lt3958 Linear Technology Corporation, lt3958 Datasheet - Page 18

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lt3958

Manufacturer Part Number
lt3958
Description
High Input Voltage, Boost, Flyback, Sepic And Inverting Converter
Manufacturer
Linear Technology Corporation
Datasheet

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APPLICATIONS INFORMATION
LT3958
The snubber resistor value (R
following equation:
L
which is usually specifi ed in the transformer character-
istics. L
inductance with the secondary windings shorted. The
snubber capacitor value (C
the following equation:
where ΔV
ΔV
D
Flyback Converter: Output Diode Selection
The output diode in a fl yback converter is subject to large
RMS current and peak reverse voltage stresses. A fast
switching diode with a low forward drop and a low reverse
leakage is desired. Schottky diodes are recommended if
the output voltage is below 100V.
Approximate the required peak repetitive reverse voltage
rating V
The power dissipated by the diode is:
and the diode junction temperature is:
The R
R
to the ambient temperature in the enclosure. T
exceed the diode maximum junction temperature rating.
18
LK
θJC
SN
P
T
R
SN
V
C
J
D
is the leakage inductance of the primary winding,
should be higher than the sum of V
RRM
SN
for the device, plus the thermal resistance from the board
SN
= T
θJA
is 5% to 10% of V
= I
= 2 •
RRM
LK
=
O(MAX)
A
>
to be used in this equation normally includes the
SN
+ P
ΔV
N
N
can be obtained by measuring the primary
is the voltage ripple across C
using:
P
S
V
SN
D
• V
2
I
• R
• V
V
2
SN
• R
SW(PEAK)
SN
IN(MAX)
D
θJA
− V
SN
• ƒ
SN
SN
+ V
• V
. The reverse voltage rating of
• L
SN
OUT
OUT
SN
LK
) can be determined using
) can be calculated by the
• ƒ
N
N
P
S
SN
SN
. A reasonable
and V
J
must not
IN(MAX)
.
Flyback Converter: Output Capacitor Selection
The output capacitor of the fl yback converter has a similar
operation condition as that of the boost converter. Refer to
the Boost Converter: Output Capacitor Selection section
for the calculation of C
The RMS ripple current rating of the output capacitors
in continuous operation can be determined using the
following equation:
Flyback Converter: Input Capacitor Selection
The input capacitor in a fl yback converter is subject to
a large RMS current due to the discontinuous primary
current. To prevent large voltage transients, use a low
ESR input capacitor sized for the maximum RMS current.
The RMS ripple current rating of the input capacitors in
continuous operation can be determined using the fol-
lowing equation:
SEPIC CONVERTER APPLICATIONS
The LT3958 can be confi gured as a SEPIC (single-ended
primary inductance converter), as shown in Figure 1. This
topology allows for the input to be higher, equal, or lower
than the desired output voltage. The conversion ratio as
a function of duty cycle is:
in continuous conduction mode (CCM).
In a SEPIC converter, no DC path exists between the input
and output. This is an advantage over the boost converter
for applications requiring the output to be disconnected
from the input source when the circuit is in shutdown.
I
I
V
RMS(COUT),CONTINUOUS
RMS(CIN),CONTINUOUS
OUT
V
IN
+ V
D
=
1− D
D
OUT
and ESR
≈ I
V
P
IN(MIN)
OUT(MAX)
O(MAX)
COUT
• η
.
1− D
D
1− D
MAX
D
MAX
MAX
MAX
3958f

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