LTC3856 LINER [Linear Technology], LTC3856 Datasheet - Page 34

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LTC3856

Manufacturer Part Number
LTC3856
Description
2-Phase Synchronous Step-Down DC/DC Controller with Diffamp
Manufacturer
LINER [Linear Technology]
Datasheet

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LTC3856
applicaTions inForMaTion
A short-circuit to ground will result in a folded back
current of:
The worst-case power dissipated by the synchronous
MOSFET under short-circuit conditions at elevated ambi-
ent temperature and estimated 50°C junction temperature
rise is:
which is much less than normal, full-load conditions.
Incidentally, since the load no longer dissipates power in
the shorted condition, total system power dissipation is
decreased by over 99%.
The duty cycles when the peak RMS input current occurs is
at D = 0.25 and D = 0.75 according to Figure 10. Calculate
the worst-case required RMS input current rating at the

I
P
SC
SYNC
=
0 002
=
=
25
.
0
5 5
mV
3
. . 18W
.
V
5 5
.
V
1 8
.
2
1
V
90
(
4 04
ns
.
2
µ
(
5 5
A
H
.
) (
2
V
)
1 25 0 013
.
=
)
4 0
(
. 4 4 A
.
)
input voltage, which is 5.5V, that provides a duty cycle
nearest to the peak.
From Figure 10, C
The output capacitor ripple current is calculated by using
the inductor ripple already calculated for each inductor and
multiplying by the factor obtained from Figure 8 along with
the calculated duty factor. The output ripple in continuous
mode will be highest at the maximum input voltage. From
Figure 8, the maximum output current ripple is:
Note that the PolyPhase technique will have its maximum
benefit for input and output ripple currents when the number
of phases times the output voltage is approximately equal
to or greater than the input voltage.
C required I
IN
I
I
COUT
COUTMAX
=
V
OUT
fL
=
RMS
(
IN
300
(
0 34
1 8 0 34
will require an RMS current rating of:
.
.
=
=
kH
(
( )( )
4 6
)
z z
20
.
.
)
(
A
A
2
RMS
µ
)
0 23
H
.
)
=
1
A
3856f

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