LT3430 Linear Technology, LT3430 Datasheet - Page 9

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LT3430

Manufacturer Part Number
LT3430
Description
High Voltage/ 3A/ 200kHz Step-Down Switching Regulator
Manufacturer
Linear Technology
Datasheet

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APPLICATIO S I FOR ATIO
with high input voltage. High frequency pickup will in-
crease and the protection accorded by frequency and
current foldback will decrease.
CHOOSING THE INDUCTOR
For most applications, the output inductor will fall into the
range of 5 H to 47 H. Lower values are chosen to reduce
physical size of the inductor. Higher values allow more
output current because they reduce peak current seen by
the LT3430 switch, which has a 3A limit. Higher values
also reduce output ripple voltage.
When choosing an inductor you will need to consider
output ripple voltage, maximum load current, peak induc-
tor current and fault current in the inductor. In addition,
other factors such as core and copper losses, allowable
component height, EMI, saturation and cost should also
be considered. The following procedure is suggested as a
way of handling these somewhat complicated and con-
flicting requirements.
Output Ripple Voltage
Figure 3 shows a comparison of output ripple voltage for
the LT3430 using either a tantalum or ceramic output
capacitor. It can be seen from Figure 3 that output ripple
voltage can be significantly reduced by using the ceramic
output capacitor; the significant decrease in output ripple
voltage is due to the very low ESR of ceramic capacitors.
U
LT3430
V
U
C
Q2
GND
AMPLIFIER
W
TO SYNC CIRCUIT
ERROR
Figure 2. Frequency and Current Limit Foldback
TO FREQUENCY
SHIFTING
+
U
1.4V
1.2V
R3
1k
BUFFER
Q1
R4
2k
Output ripple voltage is determined by ripple current
(I
impedance of the output capacitor. At high frequencies,
the impedance of the tantalum capacitor is dominated by
its effective series resistance (ESR).
Tantalum Output Capacitor
The typical method for reducing output ripple voltage
when using a tantalum output capacitor is to increase the
inductor value (to reduce the ripple current in the induc-
tor). The following equations will help in choosing the
required inductor value to achieve a desirable output
ripple voltage level. If output ripple voltage is of less
LP-P
20mV/DIV
20mV/DIV
Figure 3. LT3430 Output Ripple Voltage Waveforms.
Ceramic vs Tantalum Output Capacitors
) through the inductor and the high frequency
V
V
L = 22 H
IN
OUT
V
= 40V
SW
FB
= 5V
L1
R1
R2
+
2 s/DIV
3430 F02
C1
OUTPUT
5V
3430 F03
LT3430
V
100 F CERAMIC
OUTPUT
CAPACITOR
V
100 F, 0.08
TANTALUM
OUTPUT
CAPACITOR
OUT
OUT
sn3430 3430is
USING
USING
9

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