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ME6203_datasheet_E01
微盟 LDO
ME6203
High Input Voltage LDO Regulators ME6203 Series
General Description
Typical Application
Selection Guide
Typical Application Circuit
ME6203
Features
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Pin Configuration
SOT-89-3
Pin Assignment
ME6203AXX
Pin Number
Pin SSIN3
VOUTBlock Diagram
ME6203
Absolute Maximum Ratings
Input Voltage Output Voltage
Power Dissipation
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SOT-89
Operating Temperature Range Storage Temperature Range Lead Temperature
SOT-89
VINVOUT TOPR TSTG
Vss-0.3~VIN
0.3
0~+100 -40~+150 260℃,10sec
PDV
℃ ℃
Electrical Characteristics
ME6203A30
(VIN= 7V,CIN=CL=10uF,Ta=25OC, unless otherwise noted)
Output
Voltage
Input
Voltage
Maximum
Outhttp://www.1mpi.com/doc/c51901456838ca347ce7243dput
Current Load Regulation Line Regulation Temperature Stability Quiescent Current
short-circuit current Ripple Rejection Rate
Conditions IOUT=10mA, 7V ≤VIN≤30V VIN= 7V
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Min. X 0.975
Typ. VOUT (T) (Note 1) 100
Max. X 1.025
Units V
VOUT(E)(Note 2)
VINIOUTMAX
=VIN 24V =VIN 30V
?VOUT ?VOUT ?VOUT Ishort PSRR
mA VIN= 7V , 0mA≤IOUT≤IOUT =10mA,7V ≤VIN≤30V VIN= 7V, IOUT =10mA,0~100℃
VIN= 7V VIN = 12V
IOUT=5mA,1kHZ
13
30
mA
1Vp-pAC
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IsμA
ME6203
ME6203A33
(VIN= 7V,CIN=CL=10uF,Ta=25OC, unless otherwise noted)
Output Voltage Input Voltage
Maximum Output
Current Load Regulation Line Regulation Temperature Stability Quiescent Current
short-circuit current Ripple Rejection Rate ME6203A50
(VIN= 7V , CIN=CL=10uF , Ta=25OC,http://www.1mpi.com/doc/c51901456838ca347ce7243d
unless otherwise noted)
Output Voltage Input Voltage
Maximum Output
Current Load Regulation Line Regulation Temperature Stability Quiescent Current
short-circuit current Ripple Rejection Rate
VOUT(E)(Note 2)
Conditions IOUT=10mA, 7V ≤VIN≤30V VIN= 7V
IOUTMAX
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=VIN 24V =VIN 30V
?VOUT ?VOUT ?VOUT Ishort PSRR
Min. X
0.975
Typ. VOUT (T) (Note 1) 100
Max. X 1.025
Units V
VOUT(E)(Note 2)
Conditions IOUT=10mA, 7V ≤VIN≤30V VIN= 7V
IOUTMAX
=VIN 24V =VIN 30V
?VOUT ?VOUT ?VOUT Ishort PSRR
Min. X
0.975
Typ. VOUT (T) (Note 1) 100
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Max. X 1.025
Units V
VINmA VIN= 7V , 0mA≤IOUT≤IOUT =10mA,7V ≤VIN≤30V VIN= 7V, IOUT =10mA,0~100℃
VIN= 7V VIN = 12V
1Vp-pAC
IOUT=5mA,1kHZ
13
30
mA
IsμA
://www.1mpi.com/doc/c51901456838ca347ce7243drVINmA
=10mA,7V ≤VIN≤30V VIN= 7V, IOUT =10mA,0~100℃
VIN= 7V VIN = 12V
IOUT=5mA,1kHZ
15
1Vp-pAC
VIN=
7V
,
0mA≤IOUT≤IOUT
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30
mA
IsμA
Note :
1. VOUT (T) :Specified Output Voltage 2. VOUT (E) :Effective Output Voltage
ME6203
Type Characteristics
(1) Output Voltage VS. Input Voltage
Temperature
(2) Output Voltage Change vs.
(
IOUT=10mA, Ta = 25 °C)
(VIN=7V , IOUT=10mA)
(3)Output Voltage VS.
Output Current
(VIN=7V,Ta = 25 °C)
= 25 °C)
(4)Ripple Rejection vs. Frequency
(VIN = 12V 1Vp-pAC,IOUT=5mA, Ta
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ME6203
(5)Line Transient Response
Response
(6)rectangle wave Transient
ME6203A33
ME6203A33 Ch1 :
Outhttp://www.1mpi.com/doc/c51901456838ca347ce7243dput Voltage
Voltage
Output
Ch2 : Input
Ch1:
Voltage
Ch2 : Input
VIN:0V~20V,Ta = 25 °C
VIN:10V~30V,Ta = 25 °C
ME6203
Packaging Information:
Voltage
VIN=30V,IOUT=0mA,Ta
=
25
° C
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SOT-89-3
ME6203
z The information described herein is subject to change without notice.
z Nanjing Micro One Electronics Inc is not responsible for any problems caused by
circuits or diagrams
The application circuit examples explain typical applications of the products, and
do not guarantee the success of any specific mass-production design.
z Use of the information described herein for other purposes and/or reproduction or
copying without the
express permission of Nanjing Micro One Electronics Inc is strictly prohibited.
z The products described hehttp://www.1mpi.com/doc/c51901456838ca347ce7243drein
cannot be used as part of any device or equipment affecting the human
body, such as exercise equipment, medical equipment, security systems, gas equipment,
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or any apparatus installed in airplanes and other vehicles, without prior written
permission of Nanjing Micro One Electronics Inc.
z Although Nanjing Micro One Electronics Inc exerts the greatest possible effort to
ensure high quality
and reliability, the failure or malfunction of semiconductor products may occur.
The
user of these products should therefore give thorough consideration to safety design,
including redundancy, fire-prevention measures, and malfunction prevention, to
prevent any accidents, fires, or community damage that may ensue.
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