ErP Lot 6 2010: ✓
ErP Lot 6 2013: ✓
ErP Lot 3 2014 & CEC: ✗
(EU) No 617/2013 Compliance
✗
Performance Summary 230V
Efficiency Rating
Noise Rating
A-
Average Efficiency (>1450 load combinations)
81.920%
Average Noise Output (>1450 Load Combinations)
26.56dBA
Average PF (>1450 Load Combinations)
0.934
Efficiency With 10W (≤500W) or 2% (>500W) Load
0.000%
Standby Power Consumption
0.1537W
12V Ripple (Full Load)
49.44mV
5V Ripple (Full Load)
39.18mV
3.3V Ripple (Full Load)
83.62mV
5VSB Ripple (Full Load)
32.14mV
12V Load Regulation
1.70%
5V Load Regulation
4.99%
3.3V Load Regulation
3.90%
5VSB Load Regulation
5.33%
Inrush Current
89.260A
12V Transient Response (150%)
0.00V
5V Transient Response (150%)
V
3.3V Transient Response (150%)
V
5VSB Transient Response (150%)
V
Hold-Up Time & Power Ok Signal
8.70ms
AC Loss to PWR_OK Hold Up Time
15.80ms
PWR_OK Inactive to DC Loss Delay
-7.10ms
PSU Timings: T1 (20% / 100%)
60.0ms
56.0ms
PSU Timings: T3 (20% / 100%)
270.0ms
286.0ms
OPP (25.80°C / 0.00°C)
104.36%
0.00%
Hold-Up Time & Power Ok Signal
Hold-Up Time (ms)
8.7
AC Loss to PWR_OK Hold Up Time (ms)
15.8
PWR_OK Inactive to DC Loss Delay (ms)
-7.1
Vampire Power
Tables 230V
Graphs 230V
INFO
This graph is generated by the PPA Standby Power Analysis software which takes full control of the power analyzer during the whole procedure. This application features all of the EN50564 & IEC62301 test limits for standby power software testing
Efficiency Graph
230V
INFO
This graph depicts the PSU`s efficiency throughout its entire operational range. For the generation of the efficiency and noise graphs we set our loaders to auto mode through our custom-made software before trying thousands of possible load combinations
Noise Graph
230V
INFO
The PSU`s noise in its entire operational range and under 30-32 °C ambient is depicted in this graph. The X axis represents the load on the +12V rail(s) while the Y axis is the load on the minor rails
Indicative Performance
Efficiency under high ambient temperature
INFO
The PSU`s efficiency under high ambient temperatures with 115V and 230V input. For this graph the results of the 10-110% load regulation table are used
5VSB Efficiency
INFO
This graph depicts the efficiency levels of the 5VSB rail with 115V and 230V input
5VSB Efficiency (ERP LOT 3/6 & CEC) 230V
Test #
5VSB
DC/AC (Watts)
Efficiency
PF/AC Volts
1
0.045A
0.231
48.632%
0.014
5.147V
0.475
230.30V
2
0.090A
0.463
58.166%
0.024
5.144V
0.796
230.31V
3
0.550A
2.817
71.443%
0.110
5.122V
3.943
230.30V
4
1.000A
5.095
73.638%
0.177
5.095V
6.919
230.31V
5
1.500A
7.607
74.258%
0.233
5.072V
10.244
230.31V
6
2.499A
12.554
74.447%
0.305
5.023V
16.863
230.31V
Supplementary Tests (For Reference)
Typical Load Tests 230V
Test #
12V
5V
3.3V
5VSB
DC/AC (Watts)
Efficiency
Fan Speed (RPM)
PSU Noise (dB[A])
Temps (In/Out)
PF/AC Volts
1
1.471A
1.977A
1.979A
0.984A
39.986
75.801%
939
21.7
30.12°C
0.579
12.503V
5.059V
3.333V
5.078V
52.751
33.11°C
230.25V
2
3.936A
2.979A
2.981A
1.187A
80.009
82.109%
939
21.7
30.77°C
0.831
12.478V
5.037V
3.319V
5.052V
97.442
34.19°C
230.25V
3
6.750A
3.476A
3.491A
1.392A
119.946
84.181%
940
21.7
31.26°C
0.889
12.431V
5.033V
3.307V
5.027V
142.485
35.93°C
230.26V
4
9.591A
3.977A
4.007A
1.599A
159.979
84.662%
951
21.3
31.58°C
0.929
12.385V
5.028V
3.294V
5.003V
188.961
36.71°C
230.26V
5
12.087A
5.000A
5.032A
1.809A
200.003
84.350%
964
21.2
32.22°C
0.948
12.368V
5.001V
3.280V
4.976V
237.110
37.84°C
230.28V
6
14.580A
6.038A
6.064A
2.000A
239.848
83.750%
1298
28.3
32.70°C
0.958
12.356V
4.969V
3.265V
4.948V
286.387
38.83°C
230.28V
7
17.081A
7.097A
7.115A
2.236A
280.017
83.024%
1441
31.0
33.39°C
0.964
12.347V
4.933V
3.248V
4.919V
337.272
40.25°C
230.29V
8
19.580A
8.002A
8.163A
2.452A
319.202
82.310%
1512
32.4
33.93°C
0.967
12.339V
4.902V
3.232V
4.892V
387.805
41.57°C
230.29V
9
22.525A
8.712A
8.696A
2.461A
359.918
81.654%
1571
33.3
34.62°C
0.970
12.317V
4.878V
3.218V
4.875V
440.786
42.81°C
230.30V
10
25.449A
9.264A
9.265A
2.577A
399.985
80.812%
1734
36.8
35.09°C
0.973
12.291V
4.858V
3.204V
4.851V
494.957
44.28°C
230.31V
11
28.814A
9.266A
9.302A
2.586A
439.881
79.873%
1811
37.3
35.78°C
0.975
12.240V
4.856V
3.193V
4.834V
550.725
45.54°C
230.31V
CL1
0.000A
00.000A
00.000A
00.000A
0000.00
00.000%
0
0
00.0°C
0.000
00.000V
00.000V
00.000V
00.000V
0000.00
00.0°C
000.0V
CL2
33.004A
1.001A
1.001A
1.000A
405.324
82.097%
1494
32.0
32.14°C
0.973
11.875V
5.188V
3.243V
4.962V
493.714
37.53°C
230.30V
The results above are not used in the certification process
Light Load Tests 230V
Test #
12V
5V
3.3V
5VSB
DC/AC (Watts)
Efficiency
Fan Speed (RPM)
PSU Noise (dB[A])
PF/AC Volts
1
1.191A
0.488A
0.493A
0.195A
19.974
69.705%
906
19.4
0.404
12.447V
5.122V
3.347V
5.131V
28.655
230.21V
2
2.384A
0.978A
0.989A
0.391A
39.964
77.916%
913
19.3
0.570
12.445V
5.105V
3.340V
5.114V
51.291
230.22V
3
3.582A
1.474A
1.483A
0.589A
59.996
81.577%
921
18.7
0.708
12.437V
5.091V
3.332V
5.096V
73.545
230.23V
4
4.776A
1.969A
1.984A
0.788A
79.948
83.326%
926
18.9
0.825
12.427V
5.079V
3.324V
5.077V
95.946
230.24V
The results above are not used in the certification process
Ripple Measurements 230V
Test
12V
5V
3.3V
5VSB
Pass/Fail
10% Load
11.80mV
10.60mV
28.50mV
7.50mV
Pass
20% Load
16.50mV
16.50mV
38.10mV
13.00mV
Pass
30% Load
14.20mV
14.60mV
34.60mV
12.20mV
Pass
40% Load
16.00mV
16.50mV
43.20mV
14.30mV
Pass
50% Load
17.00mV
18.00mV
43.40mV
15.40mV
Pass
60% Load
26.40mV
24.40mV
46.60mV
24.30mV
Pass
70% Load
31.10mV
27.40mV
62.00mV
27.60mV
Fail
80% Load
38.40mV
30.70mV
74.20mV
28.70mV
Fail
90% Load
41.60mV
35.30mV
76.40mV
31.10mV
Fail
100% Load
49.40mV
39.20mV
83.60mV
32.10mV
Fail
110% Load
57.40mV
42.50mV
83.00mV
33.40mV
Fail
Crossload1
0.00mV
0.00mV
0.00mV
0.00mV
Pass
Crossload2
37.50mV
30.00mV
37.10mV
12.30mV
Pass
The results above are not used in the certification process
Kolink Core 500W
Top side
Power specifications label
All data and graphs included in this test report can be used by any individual on the following conditions: › It should be mentioned that the test results are provided by Cybenetics › The link to the original test results document should be provided in any case
Cybenetics offers the ETA and Lambda voluntary certification programs, through which the efficient and silent power supplies are promoted