LT1790AIS6-2.5#PBF Linear Technology, LT1790AIS6-2.5#PBF Datasheet - Page 18

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LT1790AIS6-2.5#PBF

Manufacturer Part Number
LT1790AIS6-2.5#PBF
Description
ldo, vref, 2.5v, 0.05%, 6sot23; topology:series; input...
Manufacturer
Linear Technology
Datasheet

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LT1790
APPLICATIONS
Bypass and Load Capacitors
The LT1790 voltage references should have an input
bypass capacitor of 0.1 F or larger, however the bypass-
ing of other local devices may serve as the required
component. These references also require an output ca-
pacitor for stability. The optimum output capacitance for
most applications is 1 F, although larger values work as
well. This capacitor affects the turn-on and settling time
for the output to reach its final value.
All LT1790 voltages perform virtually the same, so the
LT1790-2.5 is used as an example.
18
V
3V
IN
Figure 2. Output Response to 0.5V Ripple on V
Figure 1. Turn-On Characteristics of LT1790-2.5
3V
2V
1V
0V
3V
2V
1V
0V
C
0.1 F
Figure 3. Response Time Test Circuit
IN
4
LT1790-2.5
U
1, 2
INFORMATION
U
6
C
1 F
W
L
1k
1790 F01
1790 F02
V
GEN
U
V
V
V
V
IN
OUT
IN
OUT
IN
1790 F03
1V
Figure 1 shows the turn-on time for the LT1790-2.5 with
a 1 F input bypass and 1 F load capacitor. Figure 2 shows
the output response to a 0.5V transient on V
same capacitors.
The test circuit of Figure 3 is used to measure the stability
of various load currents. With R
produces a current step of 1mA. Figure 4 shows the
response to a 0.5mA load. Figure 5 is the output re-
sponse to a sourcing step from 4mA to 5mA, and Figure 6
is the output response of a sinking step from – 4mA to
– 5mA.
Figure 4. LT1790-2.5 Sourcing and Sinking 0.5mA
V
V
–2V
–3V
GEN
GEN
3V
2V
Figure 5. LT1790-2.5 Sourcing 4mA to 5mA
L
= 1k, the 1V step
1790 F04
1790 F05
IN
V
(AC COUPLED)
V
(AC Coupled)
OUT
OUT
with the
1790fa

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