LTC3719 LINER [Linear Technology], LTC3719 Datasheet - Page 20

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LTC3719

Manufacturer Part Number
LTC3719
Description
2-Phase, High Efficiency, Step-Down Controller for AMD Opteron CPUs
Manufacturer
LINER [Linear Technology]
Datasheet

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APPLICATIO S I FOR ATIO
LTC3719
condition. When deriving the 5 A current from V
the figure, current latchoff is always defeated. The diode
connecting this pull-up resistor to INTV
eliminates any extra supply current during shutdown
while eliminating the INTV
controller start-up.
Why should you defeat current latchoff? During the
prototyping stage of a design, there may be a problem with
noise pickup or poor layout causing the protection circuit
to latch off the controller. Defeating this feature allows
troubleshooting of the circuit and PC layout. The internal
short-circuit and foldback current limiting still remains
active, thereby protecting the power supply system from
failure. A decision can be made after the design is com-
plete whether to rely solely on foldback current limiting or
to enable the latchoff feature by removing the pull-up
resistor.
The value of the soft-start capacitor C
scaled with output voltage, output capacitance and load
current characteristics. The minimum soft-start capaci-
tance is given by:
The minimum recommended soft-start capacitor of C
0.1 F will be sufficient for most applications.
Phase-Locked Loop and Frequency Synchronization
The LTC3719 has a phase-locked loop comprised of an
internal voltage controlled oscillator and phase detector.
This allows the top MOSFET turn-on to be locked to the
rising edge of an external source. The frequency range of
the voltage controlled oscillator is 50% around the
center frequency f
of 1.2V corresponds to a frequency of approximately
220kHz. The nominal operating frequency range of the
LTC3719 is 140kHz to 310kHz.
The phase detector used is an edge sensitive digital type
which provides zero degrees phase shift between the
20
C
SS
> (C
OUT
)(V
O
OUT
. A voltage applied to the PLLFLTR pin
U
)(10
U
-4
CC
)(R
loading from preventing
SENSE
W
)
SS
CC
may need to be
, as in Figure 5,
U
IN
as in
SS
=
external and internal oscillators. This type of phase detec-
tor will not lock up on input frequencies close to the
harmonics of the VCO center frequency. The PLL hold-in
range, f
The output of the phase detector is a complementary pair
of current sources charging or discharging the external
filter network on the PLLFLTR pin. A simplified block
diagram is shown in Figure 6.
If the external frequency (f
lator frequency f
pulling up the PLLFLTR pin. When the external frequency
is less than f
down the PLLFLTR pin. If the external and internal fre-
quencies are the same but exhibit a phase difference, the
current sources turn on for an amount of time correspond-
ing to the phase difference. Thus the voltage on the
PLLFLTR pin is adjusted until the phase and frequency of
the external and internal oscillators are identical. At this
stable operating point the phase comparator output is
open and the filter capacitor C
LTC3719 PLLIN pin must be driven from a low impedance
source such as a logic gate located close to the pin.
PLLIN
f
EXTERNAL
H
OSC
= f
Figure 6. Phase-Locked Loop Block Diagram
H
, is equal to the capture range, f
C
= 0.5 f
50k
0SC
, current is sunk continuously, pulling
0SC
FREQUENCY
DETECTOR
DETECTOR
DIGITAL
PHASE/
PHASE
, current is sourced continuously,
O
(150kHz-300kHz)
PLLIN
LP
) is greater than the oscil-
2.4V
holds the voltage. The
C:
PLLFLTR
R
10k
LP
sn3719 3719fs
3719 F07
OSC
C
LP

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