LTC3723EGN-1 Linear Technology, LTC3723EGN-1 Datasheet - Page 12

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LTC3723EGN-1

Manufacturer Part Number
LTC3723EGN-1
Description
IC CTRLR PWM SYNC PUSHPLL 16SSOP
Manufacturer
Linear Technology
Datasheet

Specifications of LTC3723EGN-1

Pwm Type
Current Mode
Number Of Outputs
1
Frequency - Max
1MHz
Duty Cycle
50%
Buck
No
Boost
No
Flyback
Yes
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
Yes
Operating Temperature
-40°C ~ 85°C
Package / Case
16-SSOP
Frequency-max
1MHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Voltage - Supply
-

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OPERATIO
LTC3723-1/LTC3723-2
product offerings as well. A different approach is to add a
winding to the output inductor and peak detect and filter
the square wave signal (see Figure 4b). The polarity of this
winding is designed so that the positive voltage square
wave is produced while the output inductor is freewheel-
ing. An advantage of this technique over the previous is
that it does not require a separate filter inductor and since
the voltage is derived from the well-regulated output
voltage, it is also well controlled. One disadvantage is that
this winding will require the same safety isolation that is
required for the main transformer. Another disadvantage
is that a much larger V
it does not generate a voltage as the output is first starting
up, or during short-circuit conditions.
Programming the LTC3723-1/LTC3723-2 Oscillator
The high accuracy LTC3723-1/LTC3723-2 oscillator cir-
cuit provides flexibility to program the switching fre-
quency and slope compensation required for current
mode control (LTC3723-1). The oscillator circuit pro-
duces a 2.35V peak-to-peak amplitude ramp waveform on
C
oscillator is capable of operation up to 1MHz by the
following equation:
Note that this is the frequency seen on C
drivers switch at 1/2 of this frequency. Also note that
higher switching frequency and added driver dead-time
via DPRG will reduce the maximum duty cycle.
The LTC3723-1/LTC3723-2 can be synchronized to an
external frequency source such as another PWM chip. In
12
T
. Typical maximum duty cycles of 49% are possible. The
C
V
V
T
IN
CC
= 1/(14.8k • F
Figure 4b. Output Inductor Bias Supply
R
START
1µF
U
ISO BARRIER
CC
C
OSC
filter capacitor is needed, since
HOLD
)
L
OUT
+
372312 F04b
T
. The output
V
OUT
Figure 5, the leading edge of an external pulse is used to
terminate the natural clock cycle. If the external frequency
is higher than the oscillator frequency, the internal oscil-
lator will synchronize with the external input frequency.
Single-Ended Operation
In addition to push-pull and full-bridge topologies, single-
ended topologies such as the forward and flyback con-
verter can benefit from the many advanced features of the
LTC3723. In Figure 6, the LTC3723 is used with the
LTC4440, 100V high side driver to implement a two-
transistor forward converter. DRVB is used which limits
the converter’s maximum duty cycle to 50% (less pro-
grammable driver dead time).
Figure 6. Two-Transistor Forward Converter (Duty Cycle < 50%)
Figure 5. Synchronization from External Source
–V
f
f
OSC
SW
V
FREQUENCY
IN
IN
EXTERNAL
SOURCE
= f
< f
OSC
DRVB
EXT
C
LTC3723
T
/2
< 1.25 • f
C
T
IN
SDRB
GND
f
OSC
LTC4440
OSC
GND
2.56V • C
210µA
TG
TS
TO SYNCHRONOUS
SECONDARY MOSFET
f
SW
68pF
T
2 • 2.56V • C
390Ω
C
LTC3723
T
210µA
C
T
T
372312 F06
BAT54
372312 F05
372312f

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