LT3434IFE#PBF Linear Technology, LT3434IFE#PBF Datasheet - Page 12

IC REG SW BUCK 3A 200KHZ 16TSSOP

LT3434IFE#PBF

Manufacturer Part Number
LT3434IFE#PBF
Description
IC REG SW BUCK 3A 200KHZ 16TSSOP
Manufacturer
Linear Technology
Type
Step-Down (Buck)r
Datasheet

Specifications of LT3434IFE#PBF

Internal Switch(s)
Yes
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
1.25 ~ 54 V
Current - Output
3A
Frequency - Switching
200kHz
Voltage - Input
3.3 ~ 60 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
16-TSSOP Exposed Pad, 16-eTSSOP, 16-HTSSOP
Primary Input Voltage
60V
No. Of Outputs
1
Output Voltage
54V
Output Current
6.5A
No. Of Pins
16
Operating Temperature Range
-40°C To +125°C
Msl
MSL 1 - Unlimited
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-

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APPLICATIO S I FOR ATIO
LT3434
For high frequency switchers the ripple current slew rate
is also relevant and can be calculated from:
Peak-to-peak output ripple voltage is the sum of a triwave
created by peak-to-peak ripple current times ESR and a
square wave created by parasitic inductance (ESL) and
ripple current slew rate. Capacitive reactance is assumed
to be small compared to ESR or ESL.
Example: with V
0.08Ω, ESL = 10nH:
MAXIMUM OUTPUT LOAD CURRENT
Maximum load current for a buck converter is limited by
the maximum switch current rating (I
peak current rating for the LT3434 is 3A. Unlike most
75mΩ TANTALUM
12
100µF CERAMIC
V
I
V
dt
dt
di
P-P
di
RIPPLE
RIPPLE
10mV/DIV
10mV/DIV
10V/DIV
=
=
=
100µF
V
V
3 3
V
OUT
OUT
I
SW
L
Figure 3. LT3434 Ripple Voltage Waveform
( )
IN
.
12 33
= (0.362A)(0.08) + (10e – 9)(363e3)
= 0.0289 + 0.003 = 32mV
12
=
I
e
LOAD
( )(
( )(
3 3 12 3 3
(
I
P-P
= 2A
.
5
IN
e
=
= 12V, V
U
3 63 5
ESR
.
6 200 3
– .
)(
e
)
U
+
1µs/DIV
)
(
OUT
e
ESL
)
= 3.3V, L = 33µH, ESR =
=
)
dt
di
0 362
W
.
P-P
PK
). The minimum
A
3434 F03
U
current mode converters, the LT3434 maximum switch
current limit does not fall off at high duty cycles. Most
current mode converters suffer a drop off of peak switch
current for duty cycles above 50%. This is due to the
effects of slope compensation required to prevent
subharmonic oscillations in current mode converters.
(For detailed analysis, see Application Note 19.)
The LT3434 is able to maintain peak switch current limit
over the full duty cycle range by using patented circuitry to
cancel the effects of slope compensation on peak switch
current without affecting the frequency compensation it
provides.
Maximum load current would be equal to maximum
switch current for an infinitely large inductor, but with
finite inductor size, maximum load current is reduced by
one-half peak-to-peak inductor current. The following
formula assumes continuous mode operation, implying
that the term on the right (I
Discontinuous operation occurs when:
For V
Note that there is less load current available at the higher
input voltage because inductor ripple current increases. At
V
conditions:
IN
I
I
I
I
OUT MAX
OUT DIS
OUT MAX
OUT MAX
= 15V, duty cycle is 33% and for the same set of
OUT
(
(
(
(
= 5V, V
)
)
)
)
=
=
=
=
=
V
3 0 24 2 76
I
3 0 42 2 58
3
3
OUT
PK
– .
– .
IN
2
( )( )(
2 20
2 20
L f V
= 8V and L = 20µH:
(
(
(
V
(
IN
V
OUT
e
=
e
=
2
( )(
( )(
( )( )( )
5 8 5
5 15 5
V
IN
L f V
)(
P-P
.
.
OUT
6 200 3 8
6 200 3 15
)
)(
)(
V
IN
/2) is less than I
A
A
)
IN
)
V
e
e
)
OUT
)( )
)( )
)
=
I
PK
OUT
I
P
.
2
-P
3434fb

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