21.5A (143.33%), 3.135V *Voltage Drop (3.025V @ 28.8A) - Broke
5VSB OCP (30.4°C / °C)
4.4A (176.00%), 4.814V
OPP (0.00°C / 0.00°C)
0.00%
0.00%
Hold-Up Time & Power Ok Signal
Hold-Up Time (ms)
23.5
AC Loss to PWR_OK Hold Up Time (ms)
27.5
PWR_OK Inactive to DC Loss Delay (ms)
-4
Stromverbrauch im Ruhezustand
Tables
Detailed Results
Average
Min
Limit Min
Max
Limit Max
Result
Mains Voltage RMS:
114.87 V
114.82 V
113.85 V
114.91 V
116.15 V
PASS
Mains Frequency:
60.00 Hz
59.98 Hz
59.40 Hz
60.02 Hz
60.60 Hz
PASS
Mains Voltage CF:
1.416
1.416
1.340
1.417
1.490
PASS
Mains Voltage THD:
0.14 %
0.11 %
N/A
0.18 %
2.00 %
PASS
Real Power:
0.081 W
0.059 W
N/A
0.106 W
N/A
N/A
Apparent Power:
5.064 W
5.037 W
N/A
5.090 W
N/A
N/A
Power Factor:
0.015
N/A
N/A
N/A
N/A
N/A
Graphs
Efficiency Graph
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
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 EN55032 & CISPR 32
NEUTRAL
PHASE
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