ML6206P503TLG

更新时间:2024-09-18 06:26:32
品牌:MINILOGIC
描述:ML6206 Series Low ESR Cap. Compatible Positive Voltage Regulator

ML6206P503TLG 概述

ML6206 Series Low ESR Cap. Compatible Positive Voltage Regulator ML6206系列低ESR帽。兼容的正电压稳压器

ML6206P503TLG 数据手册

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ML6206  
ML6206 Series Low ESR Cap. Compatible Positive Voltage Regulator  
Application  
Features  
CMOSLowPowerConsumption:  
Typical1.0uAatVout=3.0V  
OutputVoltageRange:1.5Vto5.0Vin0.1Vincrements  
HighlyAccurate:  
Battery Powered Equipment  
Palmtops  
Portable Cameras and Video Recorders  
Reference Voltage Sources  
OutputVoltage+3%for1.5Vto1.9V  
OutputVoltage+2%for2.0Vto5.0V  
MaximumOutputCurrent:250mA  
(withinthemaximumpowerdissipation,Vout=5.0V)  
SmallInput-OutputVoltageDifferential:  
0.16Vat100mAand0.4Vat200mA  
Inputstability:Typ.0.2%/V  
PackageAvailable:  
SOT-23(150mW), SOT-89(500mW) &  
TO-92(300mW)  
ReverseBatteryProtection  
CurrentLimit  
General Description  
Block Diagram  
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.  
Absolute Maximum Ratings  
Parameter  
Input Voltage  
Output Current  
Output Voltage  
Symbol  
VIN  
Ratings  
Units  
V
6.5  
500  
IOUT  
mA  
V
VOUT  
VSS-0.3 ~VIN+0.3  
SOT-23  
150  
500  
300  
Continuous  
Total Power  
Dissipation  
SOT-89  
TO-92  
Pd  
mW  
Operating Ambient Temperature  
Storage Temperature  
Topr  
Tstg  
-40 ~ +70  
-40 ~ +70  
oC  
oC  
P1/13  
July 2008  
ML6206  
Pin Configuration  
SOT-23  
SOT-89  
TO-92  
Package Pin Number  
Pin Name  
Function  
SOT23  
SOT89  
TO-92  
1
3
2
1
2
3
1
2
3
VSS  
VIN  
Ground  
Power Input  
Output  
VOUT  
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 2  
Test Circuit 1  
P2/13  
July 2008  
ML6206  
Electrical Characteristic  
ML6206P153 VOUT(T)=1.5V(Note 1)  
Parameter  
Symbol  
VOUT(E)  
(Note 2)  
Conditions  
IOUT=30mA  
VIN=2.5V  
Min  
Typ  
Max  
Units  
Circuit  
Output Voltage  
1.455 1.500 1.545  
V
1
Maximum Output Current  
Load Stability  
IOUT max  
200  
35  
mA  
mV  
mV  
mV  
uA  
1
1
1
1
2
VIN=2.5V, VOUT(E) 1.35V  
VIN=2.5V, 1mAIOUT100mA  
IOUT=100mA  
VOUT  
Vdif1  
Input –Output  
Voltage Differential (Note 3)  
Supply Current  
250  
500  
1.0  
Vdif2  
IOUT=200mA  
ISS  
VIN=2.5V  
IOUT=30mA  
VOUT  
VIN * VOUT  
VIN  
Input Stability  
0.01  
0.30  
6.5  
%V  
1
VOUT(T)+1.0VVIN6V  
Input Voltage  
1.2  
V
-
Current Limiter  
Ishort  
VIN = VOUT+1.5V, VOUT=VSS  
100  
mA  
1
ML6206P302 VOUT(T)=3.0V(Note 1)  
Parameter  
Symbol  
VOUT(E)  
(Note 2)  
Conditions  
IOUT=30mA  
VIN=4.0V  
Min  
Typ  
Max  
Units  
Circuit  
Output Voltage  
2.940 3.000 3.060  
V
1
Maximum Output Current  
Load Stability  
IOUT max  
270  
25  
mA  
mV  
mV  
mV  
uA  
1
1
1
1
2
VIN=4.0V, VOUT(E) 2.7V  
VIN=4.0V, 1mAIOUT100mA  
IOUT=100mA  
VOUT  
Vdif1  
Input –Output  
Voltage Differential (Note 3)  
Supply Current  
120  
260  
1.0  
Vdif2  
IOUT=200mA  
ISS  
VIN=4.0V  
IOUT=30mA  
VOUT  
VIN * VOUT  
VIN  
Input Stability  
0.01  
0.30  
6.5  
%V  
1
VOUT(T)+1.0VVIN6V  
Input Voltage  
1.2  
V
-
Current Limiter  
Ishort  
VIN = VOUT+1.5V, VOUT=VSS  
100  
mA  
1
ML6206P332 VOUT(T)=3.3V(Note 1)  
Parameter  
Symbol  
VOUT(E)  
(Note 2)  
Conditions  
IOUT=30mA  
VIN=4.3V  
Min  
Typ  
Max  
Units  
Circuit  
Output Voltage  
2.234 3.300 3.366  
V
1
Maximum Output Current  
Load Stability  
IOUT max  
270  
25  
mA  
mV  
mV  
mV  
uA  
1
1
1
1
2
VIN=4.3V, VOUT(E) 2.97V  
VIN=4.3V, 1mAIOUT100mA  
IOUT=100mA  
VOUT  
Vdif1  
Input –Output  
Voltage Differential (Note 3)  
Supply Current  
120  
260  
1.0  
Vdif2  
IOUT=200mA  
ISS  
VIN=4.3V  
IOUT=30mA  
VOUT  
VIN * VOUT  
VIN  
Input Stability  
0.01  
0.30  
6.5  
%V  
1
VOUT(T)+1.0VVIN6V  
Input Voltage  
1.2  
V
-
Current Limiter  
Ishort  
VIN = VOUT+1.5V, VOUT=VSS  
100  
mA  
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).  
P3/13  
July 2008  
ML6206  
Typical Performance Characteristics  
1) Output Voltage vs. Output Current  
ML6206P153  
ML6206P302  
2) Current Limit  
ML6206P153  
ML6206P302  
ML6206P502  
P4/13  
July 2008  
ML6206  
3) Output Voltage vs. Input Voltage  
ML6206P153  
ML6206P302  
4) Supply Current vs. Input Voltage  
ML6206P153  
ML6206P302  
5) Output Voltage vs. Ambient Temperature  
ML6206P153  
ML6206P302  
P5/13  
July 2008  
ML6206  
6) Supply Current vs. Ambient Temperature  
ML6206P153  
ML6206P302  
7) Input Transient Response 1  
ML6206P153  
P6/13  
July 2008  
ML6206  
ML6206P302  
8) Input Transient Response 2  
ML6206P153  
ML6206P302  
P7/13  
July 2008  
ML6206  
9) Load Transient Response  
ML6206P153  
ML6206P302  
P8/13  
July 2008  
ML6206  
10) Power Supply Rejection Ratio  
ML6206P153  
ML6206P302  
Ordering Information  
Designator  
Description  
Output Voltage  
eg. 30=3.0V  
50=5.0V  
①②  
Output Voltage Accuracy  
2 = + 2.0%  
3 = + 3.0%  
ML6206P①②③④⑤⑥  
Package Type  
M = SOT-23  
P = SOT-89  
T = TO-92  
Device Orientation  
R = Embossed Tape  
(Orientation of Device : Right)  
L = Embossed Tape  
(Orientation of Device : Left)  
B = Bag (TO-92)  
H = Paper Tape (TO-92)  
G = ROHS Part  
GG = Green Part  
P9/13  
July 2008  
ML6206  
Packaging Information  
SOT-23 :  
SOT-89 :  
(0.8)  
1.5 0.1  
4.5 0.1  
-0.1  
-0.05  
0.15  
-0.1  
-0.05  
1.72 0.1  
0.4  
0 ~ 0.1  
(0.95)  
0.42 0.06  
0.42 0.06  
0.4 0.04  
0.49 0.06  
1.1 0.1  
1.9 0.2  
2.9 0.2  
1.5 0.1  
1.5 0.1  
TO-92 :  
1.27 1.27  
5.2 max  
Units : mm  
Recommended Pattern Layout  
SOT-23 :  
2.2  
SOT-89  
2.4  
45º  
45º  
1.0  
1.  
0
1.0  
1.6  
P10/13  
July 2008  
ML6206  
Tape and Reel Information  
SOT-23 :  
SIZE (mm)  
178 0.8  
0.2  
A
B
C
D
G
H
2
13 0.2  
21 0.8  
8
0.5  
60  
3,000 pcs / reel  
SOT-23 Taping Specifications :  
4
0.1  
+ 0.1  
- 0  
1.5  
2
0.05  
1.1 0.1  
4
0.1  
Direction of feed  
Direction of feed  
“L” type Orientation of Device: Left  
[
]
“R” type Orientation of Device: Right  
[
]
Reverse Type  
Standard Type  
P11/13  
July 2008  
ML6206  
SOT-89 :  
SIZE (mm)  
178 0.8  
0.2  
A
B
C
D
G
H
2
13 0.2  
21 0.8  
12 0.5  
60  
1,000 pcs / reel  
SOT-89 Taping Specifications :  
+ 0.1  
0
4.0 0.1  
1.5  
2.0 0.05  
8.0 0.1  
Direction of feed  
Direction of feed  
“L” type Orientation of Device: Left  
[
]
“R” type Orientation of Device: Right  
[
]
Reverse Type  
Standard Type  
P12/13  
July 2008  
ML6206  
TO-92 Taping Specifications :  
P
P2  
t
F
D
PO  
SIZE (mm)  
P
12.7 1.0  
12.7 0.3  
2,000 pcs / box  
PO  
P2  
6.35 0.4  
+0.45  
2.5  
F
-0.15  
W
WO  
W1  
W2  
H
18.0 1.0  
6.0 0.3  
9.0 0.5  
0.5 MAX  
19.0 0.5  
16.0 0.5  
32.25 MAX  
4.0 0.2  
0.6 0.2  
H0  
H1  
D
t
L1  
3.5 MIN  
MiniLogic reserves the rights to change the information and specification s without prior notice. The information  
presented in this document does not form part of any quotation or contract, is believed to be accurate and reliable and  
may be changed without notice. No liability will be accepted by the publisher for any consequence of its use.  
P13/13  
July 2008  

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