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Silverstone ST56F

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1. AWG wire Orange 3 3V 13 1 3 3V Orange Orange 22AWG 3 3Vsense 13 Blue 18AWG 12VDC 14 2 3 3V Orange Black COM 15 3 COM Black Green 20AWG PS ON 16 4 5VDC Red Black COM 17 5 COM Black Black COM 18 6 5VDC Red Black COM 19 7 COM Black N C N C 20 8 PWRGOOD Grey 18AWG Red 5VDC 21 9 5Vsb Purple 18AWG Red 5VDC 22 10 12V1 Yellow Red 5VDC 23 11 12V1 Yellow Black COM 24 12 3 3V Orange 4PIN floppy connector FDD Red 5VDC 1 1 12V1 Yellow Black COM 2 2 COM Black Black COM 3 3 COM Black Yellow 12V1 4 4 5VDC Red SATA connector I8AWGwire Signal Pin Orange 3 3V 5 Black GND 4 Red 5V 3 Black GND 2 Yellow 12V1 1 EPS 12V 8PIN Connector 18AWG wire Sigal Pin Pin Signal 18AWG wire Yellow Black stripe 12V2 5 1 COM Black Yellow Black stripe 12V2 6 2 COM Black Yellow 12V1 7 3 COM Black Yellow 12V1 8 4 COM Black 6PIN PCI Express Connector 1 Yellow 12V1 4 GND Black Yellow 12V1 5 GND sense Black Yellow 12V1 6 GND Black 6PIN PCI Express Connector 2 Yellow 12V2 4 GND Black Yellow 12V2 5 GND sense Black Yellow 12V2 6 GND Black 10 FAN SPEED CONTROL Fan voltage varies with the ambient temperature or output power
2. C 7 1 Electrostatic Discharge ESD EN 61000 4 2 1998 7 2 Electrical Fast Transient Burst EFT B EN 61000 4 4 1998 7 3 Surge EN 61000 4 5 1998 7 4 Power Frequency Magnetic Field EN 61000 4 8 1998 7 5 Voltage Dips RN 61000 4 11 1998 7 6 Radiated Susceptibility EN 61000 4 3 1998 7 7 Conducted Susceptibility EN 61000 4 4 1998 7 8 Voltage Fluctuation EN 61000 3 3 1995 A1 2001 7 9 EN61000 3 2 2000 harmonic current emissions If applicable to sales in Japan or Europe the power supply shall meet the requirements of EN 61000 3 2 class D and the guidelines for the suppression of harmonics in appliances and general use equipment class D for harmonic line current content at full rated power 7 10 EN55022 Class B Radio interference CISPR 22 7 11 FCC Part 15 Subpart J class B 8 MTBF 8 1 MTBF mean time between failures calculation The demonstrated MTBF shall be 100 000 hours of continuous operation at 25 C full load 80 confidence limit and nominal line The MTBF of the power supply be calculated in accordance with MIL HDBK 217F The DC FAN is not included 9 MECHANICAL REQUIREMENTS 9 1 Physical dimension 150 x 86 x 140 mm W x H x D 9 2 Net weight 2 2 kg 9 3 Pin definition 4PIN molex connector HDD M B 24PIN connector 16AWGwire Signal Pin Pin Signal 16
3. SPECIFICATION SilverStone Strider STS6F Switching Power Supply With Active PFC PS 2 560W 1 AC INPUT 1 1 AC input requirements The input voltage current and frequency requirements for continuous operation are stated below Table 1 AC Input Line Requirements Vin Full range 90 100 240 264 VACrms Vin Frequency 47 63 Hz lin 10 5 5 Arms Power factor correction PF gt 0 96 at full load 1 2 Inrush current regulation 50 A 115Vrms 100 A 230Vrms at 25 C ambient cold start 2 DC OUTPUT 2 1 DC voltage regulation 3 3V 5 3 14 3 3 3 47 Volts 5V 5 4 75 5 5 25 Volts 12V1 5 11 4 12 12 6 Volts 12V2 5 11 4 12 12 6 Volts 12V 10 10 8 12 13 2 Volts 5VSB 5 4 75 5 5 25 Volts 2 2 Load ranges 2 2 1 560 Watts Load Ratings Notes 1 The maximum continuous total DC outputs power shall not exceed 560W 2 The maximum peak total DC output power shall not exceed 570W limited to duty cycle of 1 minute on 10 minutes off at 40 C ambient 3 The maximum continuous load on 5V and 3 3V outputs shall not exceed 180W 4 The maximum combined current for the 12V outputs shall be 36A 5 When 5V load is 28A 12V 12V1 and 12V2 minimum load is 2A 6 When the combined current for the 12V outputs is 29A the 5V minimum load is 5A 7 When the combined current for the 12V outputs is 22A the 5V minim
4. rent limits are exceeded the power supply shall shutdown and latch off Over Current Limit lout limit 12V1 19 5A minimum 23A maximum 12V2 19 5A minimum 23A maximum 5V 33A minimum 50A maximum 33A minimum 70A maximum 3 2 Over power protection The power supply will be shutdown and latch off when output power within 110 150 of rated DC output 3 3 Over voltage protection The over voltage sense circuitry and reference shall reside in packages that are separate and distinct from the regulator control circuitry and reference No single point fault shall be able to cause a sustained over voltage condition on any or all outputs The supply shall provide latch mode over voltage protection as defined in Table output Minimum 121 VDC 12 VDC 5 VDC 3 3 VDC 3 4Short circuit An output short circuit is defined as any output impedance of less than 0 1 ohms The power supply shall shut down and latch off for shorting the 3 3 VDC 5 VDC or 12 VDC rails to return or any other rail Shorts between main output rails and 5VSB shall not cause any damage to the power supply The power supply shall either shut down and latch off or fold back for shorting the negative rails 5VSB must be capable of being shorted indefinitely but when the short is removed the power supply shall recover automatically or by cycling PS_ON The power supply shall be capable of withstanding a continuous short circuit to the output without damage or overstres
5. s to the unit NOTES 5VSb will be auto recovery when the fault removed 3 5 No load operation No damage or hazardous condition should occur with all the DC output connectors disconnected from the load The power supply may latch into the shutdown state 4 TIMING 4 1 Signal timing drawing Figure 2 is a reference for signal timing for main power connector signals and rails Vac 127 4 57 8 8 O P PY OK a a i i FW OK Senses level 2 ot as Ij Figure 2 PS OK Timing Sequence 1 T2 Rise time 0 2ms 20ms 2 T3 Power good signal turn on delay time 100ms 500ms 3 T4 Power good signal turn off delay time 1ms min 4 T5 Rise time 10ms max 4 2 Hold up time When the power loss its input power it shall maintain 17ms in regulation limit at normal input voltage AC 115V 60Hz or 230V S50Hz 5 ENVIRONMENT 5 1 Operation Temperature 0 to 40 C Relative Humidity 10 to 85 non condensing 5 2 Shipping and Storage Temperature 20 to 60 C Relative Humidity 5 3 Altitude 5 to 95 non condensing Operating 10 000FT max Storage 50 000FT max 6 SAFETY 6 1 Underwriters Laboratory UL recognition The power supply is designed to meet UL EN 60950 1 2001 6 2 The power supply must bear the German Bauart Mark from TUV The power supply is designed to meet TUV EN60950 1 2001 7 ELECTROMAGNETIC COMPATIBILITY EM
6. um load is 2A 2 3 Output Ripple 2 3 1 Ripple regulation 3 3V 80 mVp p 5V 50 mVp p 12V1 120 mVp p 12V2 120 mVp p 12V 120 mVp p 5VSB 50 mVp p 2 3 2 Definition The ripple voltage of the outputs shall be measured at the pins of the output connector when terminated in the load impedance specified in figure 1 Ripple and noise are measured at the connectors with a 0 1uF ceramic capacitor and a 10uF electrolytic capacitor to simulate system loading Ripple shall be measured under any condition of line voltage output load line frequency operation temperature 2 3 3 Ripple voltage test circuit Power Supply AC Hot Y out Our 0 1uUF Vretum Load AC Neut Ac Ground Figure 1 Ripple voltage test circuit 2 4 Overshoot Any overshoot at turn on or turn off shall be less 10 of the nominal voltage value all outputs shall be within the regulation limit of section 2 0 before issuing the power good signal of section 4 0 2 5 Efficiency Greater than 80 typical at normal AC main voltage and full load on all output 2 6 Remote ON OFF control When the logic level PS ON is low the DC outputs are to be enabled When the logic level is high or open collector the DC outputs are to be disabled 3 0 PROTECTION 3 1 Over current protect The power supply shall have current limit to prevent the 12V output from exceeding the values shown in the following Table If the cur

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