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RS3003
150mA, Low Power Consumption,
High Voltage CMOS LDO Regulator
FEATURES
•
•
•
•
•
•
•
•
Low Power Consumption
150mA Nominal Output Current
Low Dropout Voltage
Low Temperature Coefficient
High Input Voltage (up to 36V)
Output Voltage Accuracy:±2.5%
Operating Temperature Range:
-40° to +85°
C
C
Micro
SIZE PACKAGES: SOT23-3
、
SOT89-3L and SOT89-3L(L-Type)
DESCRIPTION
The RS3003 series is a set of low power high voltage
regulators implemented in CMOS technology. It can
operate from 6.3V to 36V. which can provide 150mA
output current. The device allows input voltage as high
as 36V.
The RS3003 series is available in several fixed output
voltages. CMOS technology ensures low dropout
voltage and low quiescent current.
The RS3003 is available in Green SOT23-3 and
SOT89-3L packages. It operates over an ambient
temperature range of -40° to +85°
C
C.
APPLICATIONS
•
•
•
•
Audio/Video Equipment
Communication Equipment
Battery-Powered Equipment
Laptop, Palmtops, Notebook Computers
Function Block Diagram
RevB.2
1
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RS3003
PIN CONFIGURATIONS
SAXX
SOT23-3
GND
1
3
VIN
VOUT
2
GND
VIN
SAXX
1
VOUT
2
GND
3
SAXXL
1
GND
2
3
VOUT
VIN
VIN
SOT89-3L
SOT89-3L(L-Type)
NOTE: XX indicate Output Voltage
For example: SA33 (V
OUT
=3.3V)
PIN DESCRIPTION
PIN
NAME
SOT23-3
GND
VIN
VOUT
1
3
2
SOT89-3L
2
3
1
SOT89-3L
(L-Type)
1
2
3
FUNCTION
Ground.
Regulator Input. Up to 36V input voltage. At least
1μF supply bypass capacitor is recommended.
Regulator Output. Recommended output capacitor
range:1μF to 10μF.
RevB.2
2
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RS3003
ABSOLUTE MAXIMUM RATINGS
(1)
VIN to GND.........................................................-0.3 to 40V
VOUT to GND......................... -0.3V to Min (V
IN
+ 0.3V,7V)
Power Dissipation, P
D
@ T
A
= 25°
C
SOT23-3 ……….……………………………………..... 0.31W
SOT89-3L ……….………………………………………. 1.3W
SOT89-3L(L-Type) ……….………………………….…. 0.6W
Junction Temperature..............................................+150°
C
Operating Temperature Range ...................-40° to +85°
C
C
Package Thermal Resistance @ T
A
= 25°
C
SOT23-3………………….……………………….… 320°
C/W
SOT89-3L……….…………......................................75°
C/W
SOT89-3L(L-Type) ……….……………………...… 165°
C/W
Storage Temperature Range.....................-65° to +150°
C
C
Lead Temperature (Soldering, 10s) ……...…….........260°
C
ESD Susceptibility
HBM ….......................................................................1000V
MM ……………………….........………………...……….100V
(1)
Stresses above these ratings may cause permanent damage. Exposure to
absolute maximum conditions for extended periods may degrade device
reliability. These are stress ratings only, and functional operation of the
device at these or any other conditions beyond those specified is not
implied.
ESD SENSITIVITY CAUTION
ESD damage can range from subtle performance
degradation to complete device failure. Precision
integrated circuits may be more susceptible to
damage because very small parametric changes
could cause the device not to meet its published
specifications.
PACKAGE/ORDERING INFORMATION
PRODUCT
ORDERING
NUMBER
RS3003-3.3YF3
RS3003-3.3
RS3003-3.3YE3
RS3003-3.3YE3L
RS3003-5.0YF3
RS3003-5.0
RS3003-5.0YE3
RS3003-5.0YE3L
NOTE: XXXXX = Date Code and Vendor Code.
V
OUT
(V)
3.3
3.3
3.3
5.0
5.0
5.0
PACKAGE LEAD
PACKAGE
MARKING
SA33
XXXX
SA33
XXXX
SA33L
XXXX
SA50
XXXX
SA50
XXXX
SA50L
XXXX
PACKAGE OPTION
Tape and Reel,3000
Tape and Reel,1000
Tape and Reel,1000
Tape and Reel,3000
Tape and Reel,1000
Tape and Reel,1000
SOT23-3
SOT89-3L
SOT89-3L
(L-Type)
SOT23-3
SOT89-3L
SOT89-3L
(L-Type)
3
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RS3003
ELECTRICAL CHARACTERISTICS
(V
IN
= V
OUT
+ 2V or 6.3V, whichever is greater, C
IN
= C
OUT
= 1μF, Full = -40° to +85° typical values are at T
A
= +25° unless
C
C,
C,
otherwise noted.)
PARAMETER
Input Voltage
Output Voltage Accuracy
SYMBOL
V
IN
V
OUT
= 3.3V
I
OUT
= 1mA
V
IN
= V
OUT
+ 2V or 6.3V
Ground Pin Current
No load
V
IN
= 36V
I
OUT
= 50mA
Maximum Output Current
(1)
Dropout Voltage
(2)
Line Regulation
Load Regulation
Power Supply Rejection
Ratio
Output Voltage Temperature
Coefficient
(3)
NOTES:
1. Maximum output current is affected by the PCB layout, size of metal trace, the thermal conduction path between metal
layers, ambient temperature and the other environment factors of system. Attention should be paid to the dropout voltage
when V
IN
< V
OUT
+ V
DROP
.
2. The dropout voltage is defined as V
IN
- V
OUT
, when V
OUT
is 100mV below the value of V
OUT
for V
IN
= V
OUT (NOMINAL)
+ 2V
or 6.3V, whichever is greater.
3. Output voltage temperature coefficient is defined as the worst-case voltage change divided by the total temperature
range.
V
DROP
V
IN
= V
OUT
+ 2V or 6.3V,
whichever is greater
I
OUT
= 150mA
+25°C
+25°C
+25°C
+25°C
+25°C
FULL
150
1300 1800
0.005 0.012
10
65
63
70
25
+25°C
CONDITIONS
TEMP
FULL
+25°C
MIN
6.3
-2.5
0
11
16
11
mA
mV
%/V
mV
dB
ppm/°C
TYP
MAX
36
2.5
18
25
μA
UNITS
V
%
ΔV
OUT
V
IN
= V
OUT
+ 2V or 6.3V to 36V,
ΔV
IN
× V
OUT
I
OUT
= 1mA
ΔV
OUT
PSRR
V
IN
= V
OUT
+2V or 6.3V,
I
OUT
= 1mA to150mA
V
OUT
= 3.3V,
I
OUT
= 10mA
f = 217Hz
f = 1KHz
ΔV
OUT
I
OUT
= 1mA
ΔT
A
× V
OUT
4
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RS3003
TYPICAL CHARACTERISTICS
V
IN
= V
OUT (NOMINAL)
+ 2V or 6.3V, whichever is greater, V
OUT
= 3.3V, C
IN
= C
OUT
= 1
μ
F, T
A
= 25° unless otherwise noted.
C
Line-Transient Response
V
IN
=6.3V to 7.3V,I
OUT
=50mA
Load-Transient Response
I
OUT
=10mA to 100mA
100mV/div
1V/div
V
IN
V
OUT
100mV/div
50mA/div
V
OUT
I
OUT
Time(1ms/div)
Time(2ms/div)
Power-Up/Power-Down Output Waveform
Output Short Waveform
V
OUT
2V/div
2V/div
V
IN
100mA/div
2V/div
V
OUT
V
IN
=0 to 6.3V,I
OUT
=50mA
Time(2ms/div)
I
OUT
Time(2ms/div)
600
Dropout Voltage vs. Temperature
1600
Dropout Voltage vs. Output Current
Dropout Voltage(mV)
Dropout Voltage(mV)
-50
-25
0
25
50
75
100
550
500
450
400
350
I
OUT
=50mA
1200
800
400
300
0
0
25
Temperature(℃)
Output Current(mA)
50
75
100
125
150
5
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