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LTC3265 Datasheet(PDF) 13 Page - Linear Technology

Part # LTC3265
Description  Low Noise Dual Supply with Boost and Inverting Charge Pumps
PDF  20 Pages
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LTC3265 Datasheet(HTML) 13 Page - Linear Technology

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LTC3265
13
3265fa
For more information www.linear.com/LTC3265
OPERATION
Negative Low Dropout Linear Regulator (LDO–)
The negative low dropout regulator (LDO–) supports a
load of up to 50mA. The LDO– takes power from the VOUT–
pin (output of the inverting charge pump) and drives the
LDO– output pin to a voltage programmed by the resistor
divider connected between LDO–, ADJ– and GND pins. For
stability,theLDO–outputmustbebypassedtogroundwith
a low ESR ceramic capacitor that maintains a capacitance
of at least 2µF across operating temperature and voltage.
The LDO– is enabled or disabled via the EN– logic input
pin. Initially, when the EN– logic input is low, the charge
pump circuitry is disabled and the VOUT– pin is at GND.
When EN– is switched high, the VOUT– pin will be driven
1.2V REF
BYP+
GND
CBYP+
COUT
COPT
LDO
OUTPUT
R1
R2
3265 F02
ADJ+
LDO+
EN+
VOUT+
0
1
Figure 2. Positive LDO Application Circuit
Figure 3: Negative LDO Application Circuit
–1.2V REF
BYP–
GND
CBYP–
COUT
LDO
OUTPUT
R1
R2
3265 F03
ADJ–
LDO–
EN–
VOUT–
0
1
COPT
negative by the charge pump circuitry. Soft-start circuitry
in the charge pump also provides soft-start functionality
for the LDO– and prevents excessive inrush currents.
Figure 3 shows the LDO– regulator application circuit.
The LDO– output voltage VLDO– can be programmed by
choosing suitable values of R1 and R2 such that:
VLDO– = –1.2V •
R1
R2
+1


An optional capacitor of 100nF can be connected from the
BYP– pin to ground. This capacitor bypasses the internal
–1.2V reference of the LTC3265 and improves the noise
performance of the LDO–. If this function is not used the
BYP– pin should be left floating.
An optional feedback capacitor (COPT) can be added for
improved transient response. A value of 10pF is recom-
mended for most applications but experimentation with
capacitor sizes between 2pF and 22pF may yield further
improvement in the transient response.



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