From: "Saved by Internet Explorer 11" Subject: 200W ATX PC POWER SUPPLY Date: Mon, 20 Jan 2014 10:24:07 -0800 MIME-Version: 1.0 Content-Type: multipart/related; type="text/html"; boundary="----=_NextPart_000_00D1_01CF15C9.C08A4290" X-MimeOLE: Produced By Microsoft MimeOLE V6.1.7601.17609 This is a multi-part message in MIME format. ------=_NextPart_000_00D1_01CF15C9.C08A4290 Content-Type: text/html; charset="Windows-1252" Content-Transfer-Encoding: quoted-printable Content-Location: file://C:\Users\R&D 1\Documents\Research\Power Supplies\200W ATX PC POWER SUPPLY.htm 200W ATX PC POWER SUPPLY=20 =20 =20 =20

200W ATX PC POWER SUPPLY

3D"[CZFlag]"=20 Czech version

Here I bring you wiring diagram of PCs power supply of DTK company. = This=20 power supply has ATX design and 200W performance. I was drawed diagram, = when I=20 repaired this power supply.

This power supply circuit uses chip TL494. Similar circuit is used in = the=20 most power supplies with output power about 200W.Device use push-pull=20 transistor circuit with regulation of output voltage.

=20 Line voltage goes through input filter circuit (C1, R1, T1, C4, T5) to = the=20 bridge rectifier. When voltage is switched from 230V to 115V, then = rectifier=20 works like a doubler. Varistors Z1 and Z2 have overvoltage protect = function on=20 the line input.
Thermistor NTCR1 limits input current until = capacitors C5=20 and C6 are charged. R2 and R3 are only for discharge capacitors after=20 disconnecting power supply. When power supply is connected to the line = voltage,=20 then at first are charged capacitors C5 and C6 together for about = 300V.
Then=20 take a run secondary power supply controlled by transistor Q12 and on = his=20 output will be voltage. Behind the voltage regulator IC3 will be = voltage 5V,=20 which goes in to the motherboard and it is necessary for turn-on logic = and for=20 "Wake on something" functions.
Next unstabilized voltage goes = through diode=20 D30 to the main control chip IC1 and control transistors Q3 and Q4. = When main=20 power supply is running, then this voltage goes from +12V output = through diode=20 D.

Stand-By mode

In stand-by mode is main power supply blocked by positive voltage on = the=20 PS-ON pin through resistor R23 from secondary power supply. Because of = this=20 voltage is opened transistor Q10, which opens Q1, which applies = reference=20 voltage +5V from pin 14 IO1 to pin 4 IO1. Switched circuit is totally = blocked.=20 Tranzistors Q3 and Q4 are both opened and short-circuit winding of = auxiliary=20 transformer T2.Due to short-circuit is no voltage on the power circuit. = By=20 voltage on pin 4 we can drive maximum pulse-width on the IO1 output. = Zero=20 voltage means the highest pulse-width. +5V means that pulse disappear. =

Now we can explain function of running power supply.

Somebody pushes the power button on computer. Motheboard logic put to = ground=20 input pin PS-ON. Transistor Q10 closes and next Q1 closes. Capacitor = C15 begins=20 his charging through R15 and on the pin 4 IC1 begins decrease voltage = to zero=20 thanks to R17. Due to this voltage is maximum pulse-width continuosly = increased=20 and main power supply smoothly goes run.

In a normal operation is power supply controlled by IC1. When = transistors Q1=20 and Q2 are closed, then Q3 and Q4 are opened. When we want to open one = from=20 power transistors (Q1, Q2), then we have to close his exciting = transistor (Q3,=20 Q4). Current goes via R46 and D14 and one winding T2. This current = excite=20 voltage on base of power transistor and due to positive feedback = transistor=20 goes quickly to saturation. When the impulse is finished, then both = exciting=20 transistors goes to open. Positive feedback dissapears and overshoot on = the=20 exciting winding quickly closes power transistor. After it is process = repetead=20 with second transistor. Transistors Q1 and Q2 alternately connects one = end of=20 primary winding to positive or negative voltage. Power branch goes from = emitor=20 of Q1 (collector Q2) through the third winding of exciting transformer = T2. Next=20 throug primary winding of main transformer T3 and capacitor C7 to the = virtual=20 center of supply voltage.

Output voltage stabilisation

Output voltages +5V and +12V are measured by R25 and R26 and their = output=20 goes to the IC1. Other voltages are not stabilised and they are = justified by=20 winding number and diode polarity. On the output is necessary reactance = coil=20 due to high frequency interference.
This voltage is rated from = voltage=20 before coil, pulse-width and duration cycle. On the output behind the = rectifier=20 diodes is a common coil for all voltages. When we keep direction of = windings=20 and winding number corresponding to output voltages, then coil works = like a=20 transformer and we have compensation for irregular load of individual=20 voltages.
In a common practise are voltage deviations to 10% from = rated=20 value. From the internal 5-V reference regulator (pin 14 IC1) goes = reference=20 voltage through the voltage divider R24/R19 to inverting input(pin 2) = of error=20 amplifier. From the output of power supply comes voltage through = divider=20 R25,R26/R20,R21 to the non inverting input (pin 1). Feedback C1, R18 = provides=20 stability of regulator. Voltage from error amplifier is compared to the = ramp=20 voltage across capacitor C11.
When the output voltage is decreased, = then=20 voltage on the error amplifier is toodecreased. Exciting pulse is = longer, power=20 transistors Q1 and Q2 are longer opened, width of pulse before output = coil is=20 grater and output power is increased. The second error amplifier is = blocked by=20 voltage on the pin 15 IC1.

PowerGood

Mainboard needs "PowerGood" signal. When all output voltages goes to = stable,=20 then PowerGood signal goes to +5V (logical one). PowerGood signal is = usually=20 connected to the RESET signal.

+3.3V Voltage stabilisation

Look at circuit connected to output voltage +3.3V. This circuit makes = additional voltage stabilisation due to loss of voltage on cables. = There are=20 one auxiliary wire from connector for measure 3.3V voltage on = motherboard.

Overvoltage circuit

This circuit is composed from Q5, Q6 and many discrete components. = Circuit=20 guards all of output voltages and when the some limit is exceeded, = power supply=20 is stopped.
For example when I by mistake short-circuit -5V with = +5V, then=20 positive voltage goes across D10, R28, D9 to the base Q6. This = transistor is=20 now opened and opens Q5. +5V from pin 14 IC1 comes across diode D11 to = the pin=20 4 IC1 and power supply is blocked. Beyond that goes voltage again to = base Q6.=20 Power supply is still blocked, until he is disconnected from power line = input.=20


Links


ATX Power Connector

PIN SIGNAL PIN SIGNAL
1 3.3V 11 3.3V
2 3.3V 12 -12V
3 GND 13 GND
4 5V 14 PS_ON
5 GND 15 GND
6 5V 16 GND
7 GND 17 GND
8 PW_OK 18 -5V
9 5V_SB 19 5V
10 12V 20 5V

3D"[HOME]"=20 Homepage 3D"[Mail]"=20 pavouk[at]pavouk.org

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