Datasheet AMS1083 Datasheet (Advanced Monolithic Systems)

Page 1
查询AMS1083供应商
Advanced AMS1083 Monolithic 8A LOW DROPOUT VOLTAGE REGULATOR
Systems
FEATURES APPLICATIONS
•• Three Terminal Adjustable or Fixed •• High Efficiency Linear Regulators
1.5V, 2.5V, 2.85V, 3.0V, 3.3V, 3.5V and 5.0V
•• Operates Down to 1V Dropout •• Battery Chargers
•• Line Regulation: 0.015% •• Constant Current Regulators
•• Load Regulation: 0.1% •• Notebook/Personal Computer Supplies
•• TO-220 and TO-263 packages available •• Portable Instrumentation
GENERAL DESCRIPTION
The AMS1083 series of adjustable and fixed voltage regulators are designed to provide 8A output current and to operate down to 1V input-to-output differential. The dropout voltage of the device is guaranteed maximum 1.5V at maximum output current, decreasing at lower load currents. On-chip trimming adjusts the reference voltage to 1%. Current limit is also trimmed, minimizing the stress under overload conditions on both the regulator and power source circuitry.
•• Post Regulators for Switching Supplies
The AMS1083 devices are pin compatible with older three-terminal regulators and are offered in 3 lead TO-220 package and 3 lead TO-263 (Plastic DD).
ORDERING INFORMATION:
PACKAGE TYPE OPERATING JUNCTION
3 LEAD TO-220 3 LEAD TO-263
AMS1083CT AMS1083CM AMS1083CT-1.5 AMS1083CM-1.5 AMS1083CT-2.5 AMS1083CM-2.5 AMS1083CT-2.85 AMS1083CM-2.85 AMS1083CT-3.0 AMS1083CM-3.0 AMS1083CT-3.3 AMS1083CM-3.3 AMS1083CT-3.5 AMS1083CM-3.5 AMS1083CT-5.0 AMS1083CM-5.0
TEMPERATURE RANGE
0 to 125° C 0 to 125° C 0 to 125° C 0 to 125° C 0 to 125° C 0 to 125° C 0 to 125° C 0 to 125° C
TAB IS
OUTPUT
FRONT VIEW
3 2
1
PIN CONNECTIONS
FIXED VERSION
1- Ground 2- V
OUT
3- V
IN
ADJUSTABLE VERSION
1- Adjust 2- V
OUT
3- V
IN
TAB IS
OUTPUT
FRONT VIEW
3 2 1
Advanced Monolithic Systems, Inc. 6680B Sierra Lane, Dublin, CA 94568 Phone (925) 556-9090 Fax (925) 556-9140
Page 2
AMS1083
Junction Temperature Range
ABSOLUTE MAXIMUM RATINGS (Note 1)
Power Dissipation Internally limited Soldering information Input Voltage 15V Lead Temperature (10 sec) Operating Control Section Power Transistor Storage temperature
0°C to 125°C
0°C to 150°C
- 65°C to +150°C
Thermal Resistance TO-220 package TO-263 package
* With package soldering to 0.5in2 copper area over backside ground plane or internal power plane ϕ JA can vary from 20°C/W to >40°C/W depending on mounting technique.
ELECTRICAL CHARACTERISTICS
Electrical Characteristics at I
Parameter Device Conditions Min Typ Max Units
= 0 mA, and TJ = +25°C unless otherwise specified.
OUT
300°C
ϕ JA= 50°C/W
ϕ JA= 30°C/W *
Reference Voltage
AMS1083 I
(Note 2) Output Voltage
AMS1083-1.5
(Note 2)
AMS1083-2.5
AMS1083-2.85
AMS1083-3.0
AMS1083-3.3
AMS1083-3.5
AMS1083-5.0
Line Regulation AMS1083/-1.5/-2.5/-2.85/
-3.0/-3.3/-3.5/-5.0
Load Regulation
AMS1083
(Notes 2, 3)
AMS1083-1.5
AMS1083-2.5
AMS1083-2.85
AMS1083-3.0
AMS1083-3.3
AMS1083-3.5
AMS1083-5.0
Dropout Voltage (V
- V
OUT
)
IN
AMS1083/-1.5/-2.5/-2.85/
-3.0/-3.3/-3.5/-5.0
= 10 mA
OUT
10mA I 0 I
0 I
0 I
0 I
0 I
0 I
0 I
I
LOAD
(VIN - V
VIN = 5V, 0 I
VIN = 5V, 0 I
VIN = 5V, 0 I
VIN = 5V, 0 I
VIN = 5V, 0 I
8A, 1.5V (VIN - V
OUT
8A , 3V VIN 12V
OUT
8A , 4V VIN 12V
OUT
8A , 4.35V VIN 12V
OUT
8A , 4.5V VIN 12V
OUT
8A , 4.75V VIN 12V
OUT
8A, 5V VIN 12V
OUT
8A , 6.5V VIN 12V
OUT
= 10 mA , 1.5V (VIN - V
) =3V, 10mA I
OUT
OUT
OUT
OUT
OUT
OUT
VIN = 5.25V, 0 I
VIN = 8V, 0 I
V
OUT
, V
= 1%, I
REF
OUT
8A
8A
8A
8A
8A
OUT
8A
8A
8A
OUT
= 8 A (Note 4)
OUT
OUT
) 12V
OUT
) 12V
1.238
1.225
1.485
1.470
2.475
2.450
2.820
2.790
2.970
2.940
3.267
3.235
3.465
3.430
4.950
4.900
1.250
1.250
1.500
1.500
2.500
2.500
2.850
2.850
3.000
3.000
3.300
3.300
3.500
3.500
5.000
5.000
0.3
0.6
0.1
0.2
3
6
3
6
3
6
3
6
3
7
3
6
5
10
1.3 1.5
1.262
1.270
1.515
1.530
2.525
2.550
2.880
2.910
3.030
3.360
3.333
3.365
3.535
3.570
5.050
5.100
6
10
0.3
0.4
12
20
12
20
12
20
12
20
15
25
15
25
20
35
V V
V V
V V
V V
V V
V V
V V
V V
mV mV
% %
mV mV
mV mV
mV mV
mV mV
mV mV
mV mV
mV mV
V
Advanced Monolithic Systems, Inc. 6680B Sierra Lane, Dublin, CA 94568 Phone (925) 556-9090 Fax (925) 556-9140
Page 3
AMS1083
ELECTRICAL CHARACTERISTICS
Electrical Characteristics at I
Parameter Device Conditions Min Typ Max Units
= 0 mA, and TJ = +25°C unless otherwise specified.
OUT
Current Limit AMS1083/-1.5/-2.5/-2.85/
(VIN - V
OUT
) = 5V
8.00 9.00 10.00
A
-3.0/-3.3/-3.5/-5.0
Minimum Load
AMS1083 (VIN - V
) = 12V (Note 5)
OUT
5 10
mA
Current Quiescent Current AMS1083/-1.5/-2.5/-2.85/
VIN 12V
5 10
mA
-3.0/-3.3/-3.5/-5.0
Ripple Rejection AMS1083
AMS1083-1.5
f =120Hz , C (VIN-V
) = 3V, C
OUT
f =120Hz , C
= 25µF Tantalum, I
OUT
=25µF
ADJ
= 25µF Tantalum, I
OUT
OUT
OUT
= 8A,
= 8A,
60 75
60 72
dB
dB
VIN = 4.5V
AMS1083-2.5
f =120Hz , C
= 25µF Tantalum, I
OUT
OUT
= 8A,
60 72
dB
VIN = 5.5V
AMS1083-2.85
f =120Hz , C
= 25µF Tantalum, I
OUT
OUT
= 8A,
60 72
dB
VIN = 6V
AMS1083-3.0
f =120Hz , C
= 25µF Tantalum, I
OUT
OUT
= 8A
60 72
dB
VIN = 6V
AMS1083-3.3
f =120Hz , C
= 25µF Tantalum, I
OUT
OUT
= 8A
60 72
dB
VIN = 6.3V
AMS1083-3.5
f =120Hz , C
= 25µF Tantalum, I
OUT
OUT
= 8A
60 72
dB
VIN = 6.5V
AMS1083-5.0
f =120Hz , C
= 25µF Tantalum, I
OUT
OUT
= 8A
60 68
dB
VIN = 8V
Thermal Regulation AMS1083 TA = 25°C, 30ms pulse 0.008 0.04 %W Adjust Pin Current AMS1083
Adjust Pin Current
AMS1083
10mA I
10mA I
8A , 1.5V (VIN - V
OUT
8A , 1.5V (VIN - V
OUT
OUT
OUT
) 12V
) 12V
55
120
0.2 5
µA µA
µA
Change Temperature Stability
0.5
% Long Term Stability TA =125°C, 1000Hrs 0.3 1 % RMS Output Noise
(% of V
OUT
)
Thermal Resistance Junction-to-Case
TA = 25°C , 10Hz f 10kHz
M Package: Control Circuitry/ Power Transistor T Package: Control Circuitry/ Power Transistor
0.003 %
1.5/4.0
1.5/4.0
°C/W °C/W
Parameters identified with boldface type apply over the full operating temperature range.
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. For guaranteed specifications and test conditions, see the
Electrical Characteristics. The guaranteed specifications apply only for the test conditions listed.
Note 2: Line and Load regulation are guaranteed up to the maximum power dissipation of 15W. Power dissipation is determined by the input/output differential
and the output current. Guaranteed maximum power dissipation will not be available over the full input/output range.
Note 3:See thermal regulation specifications for changes in output voltage due to heating effects. Line and load regulation are measured at a constant junction
temperature by low duty cycle pulse testing. Load regulation is measured at the output lead ~1/8” from the package.
Note 4: Dropout voltage is specified over the full output current range of the device. Note 5: Minimum load current is defined as the minimum output current required to maintain regulation. When (V
regulate if the output current is greater than 10mA.
- V
) = 12V the device is guaranteed to
IN
OUT
Advanced Monolithic Systems, Inc. 6680B Sierra Lane, Dublin, CA 94568 Phone (925) 556-9090 Fax (925) 556-9140
Page 4
APPLICATION HINTS
AMS1083
The AMS1083 series of adjustable and fixed regulators are easy to use and have all the protection features expected in high performance voltage regulators: short circuit protection and thermal shut-down. Pin compatible with older three terminal adjustable regulators, these devices offer the advantage of a lower dropout voltage, more precise reference tolerance and improved reference stability with temperature.
Stability
The circuit design used in the AMS1083 series requires the use of an output capacitor as part of the device frequency compensation. The addition of 150µF aluminum electrolytic or a 22µF solid tantalum on the output will ensure stability for all operating conditions. When the adjustment terminal is bypassed with a capacitor to improve the ripple rejection, the requirement for an output capacitor increases. The value of 22µF tantalum or 150µF aluminum covers all cases of bypassing the adjustment terminal. Without bypassing the adjustment terminal smaller capacitors can be used with equally good results. To ensure good transient response with heavy load current changes capacitor values on the order of 100µF are used in the output of many regulators. To further improve stability and transient response of these devices larger values of output capacitor can be used.
Protection Diodes
Unlike older regulators, the AMS1083 family does not need any protection diodes between the adjustment pin and the output and from the output to the input to prevent over-stressing the die. Internal resistors are limiting the internal current paths on the AMS1083 adjustment pin, therefore even with capacitors on the adjustment pin no protection diode is needed to ensure device safety under short-circuit conditions. Diodes between the input and output are not usually needed. Microsecond surge currents of 50A to 100A can be handled by the internal diode between the input and output pins of the device. In normal operations it is difficult to get those values of surge currents even with the use of large output capacitances. If high value output capacitors are used, such as 1000µF to 5000µF and the input pin is instantaneously shorted to ground, damage can occur. A diode from output to input is recommended, when a crowbar circuit at the input of the AMS1083 is used. Normal power supply cycling or even plugging and unplugging in the system will not generate current large enough to do any damage. The adjustment pin can be driven on a transient basis ±25V, with respect to the output without any device degradation. As with any IC regulator, none the protection circuitry will be functional and the internal transistors will break down if the maximum input to output voltage differential is exceeded.
D1
V
IN
IN OUT
ADJ
C
10µF
ADJ
+
R
1
R
2
AMS1083
C
OUT
150µF
V
OUT
Overload Recovery
When the power is first turned on, as the input voltage rises, the output follows the input, permitting the regulator to start up into heavy loads. During the start-up, as the input voltage is rising, the input-to-output voltage differential remains small, allowing the regulator to supply large output currents. A problem can occur with a heavy output load when the input voltage is high and the output voltage is low, when the removal of an output short will not permit the output voltage to recover. The load line for such a load may intersect two points on the output current curve. In this case, there are two stable output operating points for the regulator. With this double intersection, the power supply may need to be cycled down to zero and brought up again to make the output recover.
Ripple Rejection
The ripple rejection values are measured with the adjustment pin bypassed. The impedance of the adjust pin capacitor at the ripple frequency should be less than the value of R1 (normally 100 to120) for a proper bypassing and ripple rejection approaching the values shown. The size of the required adjust pin capacitor is a function of the input ripple frequency. If R1=100 at 120Hz the adjust pin capacitor should be 25µF. At 10kHz only 0.22µF is needed.
The ripple rejection will be a function of output voltage, in circuits without an adjust pin bypass capacitor. The output ripple will increase directly as a ratio of the output voltage to the reference voltage (V
OUT
/ V
REF
).
Output Voltage
The AMS1083 series develops a 1.25V reference voltage between the output and the adjust terminal. Placing a resistor between these two terminals causes a constant current to flow through R1 and down through R2 to set the overall output voltage.
Advanced Monolithic Systems, Inc. 6680B Sierra Lane, Dublin, CA 94568 Phone (925) 556-9090 Fax (925) 556-9140
Page 5
APPLICATION HINTS
ADJ
P is
AMS1083
This current is normally the specified minimum load current of 10mA. Because I
is very small and constant it represents a
small error and it can usually be ignored.
V
IN
V
OUT
IN OUT
ADJ
I
ADJ
50µA
= V
REF
V
REF
(1+ R2/R1)+I
ADJ
AMS1083
R2
R1
R2
V
OUT
Figure 1. Basic Adjustable Regulator
Load Regulation
True remote load sensing it is not possible to provide, because the AMS1083 is a three terminal device. The resistance of the wire connecting the regulator to the load will limit the load regulation. The data sheet specification for load regulation is measured at the bottom of the package. Negative side sensing is a true Kelvin connection, with the bottom of the output divider returned to the negative side of the load. The best load regulation is obtained when the top of the resistor divider R1 is connected directly to the case not to the load. If R1 were connected to the load, the effective resistance between the regulator and the load would be:
R
R1
x ( R2+R1 ) , R
P
V
IN
AMS1083
IN OUT
ADJ
= Parasitic Line Resistance
P
R
P
PARASITIC
LINE RESISTANCE
Connected as shown, R
not multiplied by the divider ratio.
Using 16-gauge wire the parasitic line resistance is about 0.004 per foot, translating to 4mV/ft at 1A load current. It is important to keep the positive lead between regulator and load as short as possible and use large wire or PC board traces.
Thermal Considerations
The AMS1083 series have internal power and thermal limiting circuitry designed to protect the device under overload conditions. However maximum junction temperature ratings should not be exceeded under continuous normal load conditions. Careful consideration must be given to all sources of thermal resistance from junction to ambient, including junction-to-case, case-to-heat sink interface and heat sink resistance itself. To ensure safe operating temperatures and reflect more accurately the device temperature, new thermal resistance specifications have been developed. Unlike older regulators with a single junction-to-case thermal resistance specification, the data section for these new regulators provides a separate thermal resistance and maximum junction temperature for both the Control Section and the Power Transistor. Calculations for both temperatures under certain conditions of ambient temperature and heat sink resistance and to ensure that both thermal limits are met.
Junction-to-case thermal resistance is specified from the IC junction to the bottom of the case directly below the die. This is the lowest resistance path for the heat flow. In order to ensure the best possible thermal flow from this area of the package to the heat sink proper mounting is required. Thermal compound at the case-to-heat sink interface is recommended. A thermally conductive spacer can be used, if the case of the device must be electrically isolated, but its added contribution to thermal resistance has to be considered.
R1*
R2*
R
L
*CONNECT R1 TO CASE
CONNECT R2 TO LOAD
Figure 3. Connections for Best Load Regulation
Advanced Monolithic Systems, Inc. 6680B Sierra Lane, Dublin, CA 94568 Phone (925) 556-9090 Fax (925) 556-9140
Page 6
TYPICAL PERFORMANCE CHARACTERISTICS
AMS1083
Dropout Voltage
2
TJ =25° C
1
DIFFERENTIAL (V)
MINIMUM INPUT/OUTPUT
0
0 1 2 3 4 5 6
OUTPUT CURRENT (A)
Ripple Rejection
80
V
3V
RIPPLE
70
P-P
60 50
40
(VIN-V
)≥V
OUT
30 20
I
RIPPLE REJECTION (dB)
OUT=IFULL LOAD
10
0
DROPOUT
100 1k 10k 100k
FREQUENCY (Hz)
TJ =150° C
V
RIPPLE
(VIN-V
7 8 9 10
0.5V
P-P
) ≥ 3V
OUT
Load Regulation
0.10
I = 8A
0.05
0
-0.05
-0.10
-0.15
-0.20
OUTPUT VOLTAGE DEVIATION (%)
-50 -25 0 25 50 75 100 125 150 TEMPERATURE (° C)
Ripple Rejection vs. Current
100
90 80 70
fR = 120Hz V
RIPPLE
3V
P-P
60
fR =20kHz
50
V
0.5V
RIPPLE
40
P-P
30 20
RIPPLE REJECTION (dB)
10
0
0
0.4 0.6 0.8 1.0
0.2
OUTPUT CURRENT (0 TO I
Temperature Stability
2.0
1.0
0
-1.0
OUTPUT VOLTAGE CHANGE (%)
-2.0
-25 0 25 50 75 100 125 150
-50 TEMPERATURE (° C)
Short-Circuit Current
12
10
8
6
4
2
SHORT-CIRCUIT CURRENT (A)
0
) INPUT/OUTPUT DIFFERENTIAL (V)
FULL LOAD
0 2
4 6
8 10 12
14
Load Transient Response
0.6
0.4
0.2 0
-0.2
DEVIATION (V)
-0.4
OUTPUT VOLTAGE
~
~
8 6 4
LOAD
2
CURRENT (A)
0
0
C
= 0
ADJ
CIN = 1µF C
= 10µF TANTALUM
OUT
50
TIME (µs)
V
= 10V
OUT
V
= 13V
IN
PRELOAD = 100mA
OUTPUT VOLTAGE
~
~
INPUT
100
Line Transient Response
150 100
C
ADJ
50
0
-50
DEVIATION (mV)
-100
-150
~
~
14 13 12
DEVIATION (V)
0 100
= 0
V
= 10V
OUT
IIN = 0.2A CIN = 1µF TANTALUM C
= 10µF TANTALUM
OUT
~
~
200
TIME (µs) CASE TEMPERATURE (° C)
Maximum Power Dissipation*
100
90 80 70 60 50 40
POWER (W)
30 20
10
0
506070
*AS LIMITED BY MAXIMUM JUNCTION TEMPERATURE
80 90
100
110
120 130 140 150
Advanced Monolithic Systems, Inc. 6680B Sierra Lane, Dublin, CA 94568 Phone (925) 556-9090 Fax (925) 556-9140
Page 7
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
AMS1083
Minimum Operating Current
(Adjustable only)
ADJUST PIN CURRENT (µA)
100
90 80 70 60 50 40
30 20
10
0
-50 -25
10
9 8
TJ = 150° C
7 6 5
TJ = 25° C
4 3
2 1
0
0 2 4 6 8 10 12
MINIMUM OPERATING CURRENT (mA)
14 100
PACKAGE DIMENSIONS inches (millimeters) unless otherwise noted.
Adjust Pin Current
(Adjustable only)
25 50 75
0
TEMPERATURE (° C)INPUT/OUTPUT DIFFERENTIAL (V)
125
150
(11.684-12.700)
0.980-1.070
(24.892-27.178)
0.460-0.500
0.520-0.570
(13.208-14.478)
0.090-0.110
(2.286-2.794)
3 LEAD TO-220 PLASTIC PACKAGE (T)
0.390-0.415
(9.906-10.541)
0.028-0.038
(0.711-0.965)
0.147-0.155
(3.734-3.937)
0.230-0.270
(5.842-6.858)
0.330-0.370
(8.382-9.398)
0.050
(1.270)
TYP
DIA
0.570-0.620
(14.478-15.748)
0.218-0.252
(5.537-6.401)
0.165-0.180
(4.191-4.572)
0.013-0.023
(0.330-0.584)
0.045-0.055
(1.143-1.397)
0.095-0.115
(2.413-2.921)
T (TO-220) AMS DRW# 042193
Advanced Monolithic Systems, Inc. 6680B Sierra Lane, Dublin, CA 94568 Phone (925) 556-9090 Fax (925) 556-9140
Page 8
PACKAGE DIMENSIONS inches (millimeters) unless otherwise noted (Continued).
3 LEAD TO-263 PLASTIC DD (M)
AMS1083
0.090-0.110
(2.286-2.794)
0.390-0.415
(9.906-10.541)
0.060
(1.524)
0.330-0.370
(8.382-9.398)
0.032 (0.81)
TYP
TYP
0.199-0.218 (5.05-5.54 )
0.165-0.180
(4.191-4.572)
0.108 (2.74)
TYP
0.013-0.023
(0.330-0.584)
0.045-0.055
(1.143-1.397)
+0.008
0.004
-0.004
+0.203
(0.102 )
-0.102
0.095-0.115
(2.413-2.921)
0.90-0.110
(2.29-2.79)
M (DD3) AMS DRW# 042191R1
Advanced Monolithic Systems, Inc. 6680B Sierra Lane, Dublin, CA 94568 Phone (925) 556-9090 Fax (925) 556-9140
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