In Win Power Man IP-S400GQ3-2 Review

Load Testing

Test 1 (73.89W Load)

Rail Load Voltage Ripple
12V 2.5A 12.2V 9.6mV
5V 4.89A 4.89V 14.0mV
3.3V 4.82A 3.28V 10.0mV
-12V 0.1A -11.79V 7.8mV
5Vsb 0.5A 5.0V 8.8mV
AC Power 81.26W
Efficiency 90.93%
Power Factor 0.87
Intake Temp 36°C
Exhaust Temp 37°C

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Test 2 (160.38W Load)

Rail Load Voltage Ripple
12V 9.4A 12.18V 13.4mV
5V 4.89A 4.89V 14.2mV
3.3V 4.82A 3.28V 11.2mV
-12V 0.1A -11.87V 11.8mV
5Vsb 1.0A 4.99V 10.6mV
AC Power 178.0W
Efficiency 90.10%
Power Factor 0.94
Intake Temp 36°C
Exhaust Temp 37°C

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Test 3 (199.96W Load)

Rail Load Voltage Ripple
12V 9.4A 12.17V 16.2mV
5V 9.72A 4.86V 14.4mV
3.3V 9.88A 3.26V 12.4mV
-12V 0.1A -11.9V 10.8mV
5Vsb 0.99A 4.97V 14.2mV
AC Power 219.16W
Efficiency 91.24%
Power Factor 0.94
Intake Temp 34°C
Exhaust Temp 36°C

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Test 4 (255.82W Load)

Rail Load Voltage Ripple
12V 14.0A 12.16V 19.0mV
5V 9.72A 4.86V 14.8mV
3.3V 9.88A 3.26V 13.4mV
-12V 0.1A -11.96V 17.2mV
5Vsb 0.99A 4.97V 13.0mV
AC Power 282.57W
Efficiency 90.53%
Power Factor 0.95
Intake Temp 33°C
Exhaust Temp 35°C

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Test 5 (311.19W Load)

Rail Load Voltage Ripple
12V 18.6A 12.14V 22.4mV
5V 9.72A 4.86V 14.8mV
3.3V 9.85A 3.25V 16.4mV
-12V 0.1A 12.02V 20.0mV
5Vsb 0.99A 4.97V 12.8mV
AC Power 345.11W
Efficiency 90.17%
Power Factor 0.95
Intake Temp 33°C
Exhaust Temp 35°C

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Test 6 (372.43W Load)

Rail Load Voltage Ripple
12V 23.2A 12.12V 26.2mV
5V 9.7A 4.85V 16.2mV
3.3V 9.85A 3.25V 19.2mV
-12V 0.2A -11.99V 28.8mV
5Vsb 1.98A 4.95V 15.2mV
AC Power 417.06%
Efficiency 89.30%
Power Factor 0.96
Intake Temp 33°C
Exhaust Temp 35°C

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Test 7 (407.54W Load)

Rail Load Voltage Ripple
12V 25.6A 12.12V 30.6mV
5V 9.7A 4.85V 17.6mV
3.3V 9.85A 3.25V 21.6mV
-12V 0.3A 11.96V 36.0mV
5Vsb 2.96A 4.94V 15.8mV
AC Power 459.7W
Efficiency 88.65%
Power Factor 0.96
Intake Temp 33°C
Exhaust Temp 35°C

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Overload Test (501.74W Load)

Rail Load Voltage Ripple
12V 30.3A 12.1V 44.2mV
5V 14.46A 4.82V 21.2mV
3.3V 14.58A 3.24V 28.8mV
-12V 0.3A -12.07V 44.4mV
5Vsb 2.95A 4.92V 19.2mV
AC Power 571.16W
Efficiency 87.85%
Power Factor 0.97
Intake Temp 35°C
Exhaust Temp 37°C

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The 12V rail started at 12.2V, and finished at 12.12V. This gives us a maximum deviation of 0.2V (1.67%) and a drop of 0.08V (0.67%). The 5V rail started at 4.89V and finished at 4.85V, giving us 0.15V (3%) regulation, and a drop of 0.04V (0.8%). Finally, the 3.3V rail managed 0.05V (1.52%) regulation and a 0.03V (0.91%) drop. Averaged out, we have 2.06% regulation and a 0.79% variation, which is an excellent result. The only power supply I have seen which could do better was the Seasonic SSP-350GT. The load was evenly distributed between the two rails, and both had similar readings, so I didn’t see then need to add the 12V2 section to the tables.

The efficiency was pretty much what I would expect from an 80plus gold certified product on 230V – just slightly better than the minimum requirements for 80plus gold. I was able to overload the power supply to 500W without incident. The drops in voltages were only slight, and the efficiency was still above the 87% requirement for 80plus gold (although it may not have been if the power supply was tested on 110V). This power supply also ran very cool. The difference between the intake and exhaust temperatures was only 2°C throughout the testing, even though the fan never seemed to be maxed out.

Rail Test 7 (407.54W) Overload Test (501.74W)
12V  400gq32-test7-12v  400gq32-OL-12v
5V  400gq32-test7-5v  400gq32-OL-5v
3.3V  400gq32-test7-3.3v  400gq32-OL-3.3v
-12V  400gq32-test7--12v  400gq32-OL--12v
5Vsb  400gq32-test7-5vsb  400gq32-OL-5vsb

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The ripple was well suppressed, staying below half the maximum allowed throughout the load testing. It was slightly above the half mark during the overload test on the 12V and 3.3V rails, but still well below the maximum.

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