Test#1 (Integers)
15.12k
12.27k (x0.81)
Test#2 (FP)
14.05k
9.7k (x0.69)
Test#3 (Generic, ZIP)
5.94k
5.97k (x1.01)
Test#1 (Memory)
3.48k
1.59k (x0.46)
TOTAL
38.59k
29.54k (x0.77)

Performance/W
G1610T
i5-M 540
Test#1 (Integers)
432 points/W
351 points/W
Test#2 (FP)
401 points/W
277 points/W
Test#3 (Generic, ZIP)
170 points/W
171 points/W
Test#1 (Memory)
99 points/W
46 points/W
TOTAL
1103 points/W
844 points/W

Performance/GHz
G1610T
i5-M 540
Test#1 (Integers)
3423 points/GHz
2394 points/GHz
Test#2 (FP)
3102 points/GHz
1622 points/GHz
Test#3 (Generic, ZIP)
1323 points/GHz
885 points/GHz
Test#1 (Memory)
1211 points/GHz
473 points/GHz
TOTAL
9060 points/GHz
5373 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