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ADP1763WACPZ-R7 Datasheet(PDF) 4 Page - Analog Devices

Part # ADP1763WACPZ-R7
Description  3 A, Low VIN, Low Noise, CMOS Linear Regulator
PDF  22 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADP1763WACPZ-R7 Datasheet(HTML) 4 Page - Analog Devices

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Data Sheet
ADP1763
SPECIFICATIONS
analog.com
Rev. E | 4 of 22
Table 1.
Parameter
Symbol
Test Conditions/Comments
Min
Typ
Max
Unit
START-UP TIME1, 4
tSTART-UP
CSS = 10 nF, VOUT = 1.3 V
0.6
ms
SOFT START CURRENT
ISS
1.1 V ≤ VIN ≤ 1.98 V
8
10
12
µA
CURRENT-LIMIT THRESHOLD5
ILIMIT
3.3
4
5
A
THERMAL SHUTDOWN
Threshold
TSSD
TJ rising
150
°C
Hysteresis
TSSD-HYS
15
°C
POWER-GOOD (PG) OUTPUT THRESHOLD
Output Voltage
Falling
PGFALL
1.1 V ≤ VIN ≤ 1.98 V
−7.5
%
Rising
PGRISE
1.1 V ≤ VIN ≤ 1.98 V
−5
%
PG OUTPUT
Output Voltage Low
PGLOW
1.1 V ≤ VIN ≤ 1.98 V, IPG ≤ 1 mA
0.35
V
Leakage Current
IPG-LKG
1.1 V ≤ VIN ≤ 1.98 V
0.01
1
µA
Delay1
PGDELAY
ENRISING to PGRISING
0.75
ms
PRECISION EN INPUT
1.1 V ≤ VIN ≤ 1.98 V
Logic Input
High
ENHIGH
595
625
690
mV
Low
ENLOW
550
580
630
mV
Input Logic Hysteresis
ENHYS
45
mV
Input Leakage Current
IEN-LKG
EN = VIN or GND
0.01
1
µA
Input Delay Time
tIEN-DLY
From EN rising from 0 V to VIN to 0.1 × VOUT
100
µs
UNDERVOLTAGE LOCKOUT
UVLO
Input Voltage
Rising
UVLORISE
TJ = −40°C to +125°C
1.01
1.06
V
Falling
UVLOFALL
TJ = −40°C to +125°C
0.87
0.93
V
Hysteresis
UVLOHYS
80
mV
1 Guaranteed by design and characterization; not production tested.
2 Based on an endpoint calculation using 10 mA and 3 A loads.
3 Dropout voltage is defined as the input to output voltage differential when the input voltage is set to the nominal output voltage, which applies only for output voltages above
1.1 V.
4 Start-up time is defined as the time from the rising edge of EN to VOUT being at 90% of its nominal value.
5 Current-limit threshold is defined as the current at which the output voltage drops to 90% of the specified typical value. For example, the current limit for a 1.0 V output
voltage is defined as the current that causes the output voltage to drop to 90% of 1.0 V, or 0.9 V.



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