LTC1628CG-SYNC Linear Technology, LTC1628CG-SYNC Datasheet - Page 25

IC SW REG STEP-DOWN SYNC 28-SSOP

LTC1628CG-SYNC

Manufacturer Part Number
LTC1628CG-SYNC
Description
IC SW REG STEP-DOWN SYNC 28-SSOP
Manufacturer
Linear Technology
Type
Step-Down (Buck)r
Datasheet

Specifications of LTC1628CG-SYNC

Internal Switch(s)
No
Synchronous Rectifier
Yes
Number Of Outputs
2
Voltage - Output
Adj to 0.8V
Current - Output
3A
Frequency - Switching
140kHz ~ 310kHz
Voltage - Input
3.5 ~ 30 V
Operating Temperature
0°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
28-SSOP
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Power - Output
-

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APPLICATIO S I FOR ATIO
Design Example
As a design example for one channel, assume V
12V(nominal), V
and f = 300kHz.
The inductance value is chosen first based on a 30% ripple
current assumption. The highest value of ripple current
occurs at the maximum input voltage. Tie the PLLFLTR pin
to the INTV
inductance for 30% ripple current is:
A 4.7µH inductor will produce 23% ripple current and a
3.3µH will result in 33%. The peak inductor current will be
the maximum DC value plus one half the ripple current, or
5.84A, for the 3.3µH value. Increasing the ripple current
will also help ensure that the minimum on-time of
200ns is not violated. The minimum on-time occurs at
maximum V
The R
maximum current sense voltage specification with some
accommodation for tolerances:
Since the output voltage is below 2.4V the output
resistive divider will need to be sized to not only set the
output voltage but also to absorb the SENSE pins specified
input current.
R
R
∆I
t
ON MIN
SENSE
1
L
(
SENSE
MAX
(
=
( )( )
V
)
f L
)
OUT
CC
=
=
=
resistor value can be calculated by using the
IN
5 84
60
:
24
24
V
.
pin for 300kHz operation. The minimum
IN MAX
mV
V
IN
– 1
k
k
(
OUT
A
⎝ ⎜
⎝ ⎜
= 22V(max), V
U
2 4
2 4
V
.
.
V
OUT
)
0 01
IN
f
V V
V
0 8
.
0 8
=
.
.
U
22 300
V
V
1 1 8
OUT
. V
V
(
1 8
.
⎠ ⎟
⎠ ⎟
OUT
V
W
=
kHz
32
= 1.8V, I
)
k
=
273
U
MAX
ns
= 5A,
IN
=
Choosing 1% resistors; R1 = 25.5k and R2 = 32.4k yields
an output voltage of 1.816V.
The power dissipation on the top side MOSFET can be
easily estimated. Choosing a Siliconix Si4412DY results
in; R
voltage with T(estimated) = 50°C:
A short-circuit to ground will result in a folded back cur-
rent of:
with a typical value of R
The resulting power dissipated in the bottom MOSFET is:
which is less than under full-load conditions.
C
temperature assuming only this channel is on. C
chosen with an ESR of 0.02Ω for low output ripple. The
output ripple in continuous mode will be highest at the
maximum input voltage. The output voltage ripple due to
ESR is approximately:
IN
V
I
P
P
SC
is chosen for an RMS current rating of at least 3A at
MAIN
SYNC
ORIPPLE
DS(ON)
=
0 01
25
=
=
=
=
(
.
0 042
mV
= 0.042Ω, C
220
434
1 8
22
= R
22
.
.
V
V
V
ESR
mW
22
mW
+
– .
( )
2
5 1 0 005 50
1
V
1 8
)
(∆I
2
+
200
[
V
DS(ON)
1 7 22
L
) = 0.02Ω(1.67A) = 33mV
+
.
( ) ( )
RSS
3 3
3 2
ns
.
( .
( ) ( )(
LTC1628-SYNC
.
(
µ
= 100pF. At maximum input
A
22
and δ = (0.005/°C)(20) = 0.1.
H
V
2
V
2
)(
)
1 1 0 042
⎟ =
5
.
A
(
°
3 2
C
100
.
.
A
25
pF
°
)(
C
)
)
300
]
25
P–P
1628syncfa
OUT
kHz
is
)

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