Correctly testing power supplies is a complex procedure and KitGuru have configured a test bench which can deliver up to a 2,000 watt DC load.
We test ambient temperatures at 35c in our environment to greater reflect warmer internal chassis conditions.
We use combinations of the following hardware:
• SunMoon SM-268
• CSI3710A Programmable DC load (+3.3V and +5V outputs)
• CSI3711A Programmable DC load (+12V1, +12V2, +12V3, and +12V4)
• Extech Power Analyzer
• Extech MultiMaster MM570 digital multimeter
• SkyTronic DSL 2 Digital Sound Level Meter (6-130dBa)
• Digital oscilloscope (20M S/s with 12 Bit ADC)
• Variable Autotransformer, 1.4 KVA
We test in a single +12V configuration.
DC Output Load Regulation
|
||||||||||
Combined DC Load |
+3.3V
|
+5V
|
+12V
|
+5VSB
|
-12V | |||||
A
|
V
|
A
|
V
|
A
|
V
|
A
|
V
|
A | V | |
100W
|
0.90
|
3.34
|
0.90
|
5.15
|
7.35
|
12.15
|
0.50
|
5.01
|
0.20
|
-12.04
|
200W
|
1.60
|
3.34
|
1.64
|
5.14
|
15.13
|
12.13
|
1.00
|
5.01
|
0.20
|
-12.04
|
500W
|
3.20
|
3.34
|
3.25
|
5.14
|
38.60
|
12.13
|
1.50
|
5.02
|
0.20
|
-12.05
|
750W |
4.03
|
3.34
|
4.16
|
5.14
|
58.53
|
12.11
|
2.00
|
5.01
|
0.30
|
-12.04
|
1000W
|
5.45
|
3.34
|
5.51
|
5.14
|
78.13
|
12.11
|
2.50
|
5.02
|
0.30
|
-12.03
|
The load regulation of this power supply is really good, especially on the +12V rail. Class leading, really.
FSP Hydro Ti Pro 1000W Titanium | Maximum Load |
1205 |
The power supply managed to deliver 1205W, before safely shutting down.
Next we want to try Cross Loading. This basically means loads which are not balanced. If a PC for instance needs 500W on the +12V outputs but something like 30W via the combined 3.3V and +5V outputs then the voltage regulation can fluctuate badly.
Cross Load Testing | +3.3V | +5V | +12V | -12V | +5VSB | |||||
A | V | A | V | A | V | A | V | A | V | |
885W | 2.0 | 3.34 | 2.0 | 5.14 | 72.0 | 12.10 | 0.2 | -12.03 | 0.50 | 5.03 |
240W | 20.0 | 3.33 | 23.0 | 5.12 | 2.0 | 12.13 | 0.2 | -12.02 | 0.50 | 5.02 |
The FSP power supply delivered very strong results when dealing with our cross load testing. Rock solid under all conditions.
We then used an oscilloscope to measure AC ripple and noise present on the DC outputs. We set the oscilloscope time base to check for AC ripple at both high and low ends of the spectrum. ATX12V V2.2 specification for DC output ripple and noise is defined in the ATX 12V power supply design guide.
ATX12V Ver 2.2 Noise/Ripple Tolerance
|
|
Output
|
Ripple (mV p-p)
|
+3.3V
|
50
|
+5V
|
50
|
+12V1
|
120
|
+12V2
|
120
|
-12V
|
120
|
+5VSB
|
50
|
Obviously when measuring AC noise and ripple on the DC outputs, the cleaner (less recorded) means we have a better end result. We measured this AC signal amplitude to see how closely the unit complied with the ATX standard.
AC Ripple (mV p-p) | ||||
DC Load | +3.3V | +5V | +12V | 5VSB |
100W | 15 | 5 | 5 | 5 |
250W | 15 | 5 | 5 | 10 |
500W | 15 | 5 | 10 | 10 |
750W | 20 | 10 | 15 | 15 |
1000W | 20 | 10 | 20 | 15 |
Ripple noise suppression from this new FSP design is excellent, peaking at 20mV on the +12V Rail, and 20mV and 10mV on the +3.3V and +5V rails respectively. Well within industry rated parameters.
Efficiency (%)
|
|
100W
|
93.4
|
250W
|
94.6
|
500W
|
96.7
|
750W
|
95.6
|
1000W
|
94.8
|
The efficiency results are class leading, peaking at 96.7% between 45% and 55% load.
We take the issue of noise very seriously at KitGuru and this is why we have built a special home brew system as a reference point when we test noise levels of various components. Why do this? Well this means we can eliminate secondary noise pollution in the test room and concentrate on components we are testing. It also brings us slightly closer to industry standards, such as DIN 45635.
Today to test the Power Supply we have taken it into our acoustics room environment and have set our SkyTronic DSL 2 Digital Sound Level Meter (6-130dBa) one meter away from the unit. We have no other fans running so we can effectively measure just the noise from the unit itself.
As this can be a little confusing for people, here are various dBa ratings in with real world situations to help describe the various levels.
KitGuru noise guide
10dBA – Normal Breathing/Rustling Leaves
20-25dBA – Whisper
30dBA – High Quality Computer fan
40dBA – A Bubbling Brook, or a Refrigerator
50dBA – Normal Conversation
60dBA – Laughter
70dBA – Vacuum Cleaner or Hairdryer
80dBA – City Traffic or a Garbage Disposal
90dBA – Motorcycle or Lawnmower
100dBA – MP3 Player at maximum output
110dBA – Orchestra
120dBA – Front row rock concert/Jet Engine
130dBA – Threshold of Pain
140dBA – Military Jet takeoff/Gunshot (close range)
160dBA – Instant Perforation of eardrum
Noise (dBA)
|
|
100W
|
<28.0
|
250W
|
<28.0
|
500W
|
29.4
|
750W
|
30.6
|
1000W | 34.3 |
FSP have opted for a very relaxed fan profile. This is one of the benefits of having a unit with such high levels of efficiency, you can afford to run the fan slower as less heat is being pumped into the chassis. Even at full load, the fan, while audible is never intrusive.
Temperature (c)
|
||
Intake
|
Exhaust
|
|
100W
|
37
|
38
|
250W
|
38
|
41
|
500W
|
40
|
44
|
750W
|
45
|
51
|
1000W
|
46
|
55
|
No problems maintaining great temperatures inside the chassis. The very high levels of efficiency ensure that the fan never has to work too hard to maintain great ambient results. If you live in a hot and humid climate, this PSU should surely be on your shortlist.
Maximum load
|
Efficiency
|
1205W
|
93.8%
|
Pushing the PSU above its rated limits generates an efficiency level of close to 94%