SilverStone GM500-G [12/15] Manual gm500 g p190 v1 10
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10
MFR-Manufacturer
Command code
19h
1Ah
88h
89h
8Bh
8Ch
8Dh
90h
91h
96h
97h
98h
99h
9Ah
9Bh
9Eh
A0h
A1h
A7h
B0h
D0h
D1h
D2h
D3h
D4h
D5h
Command Name
CAPABILITY
QUERY
READ_ACV_IN
READ_ACI_IN
READ_VOUT
READ_IOUT
READ_TEMPERATURE_1
READ_FAN_SPEED_1
READ_ FAN_SPEED_2
READ_POUT
READ_PIN
PMBus_REVISION
MFR_ID
MFR_MODEL
MFR_ REVISION
MFR_SERIAL_NO.
MFR_VIN_MIN
MFR_VIN_MAX
MFR_POUT_MAX
USER_DATA_00
Reserved
Reserved
Reserved
Reserved
READ_AC_PFC
READ_ AC_FREQUENC
Meaning
-
-
239.88 V
2.499 A
12.100 V
24.000 A
38.5 ℃
12400 rpm
Reserved
250.00 W
500.0 W
1
SilverStone
SST-GM500-G
A0
201312120001
100 VAC
240 VAC
500W
Status Byte
-
-
-
-
0.9999
60.0HZ
VALUE ( ASCII or HEX CODE )
00H
F8H
5DH,B4H
09H,C3H
2FH,44H
5DH,C0H
01H,81H
30H,70H
00H,00H
61H,A8H
17H,70H
01H
4BH,49H,4EH,54H,52H,4FH,4EH,20H,
20H,20H,20H,20H,20H,20H,20H,20H
4DH,56H,50H,2DH,36H, 30H,30H,56H,
50H,50H, 20H,20H,20H,20H
41H,30H
32H,30H,31H,33H,31H,32H,31H,32H,30H,
30H,30H,31H,20H,20H,20H,20H
00H,64H
00H,F0H
02H,58H
00H
-
-
-
-
27H,0FH
02H,58H
(Data Byte Type ASCII Code or HEX Code)
Содержание
- Endless power through redundancy 1
- Gemini series 1
- Gm500 g 1
- Manual gm500 g p190 v1 封面 1
- Installation and system optimization guide 2
- Manual gm500 g p190 v1 目錄 2
- Ac input specifications 3
- General 3
- Gm500 g 3
- Manual gm500 g p190 v1 1 3
- Silverstone gemini 3
- Specification 3
- An ac line dropout of 17ms or less shall not cause any tripping of control signals or protection circuits if the ac dropout lasts longer than 17ms the power supply should recover and meet all turn on requirements the power supply shall meet the regulation requirement over all rated ac voltages frequencies and output loading conditions any dropout of the ac line shall not cause damage to the power supply an ac line dropout is defined as a drop in ac line to 0 vac at any phase of the ac line for any length of time 4
- Dc output specification 4
- Dc voltage regulation ripple and noise 4
- Dropout 4
- Input current harmonics 4
- Input power factor correction active pfc 4
- Manual gm500 g p190 v1 2 4
- Note 1 maximum continuous total dc output power should not exceed 550w 4
- Output current loading 4
- Table 2 output loads range 1 4
- Table 3 regulation ripple and noise 4
- The following table defines power and current rating the power supply shall meet both static and dynamic voltage regulation requirements for minimum load condition 4
- The power factor at 50 load shall be 0 at 230v input voltage 4
- The power supply output voltages must stay within the following voltage limits when operating at steady state and dynamic loading conditions all outputs are measured with reference to the return remote sense returns signal the 5v 3 v 12v 12v and 5vsb outputs are measure at the power supply connectors references to returns the 5v and 3 v is measured at its remote sense signal 5vs 3 vs located at the signal connector 4
- When the power supply is operated in 90 264 vac of sec 2 the input harmonic current drawn on the power line shall not exceed the limits set by iec61000 3 2 class a and gb17625 standards the power supply shall incorporate universal power input with active power factor correction 4
- Figure 1 output voltage timing 5
- Manual gm500 g p190 v1 3 5
- Ripple and noise shall be measured using the following methods a measurements made differentially to eliminate common mode noise b ground lead length of oscilloscope probe shall be 0 5 inch c measurements made where the cable connectors attach to the load d outputs bypassed at the point of measurement with a parallel combination of 10uf tantalum capacitor in parallel with a 0 uf ceramic capacitors e oscilloscope bandwidth of 0 hz to 20mhz f measurements measured at locations where remote sense wires are connected g regulation tolerance shall include temperature change warm up drift and dynamic load 5
- Table 4 output voltage timing 5
- These are the timing requirements for the power assembly operation the output voltages must rise from 10 to within regulation limits tvout_rise within 5 to 70ms the 5v 3 v and 12v output voltages should start to rise at about the same time all outputs must rise monotonically the 5v output must occur first than the 3 v output during any point of the voltage rise the 5v output must never be greater than the 3 v output by more than 2 5v each output voltage shall reach regulation within 50 ms tvout_on of each other during turn on of the power supply each output voltage shall fall out of regulation within 400 ms tvout_off of each other during turn off figure 1 and figure 2 shows the turn on and turn off timing requirement in figure 2 the timing is shown with both ac and pson controlling the on off of the power supply 5
- Timing requirements 5
- Manual gm500 g p190 v1 4 6
- Remote on off control pson 6
- Table 5 turn on off timing 6
- Table 6 pwok signal characteristic 6
- The pson signal is required to remotely turn on off the power supply pson is an active low signal that turns on the 5v 3 v 12v 5v and 12v power rails when this signal is not pulled low by the system or left open the outputs except the 5vsb and v bias turn off this signal is pulled to a standby voltage by a pull up resistor internal to the power supply 6
- 5vsb standby 7
- Each hot swap module has respective ovp circuit once any power supply module shut down in a latch off mode while the output voltage exceeds the over voltage limit shown in table 7 the other modules should deliver the sufficient power to the device continually 7
- Efficiency 80 gold 7
- Manual gm500 g p190 v1 5 7
- Over power protection 7
- Over voltage protection 7
- Protection 7
- Protection circuits inside the power supply shall cause only the power supply s main outputs to shutdown if the power supply latches off due to a protection circuit tripping either an ac cycle off for 15 sec or pson cycle high for 1 sec must be able to restart the power supply 7
- Reference www 0plus org all test conditions 7
- Table 7 over voltage protection 7
- The 5vsb output is always on 5v standby when ac power is applied and power switch is turned on the 5vsb line is capable of delivering at a maximum of 3 a for pc board circuit to operate 7
- The efficiency should be measured module at 230 vac and with external fan power source at specified loading 7
- The opp function shall work at 110 160 of rating of output power then all outputs shut down in a latch off mode the latch shall be cleared by toggling the pson signal or by cycling the ac power the power supply shall not be damaged from repeated power cycling in this condition if only one module works inside the power supply the opp is at 110 160 of rating of power supply 7
- Ac input leakage current 8
- Agency requirements 8
- Environmental requirements 8
- Humidity 8
- Input leakage current from line to ground will be less than 3 ma rms measurement will be made at 240 vac and 60hz 8
- Manual gm500 g p190 v1 6 8
- Over current protection 8
- Safety planning 8
- Short circuit protection 8
- Table 8 over current protection 8
- Temperature 8
- The power supply shall shut down in a latch off mode when the output voltage is short circuit 8
- The power supply should contain the ocp function on each hot swap module the power supply should be shut down in a latch off mode while the respective output current exceeds the limit as shown in table 8 when the latch has been cleared by toggling the pson single or cycling the ac input power the power supply module should not be damaged in this condition 8
- Hot swap requirements 9
- Led indicators 9
- Manual gm500 g p190 v1 7 9
- Redundancy 9
- Redundant power supply function 9
- Manual gm500 g p190 v1 8 10
- Pmbus communication 10
- Power supply management interface 10
- Power supply management interface address 10
- Data byte type ascii code or hex code 11
- Manual gm500 g p190 v1 9 11
- Pmbus command code summary 11
- Pmbus revison1 specification shall be used for the communication with system 11
- Data byte type ascii code or hex code 12
- Manual gm500 g p190 v1 10 12
- Mfr manufacturer 12
- Command code b0h command name user_data_00 13
- Figure 8 1 13
- Manual gm500 g p190 v1 11 13
- Pmbus command protocol 13
- Pmbus command protocol for the two steps figure 8 1 the first step is master device sends device address and command code1 to slave device the command code 1 is set what kind data will receive on master device the second step is the master device will receive one or more data byte coming slave device 13
- Pmbus signal connector 13
- Dimension 150 w x 85m h x 180 d 14
- Manual gm500 g p190 v1 12 14
- Mean time between failures mtbf 14
- Physical characteristics size 14
- Reliability 14
- Manual gm500 g p190 v1 封底 15
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