TA48M0345F(LBS1,S) [TOSHIBA]

IC VREG 3.45 V FIXED POSITIVE LDO REGULATOR, 0.65 V DROPOUT, PSSO2, 2.30 MM PITCH, LEAD FREE, PLASTIC, HSOP-3, Fixed Positive Single Output LDO Regulator;
TA48M0345F(LBS1,S)
型号: TA48M0345F(LBS1,S)
厂家: TOSHIBA    TOSHIBA
描述:

IC VREG 3.45 V FIXED POSITIVE LDO REGULATOR, 0.65 V DROPOUT, PSSO2, 2.30 MM PITCH, LEAD FREE, PLASTIC, HSOP-3, Fixed Positive Single Output LDO Regulator

输出元件 调节器
文件: 总12页 (文件大小:362K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
TA48M025,03,033,0345,04,05F  
TOSHIBA Bipolar Linear Integrated Circuit Silicon Monolithic  
TA48M025F, TA48M03F, TA48M033F,  
TA48M0345F, TA48M04F, TA48M05F  
2.5 V, 3 V, 3.3 V, 3.45 V, 4 V, 5 V  
Three-Terminal Low Dropout Voltage Regulator  
The TA48M F series consists of fixed-positive-output, low  
**  
dropout regulators with an output current of 500 mA (max). In  
response to the need for low voltage devices, the series offers  
devices with low output voltages of 2.5 V, 3 V, 3.3 V, 3.45 V, and 4  
V, which are not included in the existing TA78DM S series (0.5  
**  
A low dropout).  
Features  
Maximum output current of 0.5 A  
Low standby current: 0.8 mA (typ.)  
Low dropout voltage: 0.65 V (max) @I  
Protection function:  
= 0.5 A  
OUT  
overheat/overcurrent/overvoltage/reversed power supply  
connections.  
Power mold package:  
Surface-mount type for reflow soldering is also supported.  
Pin Assignment  
Weight  
HSIP3-P-2.30B: 0.36 g (Typ.)  
HSOP3-P-2.30A: 0.36 g (Typ.)  
Marking side  
1
3
2
IN  
GND  
OUT  
(HEATSINK)  
Marking  
48M**F  
Part No. (or abbreviation code)  
Lot No.  
(weekly code)  
A line indicates  
lead (Pb)-free package or  
lead (Pb)-free finish.  
Ordering Method  
(Note 1)  
Product Name  
TA48M**F (S)  
Package (Lead Type)  
Packing Form  
1
2
PW-MOLD: Straight lead  
PW-MOLD: Surface-mount  
PW-MOLD: Surface-mount  
Sack (200 pcs./sack)  
TA48M**F (LBS1, S)  
TA48M**F (TE16L, S)  
Stick (100 pcs. max)  
Tape (700 pcs./reel)  
Note 1: The “**” in each pro-forma product name is replaced with the output voltage of each product.  
For example: for 3 V, “TA48M03F”  
1
2004-07-01  
TA48M025,03,033,0345,04,05F  
Block Diagram  
Maximum Ratings (Ta = 25°C)  
Characteristics  
Symbol  
Rating  
Unit  
Input voltage  
V
29  
0.5  
V
A
IN  
Output current  
I
OUT  
(Ta = 25°C)  
Power dissipation  
1
P
D
W
(Tc = 25°C)  
10  
Operating temperature  
Storage temperature  
Junction temperature  
T
40~85  
55~150  
150  
°C  
°C  
°C  
opr  
T
stg  
T
j
R
th (j-c)  
R
th (j-a)  
12.5  
125  
Thermal resistance  
°C/W  
Protection Function  
Characteristics  
Symbol  
Min  
Typ.  
Max  
Unit  
Overvoltage  
Overheat  
V
29  
33  
V
IN  
T
175  
°C  
j
2
2004-07-01  
TA48M025,03,033,0345,04,05F  
TA48M025F  
Electrical Characteristics  
(Unless otherwise specified, V = 4.5 V, I  
= 250 mA, T = 25°C, C = 0.1 µF, C  
= 10  
OUT  
IN  
OUT  
j
IN  
µF)  
Test  
Circuit  
Characteristics  
Symbol  
Test Condition  
Min  
2.4  
Typ.  
2.5  
Max  
2.6  
Unit  
3.5 V V 16 V,  
Output voltage  
V
V
IN  
OUT  
5 mA I  
500 mA,  
2.375  
2.5  
2.625  
OUT  
0°C Tj 125°C  
Line regulation  
Load regulation  
Reg·line  
Reg·load  
3.5 V V 16 V  
7
18  
90  
mV  
mV  
IN  
5 mA I  
500 mA  
45  
OUT  
3.5 V V 16 V,  
IN  
62  
0.8  
12  
72  
72  
1.4  
25  
I
= 0 mA  
OUT  
Quiescent current  
I
B
mA  
3.5 V V 16 V,  
IN  
I
= 250 mA  
OUT  
10 Hz f 100 kHz,  
= 50 mA  
Output noise voltage  
Ripple rejection  
V
µV  
rms  
NO  
I
OUT  
f = 120 Hz, 3.5 V V 16 V,  
IN  
R.R.  
dB  
V
I
I
I
= 50 mA  
OUT  
OUT  
OUT  
= 250 mA  
= 500 mA  
0.17  
0.35  
1.15  
1.15  
0.35  
0.65  
1.40  
1.40  
Dropout voltage  
V
D
Peak circuit current  
Short circuit current  
I
0.60  
0.60  
A
A
PEAK  
I
SC  
TA48M03F  
Electrical Characteristics  
(Unless otherwise specified, V = 5 V, I  
= 250 mA, T = 25°C, C = 0.1 µF, C  
= 10 µF)  
IN  
OUT  
j
IN  
OUT  
Max  
3.12  
Test  
Characteristics  
Symbol  
Test Condition  
Min  
Typ.  
3.0  
Unit  
Circuit  
2.88  
4 V V 16 V,  
Output voltage  
V
V
IN  
OUT  
5 mA I  
500 mA,  
2.85  
3.0  
3.15  
OUT  
0°C Tj 125°C  
Line regulation  
Load regulation  
Reg·line  
Reg·load  
4 V V 16 V  
8
21  
95  
mV  
mV  
IN  
5 mA I  
500 mA  
45  
0.8  
OUT  
4 V V 16 V, I  
= 0 mA  
1.4  
IN  
OUT  
Quiescent current  
I
mA  
B
4 V V 16 V,  
IN  
60  
12  
90  
70  
25  
I
= 250 mA  
OUT  
10 Hz f 100 kHz,  
= 50 mA  
Output noise voltage  
Ripple rejection  
V
µV  
rms  
NO  
I
OUT  
f = 120 Hz, 4 V V 16 V,  
IN  
R.R.  
dB  
V
I
I
I
= 50 mA  
OUT  
OUT  
OUT  
= 250 mA  
= 500 mA  
0.17  
0.35  
1.20  
1.20  
0.35  
0.65  
1.45  
1.45  
Dropout voltage  
V
D
Peak circuit current  
Short circuit current  
I
0.60  
0.60  
A
A
PEAK  
I
SC  
3
2004-07-01  
TA48M025,03,033,0345,04,05F  
TA48M033F  
Electrical Characteristics  
(Unless otherwise specified, V = 5.3 V, I  
= 250 mA, T = 25°C, C = 0.1 µF, C  
= 10  
OUT  
IN  
OUT  
j
IN  
µF)  
Test  
Circuit  
Characteristics  
Symbol  
Test Condition  
Min  
Typ.  
3.3  
Max  
Unit  
3.168  
3.135  
3.432  
4.3 V V 16 V,  
Output voltage  
V
V
IN  
OUT  
OUT  
5 mA I  
500 mA,  
3.3  
3.465  
0°C Tj 125°C  
Line regulation  
Load regulation  
Reg·line  
Reg·load  
4.3 V V 16 V  
10  
45  
23  
mV  
mV  
IN  
5 mA I  
500 mA  
105  
OUT  
4.3 V V 16 V,  
IN  
60  
0.8  
12  
90  
70  
1.4  
25  
I
= 0 mA  
OUT  
Quiescent current  
I
B
mA  
4.3 V V 16 V,  
IN  
I
= 250 mA  
OUT  
10 Hz f 100 kHz,  
= 50 mA  
Output noise voltage  
Ripple rejection  
V
µV  
rms  
NO  
I
OUT  
f = 120 Hz, 4.3 V V 16 V,  
IN  
R.R.  
dB  
V
I
I
I
= 50 mA  
OUT  
OUT  
OUT  
= 250 mA  
= 500 mA  
0.17  
0.35  
1.20  
1.20  
0.35  
0.65  
1.45  
1.45  
Dropout voltage  
V
D
Peak circuit current  
Short circuit current  
I
0.60  
0.60  
A
A
PEAK  
I
SC  
TA48M0345F  
Electrical Characteristics  
(Unless otherwise specified, V = 5.45 V, I  
= 250 mA, T = 25°C, C = 0.1 µF, C  
= 10  
IN  
OUT  
j
IN  
OUT  
µF)  
Test  
Circuit  
Characteristics  
Symbol  
Test Condition  
Min  
Typ.  
3.45  
Max  
Unit  
V
3.312  
3.278  
3.588  
4.45 V V 16 V,  
Output voltage  
V
IN  
OUT  
OUT  
5 mA I  
500 mA,  
3.45  
3.622  
0°C Tj 125°C  
Line regulation  
Load regulation  
Reg·line  
Reg·load  
4.45 V V 16 V  
12  
45  
25  
mV  
mV  
IN  
5 mA I  
500 mA  
110  
OUT  
4.45 V V 16 V,  
IN  
0.8  
12  
90  
1.4  
25  
I
= 0 mA  
OUT  
Quiescent current  
I
B
mA  
4.45 V V 16 V,  
IN  
I
= 250 mA  
OUT  
10 Hz f 100 kHz,  
= 50 mA  
Output noise voltage  
Ripple rejection  
V
µV  
rms  
NO  
I
OUT  
f = 120 Hz,  
4.45 V V 16 V,  
R.R.  
60  
70  
dB  
IN  
I
I
I
= 50 mA  
OUT  
OUT  
OUT  
= 250 mA  
= 500 mA  
0.17  
0.35  
1.20  
1.20  
0.35  
0.65  
1.45  
1.45  
Dropout voltage  
V
V
D
Peak circuit current  
Short circuit current  
I
0.60  
0.60  
A
A
PEAK  
I
SC  
4
2004-07-01  
TA48M025,03,033,0345,04,05F  
TA48M04F  
Electrical Characteristics  
(Unless otherwise specified, V = 6 V, I  
= 250 mA, T = 25°C, C = 0.1 µF, C  
= 10 µF)  
IN  
OUT  
j
IN  
OUT  
Max  
4.16  
Test  
Characteristics  
Symbol  
Test Condition  
Min  
Typ.  
4.0  
Unit  
Circuit  
3.84  
5 V V 16 V,  
Output voltage  
V
V
IN  
OUT  
5 mA I  
500 mA,  
3.8  
4.0  
4.2  
OUT  
0°C Tj 125°C  
Line regulation  
Load regulation  
Reg·line  
Reg·load  
5 V V 16 V  
11  
45  
28  
115  
1.4  
mV  
mV  
IN  
5 mA I  
500 mA  
OUT  
5 V V 16 V, I  
= 0 mA  
0.9  
IN  
OUT  
Quiescent current  
I
mA  
B
5 V V 16 V,  
IN  
58  
13  
110  
68  
25  
I
= 250 mA  
OUT  
10 Hz f 100 kHz,  
= 50 mA  
Output noise voltage  
Ripple rejection  
V
µV  
rms  
NO  
I
OUT  
f = 120 Hz, 5 V V 16 V,  
IN  
R.R.  
dB  
V
I
I
I
= 50 mA  
OUT  
OUT  
OUT  
= 250 mA  
= 500 mA  
0.17  
0.35  
1.25  
1.25  
0.35  
0.65  
1.50  
1.50  
Dropout voltage  
V
D
Peak circuit current  
Short circuit current  
I
0.60  
0.60  
A
A
PEAK  
I
SC  
TA48M05F  
Electrical Characteristics  
(Unless otherwise specified, V = 7 V, I  
= 250 mA, T = 25°C, C = 0.1 µF, C  
= 10 µF)  
IN  
OUT  
j
IN  
OUT  
Max  
5.2  
Test  
Characteristics  
Symbol  
Test Condition  
Min  
4.8  
Typ.  
5.0  
Unit  
Circuit  
6 V V 18 V,  
Output voltage  
V
V
IN  
OUT  
5 mA I  
500 mA,  
4.75  
5.0  
5.25  
OUT  
0°C Tj 125°C  
Line regulation  
Load regulation  
Reg·line  
Reg·load  
6 V V 18 V  
15  
50  
35  
135  
1.4  
mV  
mV  
IN  
5 mA I  
500 mA  
OUT  
6 V V 18 V, I  
= 0 mA  
1.0  
IN  
OUT  
Quiescent current  
I
mA  
B
6 V V 18 V,  
IN  
58  
13  
125  
68  
25  
I
= 250 mA  
OUT  
10 Hz f 100 kHz,  
= 50 mA  
Output noise voltage  
Ripple rejection  
V
µV  
rms  
NO  
I
OUT  
f = 120 Hz, 6 V V 18 V,  
IN  
R.R.  
dB  
V
I
I
I
= 50 mA  
OUT  
OUT  
OUT  
= 250 mA  
= 500 mA  
0.17  
0.35  
1.30  
1.30  
0.35  
0.65  
1.55  
1.55  
Dropout voltage  
V
D
Peak circuit current  
Short circuit current  
I
0.60  
0.60  
A
A
PEAK  
I
SC  
5
2004-07-01  
TA48M025,03,033,0345,04,05F  
Standard Application Circuit  
Be sure to connect a capacitor near the input terminal and output terminal between both terminals and GND.  
The capacitances should be determined experimentally. In particular, adequate investigation should be made so  
that there is no problem even in high or low temperatures.  
Note: Depending on the type of capacitor being used to connect to the output, characteristics (capacitance,  
frequency and others) may decline and the output may oscillate. To prevent this, Toshiba recommend a  
tantalum electrolytic capacitor that has a small fluctuation in capacitance characteristics.  
6
2004-07-01  
TA48M025,03,033,0345,04,05F  
7
2004-07-01  
TA48M025,03,033,0345,04,05F  
8
2004-07-01  
TA48M025,03,033,0345,04,05F  
9
2004-07-01  
TA48M025,03,033,0345,04,05F  
Package Dimensions  
10  
2004-07-01  
TA48M025,03,033,0345,04,05F  
Package Dimensions  
11  
2004-07-01  
TA48M025,03,033,0345,04,05F  
RESTRICTIONS ON PRODUCT USE  
030619EBA  
The information contained herein is subject to change without notice.  
The information contained herein is presented only as a guide for the applications of our products. No  
responsibility is assumed by TOSHIBA for any infringements of patents or other rights of the third parties which  
may result from its use. No license is granted by implication or otherwise under any patent or patent rights of  
TOSHIBA or others.  
TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor  
devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical  
stress. It is the responsibility of the buyer, when utilizing TOSHIBA products, to comply with the standards of  
safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of  
such TOSHIBA products could cause loss of human life, bodily injury or damage to property.  
In developing your designs, please ensure that TOSHIBA products are used within specified operating ranges as  
set forth in the most recent TOSHIBA products specifications. Also, please keep in mind the precautions and  
conditions set forth in the “Handling Guide for Semiconductor Devices,” or “TOSHIBA Semiconductor Reliability  
Handbook” etc..  
The TOSHIBA products listed in this document are intended for usage in general electronics applications  
(computer, personal equipment, office equipment, measuring equipment, industrial robotics, domestic appliances,  
etc.). These TOSHIBA products are neither intended nor warranted for usage in equipment that requires  
extraordinarily high quality and/or reliability or a malfunction or failure of which may cause loss of human life or  
bodily injury (“Unintended Usage”). Unintended Usage include atomic energy control instruments, airplane or  
spaceship instruments, transportation instruments, traffic signal instruments, combustion control instruments,  
medical instruments, all types of safety devices, etc.. Unintended Usage of TOSHIBA products listed in this  
document shall be made at the customer’s own risk.  
The products described in this document are subject to the foreign exchange and foreign trade laws.  
TOSHIBA products should not be embedded to the downstream products which are prohibited to be produced  
and sold, under any law and regulations.  
12  
2004-07-01  

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