TAR5S46U [TOSHIBA]

Point Regulators (Low-Dropout Regulator); 点稳压器(低压差稳压器)
TAR5S46U
型号: TAR5S46U
厂家: TOSHIBA    TOSHIBA
描述:

Point Regulators (Low-Dropout Regulator)
点稳压器(低压差稳压器)

线性稳压器IC 调节器 电源电路 光电二极管 输出元件
文件: 总23页 (文件大小:619K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
TAR5S15U~TAR5S50U  
TOSHIBA Bipolar Linear Integrated Circuit Silicon Monolithic  
TAR5S15U~TAR5S50U  
Point Regulators (Low-Dropout Regulator)  
The TAR5SxxU Series is comprised of general-purpose bipolar single-power-supply devices incorporating a  
control pin which can be used to turn them ON/OFF.  
Overtemperature and overcurrent protection circuits are built  
in to the devices’ output circuit.  
Features  
Low stand-by current  
Overtemperature/overcurrent protection  
Operation voltage range is wide.  
Maximum output current is high.  
Difference between input voltage and output voltage is low.  
Small package. (UFV package: Similar toSOT-353)  
Ceramic capacitors can be used.  
Weight: 0.007 g (typ.)  
Pin Assignments (top view)  
V
V
IN  
OUT  
4
5
1
2
3
CONTROL GND NOISE  
Overtemperature protection and overcurrent protection functions are not necessary guarantee of operating  
ratings below the maximum ratings.  
Do not use devices under conditions in which their maximum ratings will be exceeded.  
1
2003-02-10  
TAR5S15U~TAR5S50U  
List of Products Number and Marking  
Marking on the Product  
Example: TAR5S30U (3.0 V output)  
Products No.  
Marking  
Products No.  
Marking  
TAR5S15U  
TAR5S16U  
TAR5S17U  
TAR5S18U  
TAR5S19U  
TAR5S20U  
TAR5S21U  
TAR5S22U  
TAR5S23U  
TAR5S24U  
TAR5S25U  
TAR5S26U  
TAR5S27U  
TAR5S28U  
TAR5S29U  
TAR5S30U  
TAR5S31U  
TAR5S32U  
1V5  
1V6  
1V7  
1V8  
1V9  
2V0  
2V1  
2V2  
2V3  
2V4  
2V5  
2V6  
2V7  
2V8  
2V9  
3V0  
3V1  
3V2  
TAR5S33U  
TAR5S34U  
TAR5S35U  
TAR5S36U  
TAR5S37U  
TAR5S38U  
TAR5S39U  
TAR5S40U  
TAR5S41U  
TAR5S42U  
TAR5S43U  
TAR5S44U  
TAR5S45U  
TAR5S46U  
TAR5S47U  
TAR5S48U  
TAR5S49U  
TAR5S50U  
3V3  
3V4  
3V5  
3V6  
3V7  
3V8  
3V9  
4V0  
4V1  
4V2  
4V3  
4V4  
4V5  
4V6  
4V7  
4V8  
4V9  
5V0  
3 V 0  
Maximum Ratings (Ta = 25°C)  
Characteristics  
Symbol  
Rating  
Unit  
Supply Voltage  
V
15  
200  
V
IN  
Output Current  
I
mA  
mW  
°C  
OUT  
Power Dissipation  
Operation Temp. Range  
Storage Temp. Range  
P
450  
(Note)  
D
T
40 to 85  
55 to 150  
opr  
T
°C  
stg  
Note: Mounted on a glass epoxy circuit board of 30 × 30 mm Pad dimension of 35 mm2  
2
2003-02-10  
TAR5S15U~TAR5S50U  
TAR5S15U~TAR5S22U  
Electrical Characteristic (unless otherwise specified, V = V  
+ 1 V, I  
= 50 mA,  
IN  
OUT  
OUT  
C
= 1 µF, C  
= 10 µF, C  
= 0.01 µF, T = 25°C)  
IN  
OUT  
NOISE j  
Characteristics  
Symbol  
Test Condition  
Min  
Typ.  
Max  
Unit  
Output voltage  
Line regulation  
Load regulation  
V
Please refer to the Output Voltage Accuracy table.  
OUT  
<
<
15 V,  
V
+ 1 V  
V
=
=
IN  
OUT  
Regline  
Regload  
3
15  
mV  
mV  
I
= 1 mA  
OUT  
<
<
150 mA  
1 mA  
I
25  
170  
550  
75  
=
=
OUT  
I
I
I
I
= 0 mA  
B1  
B2  
OUT  
OUT  
Quiescent current  
Stand-by current  
µA  
µA  
= 50 mA  
= 0 V  
850  
0.1  
I
V
B (OFF)  
CT  
IN  
V
10 Hz  
C
= V  
+ 1 V, I  
= 10 mA,  
OUT  
=
OUT  
<
100 kHz,  
<
Output noise voltage  
V
f
30  
µV  
rms  
=
NO  
= 0.01 µF, Ta = 25°C  
NOISE  
<
<
85°C  
Temperature coefficient  
Input voltage  
T
40°C  
T
100  
ppm/°C  
V
=
=
opr  
CVO  
V
2.4  
15  
IN  
V
C
V
= V  
NOISE  
Ripple  
+ 1 V, I  
= 10 mA,  
OUT  
IN  
OUT  
Ripple rejection  
R.R.  
= 0.01 µF, f = 1 kHz,  
70  
dB  
= 500 mV , Ta = 25°C  
p-p  
Control voltage (ON)  
Control voltage (OFF)  
Control current (ON)  
Control current (OFF)  
V
1.5  
3
V
V
V
CT (ON)  
IN  
V
I
0.4  
10  
CT (OFF)  
CT (ON)  
V
V
= 1.5 V  
µA  
µA  
CT  
CT  
I
= 0 V  
0
0.1  
CT (OFF)  
TAR5S23U~TAR5S50U  
Electrical Characteristic (unless otherwise specified, V = V  
+ 1 V, I = 50 mA,  
OUT  
IN  
OUT  
C
= 1 µF, C  
= 10 µF, C  
= 0.01 µF, T = 25°C)  
IN  
OUT  
NOISE j  
Characteristics  
Symbol  
Test Condition  
Min  
Typ.  
Max  
Unit  
Output voltage  
Line regulation  
Load regulation  
V
Please refer to the Output Voltage Accuracy table.  
OUT  
<
<
15 V,  
V
+ 1 V  
V
=
=
IN  
OUT  
Regline  
Regload  
3
15  
mV  
mV  
I
= 1 mA  
OUT  
<
<
150 mA  
1 mA  
I
25  
170  
550  
75  
=
=
OUT  
I
I
I
I
= 0 mA  
B1  
B2  
OUT  
OUT  
Quiescent current  
Stand-by current  
µA  
µA  
= 50 mA  
= 0 V  
850  
0.1  
I
V
B (OFF)  
CT  
IN  
V
10 Hz  
C
= V  
+ 1 V, I  
= 10 mA,  
OUT  
=
OUT  
<
100 kHz,  
<
Output noise voltage  
V
f
30  
µV  
=
NO  
rms  
= 0.01 µF, Ta = 25°C  
NOISE  
Dropout volatge  
V
V  
I = 50 mA  
OUT  
130  
100  
200  
mV  
IN  
OUT  
<
<
85°C  
Temperature coefficient  
T
40°C  
T
opr  
ppm/°C  
=
=
CVO  
V
OUT  
Input voltage  
V
15  
V
IN  
+ 0.2 V  
V
= V  
NOISE  
Ripple  
+ 1 V, I  
= 10 mA,  
OUT  
IN  
OUT  
Ripple rejection  
R.R.  
C
= 0.01 µF, f = 1 kHz,  
70  
dB  
V
= 500 mV , Ta = 25°C  
p-p  
Control voltage (ON)  
Control voltage (OFF)  
Control current (ON)  
Control current (OFF)  
V
1.5  
3
V
V
V
CT (ON)  
IN  
V
I
0.4  
10  
CT (OFF)  
CT (ON)  
V
V
= 1.5 V  
µA  
µA  
CT  
CT  
I
= 0 V  
0
0.1  
CT (OFF)  
3
2003-02-10  
TAR5S15U~TAR5S50U  
Output Voltage Accuracy  
(V = V  
+ 1 V, I  
= 50 mA, C = 1 µF, C  
= 10 µF, C  
= 0.01 µF, T = 25°C)  
IN  
OUT  
OUT  
IN  
OUT  
NOISE  
j
Product No.  
Symbol  
Min  
Typ.  
Max  
Unit  
TAR5S15U  
TAR5S16U  
TAR5S17U  
TAR5S18U  
TAR5S19U  
TAR5S20U  
TAR5S21U  
TAR5S22U  
TAR5S23U  
TAR5S24U  
TAR5S25U  
TAR5S26U  
TAR5S27U  
TAR5S28U  
TAR5S29U  
TAR5S30U  
TAR5S31U  
TAR5S32U  
TAR5S33U  
TAR5S34U  
TAR5S35U  
TAR5S36U  
TAR5S37U  
TAR5S38U  
TAR5S39U  
TAR5S40U  
TAR5S41U  
TAR5S42U  
TAR5S43U  
TAR5S44U  
TAR5S45U  
TAR5S46U  
TAR5S47U  
TAR5S48U  
TAR5S49U  
TAR5S50U  
1.44  
1.54  
1.64  
1.74  
1.84  
1.94  
2.04  
2.14  
2.24  
2.34  
2.43  
2.53  
2.63  
2.73  
2.83  
2.92  
3.02  
3.12  
3.21  
3.31  
3.41  
3.51  
3.6  
1.5  
1.6  
1.7  
1.8  
1.9  
2.0  
2.1  
2.2  
2.3  
2.4  
2.5  
2.6  
2.7  
2.8  
2.9  
3.0  
3.1  
3.2  
3.3  
3.4  
3.5  
3.6  
3.7  
3.8  
3.9  
4.0  
4.1  
4.2  
4.3  
4.4  
4.5  
4.6  
4.7  
4.8  
4.9  
5.0  
1.56  
1.66  
1.76  
1.86  
1.96  
2.06  
2.16  
2.26  
2.36  
2.46  
2.57  
2.67  
2.77  
2.87  
2.97  
3.08  
3.18  
3.28  
3.39  
3.49  
3.59  
3.69  
3.8  
V
V
OUT  
3.7  
3.9  
3.8  
4.0  
3.9  
4.1  
3.99  
4.09  
4.19  
4.29  
4.38  
4.48  
4.58  
4.68  
4.77  
4.87  
4.21  
4.31  
4.41  
4.51  
4.62  
4.72  
4.82  
4.92  
5.03  
5.13  
4
2003-02-10  
TAR5S15U~TAR5S50U  
Application Note  
1. Recommended Application Circuit  
V
V
IN  
OUT  
4
5
Control Level  
Operation  
HIGH  
LOW  
ON  
OFF  
2
3
1
The noise capacitor should be connected to NOISE pin to GND for stable operation.  
The recommended value is higher than 0.0047 µF.  
CONTROL  
GND NOISE  
The figure above shows the recommended configuration for using a point regulator. Insert a capacitor for  
stable input/output operation.  
If the control function is not to be used, Toshiba recommend that the control pin (pin 1) be connected to the  
V
CC  
pin.  
2. Power Dissipation  
The power dissipation for board-mounted TAR5SxxU Series devices (rated at 450 mW) is measured using a  
board whose size and pattern are as shown below. When incorporating a device belonging to this series into  
your design, derate the power dissipation as far as possible by reducing the levels of parameters such as input  
voltage, output current and ambient temperature. Toshiba recommend that these devices should typically be  
derated to 70%~80% of their absolute maximum power dissipation value.  
Thermal Resistance Evaluation Board  
V
V
OUT  
IN  
C
IN  
C
C
OUT  
NOISE  
Circuit board material: glass epoxy, Circuit board dimension:30 mm × 30 mm,  
Copper foil pad area: 35 mm2, t = 0.8 mm  
CONTROL GND  
NOISE  
5
2003-02-10  
TAR5S15U~TAR5S50U  
3. Ripple Rejection  
The devices of the TAR5SxxU Series feature a circuit with an excellent ripple rejection characteristic.  
Because the circuit also features an excellent output fluctuation characteristic for sudden supply voltage drops,  
the circuit is ideal for use in the RF blocks incorporated in all mobile telephones.  
Ripple Rejection f  
TAR5S28U Input Transient Response  
80  
70  
60  
50  
40  
30  
20  
10  
0
10 µF  
Input voltage  
3.4 V  
2.2 µF  
3.1 V  
2.8 V  
1 µF  
Output voltage  
V
= 4.0 V, C  
= 0.01 µF,  
= 500 mV ,  
p p  
IN  
NOISE  
Ta = 25°C, C = 1 µF,  
IN  
C
IN  
= 1 µF, V  
ripple  
C
out  
= 10 µF, C  
= 0.01 µF,  
NOISE  
I
= 10 mA, Ta = 25°C  
out  
V
: 3.4 V 3.1 V, I  
IN  
= 50 mA  
out  
10  
100  
1 k  
10 k  
100 k 300 k  
0
1
2
3
4
5
t
6
7
8
9
10  
Frequency  
f
(Hz)  
Time  
(ms)  
4. NOISE Pin  
TAR5SxxU Series devices incorporate a NOISE pin to reduce output noise voltage. Inserting a capacitor  
between the NOISE pin and GND reduces output noise. To ensure stable operation, insert a capacitor of  
0.0047 µF or more between the NOISE pin and GND.  
The output voltage rise time varies according to the capacitance of the capacitor connected to the NOISE  
pin.  
C
NOISE  
V  
Turn On Waveform  
N
60  
50  
40  
30  
20  
10  
2
1
0
3
2
1
Control voltage waveform  
C
= 1 µF, C = 10 µF,  
out  
IN  
I
= 10 mA, Ta = 25°C  
out  
C
= 0.01 µF  
1 µF  
Output voltage waveform  
NOISE  
TAR5S50  
0.33 µF  
TAR5S30  
TAR5S15  
0.1 µF  
C
= 1 µF, C  
= 10 µF,  
= 50 mA, Ta = 25°C  
IN  
out  
I
out  
0
0
10  
0.001 µ  
0.01 µ  
0.1 µ  
1.0 µ  
0
10  
20  
30  
40  
t
50  
60  
70  
80  
90  
NOISE capacitance  
C
(F)  
Time  
(ms)  
NOISE  
6
2003-02-10  
TAR5S15U~TAR5S50U  
5. Example of Characteristics when Ceramic Capacitor is Used  
Shown below is the stable operation area, where the output voltage does not oscillate, evaluated using a  
Toshiba evaluation circuit. The equivalent series resistance (ESR) of the output capacitor and output current  
determines this area. TAR5SxxU Series devices operate stably even when a ceramic capacitor is used as the  
output capacitor.  
If a ceramic capacitor is used as the output capacitor and the ripple frequency is 30 kHz or more, the ripple  
rejection differs from that when a tantalum capacitor is used. This is shown below.  
Toshiba recommend that users check that devices operate stably under the intended conditions of use.  
Examples of safe operating area characteristics  
(TAR5S15U)Stable Operating Area  
(TAR5S50U)Stable Operating Area  
100  
10  
1
100  
10  
1
Stable Operating Area  
Stable Operating Area  
@V = 2.5 V, C  
= 0.01 µF,  
= 1 µF~10 µF,  
@V = 6.0 V, C  
= 0.01 µF,  
= 1 µF~10 µF,  
IN NOISE  
IN NOISE  
0.1  
0.1  
C
IN  
= 1 µF, C  
C = 1 µF, C  
IN out  
out  
Ta = 25°C  
Ta = 25°C  
0.02  
0.02  
0
20  
40  
60  
80  
100  
120  
140150  
0
20  
40  
60  
80  
100  
120  
140150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
(TAR5S28U)Stable Operating Area  
100  
10  
1
Evaluation Circuit for Stable Operating Area  
CONTROL  
C
NOISE  
= 0.01 µF  
TAR5S**U  
C
OUT  
Ceramic  
Stable Operating Area  
GND  
R
OUT  
V
= V  
OUT  
+ 1 V  
C
IN  
IN  
Ceramic  
ESR  
@V = 3.8 V, C  
= 0.01 µF,  
= 1 µF~10 µF,  
IN NOISE  
0.1  
C
IN  
= 1 µF, C  
out  
Capacitors used for evaluation  
Ta = 25°C  
Made by Murata  
C : GRM40B105K  
IN  
C
0.02  
: GRM40B105K/GRM40B106K  
OUT  
0
20  
40  
60  
80  
100  
120  
140150  
Output current  
I
(mA)  
OUT  
Ripple Rejection Characteristic (f = 10 kHz~300 kHz)  
(TAR5S30U) Ripple Rejection – f  
70  
Ceramic 10 µF  
Tantalum10 µF  
60  
Ceramic  
2.2 µF  
50  
40  
30  
20  
10  
0
Ceramic  
1 µF  
Tantalum 2.2 µF  
Tantalum 1 µF  
@V = 4.0 V, C  
IN NOISE  
= 0.01 µF,  
C
IN  
= 1 µF, V = 500 mV  
,
p-p  
ripple  
I
= 10 mA, Ta = 25°C  
out  
10 k  
100 k  
300 k  
1000 k  
Frequency  
f
(Hz)  
7
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S15U)  
I
– V  
(TAR5S18U)  
I
– V  
OUT OUT  
OUT  
OUT  
1.6  
1.5  
1.4  
1.9  
1.8  
1.7  
V
= 2.5 V, C = 1 µF, C  
IN OUT  
= 10 µF,  
V
= 2.8 V, C = 1 µF, C = 10 µF,  
IN OUT  
IN  
IN  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
Ta = 85°C  
Ta = 85°C  
25  
25  
40  
40  
0
50  
100  
150  
150  
150  
0
50  
100  
150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
(TAR5S20U)  
I
– V  
(TAR5S21U)  
I
– V  
OUT OUT  
OUT  
OUT  
2.1  
2.0  
1.9  
2.2  
2.1  
2.0  
V
= 3.0 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
V
= 3.1 V, C = 1 µF, C = 10 µF,  
IN OUT  
IN  
IN OUT  
IN  
C
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
Ta = 85°C  
Ta = 85°C  
25  
25  
40  
40  
0
50  
100  
0
50  
100  
150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
(TAR5S22U)  
I
– V  
(TAR5S23U)  
I
– V  
OUT OUT  
OUT  
OUT  
2.3  
2.2  
2.1  
V
= 3.2 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
V
= 3.3 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
IN  
IN OUT  
IN IN OUT  
C
C
NOISE  
NOISE  
Ta = 85°C  
Ta = 85°C  
2.3  
25  
25  
40  
40  
2.2  
0
0
50  
100  
50  
100  
150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
8
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S25U)  
I
– V  
(TAR5S27U)  
I
– V  
OUT OUT  
OUT  
OUT  
2.6  
2.5  
2.4  
2.8  
2.7  
2.6  
V
= 2.6 V, C = 1 µF, C  
IN OUT  
= 10 µF,  
V
= 3.7 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
IN  
IN IN OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
NOISE  
NOISE  
Ta = 85°C  
Ta = 85°C  
25  
25  
40  
40  
0
50  
100  
150  
150  
150  
0
50  
100  
150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
(TAR5S28U)  
I
– V  
(TAR5S29U)  
I
– V  
OUT OUT  
OUT  
OUT  
2.9  
2.8  
2.7  
3
2.9  
2.8  
V
= 3.8 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF Pulse width = 1 ms  
V
= 3.9 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF Pulse width = 1 ms  
IN  
IN OUT  
IN IN OUT  
C
C
NOISE  
NOISE  
Ta = 85°C  
Ta = 85°C  
25  
25  
40  
40  
0
50  
100  
0
50  
100  
150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
(TAR5S30U)  
I
– V  
(TAR5S31U)  
I
– V  
OUT OUT  
OUT  
OUT  
3.1  
3.0  
2.9  
3.2  
3.1  
3.0  
V
= 4.0 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF Pulse width = 1 ms  
V
= 4.1 V, C = 1 µF, C = 10 µF,  
IN OUT  
IN  
IN OUT  
IN  
C
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
Ta = 85°C  
Ta = 85°C  
25  
25  
40  
40  
0
50  
100  
0
50  
100  
150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
9
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S32U)  
I
– V  
(TAR5S33U)  
I
– V  
OUT OUT  
OUT  
OUT  
3.3  
3.2  
3.1  
3.4  
3.3  
3.2  
V
= 4.2 V, C = 1 µF, C  
IN OUT  
= 10 µF,  
V
= 4.3 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
IN  
IN IN OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
NOISE  
NOISE  
Ta = 85°C  
Ta = 85°C  
25  
25  
40  
40  
0
50  
100  
150  
150  
150  
0
50  
100  
150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
(TAR5S35U)  
I
– V  
(TAR5S45U)  
I
– V  
OUT OUT  
OUT  
OUT  
3.6  
3.5  
3.4  
4.6  
4.5  
4.4  
V
= 4.5 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF Pulse width = 1 ms  
V
= 5.5 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
IN  
IN OUT  
IN IN OUT  
C
C
NOISE  
NOISE  
Ta = 85°C  
Ta = 85°C  
25  
25  
40  
40  
0
50  
100  
0
50  
100  
150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
(TAR5S48U)  
I
– V  
(TAR5S50U)  
I
– V  
OUT OUT  
OUT  
OUT  
4.9  
4.8  
4.7  
5.1  
5.0  
4.9  
V
= 5.8 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF Pulse width = 1 ms  
V
= 6.0 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF Pulse width = 1 ms  
IN  
IN OUT  
IN IN OUT  
C
C
NOISE  
NOISE  
Ta = 85°C  
Ta = 85°C  
25  
25  
40  
40  
0
50  
100  
0
50  
100  
150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
10  
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S15U)  
I
– V  
(TAR5S18U)  
I – V  
B IN  
B
IN  
10  
10  
C
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
C
= 1 µF, C  
OUT  
= 10 µF, C  
NOISE  
= 0.01 µF  
IN  
NOISE  
NOISE  
NOISE  
IN  
Pulse width = 1 ms  
Pulse width = 1 ms  
5
5
I
= 150 mA  
I
= 150 mA  
OUT  
5
OUT  
100  
100  
1
1
50  
10  
50  
10  
0
0
0
0
15  
5
15  
Input voltage  
V
(V)  
Input voltage  
V
IN  
(V)  
IN  
(TAR5S20U)  
I
– V  
(TAR5S21U)  
I – V  
B IN  
B
IN  
10  
10  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
NOISE  
= 0.01 µF  
Pulse width = 1 ms  
Pulse width = 1 ms  
5
5
I
= 150 mA  
I
= 150 mA  
OUT  
OUT  
100  
100  
50  
10  
50  
10  
1
1
0
0
0
0
5
15  
5
15  
Input voltage  
V
(V)  
Input voltage  
V
IN  
(V)  
IN  
(TAR5S22U)  
I
– V  
(TAR5S23U)  
I – V  
B IN  
B
IN  
10  
10  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
NOISE  
= 0.01 µF  
Pulse width = 1 ms  
Pulse width = 1 ms  
5
5
I
= 150 mA  
I
= 150 mA  
OUT  
OUT  
100  
100  
50  
10  
50  
1
1
0
0
0
0
5
15  
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
11  
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S25U)  
I
– V  
(TAR5S27U)  
I – V  
B IN  
B
IN  
10  
10  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
NOISE  
= 0.01 µF  
NOISE  
Pulse width = 1 ms  
Pulse width = 1 ms  
5
5
I
= 150 mA  
I
= 150 mA  
OUT  
OUT  
100  
100  
1
1
50  
50  
0
0
0
0
5
10  
15  
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
(TAR5S28U)  
I
– V  
(TAR5S29U)  
I – V  
B IN  
B
IN  
10  
10  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
NOISE  
= 0.01 µF  
NOISE  
Pulse width = 1 ms  
Pulse width = 1 ms  
5
5
I
= 150 mA  
I
= 150 mA  
OUT  
OUT  
100  
100  
50  
50  
1
1
0
0
0
0
5
10  
15  
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
(TAR5S30U)  
I
– V  
(TAR5S31U)  
I – V  
B IN  
B
IN  
10  
10  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
NOISE  
NOISE  
Pulse width = 1 ms  
Pulse width = 1 ms  
5
5
I
= 150 mA  
OUT  
I
= 150 mA  
OUT  
100  
100  
50  
50  
1
1
0
0
0
0
5
10  
15  
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
12  
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S32U)  
I
– V  
(TAR5S33U)  
I – V  
B IN  
B
IN  
10  
10  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
NOISE  
NOISE  
Pulse width = 1 ms  
Pulse width = 1 ms  
5
5
I
= 150 mA  
OUT  
I
= 150 mA  
OUT  
100  
100  
1
50  
50  
1
0
0
0
0
5
10  
15  
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
(TAR5S35U)  
I
– V  
(TAR5S45U)  
I – V  
B IN  
B
IN  
10  
10  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
C
IN  
= 1 µF, C  
OUT  
= 10 µF, C  
= 0.01 µF  
NOISE  
NOISE  
Pulse width = 1 ms  
Pulse width = 1 ms  
5
5
I
= 150 mA  
I
= 150 mA  
OUT  
OUT  
100  
100  
50  
1
50  
1
0
0
0
0
5
10  
15  
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
(TAR5S48U)  
I
– V  
(TAR5S50U)  
I – V  
B IN  
B
IN  
10  
10  
C
C
= 1 µF, C  
OUT  
= 10 µF,  
C
C
= 1 µF, C = 10 µF,  
OUT  
IN  
IN  
= 0.01 µF  
= 0.01 µF  
NOISE  
NOISE  
Pulse width = 1 ms  
Pulse width = 1 ms  
5
5
I
= 150 mA  
I
= 150 mA  
OUT  
OUT  
100  
100  
50  
1
50  
1
0
0
0
0
5
10  
15  
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
13  
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S15U)  
V
– V  
(TAR5S18U)  
V
– V  
OUT IN  
OUT  
IN  
6
5
4
3
2
1
0
6
5
4
3
2
1
0
I
= 1 mA, C = 1 µF, C  
IN OUT  
= 10 µF,  
I
= 1 mA, C = 1 µF, C = 10 µF,  
IN OUT  
OUT  
OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
0
5
10  
15  
15  
15  
0
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
(TAR5S20U)  
V
– V  
(TAR5S21U)  
V
– V  
OUT IN  
OUT  
IN  
6
5
4
3
2
1
0
6
5
4
3
2
1
0
I
= 1 mA, C = 1 µF, C  
IN OUT  
= 10 µF,  
I
= 1 mA, C = 1 µF, C = 10 µF,  
IN OUT  
OUT  
OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
0
5
10  
0
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
(TAR5S22U)  
V
– V  
(TAR5S23U)  
V
– V  
OUT IN  
OUT  
IN  
6
5
4
3
2
1
0
6
5
4
3
2
1
0
I
= 1 mA, C = 1 µF, C  
IN OUT  
= 10 µF,  
I
= 1 mA, C = 1 µF, C = 10 µF,  
IN OUT  
OUT  
OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
0
5
10  
0
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
14  
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S25U)  
V
– V  
(TAR5S27U)  
V
– V  
OUT IN  
OUT  
IN  
6
5
4
3
2
1
0
6
5
4
3
2
1
0
I
= 1 mA, C = 1 µF, C  
IN OUT  
= 10 µF,  
I
= 1 mA, C = 1 µF, C = 10 µF,  
IN OUT  
OUT  
OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
0
5
10  
15  
15  
15  
0
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
(TAR5S28U)  
V
– V  
(TAR5S29U)  
V
– V  
OUT IN  
OUT  
IN  
6
5
4
3
2
1
0
6
5
4
3
2
1
0
I
= 1 mA, C = 1 µF, C  
IN OUT  
= 10 µF,  
I
= 1 mA, C = 1 µF, C = 10 µF,  
IN OUT  
OUT  
OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
0
5
10  
0
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
(TAR5S30U)  
V
– V  
(TAR5S31U)  
V
– V  
OUT IN  
OUT  
IN  
6
5
4
3
2
1
0
6
5
4
3
2
1
0
I
= 1 mA, C = 1 µF, C  
IN OUT  
= 10 µF,  
I
= 1 mA, C = 1 µF, C = 10 µF,  
IN OUT  
OUT  
OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
0
5
10  
0
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
15  
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S32U)  
V
– V  
(TAR5S33U)  
V
– V  
OUT IN  
OUT  
IN  
6
5
4
3
2
1
0
6
5
4
3
2
1
0
I
= 1 mA, C = 1 µF, C  
IN OUT  
= 10 µF,  
IOUT = 1 mA, CIN = 1 µF, COUT = 10 µF,  
OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
0
5
10  
15  
15  
15  
0
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
(TAR5S35U)  
V
– V  
(TAR5S45U)  
V
– V  
OUT IN  
OUT  
IN  
6
5
4
3
2
1
0
6
5
4
3
2
1
0
I
= 1 mA, C = 1 µF, C  
IN OUT  
= 10 µF,  
I
= 1 mA, C = 1 µF, C = 10 µF,  
IN OUT  
OUT  
OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
0
5
10  
0
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
(TAR5S48U)  
V
– V  
(TAR5S50U)  
V
– V  
OUT IN  
OUT  
IN  
6
5
4
3
2
1
0
6
5
4
3
2
1
0
I
= 1 mA, C = 1 µF, C  
IN OUT  
= 10 µF,  
I
= 1 mA, C = 1 µF, C = 10 µF,  
IN OUT  
OUT  
OUT  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
0
5
10  
0
5
10  
15  
Input voltage  
V
IN  
(V)  
Input voltage  
V
IN  
(V)  
16  
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S15U)  
V
Ta  
(TAR5S18U)  
V
Ta  
OUT  
OUT  
1.6  
1.55  
1.5  
1.9  
1.85  
1.8  
V
= 2.5 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
V
= 2.8 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
IN  
IN OUT  
IN IN OUT  
C
C
NOISE  
NOISE  
I
= 50 mA  
I
= 50 mA  
OUT  
OUT  
100  
100  
150  
150  
1.45  
1.4  
1.75  
1.7  
50  
25  
0
25  
50  
75  
100  
100  
100  
50  
25  
0
25  
50  
75  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
(TAR5S20U)  
V
Ta  
(TAR5S21U)  
V
Ta  
OUT  
OUT  
2.1  
2.05  
2.0  
2.2  
2.15  
2.1  
V
= 3.0 V, C = 1 µF, C  
IN OUT  
= 10 µF,  
V
= 3.1 V, C = 1 µF, C  
IN IN OUT  
= 10 µF,  
IN  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
I
= 50 mA  
I
= 50 mA  
OUT  
OUT  
150  
100  
150  
100  
1.95  
1.9  
2.05  
2.0  
50  
25  
0
25  
50  
75  
50  
25  
0
25  
50  
75  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
(TAR5S22U)  
V
Ta  
(TAR5S23U)  
V
Ta  
OUT  
OUT  
2.3  
2.25  
2.2  
2.4  
2.35  
2.3  
V
= 3.2 V, C = 1 µF, C  
IN OUT  
= 10 µF,  
V
= 3.3 V, C = 1 µF, C  
IN IN OUT  
= 10 µF,  
IN  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
I
= 50 mA  
I
= 50 mA  
OUT  
OUT  
150  
150  
100  
100  
2.15  
2.1  
2.25  
2.2  
50  
25  
0
25  
50  
75  
50  
25  
0
25  
50  
75  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
17  
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S25U)  
V
Ta  
(TAR5S27U)  
V
Ta  
OUT  
OUT  
2.6  
2.55  
2.5  
2.8  
2.75  
2.7  
V
= 3.5 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
V
= 3.7 V, C = 1 µF, C = 10 µF,  
IN OUT  
IN  
IN OUT  
IN  
C
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
I
= 50 mA  
OUT  
I
= 50 mA  
OUT  
150  
100  
150  
100  
2.45  
2.4  
2.65  
2.6  
50  
25  
0
25  
50  
75  
100  
100  
100  
50  
25  
0
25  
50  
75  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
(TAR5S28U)  
V
Ta  
(TAR5S29U)  
V
Ta  
OUT  
OUT  
2.9  
2.85  
2.8  
3.0  
2.95  
2.9  
V
= 3.8 V, C = 1 µF, C  
IN OUT  
= 10 µF,  
V
= 3.9 V, C = 1 µF, C  
IN IN OUT  
= 10 µF,  
IN  
C
= 0.01 µF Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
I
= 50 mA  
OUT  
I
= 50 mA  
OUT  
150  
100  
100  
150  
2.75  
2.7  
2.85  
2.8  
50  
25  
0
25  
50  
75  
50  
25  
0
25  
50  
75  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
(TAR5S30U)  
V
Ta  
(TAR5S31U)  
V
Ta  
OUT  
OUT  
3.1  
3.05  
3.0  
3.2  
3.15  
3.1  
V
= 4 V, C = 1 µF, C  
IN OUT  
= 10 µF,  
V
= 4.1 V, C = 1 µF, C  
IN IN OUT  
= 10 µF,  
IN  
C
= 0.01 µF Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
I
= 50 mA  
OUT  
I
= 50 mA  
OUT  
150  
100  
150  
2.95  
2.9  
3.05  
3.0  
100  
50  
25  
0
25  
50  
75  
50  
25  
0
25  
50  
75  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
18  
2003-02-10  
TAR5S15U~TAR5S50U  
(TAR5S32U)  
V
Ta  
(TAR5S33U)  
V
Ta  
OUT  
OUT  
3.3  
3.25  
3.2  
3.4  
3.35  
3.3  
V
= 4.2 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
V
= 4.3 V, C = 1 µF, C  
= 10 µF,  
= 0.01 µF, Pulse width = 1 ms  
IN  
IN OUT  
IN IN OUT  
C
C
NOISE  
NOISE  
I
= 50 mA  
OUT  
I
= 50 mA  
OUT  
150  
100  
3.15  
3.1  
3.25  
3.2  
150  
100  
50  
25  
0
25  
50  
75  
100  
100  
100  
50  
25  
0
25  
50  
75  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
(TAR5S35U)  
V
Ta  
(TAR5S45U)  
V
Ta  
OUT  
OUT  
3.6  
3.55  
3.5  
4.6  
4.55  
4.5  
V
= 4.5 V, C = 1 µF, C  
IN OUT  
= 10 µF,  
V
= 5.5 V, C = 1 µF, C  
IN IN OUT  
= 10 µF,  
IN  
C
= 0.01 µF, Pulse width = 1 ms  
C
= 0.01 µF, Pulse width = 1 ms  
NOISE  
NOISE  
I
= 50 mA  
I
= 50 mA  
OUT  
OUT  
3.45  
3.4  
4.45  
4.4  
150  
150  
100  
100  
50  
25  
0
25  
50  
75  
50  
25  
0
25  
50  
75  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
(TAR5S48U)  
V
Ta  
(TAR5S50U)  
V
Ta  
OUT  
OUT  
4.9  
4.85  
4.8  
5.1  
5.05  
5
V
= 5.8 V, C = 1 µF, C  
IN OUT  
= 10 µF,  
V
= 6 V, C = 1 µF, C  
IN IN OUT  
= 10 µF,  
IN  
C
= 0.01 µF Pulse width = 1 ms  
C
= 0.01 µF Pulse width = 1 ms  
NOISE  
NOISE  
I
= 50 mA  
I
= 50 mA  
OUT  
OUT  
4.75  
4.7  
4.95  
4.9  
150  
150  
100  
100  
50  
25  
0
25  
50  
75  
50  
25  
0
25  
50  
75  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
19  
2003-02-10  
TAR5S15U~TAR5S50U  
I
Ta  
(TAR5S23U~TAR5S50U)  
V
- V  
Ta  
OUT  
B
IN  
3
2.5  
2
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0
V
= V  
+ 1 V, C = 1 µF,  
IN  
C
C
= 1 µF, C = 10 µF,  
OUT  
IN  
OUT  
IN  
C
= 10 µF, C  
= 0.01 µF  
= 0.01 µF  
NOISE  
OUT  
NOISE  
I
= 150 mA  
OUT  
Pulse width = 1 ms  
Pulse width = 1 ms  
I
= 150 mA  
OUT  
1.5  
1
100  
100  
50  
50  
10  
0.5  
0
10  
1
1
50  
25  
0
25  
50  
75  
100  
50  
25  
0
25  
50  
75  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
(TAR5S23U~TAR5S50U)V - V  
IN  
– I  
I – I  
B OUT  
OUT  
OUT  
0.5  
0.4  
2.5  
2.0  
C
C
= 1 µF, C = 10 µF,  
OUT  
V
= V  
+ 1 V,  
IN  
IN  
OUT  
= 0.01µF  
NOISE  
C
= 1 µF, C  
= 10 µF,  
IN  
OUT  
= 0.01 µF  
Pulse width = 1 ms  
C
40  
NOISE  
85  
Pulse width = 1 ms  
Ta = 25°C  
Ta = 25°C  
0.3  
0.2  
1.5  
1.0  
40  
85  
0.1  
0
0.5  
0
0
50  
100  
150  
0
50  
100  
150  
Output current  
I
(mA)  
Output current  
I
(mA)  
OUT  
OUT  
Turn On Waveform  
Turn Off Waveform  
3
2
1
0
3
2
1
0
3
2
1
0
3
2
1
0
V
V
= V  
+ 1 V,  
IN  
CT (ON)  
= 10 µF, C  
OUT  
= 1.5 0 V, C = 1 µF,  
IN  
Control voltage waveform  
C
=
NOISE  
0.01 µF  
OUT  
Control voltage waveform  
Output voltage waveform  
40  
Ta = 25°C  
85  
Output voltage waveform  
V
= V  
+ 1 V,  
IN  
OUT  
V
= 0 1.5 V, C = 1 µF,  
CT (ON)  
IN  
C
OUT  
= 10 µF, C  
=
0.01 µF  
NOISE  
0
1
0
1
Time  
t
(ms)  
Time t (ms)  
20  
2003-02-10  
TAR5S15U~TAR5S50U  
Ripple Rejection – f  
V
– f  
N
80  
70  
60  
50  
40  
30  
20  
10  
1
TAR5S25U (2.5 V) TAR5S30U (3.0 V)  
TAR5S15U (1.5 V)  
V
= V  
+ 1 V, I  
= 10 mA, C = 1 µF,  
IN  
OUT  
OUT  
IN  
C
= 10 µF, C  
= 0.01 µF,  
OUT  
NOISE  
10 Hz < f < 100 kHz, Ta = 25°C  
TAR5S45U (4.5 V)  
TAR5S50U (5.0 V)  
0.1  
TAR5S35U (3.5 V)  
0.01  
V
= V  
+ 1 V, I  
= 10 mA, C = 1 µF,  
IN  
OUT  
OUT  
IN  
C
= 10 µF, C  
= 0.01 µF,  
10 OUT  
NOISE  
V
= 500 mV , Ta = 25°C  
p-p  
Ripple  
0
10  
0.001  
100  
1 k  
10 k  
100 k  
1000 k  
10  
100  
1 k  
10 k  
100 k  
Frequency  
f
(Hz)  
Frequency  
f
(Hz)  
P
Ta  
D
500  
400  
300  
200  
100  
Circuit board material: glass epoxy, Circuit  
board dimention:  
30 mm × 30 mm,  
pad area: 35 mm2 (t = 0.8 mm)  
40  
0
40  
80  
120  
Ambient temperature Ta (°C)  
21  
2003-02-10  
TAR5S15U~TAR5S50U  
Package Dimensions  
Weight: 0.007 g (typ.)  
22  
2003-02-10  
TAR5S15U~TAR5S50U  
RESTRICTIONS ON PRODUCT USE  
030619EAA  
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.  
TOSHIBA products should not be embedded to the downstream products which are prohibited to be produced  
and sold, under any law and regulations.  
23  
2003-02-10  

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