Cables and Connectors(Non-accredited measurements)
Modular Cables
Description
Cable Count
Connector Count (Total)
Gauge
In Cable Capacitors
ATX connector 20+4 pin (600mm)
1
1
18-22AWG
No
4+4 pin EPS12V (660mm)
2
2
18AWG
No
6+2 pin PCIe (760mm)
6
6
18AWG
No
SATA (350mm+150mm+150mm+150mm)
1
4
18AWG
No
SATA (410mm+110mm+110mm+110mm)
1
4
18AWG
No
SATA (300mm+150mm)
1
2
18AWG
No
4 pin Molex (450mm+120mm+120mm)
1
3
18AWG
No
4 pin Molex (350mm+120mm)
1
2
18AWG
No
4 pin Molex Adapter / SATA (150mm+150mm)
1
2
18AWG
No
FDD Adapter (+100mm)
1
1
22AWG
No
AC Power Cord (1370mm) - C13 coupler
1
1
18AWG
-
Protection Features(Manufacturer)
Power Specifications
Rail
3.3V
5V
12V
5VSB
-12V
Max. Power
Amps
20
20
70
3
0.3
Watts
100
840
15
3.6
Total Max. Power (W)
850
Test Results
Temperature & Compliance Info
Temperature Range (°C /°F)
30-32 / 86-89.6
ErP Lot 3/6 Ready
✓
(EU) No 617/2013 Compliance
✓
Performance Summary 115V
Accredited
Average Efficiency (>1450 load combinations)
92.223%
Average Noise Output (>1450 Load Combinations)
10.68dBA
Average PF (>1450 Load Combinations)
0.989
Efficiency With 10W (≤500W) or 2% (>500W) Load
0.000%
Standby Power Consumption
0.0560W
Non-Accredited
12V Ripple (Full Load)
16.88mV
5V Ripple (Full Load)
5.41mV
3.3V Ripple (Full Load)
7.52mV
5VSB Ripple (Full Load)
6.01mV
12V Load Regulation
0.09%
5V Load Regulation
0.14%
3.3V Load Regulation
0.21%
5VSB Load Regulation
1.25%
Inrush Current
26.714A
Hold-Up Time & PWR_OK Signal
Hold-Up Time (ms)
26.2
AC Loss to PWR_OK Hold Up Time (ms)
21.4
PWR_OK Inactive to DC Loss Delay (ms)
4.8
Stromverbrauch im Ruhezustand
Tables 115V
Graphs 115V
Efficiency Graph
115V
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
115V
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.
Conducted Emissions EN 55032 & CISPR 32
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) 115V
Test #
5VSB
DC/AC (Watts)
Efficiency
PF/AC Volts
1
0.045A
0.224
66.272%
0.029
4.973V
0.338
115.27V
2
0.090A
0.447
72.447%
0.052
4.971V
0.617
115.28V
3
0.550A
2.723
79.994%
0.237
4.951V
3.404
115.26V
4
1.000A
4.931
79.919%
0.341
4.932V
6.170
115.26V
5
1.500A
7.366
80.065%
0.405
4.911V
9.200
115.26V
6
2.999A
14.543
78.692%
0.490
4.849V
18.481
115.24V
Protection Features
Supplementary Tests (For Reference)
Typical Load Tests 115V
Test #
12V
5V
3.3V
5VSB
DC/AC (Watts)
Efficiency
Fan Speed (RPM)
PSU Noise (dB[A])
Temps (In/Out)
PF/AC Volts
1
5.180A
1.986A
1.987A
0.998A
84.686
91.364%
0
<6.0
43.20°C
0.966
12.180V
5.032V
3.321V
5.011V
92.691
38.07°C
115.27V
2
11.357A
2.979A
2.980A
1.198A
169.185
93.639%
0
<6.0
43.51°C
0.990
12.178V
5.031V
3.320V
5.007V
180.678
38.18°C
115.16V
3
17.928A
3.478A
3.465A
1.399A
254.306
93.955%
395
10.5
38.54°C
0.996
12.177V
5.031V
3.319V
5.003V
270.669
44.55°C
115.03V
4
24.503A
3.976A
3.977A
1.601A
339.521
93.626%
395
10.5
38.83°C
0.992
12.175V
5.030V
3.318V
4.998V
362.636
44.93°C
115.02V
5
30.748A
4.971A
4.971A
1.802A
424.851
93.098%
435
10.7
38.98°C
0.992
12.175V
5.030V
3.317V
4.995V
456.347
45.33°C
114.91V
6
36.933A
5.966A
5.968A
2.004A
509.381
92.667%
290
9.0
40.18°C
0.993
12.173V
5.029V
3.316V
4.991V
549.688
46.75°C
114.80V
7
43.179A
6.961A
6.966A
2.206A
594.717
92.092%
415
10.0
41.44°C
0.995
12.173V
5.028V
3.316V
4.987V
645.784
48.48°C
114.77V
8
49.430A
7.957A
7.963A
2.408A
680.069
91.510%
490
13.3
42.30°C
0.995
12.172V
5.028V
3.315V
4.984V
743.166
49.76°C
114.64V
9
56.076A
8.455A
8.447A
2.408A
764.999
91.252%
590
17.4
43.92°C
0.996
12.171V
5.027V
3.314V
4.984V
838.337
52.03°C
114.53V
10
62.465A
8.954A
8.962A
3.020A
849.855
90.651%
900
29.6
45.17°C
0.997
12.169V
5.027V
3.314V
4.969V
937.498
53.52°C
114.49V
11
69.443A
8.954A
8.965A
3.020A
934.620
89.948%
1355
41.6
46.88°C
0.997
12.167V
5.027V
3.312V
4.968V
1039.063
55.55°C
114.35V
CL1
0.737A
12.002A
11.999A
0.000A
109.245
89.765%
460
11.9
43.78°C
0.980
12.181V
5.031V
3.324V
5.058V
121.701
47.82°C
115.22V
CL2
70.004A
1.001A
1.001A
1.000A
865.094
90.829%
900
29.6
45.20°C
0.997
12.167V
5.029V
3.313V
5.004V
952.443
50.78°C
114.47V
The results above are not used in the certification process
Light Load Tests 115V
Test #
12V
5V
3.3V
5VSB
DC/AC (Watts)
Efficiency
Fan Speed (RPM)
PSU Noise (dB[A])
PF/AC Volts
1
1.165A
0.491A
0.479A
0.199A
19.242
75.711%
0
<6.0
0.784
12.168V
5.037V
3.323V
5.032V
25.415
115.35V
2
2.414A
0.991A
0.990A
0.398A
39.677
86.416%
0
<6.0
0.902
12.179V
5.034V
3.321V
5.025V
45.914
115.32V
3
3.598A
1.486A
1.473A
0.598A
59.197
89.620%
0
<6.0
0.947
12.180V
5.033V
3.321V
5.021V
66.053
115.30V
4
4.848A
1.985A
1.987A
0.797A
79.633
91.190%
0
<6.0
0.962
12.180V
5.032V
3.321V
5.016V
87.326
115.28V
The results above are not used in the certification process
Ripple Measurements 115V
Test
12V
5V
3.3V
5VSB
Pass/Fail
10% Load
11.8 mV
3.2 mV
3.8 mV
2.5 mV
Pass
20% Load
14.1 mV
3.2 mV
4.1 mV
2.7 mV
Pass
30% Load
8.9 mV
3.4 mV
4.3 mV
3.1 mV
Pass
40% Load
9.9 mV
3.5 mV
4.7 mV
3.4 mV
Pass
50% Load
10.6 mV
4.2 mV
5.4 mV
4.3 mV
Pass
60% Load
12.1 mV
4.9 mV
5.8 mV
4.3 mV
Pass
70% Load
13.5 mV
5.1 mV
5.8 mV
4.5 mV
Pass
80% Load
14.9 mV
4.9 mV
6.6 mV
4.7 mV
Pass
90% Load
16.4 mV
5.0 mV
7.3 mV
5.4 mV
Pass
100% Load
16.9 mV
5.4 mV
7.5 mV
6.0 mV
Pass
110% Load
17.7 mV
5.8 mV
8.2 mV
6.6 mV
Pass
Crossload 1
13.0 mV
5.4 mV
7.2 mV
3.2 mV
Pass
Crossload 2
17.2 mV
3.4 mV
5.0 mV
5.3 mV
Pass
The results above are not used in the certification process
Seasonic Prime Titanium Ultra 850W
Top side
Power specifications label
ybenetics bietet die freiwilligen ETA- und Lambda-Zertifizierungsprogramme an, mit denen effiziente und leise Netzteile (PSU) beworben werden