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 Advanced Analog Technology, Inc.
AAT1202
250-mA MULTI-INPUT LOW-DROPOUT REGULATOR WITH DUAL -OUTPUT POWER MANAGEMENT
Features Complete Power Management Automatic Input Voltage Selection Input Voltage Source Detector With Hysteresis 250-mA Load Current Capability With VCC50 or VSB50 or AUX33 Input Source Integrated Low rDS (on) Switch Dual Regulated Output 3.3V (fixed) & 1.8V (fixed) Output Short Circuit Protection
Description The AAT1202 is a multi-input low-dropout regulator that provides dual constant output supply 3.3V & 1.8V at the output capable of driving a 250-mA load. The output (OUT18) can be disable by connect EN18 pin to GND. The AAT1202 provides dual regulated power output for systems that have multiple input sources and require dual constant voltage source with a low-dropout voltage. This is a intelligent power source selection device with a low-dropout regulator for either VCC50 or VSB50 inputs, and a low-resistance bypass switch for the AUX33 input. Transitions may occur from one input supply to another without generating a glitch outside of the specification range on the 3.3-V & 1.8-V output. The device has an incorporated reverse-blocking scheme to prevent excess leakage from the input terminals in the event that the output voltage is greater than the input voltage. The input voltage is prioritized in the following order: VCC50, VSB50, AUX33.
Pin Configuration
TOP VIEW
VSB50 VCC50 OUT33 AUX33 1 2 3 4 8 7 6 5 GND GND EN18 OUT18
( 8-PIN SOIC )
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Advanced Analog Technology, Inc.
AAT1202
Functions Table
INPUT VOLTAGE STATUS ] V^ EN18 Hi Low Hi Low Hi Low Hi Low Hi Low Hi Low Hi Low Hi Low VCC50 0 0 0 0 0 0 0 0 5 5 5 5 5 5 5 5 VSB50 0 0 0 0 5 5 5 5 0 0 0 0 5 5 5 5 AUX33 0 0 3.3 3.3 0 0 3.3 3.3 0 0 3.3 3.3 0 0 3.3 3.3 INPUT SELECTED VCC50/VSB50/AUX33 None None AUX33 AUX33 VSB50 VSB50 VSB50 VSB50 VCC50 VCC50 VCC50 VCC50 VCC50 VCC50 VCC50 VCC50 OUTPUT ] V^ ] OUT33 0 0 3.3 3.3 3.3 3.3 3.3 3.3 3.3 3.3 3.3 3.3 3.3 3.3 3.3 3.3 OUT18 0 0 1.8 0 1.8 0 1.8 0 1.8 0 1.8 0 1.8 0 1.8 0 OUTPUT I^ ] mA^ Iout33+Iout18 0 0 250 250 250 250 250 250 250 250 250 250 250 250 250 250
Pin Description
TERMINAL NAME NO. VSB50 VCC50 OUT33 AUX33 OUT18 EN18 GND GND 1 2 3 4 5 6 7 8 I/O I I O I O I I I 5-V standby supply input 5-V main supply input 3.3-V regulated output 3.3-V auxiliary supply input 1.8-V regulated output Enable input of OUT18 Ground Ground Description
absolute maximum ratings
* Main Supply voltage, V] VCC50^ .............................................................. -0.5V~7V * Standby Supply voltage, V] VSB50^ .......................................................... -0.5V~7V * Auxiliary Supply voltage, V] AUX33^ .......................................................... -0.5V~7V * Output current limit, I] LIMIT^ ....................................................................... 1.5A * Continuous power dissipation, PD] see Note 1^ .............................................. 1.1W * Electrostatic discharge susceptibility, human body model.......................................2kV * Operating ambient temperature range, TA................................................0J to 70J
* Storage temperature range, Tstg.......................................................-55J to 150J
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AAT1202
* Operating junction temperature range, TJ...............................................-5J to 130J * Lead temperature ] soldering, 10 second^ ,T] LEAD^ ..........................................260J
NOTE 1G The device deteriorate with increase in ambient temperature, TA. See Thermal Information section.
Recommended operating conditions
5-V main supply input, VCC50 5-V standby supply input, VSB50 3.3V auxiliary supply input, AUX33 Load capacitance, CL Load current, IL Ambient temperature, TA Min 4.5 4.5 3 4.23 0 0 Typ Max 5.5 5.5 3.6 5.17 250 70 Unit V V V F mA J
4.7
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Advanced Analog Technology, Inc.
AAT1202
Electrical Characteristics over recommended operating free-air temperature, TA = 0J 70J ,CL = 4.7F (unless otherwise noted)
Parameter
VCC50 VSB50 OUT33 OUT18 VO] VO] I50 IAUX IL33 IL18 ILIMIT TTSD Thys CL IIkg REV^ ] VLO VHI R] SWITCH^ RJA
VI^ IO^
to
Max Unit
5.5 3.465 1.89 V V V mV mV 3.0 3.0 mA mA A
Test Condition
Iout33+Iout18 = 250mA Iout33=0, Iout18 = 200mA VSB50 or VCC50 = 4.5V to 5.5V 20 mAO ILO 250 mA From VCC50 VSB50 terminals, IL= 0 to 250mA From AUX33 terminal, IL = 0A
Min
4.5 3.135 1.71
Typ
5 3.3 1.8 2 40 1.0 1.0
5-V inputs 3.3-V output 1.8-V output Line regulation voltage Load regulation voltage Quiescent supply current
Out33 load current Out18 load current Output current limit Thermal shutdown] NOTE 2^ Thermal hysteresis] Load capacitance
NOTE 2^
0.25 0.2 Out33 or Out18 output shorted to 0V 150 15 Minimal ESR to insure stability of regulated output 4.7 50 3.85 4.1 4.05 4.3 4.25 4.5 0.4 1.5 180
J F A V V J /W
Reverse leakage output current Tested for input that is grounded. AUX33, VSB50 or VCC50 = GND, Out33 = 3.3v Threshold voltage, low VSB50 or VCC50 Threshold voltage, high VSB50 or VCC50 VSB50 = VCC50 = 0V, Auxiliary switch resistance AUX33 = 3.3V, IL = 150mA Thermal impedance, Without copper for heat spreading Junction-to-ambient] NOTE3^ With copper for heat spreading
100 70
NOTE 2G Design targets only. Not tested in production. NOTE 3G Please refer to "Thermal Information"
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Advanced Analog Technology, Inc.
AAT1202
VCC50
VSB50
3.3V
+ -
+ -
3.3V
AUX33
VCC50 Detector
Control
VSB50 Detector
OUT33
Low on Resistance
1.8V + -
EN18
GND
OVER TEMPERATURE PROTECTION
OUT18
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Advanced Analog Technology, Inc.
AAT1202
TYPICAL CHARACTERISTICS
Figure 1. 3.3V VCC50 Cold Start
Figure 2. 1.8V VCC50 Cold Start
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Advanced Analog Technology, Inc.
AAT1202
TYPICAL CHARACTERISTICS
Figure 3. 3.3V AUX33 Cold Start
Figure 4. 1.8V AUX33 Cold Start
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AAT1202
TYPICAL CHARACTERISTICS
Figure 5. 3.3V VCC50 Power Up(VSB50=5V)
Figure 6.
1.8V VCC50 Power Up(VSB50=5V)
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Advanced Analog Technology, Inc.
AAT1202
TYPICAL CHARACTERISTICS
Figure 7. 3.3V VCC50 Power Up(AUX33=3.3V)
Figure 8. 1.8V VCC50 Power Up(AUX33=3.3V)
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Advanced Analog Technology, Inc.
AAT1202
TYPICAL CHARACTERISTICS
Figure 9. 3.3V VSB50 Power Up(AUX33=3.3V)
Figure 10. 1.8V VSB50 Power Up(AUX33=3.3V)
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Advanced Analog Technology, Inc.
AAT1202
TYPICAL CHARACTERISTICS
Figure 11. 3.3V VCC50 Power Down(VSB=5V)
Figure 12. 1.8V VCC50 Power Down(VSB=5V)
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Advanced Analog Technology, Inc.
AAT1202
TYPICAL CHARACTERISTICS
Figure 13. 3.3V VCC50 Power Down(AUX33=3.3V)
Figure 14. 1.8V VCC50 Power Down(AUX33=3.3V)
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Advanced Analog Technology, Inc.
AAT1202
TYPICAL CHARACTERISTICS
Figure 15. 3.3V Load Transient Response Falling.
Figure 16. 1.8V Load Transient Response Falling.
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Advanced Analog Technology, Inc.
AAT1202
TYPICAL CHARACTERISTICS
Figure 17. 3.3V Load Transient Response Rising
Figure 18. 1.8V Load Transient Response Rising
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Advanced Analog Technology, Inc.
AAT1202
THERMAL INFORMATION To ensure reliable operation of the device, the junction temperature of the output device must be within the safe operating area] SOA^ . This is achieved by having a means to dissipate the heat generated from the junction of the output structure. There are two components that contribute to thermal resistance. They consist of two paths in series. The first is the junction to case thermal resistance, RJC; the second is the case to ambient thermal resistance, RCA. The overall junction to ambient thermal resistance, RJA, is determined byG RJAx RJCI RCA The ability to efficiently dissipate the heat from the junction is a function of the package style and board layout incorporated in the application. The operating junction temperature is determined by the operation ambient temperature, TA, and the junction power dissipation, PJ. The junction temperature, TJ, is equal to the following thermal equationG PJ] RCA^ TJx TAI PJ] RJC^I TJx TAI PJ] RJA^ This particular application uses the 8-pin SO package with standard lead frame with a dedicated ground terminal. Hence, the maximum power dissipation allowable for an operating ambient temperature of 70J , and a maximum junction temperature of 150J is determined asG PJx] TJ TA^ / RJA PJx] 150 70^ /70x 1.1W Worst case maximum power dissipation is determined byG PDx] 5.5 1.71^ x0.25x 0.9475W Normal operating maximum power dissipation isG PDx] 5 1.8^ x0.25x 0.8W Note: The thermal characteristics of the AAT1202 were measured using a double-sided board with two square inches of copper area connected to the GND pins for "heat spreading". The use of multi-layer board construction with power planes will further enhance the thermal performance of the package.
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Advanced Analog Technology, Inc.
AAT1202
THERMAL INFORMATION
1.78
Power-W
0.947 0.8
25
83
94
150
Ambient Temperature - XC
NOTE: These curves are to be used for guideline purposes only. particular application, a more specijic thermal characteriz required. or a F ation is
Power Dissipation Derating Curves
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Advanced Analog Technology, Inc.
AAT1202
APPLICATION INFORMATION
1 VSB50 4.7 g F 0.1 g F 2 4.7 g F 0.1 g F 3 4.7 g F 4 4.7 g F 0.1 g F VCC50 GND GND
8
7
3.3V
AAT1202
OUT33 EN18
6
TO OUT33 or FLOATING 1.8V 4.7 g F
5 AUX33 OUT18
Typical Application Schematic - Dual Output
1 4.7g F 0.1g F 2 4.7g F 0.1g F 3 3.3V 4.7g F 4 4.7g F 0.1g F
VSB50
GND
8
GND or FLOATIN
VCC50
GND
7
AAT1202
OUT33 EN18
6 GND
AUX33
OUT18
5
GND or FLOATIN
Typical Application Schematic - Only OUT33 Used
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Advanced Analog Technology, Inc.
AAT1202
Package Dimension
c L
D
E1
7X(4)
7X(4)
1 A
6(MIN)
50TYP.
B
REF. 8
eB
Symbol A A1 B D E1 eB L
Dimension in mils Min Nom Max 59 63 67 22 24 26 12 16 20 188 190 192 152 154 156 229 235 241 24 ---
Dimension in Min Nom 1.498 1.600 0.56 0.610 0.305 0.406 4.775 4.826 3.861 3.912 5.816 5.969 0.6 --
mm Max 1.702 0.66 0.508 4.877 3.962 6.121 --
0
3
6
0
3
6
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