The voltage of 3.3V rail drops low (<3.14V) during high power transient testing. As a result, this unit cannot get ATXv3.1 certification from Cybenetics.
Engineer Name
Georgios Theodoros Sarimpalas
Authorized By the Laboratory Technical Manager
Aristeidis Bitziopoulos
Signature
Cables and Connectors(Non-accredited measurements)
Modular Cables
Description
Cable Count
Connector Count (Total)
Gauge
Cable Type
ATX connector 20+4 pin (600mm)
1
1
18-22AWG
Tinned Copper
4+4 pin EPS12V (750mm)
2
2
18AWG
Tinned Copper
6+2 pin PCIe (600mm)
6
6
16-18AWG
Tinned Copper
12+4 pin PCIe (600mm) (600W)
2
2
16-24AWG
Tinned Copper
SATA (590mm+150mm+150mm)
3
9
18AWG
Tinned Copper
SATA (590mm+150mm) / 4-pin Molex (+150mm)
2
4 / 2
18AWG
Tinned Copper
Protection Features(Manufacturer)
Over Power Protection
✓
Over Current (+12V) Protection
✓
Over Temperature Protection
✓
Short Circuit Protection
✓
Surge Protection
✓
Inrush Current Protection
✓
Fan Failure Protection
✗
Power Specifications
Rail
3.3V
5V
12V
5VSB
-12V
Max. Power
Amps
25
25
100
3
0.3
Watts
125
1200
15
3.6
Total Max. Power (W)
1200
Test Results
Temperature & Compliance Info
Temperature Range (°C /°F)
30-32 / 86-89.6
ErP Lot 3/6 Ready
✓
(EU) No 617/2013 Compliance
✓
ALPM (Alternative Low Power Mode) compatible
✓
Performance Summary
Accredited
Average Efficiency (>1450 load combinations)
90.433%
Average Noise Output (>1450 Load Combinations)
26.27dBA
Average PF (>1450 Load Combinations)
0.982
Efficiency With 10W (≤500W) or 2% (>500W) Load
76.858%
Standby Power Consumption
0.0629W
Non-Accredited
12V Ripple (Full Load)
30.73mV
5V Ripple (Full Load)
17.93mV
3.3V Ripple (Full Load)
15.62mV
5VSB Ripple (Full Load)
17.81mV
12V Load Regulation
0.84%
5V Load Regulation
0.49%
3.3V Load Regulation
2.69%
5VSB Load Regulation
2.71%
Inrush Current
23.800A
Accredited
Average Efficiency (>1450 load combinations)
92.154%
Average Noise Output (>1450 Load Combinations)
26.22dBA
Average PF (>1450 Load Combinations)
0.951
Efficiency With 10W (≤500W) or 2% (>500W) Load
75.423%
Standby Power Consumption
0.1314W
Non-Accredited
12V Ripple (Full Load)
34.13mV
5V Ripple (Full Load)
19.01mV
3.3V Ripple (Full Load)
15.77mV
5VSB Ripple (Full Load)
17.60mV
12V Load Regulation
0.87%
5V Load Regulation
0.57%
3.3V Load Regulation
2.56%
5VSB Load Regulation
2.65%
Inrush Current
50.650A
12V Transient Response (200%)
11.32V
5V Transient Response (200%)
4.947V
3.3V Transient Response (200%)
3.088V
5VSB Transient Response (200%)
4.983V
Hold-Up Time & Power Ok Signal
15.40ms
AC Loss to PWR_OK Hold Up Time
11.50ms
PWR_OK Inactive to DC Loss Delay
3.90ms
PSU Timings: T1 (20% / 100%)
49.0ms
49.0ms
PSU Timings: T3 (20% / 100%)
123.0ms
123.0ms
12V OCP (31.5°C / 45.6°C)
129.00A (129.00%), 12.037V
125.40A (125.40%), 12.039V
5V OCP (31.5°C / 45.6°C)
33.6A (134.40%), 5.068V
33.4A (133.60%), 5.074V
3.3V OCP (31.5°C / 45.6°C)
34.2A (136.80%), 3.232V
33.9A (135.60%), 3.23V
5VSB OCP (31.5°C / 45.6°C)
4.9A (163.33%), 5.111V
4.7A (156.67%), 5.112V
OPP (31.01°C / 43.82°C)
128.22%
123.22%
Hold-Up Time & Power Ok Signal
Hold-Up Time (ms)
15.4
AC Loss to PWR_OK Hold Up Time (ms)
11.5
PWR_OK Inactive to DC Loss Delay (ms)
3.9
待機電源消耗
Tables
Detailed Results
Average
Min
Limit Min
Max
Limit Max
Result
Mains Voltage RMS:
115.00 V
114.97 V
113.85 V
115.04 V
116.15 V
PASS
Mains Frequency:
60.00 Hz
59.97 Hz
59.40 Hz
60.02 Hz
60.60 Hz
PASS
Mains Voltage CF:
1.419
1.418
1.340
1.421
1.490
PASS
Mains Voltage THD:
0.13 %
0.09 %
N/A
0.19 %
2.00 %
PASS
Real Power:
0.063 W
0.042 W
N/A
0.090 W
N/A
N/A
Apparent Power:
10.204 W
10.106 W
N/A
10.308 W
N/A
N/A
Power Factor:
0.007
N/A
N/A
N/A
N/A
N/A
Detailed Results
Average
Min
Limit Min
Max
Limit Max
Result
Mains Voltage RMS:
230.92 V
230.82 V
227.70 V
230.97 V
232.30 V
PASS
Mains Frequency:
50.00 Hz
49.99 Hz
49.50 Hz
50.01 Hz
50.50 Hz
PASS
Mains Voltage CF:
1.420
1.419
1.340
1.421
1.490
PASS
Mains Voltage THD:
0.17 %
0.14 %
N/A
0.24 %
2.00 %
PASS
Real Power:
0.131 W
0.083 W
N/A
0.305 W
N/A
N/A
Apparent Power:
34.811 W
34.559 W
N/A
35.095 W
N/A
N/A
Power Factor:
0.003
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
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
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