AP7312-1828FM-7 [DIODES]

Fixed Positive LDO Regulator, 2 Output, 1.8V1, 2.8V2, PDSO6, 2 X 1.80 MM, ROHS COMPLIANT, DFN-6;
AP7312-1828FM-7
型号: AP7312-1828FM-7
厂家: DIODES INCORPORATED    DIODES INCORPORATED
描述:

Fixed Positive LDO Regulator, 2 Output, 1.8V1, 2.8V2, PDSO6, 2 X 1.80 MM, ROHS COMPLIANT, DFN-6

光电二极管 输出元件 调节器
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中文:  中文翻译
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AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Description  
Pin Assignments  
The AP7312 is 150mA, dual fixed output voltage, low dropout  
linear regulator. The AP7312 include the pass element, error  
amplifier, band-gap, current limit and thermal shutdown  
circuitry which protect the IC from damage in fault  
conditions. The AP7312 has two enable pins (EN1 and EN2)  
to independently turn the respective channel on when a logic  
high level is applied.  
(Top View)  
1
2
3
6
5
4
OUT1  
IN  
OUT2  
GND  
EN2  
The characteristics of low dropout voltage and low quiescent  
current make it suitable for low power applications. The  
typical quiescent current is approximately 60μA.  
EN1  
This device is available with fixed output options of  
1.2V/1.8V, 1.2V/3.3V, 1.5V/2.5V, 1.5V/3.3V, 1.8V/2.8V,  
1.8V/3.0V, 1.8V/3.3V and 3.3V/3.3V.  
SOT26  
For other output options please contact our local sales  
representative directly or through our distributor located in  
your area.  
(Top View)  
The AP7312 is available in SOT26 and DFN2018-6  
packages.  
1
2
3
6
5
4
IN  
OUT1  
OUT2  
GND  
EN1  
EN2  
Features  
150mA Low Dropout Regulator with EN  
Very low IQ: 60µA  
DFN2018-6  
Wide input voltage range: 2V to 6V  
Fixed output options: 1.2V to 3.3V  
High PSRR: 65dB at 1kHz  
Applications  
Fast start-up time: 60µs  
Stable with low ESR, 1µF ceramic output capacitor  
Excellent Load/Line Transient Response  
Low dropout: 150mV at 150mA  
Current limit protection  
Cellular Phones  
Smart Phones, PDAs  
MP3/MP4  
Short circuit protection  
Bluetooth head set  
Low power application  
Thermal shutdown protection  
Ambient temperature range: -40ºC to 85°C  
SOT26 and DFN2018-6: Available in “Green” Molding  
Compound (No Br, Sb)  
Lead Free Finish/RoHS Compliant (Note 1)  
Note:  
1. EU Directive 2002/95/EC (RoHS). All applicable RoHS exemptions applied. Please visit our website at  
http://www.diodes.com/products/lead_free.html.  
1 of 18  
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January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Typical Application Circuit  
VIN  
VOUT1  
VIN VOUT1  
1uF  
1uF  
VOUT2  
EN1 VOUT2  
ON  
ON  
OFF  
1uF  
EN2  
GND  
OFF  
Pin Descriptions  
Pin Number  
Pin Name  
Description  
SOT26  
DFN2018-6  
OUT2  
GND  
EN2  
EN1  
IN  
1
2
3
4
5
6
5
4
3
2
1
6
Voltage output 2. Bypass to ground through 1µF ceramic capacitor  
Ground  
Enable input 2, active high  
Enable input 1, active high  
Voltage input. Bypass to ground through at least 1µF capacitor  
Voltage output 1. Bypass to ground through 1µF ceramic capacitor  
OUT1  
2 of 18  
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January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Functional Block Diagram  
OUT 1  
IN  
Current Limit  
and  
Short Circuit  
Gate  
Driver  
EN 1  
Bandgap  
Thermal  
Shutdown  
GND  
Current Limit  
Gate  
EN 2  
and  
Driver  
Short Circuit  
OUT 2  
3 of 18  
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January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Absolute Maximum Ratings  
Symbol  
Parameter  
Ratings  
8
Unit  
kV  
V
ESD HBM  
ESD MM  
VIN  
Human Body Model ESD Protection  
Machine Model ESD Protection  
Input Voltage  
400  
6.5  
V
OUT, EN Voltage  
VIN + 0.3  
Internal Limited  
-40 ~ 125  
-65 ~150  
950  
V
Continuous Load Current  
Operating Junction Temperature Range  
Storage Temperature Range  
TOP  
TST  
°C  
°C  
SOT26  
mW  
mW  
°C  
PD  
TJ  
Power Dissipation (Note 3)  
DFN2018-6  
2200  
Maximum Junction Temperature  
150  
Recommended Operating Conditions  
Symbol  
Parameter  
Min  
Max  
Unit  
V
Input voltage  
2
0
6
VIN  
IOUT  
TA  
Output Current (Note 3)  
150  
85  
mA  
°C  
Operating Ambient Temperature  
-40  
Notes:  
2. Ratings apply to ambient temperature at 25°C.  
3. The device maintains a stable, regulated output voltage without a load current.  
4 of 18  
www.diodes.com  
January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Electrical Characteristics  
(TA = 25oC, VIN = VOUT +1V, CIN = 1uF, COUT = 1uF, VEN = VIN, unless otherwise stated)  
Symbol  
Parameter  
Test Conditions  
Min Typ. Max Unit  
ADJ Reference Voltage  
(Adjustable version)  
IOUT= 0mA  
0.8  
0.1  
V
μA  
%
VREF  
IADJ  
ADJ Leakage (Adjustable version)  
1
2
TA = -40oC to 85oC,  
OUT = 10% of IOUT-Max  
Output Voltage Accuracy  
Line Regulation  
-2  
VOUT  
I
VIN = (VOUT +1V) to VIN-Max  
VEN = VIN, IOUT = 1mA  
VIN = (VOUT +1V) to VIN-Max  
,
,
0.01 0.20 %/V  
ΔVOUT /ΔVIN/V  
ΔVOUT /VOUT  
Load Regulation  
-0.6  
0.6  
%
I
OUT = 1mA to 150mA  
V
OUT < 2.5V, IOUT = 150mA  
200  
150  
60  
300  
200  
80  
Dropout Voltage (Note 4)  
mV  
VDropout  
VOUT 2.5V, IOUT = 150mA  
VEN = VIN, IOUT = 0mA  
Input Quiescent Current (2 channels)  
Input Shutdown Current  
μA  
μA  
μA  
IQ  
VEN = 0V, IOUT = 0mA  
0.1  
0.1  
1
1
ISHDN  
ILEAK  
Input Leakage Current  
VEN = 0V, OUT grounded  
VEN = 0V to 2.0V in 1μs,  
IOUT = 150mA  
VIN = [VOUT +1V]VDC + 0.5VppAC  
f = 1kHz, IOUT = 50mA  
Start-up Time  
150  
65  
μs  
dB  
tST  
,
PSRR (Note 5)  
Short-circuit Current  
Current limit  
60  
PSRR  
ISHORT  
ILIMIT  
VIN = VIN-Min to VIN-Max  
,
60  
mA  
mA  
VOUT = 1/4 target VOUT  
VIN = VIN-Min to VIN-Max  
,
200  
300  
VOUT/ROUT = 0.6A  
EN Input Logic Low Voltage  
EN Input Logic High Voltage  
EN Input Current  
VIN = VIN-Min to VIN-Max  
VIN = VIN-Min to VIN-Max  
VIN = 0V or VIN-Max  
0.4  
1
V
V
VIL  
VIH  
1.4  
-1  
μA  
°C  
°C  
IEN  
Thermal shutdown threshold  
Thermal shutdown hysteresis  
165  
TSHDN  
THYS  
30  
140  
60  
SOT26 (Note 6)  
DFN2018-6 (Note 7)  
Thermal Resistance Junction-to-Ambient  
oC/W  
θJA  
Notes:  
4. Dropout voltage is the voltage difference between the input and the output at which the output voltage drops 2% below its nominal value.  
5. This specification is guaranteed by design.  
6. Test condition for SOT26: Device mounted on FR-4 substrate PC board, with minimum recommended pad layout  
7. Test condition for DFN2018-6: Device mounted on FR-4 2-layer board,2oz copper, with minimum recommended pad on top layer and 3 vias to  
bottom layer.  
5 of 18  
www.diodes.com  
January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Typical Performance Characteristics  
Start-Up Time  
Start-Up Time  
VIN=5V, No load  
VIN=5V, Both ILOAD=150mA  
CIN=COUT1=COUT2=1μF  
CIN=COUT1=COUT2=1μF  
VEN=0V to 2V (2V/div)  
VEN=0V to 2V (2V/div)  
VOUT2=2.8V (1V/div)  
VOUT1=1.8V (1V/div)  
V
OUT2=2.8V (1V/div)  
VOUT1=1.8V (1V/div)  
Time (40μs/div)  
Time (40μs/div)  
Line Transient Response  
VIN=3.8V to 4.8V (1V/div)  
Line Transient Response  
VIN=3.8V to 4.8V (1V/div)  
COUT1=COUT2=1μF, Tr=Tf=2μs, Both ILOAD=15mA  
COUT1=COUT2=1μF, Tr=Tf=2μs, Both ILOAD=100mA  
VOUT1=1.8V (10mV/div)  
VOUT1=1.8V (10mV/div)  
VOUT2=2.8V (10mV/div)  
VOUT2=2.8V (10mV/div)  
Time (100μs/div)  
Time (100μs/div)  
6 of 18  
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January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Typical Performance Characteristics (Continued)  
Load Transient Response  
Load Transient Response  
ILOAD=10mA to 50mA (50mA/div)  
ILOAD=10mA to 100mA (100mA/div)  
VOUT1=1.8V (20mV/div)  
VOUT1=1.8V (20mV/div)  
VOUT2=2.8V (20mV/div)  
VOUT2=2.8V (20mV/div)  
VIN=VEN=3.8V  
CIN=COUT1=COUT2=1μF  
VIN=VEN=3.8V  
CIN=COUT1=COUT2=1μF  
Time (100μs/div)  
Time (100μs/div)  
EN1 Pin Response  
Both ILOAD=50mA  
EN2 Pin Response  
V
EN1=2V (2V/div)  
Both ILOAD=50mA  
VEN1=2V to 0V (2V/div)  
VEN2=2V (2V/div)  
V
EN2=2V to 0V (2V/div)  
OUT2=2.8V (1V/div)  
VOUT2=2.8V (1V/div)  
V
VOUT1=1.8V (1V/div)  
VOUT1=1.8V (1V/div)  
Time (400μs/div)  
Time (400μs/div)  
7 of 18  
www.diodes.com  
January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Typical Performance Characteristics (Continued)  
EN Pin Shutdown Response  
VIN=5V, Both ILOAD=50mA  
PSRR vs Frequency  
100  
80  
60  
40  
20  
0
1.8V  
2.8V  
VEN=0V to 5V (5V/div)  
TA=25°C  
VOUT2=2.8V (1V/div)  
VIN=3.8V+0.5VppAC  
COUT1=COUT2=1μF  
Both ILOAD=50mA  
VOUT1 =1.8V (1V/div)  
10  
1k  
1M  
100  
10k 100k  
Frequency(Hz)  
Time (100μs/div)  
Input Quiescent current vs Temperature  
Input Quiescent current vs Input Voltage  
80  
60  
40  
20  
0
80  
60  
40  
20  
0
TA=25°C  
VIN=VEN=3.8V  
VOUT1=1.8V  
VOUT2=2.8V  
IOUT=0mA  
VOUT1=1.8V  
VOUT2=2.8V  
IOUT=0mA  
-50  
-25  
0
25  
50  
75  
100 125  
3.5  
4
4.5  
5
5.5  
6
Temperature(  
)
Input Voltage(V)  
8 of 18  
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January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Typical Performance Characteristics (Continued)  
Line Regulation  
Line Regulation  
0.2  
0.1  
0.04  
0.02  
0
-45°C  
25°C  
-45°C  
25°C  
0.0  
90°C  
90°C  
-0.02  
-0.04  
-0.1  
-0.2  
VOUT=1.8V  
IOUT=1mA  
VOUT=2.8V  
IOUT=1mA  
3.5  
4
4.5  
5
5.5  
6
2.5  
3
3.5  
4
4.5  
5
5.5  
6
Input Voltage(V)  
Input Voltage(V)  
Load Regulation  
Load Regulation  
0.00  
-0.05  
-0.10  
-0.15  
0.00  
-0.05  
-0.10  
-0.15  
-45°C  
-45°C  
25°C  
25°C  
90°C  
90°C  
VIN=VEN=3.8V  
VOUT=2.8V  
VIN=VEN=2.8V  
VOUT=1.8V  
0
25  
50  
75  
100  
125  
150  
0
25  
50  
75  
100  
125  
150  
Output Current(mA)  
Output Current(mA)  
9 of 18  
www.diodes.com  
January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Typical Performance Characteristics (Continued)  
Dropout Voltage vs Output Current  
Dropout Voltage vs Output Current  
250  
200  
150  
100  
50  
200  
150  
100  
50  
VOUT=3.3V  
VOUT=1.8V  
90°C  
25°C  
90°C  
25°C  
-45°C  
-45°C  
0
0
0
25  
50  
75  
100  
125  
150  
0
25  
50  
75  
100  
125  
150  
Output Current(mA)  
Output Current(mA)  
Current limit vs Input Voltage  
Current limit vs Temperature  
500  
400  
300  
200  
100  
0
500  
400  
300  
200  
100  
0
TA=25°C  
VIN=2.8V  
-50 -25  
0
25  
50  
75  
100 125  
2
3
4
5
6
Temperature(  
)
Input Voltage(V)  
10 of 18  
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January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Typical Performance Characteristics (Continued)  
Short-circuit Current vs Temperature  
Short Circuit Current vs Input Voltage  
100  
80  
60  
40  
20  
0
100  
80  
60  
40  
20  
0
VIN=3.8V  
25°C  
-45°C  
90°C  
-50  
-25  
0
25  
50  
75  
100 125  
2.5  
3
3.5  
4
4.5  
5
5.5  
6
Temperature(  
)
Input Voltage(V)  
11 of 18  
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January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Application Note  
Input Capacitor  
A 1μF ceramic capacitor is recommended between IN and GND pins to decouple input power supply glitch and noise. The  
amount of the capacitance may be increased without limit. This input capacitor must be located as close as possible to the  
device to assure input stability and reduce noise. For PCB layout, a wide copper trace is required for both IN and GND pins.  
A lower ESR capacitor type allows the use of less capacitance, while higher ESR type requires more capacitance.  
Output Capacitor  
The output capacitor is required to stabilize and improve the transient response of the LDO. The AP7312 is stable with very  
small ceramic output capacitors. Using a ceramic capacitor value that is at least 1μF with ESR10mon the output ensures  
stability. Higher capacitance values help to improve line and load transient response. The output capacitance may be  
increased to keep low undershoot and overshoot. Output capacitor must be placed as close as possible to OUT and GND  
pins.  
Region of Stable COUT ESR vs. Load Current  
100  
Unstable Range  
10  
1
Stable Range  
0.1  
0.01  
CIN=COUT1= COUT2=1μF  
Unstable Range  
0.001  
0
20  
50  
100  
150  
Load Current (mA)  
No Load Stability  
Other than external resistor divider, no minimum load is required to keep the device stable. The device will remain stable and  
regulated in no load condition.  
ON/OFF Input Operation  
The AP7312 is turned on by setting the EN pin high, and is turned off by pulling it low. If this feature is not used, the EN pin  
should be tied to IN pin to keep the regulator output on at all time. To ensure proper operation, the signal source used to drive  
the EN pin must be able to swing above and below the specified turn-on/off voltage thresholds listed in the Electrical  
Characteristics section under VIL and VIH.  
12 of 18  
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January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Application Note (Continued)  
Current Limit Protection  
When output current at OUT pin is higher than current limit threshold, the current limit protection will be triggered and clamp  
the output current to approximately 300mA to prevent over-current and to protect the regulator from damage due to  
overheating.  
Short Circuit Protection  
When OUT pin is short-circuit to GND, short circuit protection will be triggered and clamp the output current to approximately  
60mA. This feature protects the regulator from over-current and damage due to overheating.  
Thermal Shutdown Protection  
Thermal protection disables the output when the junction temperature rises to approximately +165°C, allowing the device to  
cool down. When the junction temperature reduces to approximately +135°C the output circuitry is enabled again. Depending  
on power dissipation, thermal resistance, and ambient temperature, the thermal protection circuit may cycle on and off. This  
cycling limits the heat dissipation of the regulator, protecting it from damage due to overheating.  
Ultra Fast Start-up  
After enabled, the AP7312 is able to provide full power in as little as tens of microseconds, typically 150µs, without sacrificing  
low ground current. This feature will help load circuitry move in and out of standby mode in real time, eventually extend  
battery life for mobile phones and other portable devices.  
Fast Transient Response  
Fast transient response LDO can extend battery life. TDMA-based cell phone protocols such as Global System for Mobile  
Communications (GSM) have a transmit/receive duty factor of only 12.5 percent, enabling power savings by putting much of  
the baseband circuitry into standby mode in between transmit cycles. In baseband circuits, the load often transitions virtually  
instantaneously from 100µA to 100mA. To meet this load requirement, the LDO must react very quickly without a large  
voltage drop or overshoot — a requirement that cannot be met with conventional, general-purpose LDO.  
The AP7312’s fast transient response from 0 to 150mA provides stable voltage supply for fast DSP and GSM chipset with  
fast changing load.  
Low Quiescent Current  
The AP7312, consuming only around 60µA for all input range, provides great power saving in portable and low power  
applications.  
Power Dissipation  
The device power dissipation and proper sizing of the thermal plane that is connected to the thermal pad is critical to avoid  
thermal shutdown and ensure reliable operation. Power dissipation of the device depends on input voltage and load  
conditions and can be calculated by:  
PD = (VIN - VOUT) X IOUT  
The maximum power dissipation, handled by the device, depends on the maximum junction to ambient thermal resistance,  
maximum ambient temperature, and maximum device junction temperature, which can be calculated by the equation in the  
following:  
(+150°C - T )  
A
PD (max@TA) =  
R
θJA  
13 of 18  
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January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Ordering Information  
AP7312- XXYY XX - 7  
Output Voltage : VOUT1/VOUT2  
Packing  
Package  
7 : Tape & Reel  
FM : DFN2018-6  
W6 : SOT26  
1218 : 1.2V / 1.8V  
1233 : 1.2V / 3.3V  
1525 : 1.5V / 2.5V  
1533 : 1.5V / 3.3V  
1828 : 1.8V / 2.8V  
1830 : 1.8V / 3.0V  
1833 : 1.8V / 3.3V  
3333 : 3.3V / 3.3V  
7” Tape and Reel  
Packaging  
(Note 8)  
Device  
Package Code  
Quantity  
Part Number Suffix  
AP7312-XXYY W6-7  
AP7312-XXYY FM-7  
W6  
FM  
SOT26  
3000/Tape & Reel  
3000/Tape & Reel  
-7  
-7  
DFN2018-6  
Note:  
8. Pad layout as shown on Diodes Inc. suggested pad layout document AP02001, which can be found on our website at  
http://www.diodes.com/datasheets/ap02001.pdf.  
14 of 18  
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January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Marking Information  
(1) SOT26  
( Top View )  
6
5
4
XXX : Identification code  
Y : Year 0~9  
W : Week : A~Z : 1~26 week;  
a~z : 27~52 week; z represents  
52 and 53 week  
XXX  
Y W X  
X : A~Z : Internal Code  
1
2
3
(2) DFN2018-6  
( Top View )  
XXX : Identification code  
Y : Year : 0~9  
W : Week : A~Z : 1~26 week;  
a~z : 27~52 week; z represents  
52 and 53 week  
XXX  
Y W X  
X : A~Z : Internal Code  
Device  
Package  
SOT26  
SOT26  
SOT26  
SOT26  
SOT26  
SOT26  
SOT26  
SOT26  
Package  
Identification Code  
AP7312-1218  
AP7312-1233  
AP7312-1525  
AP7312-1533  
AP7312-1828  
AP7312-1830  
AP7312-1833  
AP7312-3333  
DFN2018-6  
DFN2018-6  
DFN2018-6  
DFN2018-6  
DFN2018-6  
DFN2018-6  
DFN2018-6  
DFN2018-6  
CAS  
CAZ  
CA6  
CBC  
CBK  
CBN  
CBR  
CEA  
15 of 18  
www.diodes.com  
January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Package Outline Dimensions (All Dimensions in mm)  
(1) SOT26  
(2) DFN2018-6  
0.10 C  
0.08 C  
6X-  
Seating Plane  
Side View  
C
L
C
1.75/1.875  
A
B
C
L
C
L
Pin #1 ID  
Pin #1  
1.3/1.5  
C
L
4x-0.50  
6x-0.25  
1.600  
Land Pattern Recommendation  
(Unit:mm)  
Top View  
2X-  
0.25 B  
0.50Typ  
0.15/0.25  
0.10  
C A  
B
Bottom View  
16 of 18  
www.diodes.com  
January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
Taping Orientation (Note 9)  
For DFN2018-6  
Note: 9. The taping orientation of the other package type can be found on our website at http://www.diodes.com/datasheets/ap02007.pdf  
17 of 18  
www.diodes.com  
January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  
AP7312  
DUAL 150mA LOW QUIESCENT CURRENT FAST  
TRANSIENT LOW DROPOUT LINEAR REGULATOR  
IMPORTANT NOTICE  
DIODES INCORPORATED MAKES NO WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, WITH REGARDS TO THIS  
DOCUMENT, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A  
PARTICULAR PURPOSE (AND THEIR EQUIVALENTS UNDER THE LAWS OF ANY JURISDICTION).  
Diodes Incorporated and its subsidiaries reserve the right to make modifications, enhancements, improvements, corrections or other  
changes without further notice to this document and any product described herein. Diodes Incorporated does not assume any liability  
arising out of the application or use of this document or any product described herein; neither does Diodes Incorporated convey any  
license under its patent or trademark rights, nor the rights of others. Any Customer or user of this document or products described  
herein in such applications shall assume all risks of such use and will agree to hold Diodes Incorporated and all the companies  
whose products are represented on Diodes Incorporated website, harmless against all damages.  
Diodes Incorporated does not warrant or accept any liability whatsoever in respect of any products purchased through unauthorized  
sales channel.  
Should Customers purchase or use Diodes Incorporated products for any unintended or unauthorized application, Customers shall  
indemnify and hold Diodes Incorporated and its representatives harmless against all claims, damages, expenses, and attorney fees  
arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized application.  
Products described herein may be covered by one or more United States, international or foreign patents pending. Product names  
and markings noted herein may also be covered by one or more United States, international or foreign trademarks.  
LIFE SUPPORT  
Diodes Incorporated products are specifically not authorized for use as critical components in life support devices or systems without  
the express written approval of the Chief Executive Officer of Diodes Incorporated. As used herein:  
A. Life support devices or systems are devices or systems which:  
1. are intended to implant into the body, or  
2. support or sustain life and whose failure to perform when properly used in accordance with instructions for use provided  
in the labeling can be reasonably expected to result in significant injury to the user.  
B. A critical component is any component in a life support device or system whose failure to perform can be reasonably expected  
to cause the failure of the life support device or to affect its safety or effectiveness.  
Customers represent that they have all necessary expertise in the safety and regulatory ramifications of their life support devices or  
systems, and acknowledge and agree that they are solely responsible for all legal, regulatory and safety-related requirements  
concerning their products and any use of Diodes Incorporated products in such safety-critical, life support devices or systems,  
notwithstanding any devices- or systems-related information or support that may be provided by Diodes Incorporated. Further,  
Customers must fully indemnify Diodes Incorporated and its representatives against any damages arising out of the use of Diodes  
Incorporated products in such safety-critical, life support devices or systems.  
Copyright © 2011, Diodes Incorporated  
www.diodes.com  
18 of 18  
www.diodes.com  
January 2011  
© Diodes Incorporated  
AP7312  
Document number: DS35133 Rev. 2 - 2  

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