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AS1369 Datasheet(PDF) 15 Page - ams AG

Part # AS1369
Description  200mA Ultra-Compact Low Dropout Regulator
PDF  22 Pages
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Manufacturer  AMSCO [ams AG]
Direct Link  http://www.ams.com
Logo AMSCO - ams AG

AS1369 Datasheet(HTML) 15 Page - ams AG

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www.austriamicrosystems.com/LDOs/AS1369
Revision 1.7
14 - 21
AS1369
Datasheet - Application In form atio n
Figure 47. Graphical Representation of Dropout Voltage
Figure 47 shows the variation of VOUT as VIN is varied for a certain load current. The practical value of dropout is the differential voltage (VOUT
- VIN) measured at the point where the LDO output voltage has fallen by 100mV below the nominal, fully regulated output value. The nominal
regulated output voltage of the LDO is that obtained when there is 500mV (or greater) input-output voltage differential.
8.2 Efficiency
Low quiescent current and low input-output voltage differential are important in battery applications amongst others, as the regulator efficiency is
directly related to quiescent current and dropout voltage. Efficiency is given by:
Efficiency =
%
(EQ 3)
Where:
IQ = Quiescent current of LDO
8.3 Power Dissipation
Maximum power dissipation (PD) of the LDO is the sum of the power dissipated by the internal series MOSFET and the quiescent current
required to bias the internal voltage reference and the internal error amplifier, and is calculated as:
Watts
(EQ 4)
Internal power dissipation as a result of the bias current for the internal voltage reference and the error amplifier is calculated as:
Watts
(EQ 5)
Total LDO power dissipation is calculated as:
Watts
(EQ 6)
Dropout
Voltage
100mV
VIN
VOUT
VOUT
VIN
VOUT
VIN=VOUT(TYP)+0.5V
VIN
V
LOAD
I
LOAD
V
IN IQ
I
LOAD
+

-----------------------------------------
100
PD
MAX
 Seriespass

I
LOAD MAX

=
V
IN MAX

V
OUT MIN

–

PD
MAX
 Bias

V
IN MAX
IQ
=
PD
MAX
 Total

PD
MAX
 Seriespass
 PD
MAX

+
Bias

=



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