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LTC1522CMS8 查看數據表(PDF) - Linear Technology

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LTC1522CMS8 Datasheet PDF : 8 Pages
1 2 3 4 5 6 7 8
LTC1522
APPLICATIONS INFORMATION
1 NC
NC 8
VIN
2.7V TO 5V +
10µF
+
2 VIN
SHDN 7
LTC1522
3 VOUT
GND 6
10µF 4 C+
C5
VOUT
5V ±4%
0.22µF
FROM MPU SHDN PIN WAVEFORMS:
LOW IQ MODE (2Hz TO 100Hz, 95% TO 98% DUTY CYCLE) VOUT LOAD ENABLE MODE
IOUT 100µA
(IOUT = 100µA TO 20mA)
1522 F02
Figure 2. Ultralow Quiescent Current (<2.1µA) Regulated Supply
6.0
1000
SHDN ON PULSE WIDTH = 200µs
COUT = 10µF
4.0
100
2.0
10
0.0
2.0
3.0
4.0
INPUT VOLTAGE (V)
5.0
1522 F03a
1
1
10
100
1000
OUTPUT CURRENT (µA)
1522 F03b
Figure 3a. No-Load ICC vs Input Voltage for Circuit in Figure 3
The LTC1522 must be out of shutdown for a minimum
duration of 200µs to allow enough time to sense the output
and keep it in regulation. A 2Hz, 98% duty cycle signal will
keep VOUT in regulation under no-load conditions. As the
VOUT load current increases, the frequency with which the
part is taken out of shutdown must also be increased to
prevent VOUT from drooping below 4.8V during the OFF
phase (see Figure 3b). A 100Hz 98% duty cycle signal on
the SHDN pin ensures proper regulation with load currents
as high as 100µA. When load current greater than 100µA
is needed, the SHDN pin must be forced low as in normal
operation. The typical no-load supply current for this
circuit with VIN = 3V is only 2.1µA.
Figure 3b. Maximum SHDN OFF Time vs Output Load Current
for Ultralow IQ Operation
Each time the LTC1522 comes out of shutdown, the part
delivers a minimum of one clock cycle worth of charge to
the output. Under high VIN (> 3.3V) and/or low IOUT(< 10µA)
conditions, this behavior may cause a net excess of charge
to be delivered to the output capacitor if a high frequency
signal is used on the SHDN pin (e.g., 50Hz to 100Hz).
Under such conditions, VOUT will slowly drift positive and
may even go out of regulation. To avoid this potential
problem in the low IQ mode, it is necessary to switch the
part in and out of shutdown at the minimum allowable
frequency (refer to Figure 3b) for a given output load.
6

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