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 SSC2139
1.55A CMOS
Elektronische Bauelemente
RoHS Compliant Product
Low Dropout Voltage Regulator
Description
The SSC2139 positive,linear regulators feature low quiescent current (45A typ.) with low dropout voltage, making them ideal for battery applications. Output voltage are set at the factory and trimmed to 1.5% accuracy.These rugged devices have both Thermal Shutdown and Current Fold-back to prevent device failure under the "Worst" of operating conditions.The SSC2139 is stable with an output capacitance of 4.7F or greater.
Features
* Low Temperature Coefficient * Over-Temperature Shutdown
* Adjustable Version * Very Low Dropout Voltage * High Accurate 1.5% * Guaranteed 1.55A output * Current Limiting * Power-Saving Shutdown Mode
REF. A B C D E F
Min.
Millimeter
Max.
6.20 5.00 4.00 8 C 0.90 0.25
REF. M H L J K G
Min.
Millimeter
Max.
5.80 4.80 3.80 0C 0.40 0.19
0.10 0.25 0.35 0.49 1.35 1.75 0.375 REF. 45 C 1.27 TYP.
Applications
* PC Peripherals * Wireless Devices
* Portable Electronics * Battery Powered Widgets * Instrumentation
Functional Block Diagram
Typical Application Circuit
SSC2139
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Any changing of specification will not be informed individual
01-Jun-2002 Rev. A
Page 1 of 7
SSC2139
Elektronische Bauelemente
1.55A CMOS Low Dropout Voltage Regulator
Absolute Maximum Ratings
Parameter
Input Voltage Output Current Output Voltage Operating Ambient Temperature Junction Temperature Max. Junction Temperature Power Dissipation ( EDS Classification
o
Symbol
VIN IOUT VOUT Topr Tj Tj Max. PD
Ratings
8
PD/(VIN-VO) Gnd-0.3 to VIN+0.3 -40~+85 -40~+125 150 810
Unit
V mA
o o
V
C C
T=100 C)
o
C mW
o
B
Electrical Characteristics Ta=25 C unless otherwise noted (VIN=VOUT(T)+2V,VEN=VIN)
Parameter
Output Voltage Output Current Current Limit Load Regulation Dropout Voltage Ground Pin Current Line Regulation
Symbol
VOUT (E) IO ILIM
REGLOAD
1
Min.
-1.5% 1.55 1.55 -1
_ _ _ _
Typ.
VOUT (T)
_
2
Max.
1.5%
_ _
Unit
V A A
Condition
IO=1mA VO>1.2V VO>1.2V
2.0 0.2
_ _ _
1 1000 800 600
_
%
mV uA % V
o o
1.5VIO=1mA~1.5A Io=1.55A Vo=VOUT(E)-2%
VDROPOUT IGND REGLINE VIN OTS OTH TC PSRR eN VEH VEL IEH IEL ISD IADJ VREF
_ _
45
_
0.15 0.1 7
_
_ _ _ _ _ _
0.02
3
Input Voltage Over Temperature Shutdown Over Temperature Hystersis Output Voltage Temperature Coefficient Power Supply Rejection
Note
_ _ _ _ _ _
_
IO=1mA~1.5A Io=1mA VOUT(T)< 2.0V VIN=VOUT(T)+ 1 2.0V VOUT(T) to VOUT(T)+2
150 30 30 50 20 15 30
_ _ _ _
C C
ppm/ oC f=1kHz dB uVrms V uA uA uA V f=10kHz IO=100mA Co=4.7uF (ceramic)
Output Voltage Noise EN Input Threshold EN Input Bias Current Shutdown Supply Current ADJ Input Bias Current ADJ Reference Voltage
_
f=100kHz f=10Hz~100kHz, Io=10mA CO=4.7uF VIN=2.7V to 7V
2
_ _ _ _ _
VIN
0
0.4 0.1 0.5
_
VEN=VIN,VIN=2.7V~7V VEN=0V,VIN=2.7V~7V VIN=5V,VO=0,VEN30 0.5 1 1.242
2
_
1.223
1.261
Note 1: VOUT (E) =Effective Output Voltage (i.e. the output voltage when "VOUT (T) +2.0V" is provided at the VIN pin while maintaining a certain IOUT value). 2: VOUT (T) =Specified Output Voltage 3: VIN (MIN) =VOUT+VDROPOUT
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Any changing of specification will not be informed individual
01-Jun-2002 Rev. A
Page 2 of 7
SSC2139
Elektronische Bauelemente
1.55A CMOS Low Dropout Voltage Regulator
Ordering Information(contd.)
Part Number
SSC2139-AD
Marking
9CAD2 XXXX
Output Voltage
Adjustable
Part Number
Marking
Output Voltage
Detailed Description
The SSC2139 of COMS regulators contain a PMOS pass transistor,voltage reference, error amplifier,over-current protection and thermal shutdown.The P-channel pass transistor receives data from the error amplifier, over-current shutdown, and thermal protection circuits. During normal operation, the error amplifier compares the output voltage to a precision reference. Over-current and Thermal shutdown circuits o become active when the junction temperature exceeds140 C, or the current exceeds 2.2A. During thermal shutdown, the output voltage remains low. Normal operation is restored when the junction temperature drops below 120o C.
External Capacitors
The SSC2139 is stable with an output capacitance to ground of 4.7uF or greater. Ceramic capacitors have the lowest ESR, and will offer the best AC performance. Conversely, Aluminum Electrolytic capacitors exhibit the highest ESR, resulting in the poorest AC response. Unfortunately, large value ceramic capacitors are comparatively expensive. One option is to parallel a 0.1uF ceramic capacitor with a 10uF Aluminum Electrolytic. The benefit is low ESR, high capacitance, and low overall cost. A second capacitor is recommended between the input and ground to stabilize VIN. The input capacitor should be at least 0.1uF to have a beneficial
effect. All capacitors should be placed in closed proximity to the pins. A "Quiet" ground termination is desirable. This can be achieved with a "Star" connection.
Enable
When EN pin is pulled low, the PMOS pass transistor shuts off, and all internal circuits are powered down. In this state, the quiescent current is less than 2uA. This pin behaves much like an electronic switch.
Adjustable Version
The adjustable version uses external feedback resistors to generate an output voltage anywhere from 1.5V to 5.0V. Vadj is trimmed to 1.242V and Vout is given by the equation: VOUT=Vadj*(1+R1/R2) Feedback resistors R1 and R2 should be high enough to keep quiescent current low, but increasing R1+R2 will reduce stability. In general, R1 and R2 in the 10's of k [ will produce adequate stability, given reasonable layout precautions. To improve stability characteristics,
keep parasitic on the ADJ pin to min., and lower R1 and R2 values.
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Any changing of specification will not be informed individual
01-Jun-2002 Rev. A
Page 3 of 7
SSC2139
1.55A CMOS
Elektronische Bauelemente
Low Dropout Voltage Regulator
Characteristics Curve
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Any changing of specification will not be informed individual
01-Jun-2002 Rev. A
Page 4 of 7
SSC2139
1.55A CMOS
Elektronische Bauelemente
Low Dropout Voltage Regulator
http://www.SeCoSGmbH.com/
Any changing of specification will not be informed individual
01-Jun-2002 Rev. A
Page 5 of 7
SSC2139
1.55A CMOS
Elektronische Bauelemente
Low Dropout Voltage Regulator
ht tp://www.SeCoSGmbH.com/
Any changing of specification will not be informed individual
01-Jun-2002 Rev. A
Page 6 of 7
SSC2139
1.55A CMOS
Elektronische Bauelemente
Low Dropout Voltage Regulator
External Resistor Divider Table
R1(k[ ) VOUT
1.30 1.35 1.40 1.45 1.50 1.55 1.60 1.65 1.70 1.75 1.80 1.85 1.90 1.95 2.00 2.05 2.10 2.15 2.20 2.25 2.30 2.35 2.40 2.45 2.50 2.55 2.60 2.65 2.70 2.75 2.80 2.85 2.90 2.95 3.00 3.05 3.10 3.15
1
21.41 11.50 7.86 5.97 4.81 4.03 3.47 3.04 2.71 2.44 2.23 2.04 1.89 1.75 1.64 1.54 1.45 1.37 1.30 1.23 1.17 1.12 1.07 1.03 0.99 0.95 0.91 0.88 0.85 0.82 0.80 0.77 0.75 0.73 0.71 0.69 0.67 0.65
2
5
10
20
50
R2(k[ )=(1.242*R1(k[ ))/(VOUT-1.242) 42.83 107.07 214.14 428.28 1070.7 23.00 15.72 11.94 9.63 8.06 6.94 6.09 5.42 4.89 4.45 4.09 3.78 3.51 3.28 3.07 2.90 2.74 2.59 2.46 2.35 2.24 2.15 2.06 1.97 1.90 1.83 1.76 1.70 1.65 1.59 1.54 1.50 1.45 1.41 1.37 1.34 1.30 57.50 115.00 230.00 575.00 39.30 29.86 24.07 20.16 17.35 15.22 13.56 12.22 11.13 10.21 9.44 8.77 8.19 7.69 7.24 6.84 6.48 6.16 5.87 5.60 5.36 5.14 4.94 4.75 4.57 4.41 4.26 4.12 3.99 3.86 3.75 3.64 3.53 3.43 3.34 3.25 78.61 157.22 393.04 59.71 119.42 298.56 48.14 40.32 34.69 30.44 27.12 24.45 22.26 20.43 18.88 17.54 16.39 15.37 14.48 13.68 12.96 12.32 11.74 11.21 10.73 10.28 9.87 9.50 9.15 8.82 8.52 8.24 7.97 7.72 7.49 7.27 7.06 6.87 6.68 6.51 96.28 240.70 80.65 201.62 68.39 173.46 60.88 152.21 54.24 135.59 48.90 122.24 44.52 111.29 40.86 102.14 37.75 35.08 32.77 30.74 28.95 27.36 25.93 24.65 23.48 22.42 21.45 20.56 19.75 18.99 18.29 17.64 17.04 16.47 15.94 15.45 14.98 14.54 14.13 13.74 13.37 13.02 94.38 87.71 81.93 76.86 72.38 68.39 64.82 61.61 58.70 56.05 53.63 51.41 49.36 47.48 45.73 44.11 42.59 41.18 39.86 38.62 37.45 36.36 35.32 34.35 33.42 32.55
R1(k[ ) VOUT
3.20 3.25 3.30 3.35 3.40 3.45 3.50 3.55 3.60 3.65 3.70 3.75 3.80 3.85 3.90 3.95 4.00 4.05 4.10 4.15 4.20 4.25 4.30 4.35 4.40 4.45 4.50 4.55 4.60 4.65 4.70 4.75 4.80 4.85 4.90 4.95 5.00
1
0.63 0.62 0.60 0.59 0.58 0.56 0.55 0.54 0.53 0.52 0.51 0.50 0.49 0.48 0.47 0.46 0.45 0.44 0.43 0.43 0.42 0.41 0.41 0.40 0.39 0.39 0.38 0.38 0.37 0.36 0.36 0.35 0.35 0.34 0.34 0.33 0.33
2
1.27 1.24 1.21 1.18 1.15 1.13 1.10 1.08 1.05 1.03 1.01 0.99 0.97 0.95 0.93 0.92 0.90 0.88 0.87 0.85 0.84 0.83 0.81 0.80 0.79 0.77 0.76 0.75 0.74 0.73 0.72 0.71 0.70 0.69 0.68 0.67 0.66
5
3.17 3.09 3.02 2.95 2.88 2.81 2.75 2.69 2.63 2.58 2.53 2.48 2.43 2.38 2.34 2.29 2.25 2.21 2.17 2.14 2.10 2.06 2.03 2.00 1.97 1.94 1.91 1.88 1.85 1.82 1.80 1.77 1.75 1.72 1.70 1.67 1.65
10
6.34 6.19 6.03 5.89 5.76 5.63 5.50 5.38 5.27 5.16 5.05 4.95 4.86 4.76 4.67 4.59 4.50 4.42 4.35 4.27 4.20 4.13 4.06 4.00 3.93 3.87 3.81 3.75 3.70 3.64 3.59 3.54 3.49 3.44 3.40 3.35 3.30
20
12.69 12.37 12.07 11.78 11.51 11.25 11.00 10.76 10.53 10.32 10.11 9.90 9.71 9.52 9.35 9.17 9.01 8.85 8.69 8.54 8.40 8.26 8.12 7.99 7.87 7.74 7.62 7.51 7.40 7.29 7.18 7.08 6.98 6.88 6.79 6.70 6.61
50
31.72 30.93 30.17 29.46 28.78 28.13 27.50 26.91 26.34 25.79 25.26 24.76 24.28 23.81 23.36 22.93 22.52 22.12 21.73 21.35 20.99 20.64 20.31 19.98 19.66 19.36 19.06 18.77 18.49 18.22 17.96 17.70 17.45 17.21 16.98 16.75 16.52
R2(k[ )=(1.242*R1(k [ ))/(VOUT-1.242)
Note: Small load (greater than 2mA) is necessary as R1 or R2 is larger than 50k[ . Otherwise, output voltage probably can not be pulled down to 0V on disable mode.
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Any changing of specification will not be informed individual
01-Jun-2002 Rev. A
Page 7of 7


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