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ZXGD3104EV2 Datasheet(PDF) 2 Page - Diodes Incorporated

Part # ZXGD3104EV2
Description  The purpose of this board is to demonstrate the driving of a synchronous MOSFET
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Manufacturer  DIODES [Diodes Incorporated]
Direct Link  http://www.diodes.com
Logo DIODES - Diodes Incorporated

ZXGD3104EV2 Datasheet(HTML) 2 Page - Diodes Incorporated

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ZXGD3104EV2
Issue 1 – October, 2011
www.diodes.com
© Diodes Incorporated 2011
2
Evaluation guide
There are two possible test setups for the evaluation board. The preferred setup is low side
synchronous rectification (see Figure 2b), due to the ease of acquiring the supply voltage to the board
directly from the output of the power supply. The other option is shown in Figure 3a. Figure 3a shows
the board driving a MOSFET for high side rectification.
Low side synchronous rectification
1.
Remove the original Schottky from the power supply
2.
Apply a short across the Schottky’s K and A terminals
3.
Cut the track that connects the negative terminal of the output filter capacitor to the output of
the transformer winding.
4.
Insert a low on-resistance MOSFET between the cut tracks. The Drain terminal of the
MOSFET should be connected to the output of the transformer winding, whilst the Source
terminal is connected to the output capacitor.
Caution: The MOSFET breakdown must be higher than the maximum Drain-Source voltage
spike, plus a 10% to 30% margin.
5.
Connect the power supply’s output voltage, 19V, to the terminal block P1 (see Figure 2b).
6.
Connect an AC voltage source to the power supply’s input.
7.
Turn on the AC voltage source and measure the efficiency.
High side synchronous rectification
8.
Remove the original Schottky from the power supply
9.
Insert a low on-resistance MOSFET to replace the Schottky. The Source terminal of the
MOSFET should be connected to the output of the transformer winding, whilst the Drain
terminal should be connected to the output capacitor
10. Connect a 10V auxiliary supply to terminal block P1 (see Figure 2a).
11. Connect an AC voltage source voltage to the power supply’s input.
12. Turn on the power supply and measure the efficiency.
(a)
(b)
Figure 2: Test options for evaluation board a) high side rectification and b) low side
rectification


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