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ACT4515(2011) Ver la hoja de datos (PDF) - Active-Semi, Inc

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ACT4515
(Rev.:2011)
ACTIVE-SEMI
Active-Semi, Inc ACTIVE-SEMI
ACT4515 Datasheet PDF : 16 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
Active-Semi
ACT4515
Rev 4, 21-Jul-11
APPLICATIONS INFORMATION
Output Voltage Setting
Figure 1:
Output Voltage Setting
VOUT
ACT4515
FB
RFB1
RFB2
Figure 1 shows the connections for setting the
output voltage. Select the proper ratio of the two
feedback resistors RFB1 and RFB2 based on the
output voltage. Typically, use RFB2 10kand
determine RFB1 from the following equation:
RFB1
=
RFB2
⎜⎛
VOUT
0.808V
1⎟⎞
(1)
CC Current Setting
ACT4515 constant current value is set by a resistor
connected between the ISET pin and GND. The CC
output current is linearly proportional to the current
flowing out of the ISET pin. The voltage at ISET is
roughly 1V and the current gain from ISET to output
is roughly 25000 (25mA/1µA). To determine the
proper resistor for a desired current, please refer to
Figure 2 below.
Figure 2:
Curve for Programming Output CC Current
1800
1600
1400
1200
1000
800
600
400
200
0
0
Output Current vs. RISET
10 20 30 40 50 60 70 80 90
RISET (k)
CC Current Line Compensation
When operating at constant current mode, the
current limit increase slightly with input voltage. For
wide input voltage applications, a resistor RC is
added to compensate line change and keep output
high CC accuracy, as shown in Figure 3.
Figure 3:
Iutput Line Compensation
VIN
Rc
RISET
IN
ACT4515
ISET
Inductor Selection
The inductor maintains a continuous current to the
output load. This inductor current has a ripple that is
dependent on the inductance value:
Higher inductance reduces the peak-to-peak ripple
current. The trade off for high inductance value is
the increase in inductor core size and series
resistance, and the reduction in current handling
capability. In general, select an inductance value L
based on ripple current requirement:
( ) L =
VOUT
×
VIN
V_
OUT
(2)
V f I K IN SW LOADMAX RIPPLE
where VIN is the input voltage, VOUT is the output
voltage, fSW is the switching frequency, ILOADMAX is
the maximum load current, and KRIPPLE is the ripple
factor. Typically, choose KRIPPLE = 30% to
correspond to the peak-to-peak ripple current being
30% of the maximum load current.
With a selected inductor value the peak-to-peak
inductor current is estimated as:
( ) ILPK _PK
=
VOUT
×
VIN
V_
OUT
L ×VIN × fSW
(3)
The peak inductor current is estimated as:
1
ILPK
=
ILOADMAX
+
2
I
LPK
_PK
(4)
Innovative PowerTM
-6-
www.active-semi.com
Copyright © 2011 Active-Semi, Inc.

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