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350W Power Subsystem 
Intel
®
 Server System R1304BTSSFAN/R1304BTLSFAN/R1304BTLSHBN TPS 
22 
Revision 2.0 
Intel order number G17455-004 
Table 21. AC Input Rating
 
Parameter 
Min
Rated
Max
Max Input AC Current
Line Voltage (110) 
90Vrms 
100-127 Vrms 
140Vrms 
6 Arms1 
Line Voltage (220) 
180Vrms 
200-240 Vrms 
264Vrms 
3 Arms2 
Frequency 
47 Hz 
50/60Hz 
63 Hz 
 
 
Notes: 
1.  Maximum input current at low input voltage range should be measured at 90 VAC at max load. 
2.  Maximum input current at high input voltage range should be measured at 180 VAC at max load.
 
 
 
4.7  Output Power/Currents 
The following tables define two power and current ratings for this 350-W power supply. The 
combined output power of all outputs should not exceed the rated output power. The power 
supply must meet both static and dynamic voltage regulation requirements for the minimum 
loading conditions. 
Table 22. Load Ratings 
Voltage 
Minimum  
Maximum 
 
Output Power
 
+3.3 V 
0.1 A 
10 A 
33W 
+5 V 
0.1 A 
16 A 
80W 
+12 V1 
0.75 A 
18 A 
216W 
+12 V2 
0.75 A 
18 A 
216W 
-12 V 
0 A 
0.5 A 
6W 
+5 VSB 
0.05 A 
2.5 A 
12.5W 
Notes: 
1.  The total current of +12V1/2 will not exceed 28A. 
2.  The total output for this PSU is 350W. 
3.  The total output of +3.3V&+5V will not exceed 100W 
 
4.8  Protection Circuits 
Protection circuits inside the power supply should cause only the power supply’s main outputs 
to shut down. If the power supply latches off due to a protection circuit tripping, an AC cycle 
OFF for 15sec min (with +5VSB/0.1A) and a PSON# cycle HIGH for 1sec shall be able to reset 
the power supply. 
4.8.1 
Over Current Protection (OCP) 
Each output shall have individual OCP protection circuits. The PSU shall shutdown and latch off 
after an over current condition occurs. Whereas OCP of +5VSB shall turn the power supply into 
“hiccup mode” until the OCP condition removed. The values are measured at the PSU harness 
connectors and shall not be damaged from repeated power cycling in this condition. There shall 
be current sensors and limit circuits to shut down the entire power supply if the limit is 
exceeded. The limits are listed below.