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NX2154CSTR датащи(PDF) 6 Page - Microsemi Corporation

номер детали NX2154CSTR
подробное описание детали  300kHz SYNCHRONOUS PWM CONTROLLER
PDF  17 Pages
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производитель  MICROSEMI [Microsemi Corporation]
домашняя страница  http://www.microsemi.com
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NX2154/2154A
6
Rev.1.2
02/26/07
APPLICATION INFORMATION
Symbol Used In Application Information:
VIN
- Input voltage
VOUT
- Output voltage
IOUT
- Output current
DVRIPPLE - Output voltage ripple
FS
- Working frequency
DIRIPPLE - Inductor current ripple
Design Example
The following is typical application for NX2154, the
schematic is figure 1.
VIN = 33V
VOUT=5V
FS=300kHz
IOUT=3A
DVRIPPLE <=50mV
DVDROOP<=250mV @ 9A step
Output Inductor Selection
The selection of inductor value is based on induc-
tor ripple current, power rating, working frequency and
efficiency. Larger inductor value normally means smaller
ripple current. However if the inductance is chosen too
large, it brings slow response and lower efficiency. Usu-
ally the ripple current ranges from 20% to 40% of the
output current. This is a design freedom which can be
decided by design engineer according to various appli-
cation requirements. The inductor value can be calcu-
lated by using the following equations:
IN
OUT
OUT
OUT
RIPPLE
INS
RIPPLE
OUTPUT
V -VV
1
L=
I
VF
I
=kI
××
∆
×
...(1)
where k is between 0.2 to 0.4.
Select k=0.3, then
OUT
OUT
33V-5V
5V1
L=
0.3 3A
33V
300kHz
L
=15.7uH
××
×
Choose inductor from COILCRAFT DO5022P-153
with L=15uH is a good choice.
Current Ripple is recalculated as
IN
OUT
OUT
RIPPLE
OUT
INS
V -VV
1
I=
L
VF
33V-5V
5V1
=
0.94A
15uH
33V
300kHz
∆
××
×
×=
...(2)
Output Capacitor Selection
Output capacitor is basically decided by the
amount of the output voltage ripple allowed during steady
state(DC) load condition as well as specification for the
load transient. The optimum design may require a couple
of iterations to satisfy both condition.
Based on DC Load Condition
The amount of voltage ripple during the DC load
condition is determined by equation(3).
∆
∆
=
× ∆+
××
RIPPLE
RIPPLE
RIPPLE
S
OUT
I
V
ESRI
8 FC
...(3)
Where ESR is the output capacitors' equivalent
series resistance,C
OUT is the value of output capacitors.
Typically when large value capacitors are selected
such as Aluminum Electrolytic,POSCAP and OSCON
types are used, the amount of the output voltage ripple
is dominated by the first term in equation(3) and the
second term can be neglected.
For this example,electrolytic capacitors are cho-
sen as output capacitors, the ESR and inductor current
typically determines the output voltage ripple.
RIPPLE
desire
RIPPLE
V
50mV
ESR
=
53m
I
0.94A
∆
=
=Ω
∆
...(4)
If low ESR is required, for most applications, mul-
tiple capacitors in parallel are better than a big capaci-
tor.
For example, SANYO electrolytic capacitor
6ME1000WG (1000uF,30m
Ω) is chosen.
E
R IPPLE
R IPPLE
ES RI
N
V
×∆
=
∆
...(5)
Number of Capacitor is calculated as
30m
0.94A
N
50mV
Ω×
=
N =0.566
The number of capacitor has to be round up to a
integer. Choose N =1.
If ceramic capacitors are chosen as output ca



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