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LTC3632_15 Datasheet, PDF (13/22 Pages) Linear Technology – High Efficiency, High Voltage 20mA Synchronous Step-Down Converter
LTC3632
APPLICATIONS INFORMATION
Output Voltage Programming
The output voltage is set by an external resistive divider
according to the following equation:
VOUT
=
0.8V
•

1+

R1
R2


controller is enabled. Figure 7 shows examples of con-
figurations for driving the RUN pin from logic.
VSUPPLY
LTC3632
RUN
VIN
4.7M LTC3632
RUN
The resistive divider allows the VFB pin to sense a fraction
of the output voltage as shown in Figure 6. Output voltage
adjustment range is from 0.8V to VIN.
VOUT
VFB
LTC3632
GND
R1
R2
3632 F06
Figure 6. Setting the Output Voltage
To minimize the no-load supply current, resistor values in
the megohm range should be used; however, large resistor
values should be used with caution. The feedback divider
is the only load current when in shutdown. If PCB leak-
age current to the output node or switch node exceeds
the load current, the output voltage will be pulled up. In
normal operation, this is generally a minor concern since
the load current is much greater than the leakage. The
increase in supply current due to the feedback resistors
can be calculated from:
ΔIVIN
=



VOUT
R1+ R2



•



VOUT
VIN



Run Pin with Programmable Hysteresis
The LTC3632 has a low power shutdown mode controlled
by the RUN pin. Pulling the RUN pin below 0.7V puts the
LTC3632 into a low quiescent current shutdown mode
(IQ ~ 3µA). When the RUN pin is greater than 1.2V, the
3632 F07
Figure 7. RUN Pin Interface to Logic
The RUN pin can alternatively be configured as a precise
undervoltage lockout (UVLO) on the VIN supply with a
resistive divider from VIN to ground. The RUN pin com-
parator nominally provides 10% hysteresis when used in
this method; however, additional hysteresis may be added
with the use of the HYST pin. The HYST pin is an open-
drain output that is pulled to ground whenever the RUN
comparator is not tripped. A simple resistive divider can
be used as shown in Figure 8 to meet specific VIN voltage
requirements.
VIN
R1
R2
R3
RUN
LTC3632
HYST
3632 F08
Figure 8. Adjustable Undervoltage Lockout
Specific values for these UVLO thresholds can be computed
from the following equations:
Rising
VIN
UVLO
Threshold =
1.21V
•

1+

R1
R2


Falling
VIN
UVLO
Threshold =
1.10V

• 1+

R1 
R2
+
R3


3632fc
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