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LTC3890 Datasheet, PDF (20/36 Pages) Linear Technology – 60V Low IQ, Dual, 2-Phase Synchronous Step-Down DC/DC Controller
LTC3890
APPLICATIONS INFORMATION
Tracking and Soft-Start (TRACK/SS Pins)
The start-up of each VOUT is controlled by the voltage on
the respective TRACK/SS pin. When the voltage on the
TRACK/SS pin is less than the internal 0.8V reference,
the LTC3890 regulates the VFB pin voltage to the voltage
on the TRACK/SS pin instead of 0.8V. The TRACK/SS pin
can be used to program an external soft-start function or
to allow VOUT to track another supply during start-up.
Soft-start is enabled by simply connecting a capacitor
from the TRACK/SS pin to ground, as shown in Figure 6.
An internal 1μA current source charges the capacitor,
providing a linear ramping voltage at the TRACK/SS pin.
The LTC3890 will regulate the VFB pin (and hence VOUT)
according to the voltage on the TRACK/SS pin, allowing
VOUT to rise smoothly from 0V to its final regulated value.
The total soft-start time will be approximately:
tSS
=
CSS
•
0.8V
1μA
VX(MASTER)
VOUT(SLAVE)
TIME
3890 F07a
(7a) Coincident Tracking
VX(MASTER)
VOUT(SLAVE)
1/2 LTC3890
TRACK/SS
CSS
SGND
3890 F06
Figure 6. Using the TRACK/SS Pin to Program Soft-Start
Alternatively, the TRACK/SS pin can be used to track two
(or more) supplies during start-up, as shown qualita-
tively in Figures 7a and 7b. To do this, a resistor divider
should be connected from the master supply (VX) to the
TRACK/SS pin of the slave supply (VOUT), as shown in
Figure 8. During start-up VOUT will track VX according
to the ratio set by the resistor divider:
VX = RA • RTRACKA + RTRACKB
VOUT RTRACKA
RA + RB
For coincident tracking (VOUT = VX during start-up):
RA = RTRACKA
RB = RTRACKB
TIME
3890 F07b
(7b) Ratiometric Tracking
Figure 7. Two Different Modes of Output Voltage Tracking
Vx VOUT
RTRACKB
RTRACKA
RB 1/2 LTC3890
VFB
RA
TRACK/SS
3890 F08
Figure 8. Using the TRACK/SS Pin for Tracking
INTVCC Regulators
The LTC3890 features two separate internal P-channel low
dropout linear regulators (LDO) that supply power at the
INTVCC pin from either the VIN supply pin or the EXTVCC
pin depending on the connection of the EXTVCC pin.
INTVCC powers the gate drivers and much of the LTC3890’s
internal circuitry. The VIN LDO and the EXTVCC LDO regulate
3890f
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