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ACT4513 数据表(PDF) 9 Page - Active-Semi, Inc

部件名 ACT4513
功能描述  Wide-Input Sensorless CC/CV Step-Down DC/DC Converter
PDF  16 Pages
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制造商  ACTIVE-SEMI [Active-Semi, Inc]
网页  http://www.active-semi.com
标志 ACTIVE-SEMI - Active-Semi, Inc

ACT4513 数据表(HTML) 9 Page - Active-Semi, Inc

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ACT4513
Rev 7, 14-Nov-12
Innovative Power
TM
- 9 -
www.active-semi.com
Copyright © 2012 Active-Semi, Inc.
STABILITY COMPENSATION CONT’D
RFB1 is the high side resistor of voltage divider.
In the case of high RFB1 used, the frequency
compensation
needs
to
be
adjusted
correspondingly. As show in Figure 7, adding a
capacitor in paralled with RFB1 or increasing the
compensation capacitance at COMP pin helps the
system stability.
Figure 6:
Cable Compensation at Various Resistor Divider
Values
Figure 7:
Frequency Compensation for High RFB1
PC Board Layout Guidance
When laying out the printed circuit board, the
following checklist should be used to ensure proper
operation of the IC.
1) Arrange the power components to reduce the
AC loop size consisting of CIN, IN pin, SW pin
and the schottky diode.
2) Place input decoupling ceramic capacitor CIN as
close to IN pin as possible. CIN is connected
power GND with vias or short and wide path.
3) Return FB, COMP and ISET to signal GND pin,
and connect the signal GND to power GND at a
single point for best noise immunity.
4) Use copper plane for power GND for best heat
dissipation and noise immunity.
5) Place feedback resistor close to FB pin.
6) Use short trace connecting HSB-CHSB-SW loop
Figure 8 shows an example of PCB layout.
Figure 9 and Figure 10 give two typical car charger
application schematics and associated BOM list.
Delta Output Voltage vs. Output Current
300
250
200
150
100
50
0
350
400
450
Output Current (A)
0
0.4
0.8
1.2
1.6
2
RF
B1
= 3
00
k
RFB
1
= 2
40
k
RFB1
= 150
k
RFB
1 =
200
k
RFB1 =
100k
RF
B1
= 3
60
k
RFB1 =
51k
RF
B1
= 4
30k
Figure 8: PCB Layout



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