LT1105IN Linear Technology, LT1105IN Datasheet - Page 26

IC OFFLINE SWIT CM HV 14DIP

LT1105IN

Manufacturer Part Number
LT1105IN
Description
IC OFFLINE SWIT CM HV 14DIP
Manufacturer
Linear Technology
Datasheet

Specifications of LT1105IN

Output Isolation
Isolated
Frequency Range
20 ~ 200kHz
Voltage - Input
7 ~ 30 V
Voltage - Output
20V
Power (watts)
100W
Operating Temperature
-40°C ~ 125°C
Package / Case
14-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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LT1103/LT1105
APPLICATIONS
V
The secondary voltage charges up L1 through D1 when S1
is on. When S1 is off, energy in L1 is transferred through
free-wheeling diode D2 to C1. The extra transformer
winding and diode D3 are needed in a single switch
TYPICAL APPLICATIONS
26
OUT
V
OUT
in continuous mode is defined as:
= V
V
IN
D3
IN
• N • DC
Simplified Forward Converter
1:N
U
S1
D1
INFORMATION
U
D2
L1
U
W
C1
V
COMMON
LT1103 AI02
OUT
LT1103 TA04
U
LT1105
LT1103
LT1103 FET Connection
LT1105 FET Connection
V
V
15V
I
15V
LIM
SW
SW
forward converter to define the switch voltage when S1 is
off. This “reset” winding limits the maximum duty cycle
allowed for the switch. This topology trades off reduced
transformer size for increased complexity and parts count.
A separate isolated feedback path is required for full
isolation from input to output because voltages on the
primary are no longer related to the DC output voltage
during switch off time.
The isolated feedback path can take several forms. A
second transformer in a modulator/demodulator scheme
provides the isolation, but with significant complexity. An
optoisolator can be substituted for the transformer with a
savings in volume to be traded off with component
variations and possible aging problems with the
optoisolator transfer function. Finally, an extra winding
closely coupled to the output inductor L1 can sense the
flux in this element and give a representation of the output
voltage when S1 is off.
LT1103 TA03

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