ADMOS AMS5105M1-X 500ma cmos low dropout voltage regulator Datasheet

Advanced
Monolithic
Systems
AMS5105
500mA CMOS LOW DROPOUT VOLTAGE REGULATOR
RoHS compliant
FEATURES
APPLICATIONS
• Fixed and Adjustable Versions Available
• Output Current up to 500mA
• Very Low Quiescent Current
• Input-output Differential less than 0.5V
• Short Circuit Protection
• Internal Thermal Overload Protection
• ENABLE Pin available in selected packages
• Cellular Telephones
• Portable Consumer Equipment
• Portable (Notebook) Computers
• Battery Powered Systems
• Portable Instrumentation
• Radio Control Systems
• CD/DVD drives
GENERAL DESCRIPTION
The AMS5105 series consists of positive fixed and adjustable voltage regulators ideally suited for use in battery-powered
systems. These devices feature very low quiescent current (500uA or less) when supplying loads up to 500mA, and a standby
current less than 500nA when disabled using the ENABLE pin (available in selected packages). These unique characteristics
and the low input-output differential required for proper regulation (0.5V for output currents of 500mA) make the AMS5105
ideal for use in standby power systems. Internal current limiting and thermal shutdown features provide protection for all
AMS5105 series devices regardless of package type. The AMS5105 is offered as fixed voltage regulators in the 5 lead SOT-23,
SOT-89, SOT-223, and 8 lead SOIC packages, and as adjustable voltage regulators in the 5 lead SOT-23 and 8 lead SOIC
packages. All devices in the 5 lead SOT-23 and 8 lead SOIC packages are provided with ENABLE pin.
ORDERING INFORMATION
OUTPUT
PACKAGE TYPE
5L SOT-23
VOLTAGE
FIXED
AMS5105M1-X
ADJUSTABLE AMS5105M1
X = 1.5V, 1.8V, 2.5V, 2.8V, 3.3V.
SOT-89
AMS5105L-X
TEMP.
SOT-223
AMS5105-X
SO-8
AMS5105S-X
AMS5105S
RANGE
-25C to 125C
-25C to 125C
PIN CONNECTIONS
5 Lead SOT-23
(M1)
VIN
1
5
SOT-89
(L)
SOT-223
VOUT
VOUT
GROUND 2
ENABLE 3
4
Top View
FB
N/C
8 Lead SOIC
(S)
1
V OUT
2
GND
3
1
V IN
Top View
V OUT
2
3
GND
V IN
8
VIN
7 GROUND
GROUND 3
FB
4
N/C
6 GROUND
5 ENABLE
N/C
Top View
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1
GROUND 2
Phone (925) 443-0722
Top View
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AMS5105
ABSOLUTE MAXIMUM RATINGS (Note 1)
Input Supply Voltage
Internal Power Dissipation (Note 4)
ESD
-0.3 to +6.5V
Internally Limited
2000V
Maximum Junction Temperature
+125°C
Storage Temperature
-65°C to +150°C
Lead Temperature (Soldering 25 sec)
265°C
ELECTRICAL CHARACTERISTICS
Electrical Characteristics at VIN =VOUT +1V, IOUT =1mA, TJ=25°C, COUT = 2.2µF unless otherwise specified.
PARAMETER
AMS5105-X
Min.
Typ.
Max.
CONDITIONS
Units
Fixed Output Voltage Versions
Output Voltage Tolerance
-1.5
+1.5
%
- 3.0
+ 3.0
%
5
10
mV/V
8
30
mV/V
≤ 100 mA
30
50
mV
≤ 500 mA
50
70
mV
(VOUT+1V) ≤ VIN ≤6V, IOUT=100 mA
-25°C ≤T ≤125°C
J
Line Regulation
Load Regulation
(VIN+1V) ≤V ≤ 6V
IN
1mA ≤I
OUT
5mA ≤ I
OUT
Dropout Voltage
I
= 10 mA
20
25
mV
I
= 100 mA
100
125
mV
I
= 500 mA
400
500
mV
I
= 10 mA
I
= 100 mA
I
= 500 mA
450
450
450
100
550
550
550
500
µA
µA
µA
nA
6
V
-
15
% VIN
0.01
1
nA
20
30
µs
OUT
OUT
OUT
Quiescent Current
OUT
OUT
OUT
RL = 500Ω, In disabled state, VENABLE = 0
Maximum Operational Input
Voltage
ENABLE
Threshold Voltage
VIN = 3V to 6V (Note 6)
Enabled
60
Disabled
ENABLE
Threshold Current
Wake-Up Response Time
VENABLE = 0.6 x VIN, VIN = 3V to 6V
(Note 7)
-
-
% VIN
(from disabled state)
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AMS5105
ELECTRICAL CHARACTERISTICS
Electrical Characteristics at VIN =6V, VOUT =3V, IOUT =1mA, TJ=25°C, COUT = 2.2µF unless otherwise specified.
PARAMETER
Min.
AMS5105
Typ.
Max.
1.231
1.250
1.269
V
1.218
1.250
1.282
V
1.25
-
5
V
-
1.5
%
CONDITIONS
(Note 2)
Units
Adjustable Version
Reference Voltage
IOUT ≤ 100 mA, -25°C ≤T ≤ 125°C
J
Measured from FB pin to GROUND
Output Voltage Range
Line Regulation
VOUT + 1V ≤V ≤ 6V
Load Regulation
1mA ≤I ≤ 100 mA
0.3
1
%
5mA ≤I ≤ 500 mA
1
2
%
20
100
400
25
125
500
mV
mV
mV
350
350
350
100
450
450
450
500
µA
µA
µA
nA
6
V
IN
O
O
Dropout Voltage
I
≤ 10 mA
I
= 100 mA
I
= 500 mA (Note 5)
OUT
OUT
OUT
Quiescent Current
I
= 10 mA
I
= 100 mA
I
= 500 mA
OUT
OUT
OUT
RL = 500Ω, In disabled state, VENABLE = 0
Maximum Operational Input
Voltage
ENABLE
Threshold Voltage
VIN = 3V to 6V (Note 6)
Enabled
60
-
-
% VIN
Disabled
-
-
15
% VIN
0.01
1
nA
20
30
µs
ENABLE
Threshold Current
Wake-Up Response Time
VENABLE = 0.6 x VIN, VIN = 3V to 6V
(Note 7)
-
(from disabled state)
Note 1: Absolute Maximum Ratings are limits beyond which damage to the device may occur. For guaranteed performance limits and associated test
conditions, see the Electrical Characteristics tables.
Note 2: To ensure constant junction temperature, low duty cycle pulse testing is used.
Note 3: Limits appearing in boldface type apply over the entire junction temperature range for operation. Limits appearing in normal type apply for
TA = TJ = 25°C.
Note 4: The maximum allowable power dissipation is a function of the maximum junction temperature TJ(MAX), the junction-to ambient thermal resistance θJ-A
and the ambient temperature TA. The maximum allowable power dissipation at any ambient temperature is calculated using:
P(MAX) =
TJ(MAX) - TA
θJ - Aθ
Where the values of the junction-to-ambient thermal resistances are as follows: 220°C/W for 5 lead SOT-23 (M1) and 160°C/W for the molded plastic SO-8 (S).
Note 5: Dropout Voltage is defined as the input to output differential at which the output voltage drops 100mV below its nominal value measured at 1V
differential.
Note 6: ENABLE Threshold Voltage levels are specified as a percentage of input voltage VIN. Quiescent current can be minimized by choosing VENABLE HIGH
equal to VIN.
Note 7: Time required for VOUT to reach 95% of output voltage setting after VENABLE is switched from 0V to VIN.
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AMS5105
TYPICAL PERFORMANCE CHARACTERISTICS
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AMS5105
AMS5105/-X Pin Description 5-Lead SOT-23
PIN
NAME
DESCRIPTION
1
VIN
Unregulated input voltage
Connect CIN from VIN to GND
2
GND
Ground connection for VIN
and VOUT
3
ENABLE Logical high enables regulator
Logical low disables regulator
4
FB
Feedback from resistor divider
Used to set output voltage
Adjustable versions only
(See Figures 3 and 4)
5
VOUT
Regulated output voltage
Connect COUT from VOUT to
GND
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AMS5105
APPLICATION NOTES
Definition of Terms
higher loads, the value of the capacitor should be increased,
especially when the output voltage is set for 2.5V or less. The
AMS5105 lowest fixed output voltage value is 1.5V.
Dropout Voltage: The input-output voltage differential at which
the circuit stops to regulate against further reduction in input
voltage. Measured when the output voltage has dropped 100mV
from the nominal voltage obtained at 1V input, dropout voltage is
dependent upon load current and junction temperature.
Input Voltage: The DC voltage applied to the input terminal with
respect to ground.
Input-Output Differential: The voltage difference between the
unregulated input voltage and the regulated output voltage for
which the regulator will regulate.
Line Regulation: The change in output voltage for a change in
the input voltage. The line regulation is measured under conditions
of low dissipation or by using low duty cycle pulse testing such
that the average chip temperature is not significantly affected.
Load Regulation: The change in output voltage for a change in
load current at constant chip temperature.
Long term stability: Output voltage stability under accelerated
life-test conditions after 1000 hours with maximum rated voltage
and junction temperature.
Quiescent Current: That part of the positive input current that
does not contribute to the positive load current. The regulator
ground lead current.
Temperature Stability of VO: The percentage change in output
voltage for a thermal variation from room temperature to either
temperature extreme.
Programming the Output Voltage
The AMS5105 may be programmed for any output voltage
between its 1.25V reference and its 6V maximum rating, allowing
for dropout and power dissipation. As shown in Figure 3, an
external pair of resistors is required.
The equation for the output voltage is:
VOUT = VREF ⋅ (1 + R1/ R2)
where VREF is the nominal 1.25 reference voltage.
Typical application circuit (adjustable output)
External capacitor
The AMS5105 series requires an output capacitor of 2.2µF or
greater to ensure device stability, as shown in Figures 1 through 4.
Without the capacitor the device may oscillate. Most types of
tantalum or electrolytic capacitor can be used in the applications.
The value of this capacitor can be increased without limits. For
TYPICAL APPLICATION
+VIN
+
2.2 F
CIN
3
+VIN
+VIN
VOUT
VOUT 1
AMS5105-X
GND
2
+
2.2 F
COUT
+
2.2 F
CIN
1
+VIN
+VIN
VOUT
VOUT 5
AMS5105-X
3 ENABLE
GND
2
+
2.2 F
COUT
+
2.2 F
CIN
1
+VIN
3 ENABLE
GND
2
R1
FB
4
Figure 2
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+
2.2 F
COUT
1.25V
VREF
Figure 1
VOUT
VOUT 5
AMS5105
R2
Figure 3
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AMS5105
PACKAGE DIMENSIONS inches (millimeters) unless otherwise noted.
5 LEAD SOT-23 PLASTIC PACKAGE (M1)
0.110-0.120
(2.794-3.048)
0.102-0.118
(2.60-3.00)
0.059-0.070
(1.50-1.75)
0.014-0.020
(0.350-0.50)
0.037
(0.95)
TYP
0.018-0.024
(0.457-0.610)
10°
NOM
0.036-0.051
(0.090-1.30)
0.0035-0.0080
(0.090-0.20)
0.003
(0.150)
MAX
10°
NOM
0.075
(1.90)
TYP
0.018-0.024
(0.457-0.610)
(SOT-23-5 ) AMS DRW# 051001
SOT-89 PLASTIC PACKAGE (L)
0.173-0.181
(4.40-4.60)
0.055-0.063
(1.40-1.60)
0.064-0.072
(1.62-1.83)
0.014-0.017
(0.35-0.44)
0.155-0.167
(3.94-4.25)
0.084-0.090
(2.13-2.29)
0.090-0.102
(2.29-2.60)
0.035-0.047
(0.89-1.20)
0.059
(1.50)
BSC
0.017-0.022
(0.44-0.56)
0.014-0.019
(0.36-0.48)
L (SOT-89 ) AMS DRW# 042392
0.118
(3.00)
BSC
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AMS5105
3 LEAD SOT-223 PLASTIC PACKAGE
8 LEAD SOIC PLASTIC PACKAGE (S)
0.189-0.197*
(4.801-5.004)
8
7
6
5
0.228-0.244
(5.791-6.197)
0.150-0.157**
(3.810-3.988)
1
0.053-0.069
(1.346-1.752)
0.014-0.019
(0.355-0.483)
2
3
4
0.010-0.020 x 45°
(0.254-0.508)
0.004-0.010
(0.101-0.254)
0.008-0.010
(0.203-0.254)
0.050
(1.270)
TYP
0°-8° TYP
0.016-0.050
(0.406-1.270)
S (SO-8 ) AMS DRW# 042293
*DIMENSION DOES NOT INCLUDE MOLD FLASH. MOLD FLASH
SHALL NOT EXCEED 0.006" (0.152mm) PER SIDE
**DIMENSION DOES NOT INCLUDE INTERLEAD FLASH. INTERLEAD
FLASH SHALL NOT EXCEED 0.010" (0.254mm) PER SIDE
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Fax (925) 443-0723
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