ML6206
ML6206 Series Low ESR Cap. Compatible Positive Voltage Regulator
Application
Battery Powered Equipment
Palmtops
Portable Cameras and Video Recorders
Reference Voltage Sources
Features
CMOS Low Power Consumption :
Typical 1.0uAat V
out=3.0V
Output V
oltage Range : 1.5V to 5.0V in 0.1V increments
HighlyAccurate:
Output V
oltage + 3% for 1.5V to 1.9V
Output V
oltage + 2% for 2.0V to 5.0V
Maximum Output Current: 250mA
(within the maximum power dissipation, V
out=5.0V)
Small Input-Output V
oltage Differential:
0.16V at 100mAand 0.4V at 200mA
Input stability: Typ. 0.2%/V
PackageAvailable:
SOT- 23 (150mW), SOT- 89 (500mW) &
TO - 92 (300mW)
Reverse Battery Protection
Current Limit
General Description
The ML6206 series are highly precise, low power
consumption, high voltage, positive voltage output,
three-pin regulator. It provides high output current
even when the input/output voltage differential is
small.
The ML6206 consists of a high-precision voltage
reference, an error correction circuit, a current
limited output driver and reverse battery protection.
Block Diagram
Absolute Maximum Ratings
Parameter
Input Voltage
Output Current
Output Voltage
SOT-23
Continuous
TO-92
Operating Ambient Temperature
Storage Temperature
Total Power
Dissipation
SOT-89
Symbol
V
IN
I
OUT
V
OUT
P
d
T
opr
T
stg
P1/18
Ratings
6.5
500
V
SS
-0.3 ~V
IN
+0.3
150
500
300
-40 ~ +70
-40 ~ +70
Units
V
mA
V
mW
o
o
C
C
May 2009
ML6206
Pin Configuration
SOT-23
SOT-89
TO-92
Package Pin Number
SOT23
SOT89
TO-92
1
1
1
3
2
2
2
3
3
Pin Name
VSS
VIN
VOUT
Function
Ground
Power Input
Output
Standard Circuit
Note on Use
1. Oscillation may occur as a result of the impedance present between the power supply and the IC’s input. Please use a
capacitor (CIN) of at least 1uF, when the impedance is 10 ohm or more.
With a large output current, Voltage output can be stabilised by increasing capacitor (CIN) size. If CIN is small and
capacitor (CL) size is increased, oscillation may occur. In such cases, Voltage output can be stabilised by either increasing
the size of CIN or decreasing the size of CL.
2. Please ensure that output current (IOUT) is less than Pd / (VIN-VOUT) and does not exceed the stipulated Continuous Total
Power Dissipation value (Pd).
Test Circuit
Test Circuit 1
Test Circuit 2
P2/18
May 2009
ML6206
Electrical Characteristic
ML6206P153 V
OUT
(T)=1.5V(Note 1)
Parameter
Output Voltage
Maximum Output Current
Load Stability
Input –Output
Voltage Differential (Note 3)
Supply Current
Input Stability
Input Voltage
Current Limiter
Symbol
VOUT(E)
(Note 2)
IOUT max
∆
VOUT
Vdif1
Vdif2
ISS
∆
VOUT
∆
VIN * VOUT
VIN
Ishort
Conditions
IOUT=30mA
VIN=2.5V
VIN=2.5V, VOUT(E)
≥
1.35V
VIN=2.5V, 1mA
≤
IOUT
≤
100mA
IOUT=100mA
IOUT=200mA
VIN=2.5V
IOUT=30mA
VOUT(T)+1.0V
≤
VIN
≤
6V
VIN = VOUT+1.5V, VOUT=VSS
Min
1.455
200
35
250
500
1.0
0.01
1.2
100
0.30
6.5
Typ
1.500
Max
1.545
Units
V
mA
mV
mV
mV
uA
%V
V
mA
Circuit
1
1
1
1
1
2
1
-
1
ML6206P183 V
OUT
(T)=1.8V(Note 1)
Parameter
Output Voltage
Maximum Output Current
Load Stability
Input –Output
Voltage Differential (Note 3)
Supply Current
Input Stability
Input Voltage
Current Limiter
Symbol
VOUT(E)
(Note 2)
IOUT max
∆
VOUT
Vdif1
Vdif2
ISS
∆
VOUT
∆
VIN * VOUT
VIN
Ishort
Conditions
IOUT=30mA
VIN=2.8V
VIN=2.8V, VOUT(E)
≥
1.62V
VIN=2.8V, 1mA
≤
IOUT
≤
100mA
IOUT=100mA
IOUT=200mA
VIN=2.8V
IOUT=30mA
VOUT(T)+1.0V
≤
VIN
≤
6V
VIN = VOUT+1.5V, VOUT=VSS
Min
1.746
200
35
250
500
1.0
0.01
1.2
100
0.30
6.5
Typ
1.800
Max
1.854
Units
V
mA
mV
mV
mV
uA
%V
V
mA
Circuit
1
1
1
1
1
2
1
-
1
ML6206P212 V
OUT
(T)=2.1V(Note 1)
Parameter
Output Voltage
Maximum Output Current
Load Stability
Input –Output
Voltage Differential (Note 3)
Supply Current
Input Stability
Input Voltage
Current Limiter
Symbol
VOUT(E)
(Note 2)
IOUT max
∆
VOUT
Vdif1
Vdif2
ISS
∆
VOUT
∆
VIN * VOUT
VIN
Ishort
Conditions
IOUT=30mA
VIN=3.1V
VIN=3.1V, VOUT(E)
≥
1.89V
VIN=3.1V, 1mA
≤
IOUT
≤
100mA
IOUT=100mA
IOUT=200mA
VIN=3.1V
IOUT=30mA
VOUT(T)+1.0V
≤
VIN
≤
6V
VIN = VOUT+1.5V, VOUT=VSS
Min
2.058
240
30
180
390
1.0
0.01
1.2
100
0.30
6.5
Typ
2.100
Max
2.142
Units
V
mA
mV
mV
mV
uA
%V
V
mA
Circuit
1
1
1
1
1
2
1
-
1
ML6206P302 V
OUT
(T)=3.0V(Note 1)
Parameter
Output Voltage
Maximum Output Current
Load Stability
Input –Output
Voltage Differential (Note 3)
Supply Current
Input Stability
Input Voltage
Current Limiter
Symbol
VOUT(E)
(Note 2)
IOUT max
∆
VOUT
Vdif1
Vdif2
ISS
∆
VOUT
∆
VIN * VOUT
VIN
Ishort
Conditions
IOUT=30mA
VIN=4.0V
VIN=4.0V, VOUT(E)
≥
2.7V
VIN=4.0V, 1mA
≤
IOUT
≤
100mA
IOUT=100mA
IOUT=200mA
VIN=4.0V
IOUT=30mA
VOUT(T)+1.0V
≤
VIN
≤
6V
VIN = VOUT+1.5V, VOUT=VSS
Min
2.940
270
25
120
260
1.0
0.01
1.2
100
0.30
6.5
Typ
3.000
Max
3.060
Units
V
mA
mV
mV
mV
uA
%V
V
mA
Circuit
1
1
1
1
1
2
1
-
1
P3/18
May 2009
ML6206
ML6206P332 V
OUT
(T)=3.3V(Note 1)
Parameter
Output Voltage
Maximum Output Current
Load Stability
Input –Output
Voltage Differential (Note 3)
Supply Current
Input Stability
Input Voltage
Current Limiter
Symbol
VOUT(E)
(Note 2)
IOUT max
∆
VOUT
Vdif1
Vdif2
ISS
∆
VOUT
∆
VIN * VOUT
VIN
Ishort
Conditions
IOUT=30mA
VIN=4.3V
VIN=4.3V, VOUT(E)
≥
2.97V
VIN=4.3V, 1mA
≤
IOUT
≤
100mA
IOUT=100mA
IOUT=200mA
VIN=4.3V
IOUT=30mA
VOUT(T)+1.0V
≤
VIN
≤
6V
VIN = VOUT+1.5V, VOUT=VSS
Min
2.234
270
25
120
260
1.0
0.01
1.2
100
0.30
6.5
Typ
3.300
Max
3.366
Units
V
mA
mV
mV
mV
uA
%V
V
mA
Circuit
1
1
1
1
1
2
1
-
1
ML6206P502 V
OUT
(T)=5.0V(Note 1)
Parameter
Output Voltage
Maximum Output Current
Load Stability
Input –Output
Voltage Differential (Note 3)
Supply Current
Input Stability
Input Voltage
Current Limiter
Symbol
VOUT(E)
(Note 2)
IOUT max
∆
VOUT
Vdif1
Vdif2
ISS
∆
VOUT
∆
VIN * VOUT
VIN
Ishort
Conditions
IOUT=30mA
VIN=6.0V
VIN=6.0V, VOUT(E)
≥
4.5V
VIN=6.0V, 1mA
≤
IOUT
≤
100mA
IOUT=100mA
IOUT=200mA
VIN=5.0V
IOUT=30mA
5.0V
≤
VIN
≤
6.5V
VIN = VOUT+1.5V, VOUT=VSS
Min
4.900
270
25
110
260
1.0
0.01
1.2
100
0.30
6.5
Typ
5.000
Max
5.100
Units
V
mA
mV
mV
mV
uA
%V
V
mA
Circuit
1
1
1
1
1
2
1
-
1
Note : 1. VOUT(T) = Specified Output Voltage.
2. VOUT(E) = Effective Output Voltage (i.e. the output voltage when (VOUT(T)+1.0V) is provided at the VIN pin
while maintaining a certain IOUT value).
3. Vdif = VIN1(Note 4) – VOUT(E)
4. VIN1 = The input voltage at the time 98% of VOUT (E) is output (input voltage has been
gradually reduced).
P4/18
May 2009
ML6206
Typical Performance Characteristics
1) Output Voltage vs. Output Current
ML6206P153
ML6206P302
ML6206P332
P5/18
May 2009