AP1150ADS17 [HUAXINAN]

Output LDO Regulator;
AP1150ADS17
型号: AP1150ADS17
厂家: HuaXinAn Electronics CO.,LTD    HuaXinAn Electronics CO.,LTD
描述:

Output LDO Regulator

文件: 总19页 (文件大小:719K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
[AP1150ADSXX]  
-Preliminary-  
AP1150ADSXX  
14V Input / 200mA Output LDO Regulator  
1. Genaral Description  
The AP1150ADSxx is a low dropout linear regulator with ON/OFF control, which can supply 200mA load  
current. The IC is an integrated circuit with a silicon monolithic bipolar structure. The output voltage, trimmed  
with high accuracy, is available from 1.3 to 9.5V in 0.1V steps.  
The output capacitor is available to use a small 0.1uF ceramic capacitor (1.8VVout). The over current, thermal  
and reverse bias protections are integrated, and also the package is small and thin type. The IC is designed for  
space saving requirements.  
2.Feature  
Available to use a small 0.1uF ceramic capacitor (1.8VVOUT  
)
Dropout Voltage  
VDROP=120mV at 100mA  
High Precision output voltage  
High ripple rejection ratio  
Wide operating voltage range  
Very low quiescent current  
On/Off control (High active)  
1.5% or 50mV  
80dB at 1kHz  
2.1V to 14V  
IQ=63A at IOUT=0mA  
Built-in Short circuit protection,thermal shutdown  
Built-in reverse bias over current protection  
Available very low noise application  
Very small surface mount package  
SOT23-5  
3.Application  
Any Electronic Equipment  
Battery Powered Systems  
Mobile Communication  
Rev.0.2  
- 1 -  
2014/07  
 
 
 
[AP1150ADSXX]  
4.Table of Contents  
1. Genaral Description ........................................................................................................................................... 1  
2. Feature................................................................................................................................................................ 1  
3. Application......................................................................................................................................................... 1  
4. Table of Contents............................................................................................................................................... 2  
5. Block Diagram................................................................................................................................................... 3  
6. Ordering Information......................................................................................................................................... 4  
7. Pin Configurations and Functions...................................................................................................................... 5  
Pin Configurations............................................................................................................................................ 5  
Functions .......................................................................................................................................................... 5  
8. Absolute Maximum Ratings .............................................................................................................................. 6  
9. Recommended Operating Conditions................................................................................................................ 6  
10.  
Electrical Characteristics................................................................................................................................ 7  
Electrical Characteristics of Ta=Tj=25C ........................................................................................................ 7  
Electrical Characteristics of Ta=-40C~85................................................................................................... 9  
11.  
Description................................................................................................................................................... 11  
11.1 DC Characteristics.................................................................................................................................... 11  
11.2 Input / output capacitors........................................................................................................................... 11  
11.3 Bias voltage and temperature characteristics of the ceramic capacitor .................................................... 13  
11.4 On/off control........................................................................................................................................... 13  
11.5 Noise Bypass............................................................................................................................................ 13  
11.6 Board Layout............................................................................................................................................ 14  
12.  
13.  
Definition of term......................................................................................................................................... 16  
Recommended External Circuits.................................................................................................................. 17  
External Circuit ............................................................................................................................................... 17  
Test Circuit...................................................................................................................................................... 17  
14.  
Package ........................................................................................................................................................ 18  
Outline Dimensions........................................................................................................................................ 18  
IMPORTANT NOTICE.......................................................................................................................................... 19  
Rev.0.2  
- 2 -  
2014/07  
 
[AP1150ADSXX]  
5.Block Diagram  
Figure 1. Block Diagram  
Rev.0.2  
- 3 -  
2014/07  
[AP1150ADSXX]  
6.Ordering Information  
AP1150ADSXX  
Ta = -40 to 85°C  
SOT23-5  
Output Voltage Code  
For product name, please check the below chart. Please contact your authorized ASAHI KASEI  
MICRODEVICES representative for voltage availability.  
AP1150ADSXX  
Output voltage code  
Table 1. Standard Voltage Version, Output Voltage & Voltage Code  
XX  
VOUT  
XX  
VOUT  
XX  
VOUT  
15  
18  
30  
1.5  
1.8  
3.0  
33  
40  
45  
3.3  
4.0  
4.5  
50  
54  
5.0  
5.4  
Table 2. Optional Voltage Version, Output Voltage & Voltage Code  
XX  
VOUT  
XX  
VOUT  
XX  
VOUT  
XX  
VOUT  
13  
14  
16  
17  
19  
20  
21  
22  
23  
24  
25  
26  
1.3  
1.4  
1.6  
1.7  
1.9  
2.0  
2.1  
2.2  
2.3  
2.4  
2.5  
2.6  
27  
28  
29  
31  
32  
34  
35  
36  
37  
38  
39  
41  
2.7  
2.8  
2.9  
3.1  
3.2  
3.4  
3.5  
3.6  
3.7  
3.8  
3.9  
4.1  
42  
43  
44  
46  
47  
48  
49  
51  
52  
53  
55  
60  
4.2  
4.3  
4.4  
4.6  
4.7  
4.8  
4.9  
5.1  
5.2  
5.3  
5.5  
6.0  
65  
70  
75  
80  
85  
90  
95  
6.5  
7.0  
7.5  
8.0  
8.5  
9.0  
9.5  
Rev.0.2  
- 4 -  
2014/07  
[AP1150ADSXX]  
7.Pin Configurations and Functions  
Pin Configurations  
5
1
4
3
(Top View)  
2
Functions  
Pin  
Pin No.  
Internal Equivalent Circuit  
Description  
Description  
Vcont  
1
On/Off Control Terminal  
320k  
500k  
1
VCONT  
The pull-down resister (500k) is built-in.  
2
3
GND  
Np  
GND Terminal  
Np  
3
Noise Bypass Terminal  
Connect a bypass capacitor between GND.  
Vout  
Vin  
4
4
VOUT  
Output Terminal  
Input Terminal  
Vref  
5
VIN  
Rev.0.2  
- 5 -  
2014/07  
[AP1150ADSXX]  
Condition  
8.Absolute Maximum Ratings  
Parameter  
Supply Voltage  
Symbol  
VccMAX  
min  
-0.4  
-0.4  
-0.4  
-0.4  
-0.4  
-
max  
16  
6
Unit  
V
V
Vout2.0V  
2.1VVout  
Reverse Bias  
VrevMAX  
12  
5
V
Np pin Voltage  
VnpMAX  
VcontMAX  
Tj  
V
Control pin Voltage  
Junction temperature  
Storage Temperature Range  
16  
150  
150  
V
C  
Tstg  
-55  
When mounted on PCB  
(Note 1)  
Power Dissipation  
PD  
-
500  
mW  
Note 1. Please do derating with 4.0mW/C at Pd=500mW and 25C or more. Thermal resistance (JA) = 250C/W.  
WARNING: The maximum ratings are the absolute limitation values with the possibility of the IC breakage. When  
the operation exceeds this standard quality cannot be guaranteed.  
9.Recommended Operating Conditions  
Parameter  
Symbol  
min  
typ  
max  
Unit  
Condition  
Operating Temperature Range  
Operating Voltage Range  
Ta  
-40  
2.1  
-
-
85  
14  
C  
V
VOP  
Rev.0.2  
- 6 -  
2014/07  
 
[AP1150ADSXX]  
10. Electrical Characteristics  
Electrical Characteristics of Ta=Tj=25C  
The parameters with min or max values will be guaranteed at Ta=Tj=25C.  
(Vin=VoutTYP+1V,Vcont=1.8V,Ta=Tj=25C)  
Parameter  
Output Voltage  
Symbol  
Vout  
Condition  
Iout = 5mA  
min  
typ  
max  
Unit  
(Table 3,Table 4)  
0.0  
V
Line Regulation  
LinReg  
-
5.0  
mV  
mV  
mV  
mV  
mV  
Vin = 5V  
Iout = 5mA ~ 100mA  
Iout = 5mA ~ 200mA  
Iout = 50mA  
Load Regulation  
LoaReg  
(Table 3,Table 4)  
-
-
80  
140  
210  
Iout = 100mA  
120  
Iout = 180mA  
Dropout Voltage (Note 2)  
Vdrop  
-
230  
350  
mV  
2.1VVout2.3V)  
Iout = 200mA  
-
200  
320  
350  
-
mV  
mA  
2.4VVout)  
Maximum Output Current  
(Note 3)  
IoutMAX  
240  
Vout=VoutTYP0.9  
Short Circuit Current(Note 3)  
Quiescent Current  
ISHORT  
Iq  
-
-
-
-
360  
63  
-
mA  
A  
A  
mA  
Iout = 0mA  
100  
0.1  
1.8  
Standby Current  
Istandby Vcont = 0V  
0.0  
1.0  
Ground Pin Current  
Control Terminal  
Control Current  
Ignd  
Iout = 50mA  
Icont  
Vcont = 1.8V  
Vout ON state  
Vout OFF state  
-
1.8  
-
5.0  
15.0  
-
A  
V
-
-
Control Voltage  
Vcont  
0.35  
V
Note 2. For Vout 2.0V, no regulations.  
Note 3. The maximum output current is limited by power dissipation.  
Table 3. Standard Voltage Version  
Load Regulation  
Output Voltage  
Part Number  
Iout = 100mA  
Iout = 200mA  
MIN  
TYP  
MAX  
MIN  
TYP  
TYP  
MIN  
V
V
V
V
V
mV  
21  
22  
26  
27  
29  
31  
33  
34  
V
AP1150ADS15  
AP1150ADS18  
AP1150ADS30  
AP1150ADS33  
AP1150ADS40  
AP1150ADS45  
AP1150ADS50  
AP1150ADS54  
1.450  
1.750  
2.950  
3.250  
3.940  
4.432  
4.925  
5.319  
1.500  
1.800  
3.000  
3.300  
4.000  
4.500  
5.000  
5.400  
1.550  
1.850  
3.050  
3.350  
4.060  
4.568  
5.075  
5.481  
10  
10  
11  
12  
13  
13  
14  
14  
23  
24  
27  
28  
30  
31  
32  
33  
49  
51  
61  
64  
69  
73  
78  
81  
Rev.0.2  
- 7 -  
2014/07  
 
 
 
[AP1150ADSXX]  
Table 4. Optional Voltage Version  
Load Regulation  
Iout = 100mA Iout = 200mA  
Output Voltage  
Part Number  
MIN  
TYP  
MAX  
MIN  
TYP  
TYP  
MIN  
V
V
V
V
V
mV  
20  
20  
21  
21  
22  
22  
23  
23  
23  
24  
24  
24  
25  
25  
25  
26  
26  
27  
27  
28  
28  
29  
29  
30  
30  
30  
31  
31  
32  
32  
32  
33  
33  
34  
34  
36  
38  
39  
41  
43  
44  
46  
48  
V
47  
48  
50  
51  
52  
53  
54  
55  
55  
56  
57  
58  
59  
60  
60  
62  
63  
64  
65  
66  
67  
68  
69  
70  
71  
72  
73  
74  
75  
76  
77  
78  
79  
80  
81  
86  
90  
94  
98  
102  
106  
110  
114  
AP1150ADS13  
AP1150ADS14  
AP1150ADS16  
AP1150ADS17  
AP1150ADS19  
AP1150ADS20  
AP1150ADS21  
AP1150ADS22  
AP1150ADS23  
AP1150ADS24  
AP1150ADS25  
AP1150ADS26  
AP1150ADS27  
AP1150ADS28  
AP1150ADS29  
AP1150ADS31  
AP1150ADS32  
AP1150ADS34  
AP1150ADS35  
AP1150ADS36  
AP1150ADS37  
AP1150ADS38  
AP1150ADS39  
AP1150ADS41  
AP1150ADS42  
AP1150ADS43  
AP1150ADS44  
AP1150ADS46  
AP1150ADS47  
AP1150ADS48  
AP1150ADS49  
AP1150ADS51  
AP1150ADS52  
AP1150ADS53  
AP1150ADS55  
AP1150ADS60  
AP1150ADS65  
AP1150ADS70  
AP1150ADS75  
AP1150ADS80  
AP1150ADS85  
AP1150ADS90  
AP1150ADS95  
1.250  
1.350  
1.550  
1.650  
1.850  
1.950  
2.050  
2.150  
2.250  
2.350  
2.450  
2.550  
2.650  
2.750  
2.850  
3.050  
3.150  
3.349  
3.447  
3.546  
3.644  
3.743  
3.841  
4.038  
4.137  
4.235  
4.334  
4.531  
4.629  
4.728  
4.826  
5.023  
5.122  
5.220  
5.319  
5.910  
6.402  
6.895  
7.387  
7.880  
8.372  
8.865  
9.357  
1.300  
1.400  
1.600  
1.700  
1.900  
2.000  
2.100  
2.200  
2.300  
2.400  
2.500  
2.600  
2.700  
2.800  
2.900  
3.100  
3.200  
3.400  
3.500  
3.600  
3.700  
3.800  
3.900  
4.100  
4.200  
4.300  
4.400  
4.600  
4.700  
4.800  
4.900  
5.100  
5.200  
5.300  
5.400  
6.000  
6.500  
7.000  
7.500  
8.000  
8.500  
9.000  
9.500  
1.350  
1.450  
1.650  
1.750  
1.950  
2.050  
2.150  
2.250  
2.350  
2.450  
2.550  
2.650  
2.750  
2.850  
2.950  
3.150  
3.250  
3.451  
3.553  
3.654  
3.756  
3.857  
3.959  
4.162  
4.263  
4.365  
4.466  
4.669  
4.771  
4.872  
4.974  
5.177  
5.278  
5.380  
5.481  
6.090  
6.598  
7.105  
7.613  
8.120  
8.628  
9.136  
9.643  
10  
10  
10  
10  
10  
10  
10  
11  
11  
11  
11  
11  
11  
11  
11  
12  
12  
12  
12  
12  
12  
12  
12  
13  
13  
13  
13  
13  
13  
14  
14  
14  
14  
14  
14  
15  
15  
16  
17  
17  
18  
18  
19  
22  
22  
23  
23  
24  
24  
24  
25  
25  
25  
25  
26  
26  
26  
27  
27  
27  
28  
28  
28  
29  
29  
29  
30  
30  
30  
31  
31  
31  
32  
32  
33  
33  
33  
33  
35  
36  
38  
39  
40  
42  
43  
45  
Rev.0.2  
- 8 -  
2014/07  
[AP1150ADSXX]  
Electrical Characteristics of Ta=-40C~85  
The parameters with min or max values will be guaranteed at Ta=-40 ~ 85C.  
(Vin=VoutTYP+1V,Vcont=1.8V,Ta=-40~85C)  
Parameter  
Output Voltage  
Symbol  
Vout  
Condition  
Iout = 5mA  
min  
typ  
Max  
Unit  
(Table 5,Table 6)  
0.0  
V
Line Regulation  
LinReg  
-
8.0  
mV  
mV  
mV  
mV  
mV  
Vin = 5V  
Iout = 5mA ~ 100mA  
Iout = 5mA ~ 200mA  
Iout = 50mA  
Load Regulation  
LoaReg  
(Table 5,Table 6)  
-
-
80  
180  
270  
Iout = 100mA  
120  
Iout = 180mA  
-
-
230  
200  
390  
390  
mV  
mV  
Dropout Voltage (Note 4)  
Vdrop  
2.2VVout2.3V)  
Iout = 200mA  
2.4VVout)  
Vout=Vout,typ 0.9  
Maximum Output Current (Note 5)  
IoutMAX  
ISHORT  
Iq  
220  
320  
360  
63  
-
mA  
mA  
μA  
Short Circuit Current (Note 5)  
Quiescent Current  
Standby Current  
-
-
-
-
-
Iout = 0mA  
120  
0.5  
2.2  
Istandby Vcont = 0V  
0.0  
1.0  
μA  
Ground Pin Current  
Control Terminal  
Control Current  
Ignd  
Iout = 50mA  
mA  
Icont  
Vcont = 1.8V  
Vout ON state  
Vout OFF state  
-
1.8  
-
5.0  
15.0  
-
μA  
V
-
-
Control Voltage  
Vcont  
0.35  
V
Note 4. For Vout 2.1V, no regulations.  
Note 5. The maximum output current is limited by power dissipation.  
Table 5. Standard Voltage Version  
Load Regulation  
Iout = 100mA Iout = 200mA  
TYP MIN  
Output Voltage  
Part Number  
MIN  
TYP  
MAX  
MIN  
TYP  
V
V
V
V
V
mV  
21  
22  
26  
27  
29  
31  
33  
34  
V
AP1150ADS15  
AP1150ADS18  
AP1150ADS30  
AP1150ADS33  
AP1150ADS40  
AP1150ADS45  
AP1150ADS50  
AP1150ADS54  
1.420  
1.720  
2.920  
3.217  
3.900  
4.387  
4.875  
5.265  
1.500  
1.800  
3.000  
3.300  
4.000  
4.500  
5.000  
5.400  
1.580  
1.880  
3.080  
3.383  
4.100  
4.613  
5.125  
5.535  
10  
10  
11  
12  
13  
13  
14  
14  
27  
28  
32  
33  
36  
38  
40  
41  
63  
63  
83  
88  
100  
109  
117  
124  
Rev.0.2  
- 9 -  
2014/07  
 
 
 
[AP1150ADSXX]  
Table 6. Optional Voltage Version  
Load Regulation  
Iout = 100mA Iout = 200mA  
Output Voltage  
TYP  
Part Number  
MIN  
MAX  
MIN  
TYP  
TYP  
MIN  
V
V
V
V
V
mV  
20  
20  
21  
21  
22  
22  
23  
23  
23  
24  
24  
24  
25  
25  
25  
26  
26  
27  
27  
28  
28  
29  
29  
30  
30  
30  
31  
31  
32  
32  
32  
33  
33  
34  
34  
36  
38  
39  
41  
43  
44  
46  
48  
V
AP1150ADS13  
AP1150ADS14  
AP1150ADS16  
AP1150ADS17  
AP1150ADS19  
AP1150ADS20  
AP1150ADS21  
AP1150ADS22  
AP1150ADS23  
AP1150ADS24  
AP1150ADS25  
AP1150ADS26  
AP1150ADS27  
AP1150ADS28  
AP1150ADS29  
AP1150ADS31  
AP1150ADS32  
AP1150ADS34  
AP1150ADS35  
AP1150ADS36  
AP1150ADS37  
AP1150ADS38  
AP1150ADS39  
AP1150ADS41  
AP1150ADS42  
AP1150ADS43  
AP1150ADS44  
AP1150ADS46  
AP1150ADS47  
AP1150ADS48  
AP1150ADS49  
AP1150ADS51  
AP1150ADS52  
AP1150ADS53  
AP1150ADS55  
AP1150ADS60  
AP1150ADS65  
AP1150ADS70  
AP1150ADS75  
AP1150ADS80  
AP1150ADS85  
AP1150ADS90  
AP1150ADS95  
1.220  
1.320  
1.520  
1.620  
1.820  
1.920  
2.020  
2.120  
2.220  
2.320  
2.420  
2.520  
2.620  
2.720  
2.820  
3.020  
3.120  
3.315  
3.412  
3.510  
3.607  
3.705  
3.802  
3.997  
4.095  
4.192  
4.290  
4.485  
4.582  
4.680  
4.777  
4.972  
5.070  
5.167  
5.265  
5.850  
6.337  
6.825  
7.312  
7.800  
8.287  
8.775  
9.262  
1.300  
1.400  
1.600  
1.700  
1.900  
2.000  
2.100  
2.200  
2.300  
2.400  
2.500  
2.600  
2.700  
2.800  
2.900  
3.100  
3.200  
3.400  
3.500  
3.600  
3.700  
3.800  
3.900  
4.100  
4.200  
4.300  
4.400  
4.600  
4.700  
4.800  
4.900  
5.100  
5.200  
5.300  
5.400  
6.000  
6.500  
7.000  
7.500  
8.000  
8.500  
9.000  
9.500  
1.380  
1.480  
1.680  
1.780  
1.980  
2.080  
2.180  
2.280  
2.380  
2.480  
2.580  
2.680  
2.780  
2.880  
2.980  
3.180  
3.280  
3.485  
3.588  
3.690  
3.793  
3.895  
3.998  
4.203  
4.305  
4.408  
4.510  
4.715  
4.818  
4.920  
5.023  
5.228  
5.330  
5.433  
5.535  
6.150  
6.663  
7.175  
7.688  
8.200  
8.713  
9.225  
9.738  
10  
10  
10  
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151  
159  
168  
176  
185  
193  
Rev.0.2  
- 10 -  
2014/07  
[AP1150ADSXX]  
11. Description  
11.1 DC Characteristics  
Line Regulation  
Load Regulation  
15  
10  
5
10  
5
±0  
VOUT=2.0V  
VOUT=3.0V  
±0  
-5  
-5  
-10  
-15  
-20  
-25  
-30  
-35  
-40  
-10  
VOUT=1.5V  
-15  
VOUT=5.0V  
2.0V  
3.0V  
4.0V  
5.0V  
-20  
-25  
-30  
-35  
0
5
10  
15  
20  
0
50  
100  
150  
200  
VIN(V)  
IOUT(mA)  
Stability Point  
Dropout Voltage versus Output Current  
IOUT=0 to 200mA  
20  
IOUT=0mA  
±0  
±0  
-20  
-20  
-40  
-60  
-80  
-40  
-60  
-80  
-100  
-120  
-140  
-160  
-180  
-200  
-100  
-120  
-140  
-160  
-180  
-200  
IOUT=200mA  
IOUT in 50mA steps  
-100  
0
100  
200  
300  
0
100  
200  
VIN(mV)  
IOUT(mA)  
11.2 Input / output capacitors  
Linear regulators require input and output capacitors in order to maintain the regulator's loop stability. The  
equivalent series resistance (ESR) of the output capacitor must be in the stable operation area. However, it is  
recommended to use as large a value of capacitance as is practical. The output noise and the ripple noise decrease as  
the capacitance value increases. ESR values vary widely between ceramic and tantalum capacitors. However,  
tantalum capacitors are assumed to provide more ESR damping resistance, which provides greater circuit stability.  
This implies that a higher level of circuit stability can be obtained by using tantalum capacitors when compared to  
ceramic capacitors with similar values.  
For output voltage device 2.0V applications, the recommended value of CL0.10F.  
For output voltage device 1.5V applications, the recommended value of CL0.22F  
Rev.0.2  
- 11 -  
2014/07  
[AP1150ADSXX]  
The input capacitor is necessary when the battery is discharged, the power supply impedance increases, or  
the line distance to the power supply is long. This capacitor might be necessary on each individual IC even if  
two or more regulator ICs are used. It is not possible to determine this indiscriminately. Please confirm the  
stability while mounted. The IC provides stable operation with an output side capacitor of  
0.1F (Vout2.0V). If it is 0.1F or more over the full range of temperature, either a ceramic capacitor or  
tantalum capacitor can be used without considering ESR.  
CIN=0.22 to  
CL=0.22 to  
0.1F  
0.1F  
CNP=0.01F  
Figure 2. Recommended components values  
VOUT=1.5 to 1.9V  
VOUT=2.0V  
VOUT=3.0V  
VOUT=4.0V  
VOUT=5.0V  
100  
100  
10  
100  
10  
100  
10  
100  
10  
Stable area  
CL=0.1F  
Stable area  
CL=0.068  
Stable area  
CL=0.068F  
Stable area  
CL=0.068F  
Stable area  
CL=0.068F  
F
10  
1
1
1
1
1
0.1  
0.1  
0.1  
0.1  
0.1  
0.01  
0.01  
0.01  
0.01  
0.01  
0
50  
100 150  
0
50  
100 150  
0
50  
100 150  
0
50  
100 150  
0
50  
100 150  
IOUT(mA)  
IOUT(mA)  
IOUT(mA)  
IOUT(mA)  
IOUT(mA)  
All stable: CL0.22F All stable: CL0.1F  
Figure 3. Stable operation area vs. voltage, current, and ESR  
Note 6. Please increase the output capacitor value when the load current is 0.5 mA or less. The stability of the  
regulator improves if a big output side capacitor is used (the stable operation area extends.)  
Rev.0.2  
- 12 -  
2014/07  
[AP1150ADSXX]  
11.3 Bias voltage and temperature characteristics of the ceramic capacitor  
Generally, a ceramic capacitor has both a temperature characteristic and a voltage characteristic. Please  
consider both characteristics when selecting the part. The B curves are the recommend characteristics.  
Capacitance versus Voltage  
Capacitance versus Ambinet Temperature  
100  
90  
100  
90  
B Curve  
B Curve  
80  
80  
70  
70  
F Curve  
F Curve  
60  
60  
50  
40  
50  
40  
0
2
4
6
8
10  
12  
-50 -25  
0
25  
50  
75 100  
Bias Voltage(V)  
Ambinet Temperature(°C)  
11.4 On/off control  
It is recommended to turn the regulator off when the circuit following the regulator is non-operating. A design  
with little electric power loss can be implemented. We recommend the use of the on/off control of the  
regulator without using a high side switch to provide an output from the regulator. A highly accurate output  
voltage with low voltage drop is obtained.  
Because the control current is small, it is possible to control it directly by CMOS logic.  
Vsat  
REG  
On/Off Cont.  
Figure 4. Equivalent circuit of output  
11.5 Noise Bypass  
The noise and the ripple rejection characteristics depend on the capacitance on the Np terminal. The ripple  
rejection characteristic of the low frequency region improves by increasing the capacitance of Cnp. A standard  
value is Cnp=0.001F. Increase Cnp in a design with important output noise and ripple rejection requirements.  
The IC will not be damaged if the capacitor value is increased. The on/off switching speed changes depending  
on the Np terminal capacitance. The switching speed slows when the capacitance is large.  
Rev.0.2  
- 13 -  
2014/07  
[AP1150ADSXX]  
11.6Board Layout  
Vin  
Vout  
on/off  
Np  
Figure 5. LayoutPCB Material: Glass epoxy (t=0.8mm))  
Pd(mW)  
500  
-4.0mW/C  
0
0
25 50  
100  
(85C)  
150C  
Figure 6. Derating curve  
Please do derating with 4.0mW/C at Pd=500mW and 25C or more. Thermal resistance (ja) is=250C/W.  
The package loss is limited at the temperature that the internal temperature sensor works (about 150C).  
Therefore, the package loss is assumed to be an internal limitation. There is no heat radiation characteristic of  
the package unit assumed because of the small size. The device being mounted on the PCB carries heat away.  
This value changes by the material and the copper pattern etc. of the PCB. The losses are approximately  
500mW. Enduring these losses becomes possible in a lot of applications operating at 25C.  
The overheating protection circuit operates when there are a lot of losses with the regulator (When outside  
temperature is high or heat radiation is bad). The output current cannot be pulled enough and the output  
voltage will drop when the protection circuit operates. When the junction temperature reaches 150C, the IC is  
shut down. However, operation begins at once when the IC stops operation and the temperature of the chip  
decreases.  
How to determine the thermal resistance when mounted on PCB  
The thermal resistance when mounted is expressed as follows:  
Tj=jaPd+Ta  
Tj of IC is set around 150C. Pd is the value when the thermal sensor is activated.  
If the ambient temperature is 25C, then:  
150=jaPd+25  
ja=125/Pd (C /mW)  
Rev.0.2  
- 14 -  
2014/07  
[AP1150ADSXX]  
The simple method to calculate Pd  
Mount the IC on the print circuit board. Short between the output pin and ground. after that, raise input voltage  
from 0V to evaluated voltage gradually. At shorted the output pin, the power dissipation PD can be expressed  
as Pd=Vin Iin. The input current decreases gradually as the temperature of the chip becomes high. After a  
while, it reaches the thermal equilibrium. Use this currrent value at the thermal equilibrium. In almost all the  
cases, it shows 500mW or more. In the case that the power, Vin Short Circuit Current, becomes more than  
twice of the maximum rating of its power dissipation in a moment, there is a possibility that the IC is destroyed  
before internal thermal protection works.  
Procedure (When mounted on PCB.)  
1. Find Pd (VinIin when the output side is  
short-circuited).  
Pd(mW)  
Pd  
2
2. Plot Pd against 25C.  
3. Connect Pd to the point corresponding to the 150C  
with a straight line.  
D Pd  
5
4. In design, take a vertical line from the maximum  
operating temperature (e.g., 75C) to the derating curve.  
5. Read off the value of Pd against the point at which the  
vertical line intersects the derating curve. This is taken  
as the maximum power dissipation DPd.  
6. DPd (VinmaxVout)=Iout (at 75C)  
3
4
0
25  
50  
75  
Ta (℃)  
100  
150  
Figure 7. Determine Pd  
The maximum output current at the highest operating temperature will be Iout DPd (VinMaxVout).  
Please use the device at low temperature with better radiation. The lower temperature provides better quality.  
Rev.0.2  
- 15 -  
2014/07  
[AP1150ADSXX]  
12. Definition of term  
Output Voltage (Vout)  
The output voltage is specified with Vin=(VoutTYP+1V) and Iout=5mA.  
Maximum Output Current (Iout MAX)  
The rated output current is specified under the condition where the output voltage drops 0.3V the value specified  
with Iout=5mA. The input voltage is set to VoutTYP+1V and the current is pulsed to minimize temperature effect.  
Dropout Voltage (Vdrop)  
The dropout voltage is the difference between the input voltage and the output voltage at which point the regulator  
starts to fall out of regulation. Below this value, the output voltage will fall as the input voltage is reduced. It is  
dependent upon the load current and the junction temperature.  
Line Regulation (LinReg)  
Line regulation is the ability of the regulator to maintain a constant output voltage as the input voltage changes. The  
line regulation is specified as the input voltage is changed from Vin=VoutTYP+1V to Vin=VoutTYP+6V. It is a pulse  
measurement to minimize temperature effect.  
Load Regulation (LoaReg)  
Load regulation is the ability of the regulator to maintain a constant output voltage as the load current changes. It is  
a pulsed measurement to minimize temperature effects with the input voltage set to Vin=VoutTYP+1V. The load  
regulation is specified output current step conditions of  
5mA to 100mA.  
Ripple Rejection (R.R)  
Ripple rejection is the ability of the regulator to attenuate the ripple content of the input voltage at the output.  
It is specified with 200mVrms, 1kHz super-imposed on the input voltage, where Vin=Vout+1.5V. Ripple  
rejection is the ratio of the ripple content of the output vs. input and is expressed in dB.  
Standby Current (Istandby)  
Standby current is the current, which flows into the regulator when the output is turned off by the control function  
(Vcont=0V).  
Over Current Sensor  
The over current sensor protects the device when there is excessive output current. It also protects the device if the  
output is accidentally connected to ground.  
Thermal Sensor  
The thermal sensor protects the device in case the junction temperature exceeds the safe value (TJ=150C). This  
temperature rise can be caused by external heat, excessive power dissipation caused by large input to output voltage  
drops, or excessive output current. The regulator will shut off when the temperature exceeds the safe value. As the  
junction temperatures decrease, the regulator will begin to operate again. Under sustained fault conditions, the  
regulator output will oscillate as the device turns off then resets. Damage may occur to the device under extreme  
fault.  
Please reduce the loss of the regulator when this protection operate, by reducing the input voltage or make better heat  
efficiency.In the case that the power, Vin Ishort(Short Circuit Current), becomes more than twice of the maximum  
rating of its power dissipation in a moment, there is a possibility that the IC is destroyed before internal thermal  
protection works.  
Reverse Voltage Protection  
Reverse voltage protection prevents damage due to the output voltage being higher than the input voltage. This fault  
condition can occur when the output capacitor remains charged and the input is reduced to zero, or when an external  
voltage higher than the input voltage is applied to the output side  
Vin  
Vout  
GND  
ESD  
MM: 200pF 0200V or more  
HBM: 100pF 1.5k2000V or more  
Rev.0.2  
- 16 -  
2014/07  
[AP1150ADSXX]  
13. Recommended External Circuits  
External Circuit  
To load  
5
4
Vin  
Vout  
Cin  
0.22F  
CL  
F  
Vin  
Vcont GND  
Np  
3
1
2
Cnp  
0.01F  
Vcont  
Figure 8. External Circuit  
Test Circuit  
5
4
Iin  
A
Vin  
Vout  
Vin  
Cin  
1.0F  
Icont  
CL  
Iout  
Vout  
+
+
V
Vcont GND  
Np  
3
1.0F  
1
2
A
Cnp  
Vcont  
0.001F  
Figure 9. Test Circuit  
Note 7. Electrical Characteristics are applied for the test circuit above.  
(Cin=1.0F(Tantalum) ,CL=1.0F(Tantalum) , Cnp=0.001F(Ceramic))In the application , both of ceramic  
capacitor and tantalum capacitor are available to use as Cin , CL and Cnp at Iout 0.5mA.  
Rev.0.2  
- 17 -  
2014/07  
[AP1150ADSXX]  
14. Package  
Outline Dimensions  
Unit: mm  
Mark  
4
Lot No.  
5
R33  
xxx  
1
3
+
0.1  
0.4  
0.95  
0.95  
+
0.2  
2.9  
+
0.2  
0.4  
+0.2  
0.3  
2.8  
Rev.0.2  
- 18 -  
2014/07  
[AP1150ADSXX]  
IMPORTANT NOTICE  
0. Asahi Kasei Microdevices Corporation (“AKM”) reserves the right to make changes to the  
information contained in this document without notice. When you consider any use or application of  
AKM product stipulated in this document (Product), please make inquiries the sales office of  
AKM or authorized distributors as to current status of the Products.  
1. All information included in this document are provided only to illustrate the operation and  
application examples of AKM Products. AKM neither makes warranties or representations with  
respect to the accuracy or completeness of the information contained in this document nor grants any  
license to any intellectual property rights or any other rights of AKM or any third party with respect  
to the information in this document. You are fully responsible for use of such information contained  
in this document in your product design or applications. AKM ASSUMES NO LIABILITY FOR  
ANY LOSSES INCURRED BY YOU OR THIRD PARTIES ARISING FROM THE USE OF  
SUCH INFORMATION IN YOUR PRODUCT DESIGN OR APPLICATIONS.  
2. The Product is neither intended nor warranted for use in equipment or systems that require  
extraordinarily high levels of quality and/or reliability and/or a malfunction or failure of which may  
cause loss of human life, bodily injury, serious property damage or serious public impact, including  
but not limited to, equipment used in nuclear facilities, equipment used in the aerospace industry,  
medical equipment, equipment used for automobiles, trains, ships and other transportation, traffic  
signaling equipment, equipment used to control combustions or explosions, safety devices, elevators  
and escalators, devices related to electric power, and equipment used in finance-related fields. Do  
not use Product for the above use unless specifically agreed by AKM in writing.  
3. Though AKM works continually to improve the Product’s quality and reliability, you are  
responsible for complying with safety standards and for providing adequate designs and safeguards  
for your hardware, software and systems which minimize risk and avoid situations in which a  
malfunction or failure of the Product could cause loss of human life, bodily injury or damage to  
property, including data loss or corruption.  
4. Do not use or otherwise make available the Product or related technology or any information  
contained in this document for any military purposes, including without limitation, for the design,  
development, use, stockpiling or manufacturing of nuclear, chemical, or biological weapons or  
missile technology products (mass destruction weapons). When exporting the Products or related  
technology or any information contained in this document, you should comply with the applicable  
export control laws and regulations and follow the procedures required by such laws and  
regulations. The Products and related technology may not be used for or incorporated into any  
products or systems whose manufacture, use, or sale is prohibited under any applicable domestic or  
foreign laws or regulations.  
5. Please contact AKM sales representative for details as to environmental matters such as the RoHS  
compatibility of the Product. Please use the Product in compliance with all applicable laws and  
regulations that regulate the inclusion or use of controlled substances, including without limitation,  
the EU RoHS Directive. AKM assumes no liability for damages or losses occurring as a result of  
noncompliance with applicable laws and regulations.  
6. Resale of the Product with provisions different from the statement and/or technical features set forth  
in this document shall immediately void any warranty granted by AKM for the Product and shall not  
create or extend in any manner whatsoever, any liability of AKM.  
7. This document may not be reproduced or duplicated, in any form, in whole or in part, without prior  
written consent of AKM.  
Rev.0.2  
- 19 -  
2014/07  

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