AP3201A [BCDSEMI]

380kHz, 2A Asynchronous DC-DC Buck Converter; 380kHz , 2A异步DC-DC降压转换器
AP3201A
型号: AP3201A
厂家: BCD SEMICONDUCTOR MANUFACTURING LIMITED    BCD SEMICONDUCTOR MANUFACTURING LIMITED
描述:

380kHz, 2A Asynchronous DC-DC Buck Converter
380kHz , 2A异步DC-DC降压转换器

转换器
文件: 总11页 (文件大小:448K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Preliminary Datasheet  
380kHz, 2A Asynchronous DC-DC Buck Converter  
AP3201A  
Features  
General Description  
Input Voltage Range: 4.75V to 18V  
Fixed 380kHz Frequency  
High Efficiency: up to 93%  
Output Current: 2A  
The AP3201A is a 380kHz fixed frequency, current  
mode, PWM buck (step-down) DC-DC converter,  
capable of driving a 2A load with high efficiency,  
excellent line and load regulation. The device  
integrates N-channel power MOSFET switch with  
low on-resistance. Current mode control provides fast  
transient response and cycle-by-cycle current limit.  
Current Mode Control  
Built-in Over Current Protection  
Built-in Thermal Shutdown Function  
Built-in UVLO Function  
Built-in Over Voltage Protection  
Programmable Soft-start  
A standard series of inductors are available from  
several different manufacturers optimized for use  
with the AP3201A. This feature greatly simplifies the  
design of switch-mode power supplies.  
Applications  
This IC is available in HMSOP-10 package.  
LCD TV  
Set Top Box  
Portable DVD  
Digital Photo Frame  
HMSOP-10  
Figure 1. Package Type of AP3201A  
Mar. 2011 Rev. 1. 0  
BCD Semiconductor Manufacturing Limited  
1
Preliminary Datasheet  
380kHz, 2A Asynchronous DC-DC Buck Converter  
AP3201A  
Pin Configuration  
MH Package  
(HMSOP-10)  
1
2
3
4
5
10  
9
8
7
6
Figure 2. Pin Configuration of AP3201A (Top View)  
Pin Description  
Pin Number Pin Name  
Function  
1, 3  
NC  
No connection or tied to ground  
Bootstrap pin. A bootstrap capacitor is connected between the BS pin  
and SW pin. The voltage across the bootstrap capacitor drives the  
internal high-side power MOSFET  
2
BS  
Supply input pin. A capacitor should be connected between the IN pin  
and GND pin to keep the input voltage constant  
4
IN  
Power switch output pin. This pin is connected to the inductor and  
bootstrap capacitor  
5
6
SW  
GND  
Ground pin  
Feedback pin. This pin is connected to an external resistor divider to  
program the system output voltage. When the FB pin voltage exceeds  
20% of the nominal regulation value of 0.920V, the over voltage  
protection is triggered. When the FB pin voltage is below 0.6V, the  
oscillator frequency is lowered to realize short circuit protection  
Compensation pin. This pin is the output of the transconductance  
error amplifier and the input to the current comparator. It is used to  
compensate the control loop. Connect a series RC network from this  
pin to GND. In some cases, an additional capacitor from this pin to  
GND pin is required  
Control input pin. Forcing this pin above 1.5V or set this pin floating  
enables the IC. Forcing this pin below 0.5V shuts down the IC. When  
the IC is in shutdown mode, all functions are disabled to decrease the  
supply current below 1µA  
7
FB  
8
9
COMP  
EN  
SS  
Soft-start control input pin. SS controls the soft start period. Connect  
a capacitor from SS to GND to set the soft-start period. A 0.1µF  
capacitor sets the soft-start period to 10ms. To disable the soft-start  
feature, leave SS unconnected  
10  
Mar. 2011 Rev. 1. 0  
BCD Semiconductor Manufacturing Limited  
2
Preliminary Datasheet  
380kHz, 2A Asynchronous DC-DC Buck Converter  
AP3201A  
Functional Block Diagram  
Figure 3. Functional Block Diagram of AP3201A  
Ordering Information  
AP3201A  
-
Circuit Type  
Package  
G1: Green  
TR: Tape & Reel  
MH: HMSOP-10  
Temperature  
Range  
Package  
Part Number  
Marking ID  
Packing Type  
HMSOP-10  
-40 to 85ºC  
AP3201AMHTR-G1  
3201AMH-G1  
Tape & Reel  
BCD Semiconductor's Pb-free products, as designated with "G1" suffix in the part number, are RoHS compliant  
and green.  
Mar. 2011 Rev. 1. 0  
BCD Semiconductor Manufacturing Limited  
3
Preliminary Datasheet  
380kHz, 2A Asynchronous DC-DC Buck Converter  
AP3201A  
Absolute Maximum Ratings (Note 1)  
Parameter  
Symbol  
VIN  
Value  
Unit  
V
IN Pin Voltage  
-0.3 to 20  
-0.3 to VIN  
20  
EN Pin Voltage  
VEN  
V
SW Pin Voltage  
VSW  
VBS  
V
BS Pin Voltage  
-0.3 to VSW+6  
-0.3 to 6  
-0.3 to 6  
-0.3 to 6  
60  
V
FB Pin Voltage  
VFB  
V
COMP Pin Voltage  
SS Pin Voltage  
VCOMP  
VSS  
V
V
Thermal Resistance  
Operating Junction Temperature  
Storage Temperature  
Lead Temperature (Soldering, 10sec)  
ESD (Machine Model)  
ESD (Human Body Model)  
ºC/W  
ºC  
ºC  
ºC  
V
θJA  
TJ  
150  
TSTG  
TLEAD  
-65 to 150  
260  
200  
2000  
V
Note 1: Stresses greater than those listed under “Absolute Maximum Ratings” may cause permanent damage to  
the device. These are stress ratings only, and functional operation of the device at these or any other conditions  
beyond those indicated under “Recommended Operating Conditions” is not implied. Exposure to “Absolute  
Maximum Ratings” for extended periods may affect device reliability.  
Recommended Operating Conditions  
Parameter  
Symbol  
VIN  
Min  
4.75  
2
Max  
Unit  
V
Input Voltage  
18  
Maximum Output Current  
Operating Ambient Temperature  
IOUT (Max)  
TA  
A
-40  
85  
ºC  
Mar. 2011 Rev. 1. 0  
BCD Semiconductor Manufacturing Limited  
4
Preliminary Datasheet  
380kHz, 2A Asynchronous DC-DC Buck Converter  
AP3201A  
Electrical Characteristics  
VIN=VEN=12V, VOUT=3.3V, unless otherwise specified. Specification with standard typeface are for TA=25  
ºC, and those in boldface type apply over the full operating temperature range (TA=-40 ºC to 85 ºC)  
Parameter  
Symbol  
VIN  
Conditions  
Min  
Typ  
Max  
18  
Unit  
V
Input Voltage  
4.75  
Quiescent Current  
Shutdown Supply Current  
Feedback Voltage  
IQ  
VFB=1.0V, VEN=2V  
VEN=0V  
1.0  
1
1.5  
mA  
µA  
V
ISHDN  
VFB  
10  
0.902  
0.920  
0.938  
Feedback Over Voltage  
Threshold  
VFBOV  
1.1  
0.6  
V
Feedback SCP Voltage Threshold  
Feedback Bias Current  
VFBSCP  
IFB  
RDSONH  
RDSONL  
V
µA  
VFB=1V  
-0.1  
0.1  
10  
0.22  
10  
High-side Switch On-resistance (Note 2)  
Low-side Switch On-resistance (Note 2)  
ISW=0.5A  
ISW=0.05A  
VIN=18V, VEN=0V  
VSW=0V  
High-side Switch Leakage Current  
ILEAKH  
0.1  
µA  
High-side Switch Current Limit  
Low-side Switch Current Limit  
ILIMH  
ILIML  
2.8  
1.5  
3.8  
A
A
From drain to source  
0.15  
VENH  
VENL  
IEN-PH  
VUVLO  
VHYS  
FOSC1  
EN Pin Threshold  
V
0.5  
4.4  
EN Pull-up Current  
VEN=0V  
1.0  
3.9  
0.3  
380  
µA  
V
Input UVLO Threshold  
Input UVLO Hysteresis  
Oscillator Frequency  
VIN Rising  
3.5  
V
kHz  
Short Circuit Oscillator  
Frequency  
FOSC2  
90  
90  
kHz  
Maximum Duty Cycle  
DMAX  
DMIN  
AEA  
VFB=0.8V  
VFB=1.0V  
%
%
Minimum Duty Cycle  
0
Error Amplifier Voltage Gain (Note 3)  
Error Amplifier Transconductance  
400  
700  
V/V  
µA/V  
GEA  
COMP to Current Sense  
Transconductance  
GCS  
2.4  
A/V  
Thermal Shutdown (Note 3)  
TOTSD  
THYS  
160  
30  
ºC  
ºC  
Thermal Shutdown Hysteresis (Note 3)  
IOUT=500mA  
CSS=0.1µF  
Soft-start Time (Note 3)  
Soft-start Current  
tSS  
ISS  
10  
6
ms  
µA  
Mar. 2011 Rev. 1. 0  
BCD Semiconductor Manufacturing Limited  
5
Preliminary Datasheet  
380kHz, 2A Asynchronous DC-DC Buck Converter  
AP3201A  
VSW - VSW2  
1
Note 2: RDSON  
=
ISW1 - ISW2  
Note 3: Not tested, guaranteed by design.  
Typical Performance Characteristics  
TA=25ºC, VIN=12V, VOUT=3.3V, unless otherwise noted.  
3.50  
3.45  
3.40  
3.35  
3.30  
3.25  
3.20  
3.15  
3.10  
3.05  
3.00  
375  
350  
325  
300  
275  
250  
225  
200  
175  
150  
125  
0.0  
0.5  
1.0  
1.5  
2.0  
-40  
-20  
0
20  
40  
60  
80  
100  
120  
140  
Case Temperature (oC)  
Output Current (A)  
Figure 4. High-side Switch On-resistance vs.  
Case Temperature  
Figure 5. Output Voltage vs. Output Current  
1.10  
1.05  
1.00  
0.95  
0.90  
0.85  
0.80  
0.75  
1.5  
1.4  
1.3  
1.2  
1.1  
1.0  
0.9  
0.8  
0.7  
0.6  
0.5  
-60  
-40  
-20  
0
20  
40  
60  
80  
100  
120  
140  
-60  
-40  
-20  
0
20  
40  
60  
80  
100  
120  
140  
Case Temperature (oC)  
Case Temperature (OC)  
Figure 6. Feedback Voltage vs. Case Temperature  
Figure 7. Quiescent Current vs. Case Temperature  
Mar. 2011 Rev. 1. 0  
BCD Semiconductor Manufacturing Limited  
6
Preliminary Datasheet  
380kHz, 2A Asynchronous DC-DC Buck Converter  
AP3201A  
Typical Performance Characteristics (Continued)  
TA=25ºC, VIN=12V, VOUT=3.3V, unless otherwise noted.  
IL  
VSW  
1A/div  
5V/div  
VOUT-AC  
20mV/div  
VOUT-AC  
100mV/div  
IL  
1A/div  
Time (2µs/div)  
Time (200µs/div)  
Figure 8. Output Ripple (IOUT=2A)  
Figure 9. Load Transient (IOUT=1 to 2A)  
VEN  
2V/div  
VEN  
2V/div  
VOUT  
1V/div  
VOUT  
1V/div  
IL  
1A/div  
IL  
1A/div  
VSW  
VSW  
10V/div  
10V/div  
Time (10ms/div)  
Time (10ms/div)  
Figure 10. Enable Turn on Characteristic  
(IOUT=2A, CC Mode)  
Figure 11. Enable Turn off Characteristic  
(IOUT=2A, CC Mode)  
Mar. 2011 Rev. 1. 0  
BCD Semiconductor Manufacturing Limited  
7
Preliminary Datasheet  
380kHz, 2A Asynchronous DC-DC Buck Converter  
AP3201A  
Typical Performance Characteristics (Continued)  
TA=25 ºC, VIN=12V, VOUT=3.3V, unless otherwise noted.  
VOUT  
2V/div  
VOUT  
2V/div  
IL  
IL  
1A/div  
1A/div  
VSW  
VSW  
5V/div  
5V/div  
Time (100µs/div)  
Time (100µs/div)  
Figure 12. Short Circuit Protection  
(IOUT=2A)  
Figure 13. Short Circuit Recovery  
(IOUT=2A)  
Mar. 2011 Rev. 1. 0  
BCD Semiconductor Manufacturing Limited  
8
Preliminary Datasheet  
380kHz, 2A Asynchronous DC-DC Buck Converter  
AP3201A  
Typical Application  
Input  
12V  
10nF  
4
2
Output  
3.3V/2A  
IN  
BS  
15 H  
9
5
7
SW  
EN  
AP3201A  
R1  
10  
C
IN  
SS  
25.8k  
10 F  
FB  
COUT  
22 F  
GND  
COMP  
8
6
R2 10k  
1
CC nF  
CSS  
0.1  
C
RC 8.2k  
330pF  
F
Figure 14. Typical Application of AP3201A  
Mar. 2011 Rev. 1. 0  
BCD Semiconductor Manufacturing Limited  
9
Preliminary Datasheet  
380kHz, 2A Asynchronous DC-DC Buck Converter  
AP3201A  
Mechanical Dimensions  
HMSOP-10  
Unit: mm(inch)  
2.900(0.114)  
3.100(0.122)  
0.750(0.030)  
2.500(0.100)  
0°  
6°  
0.500(0.020)  
BSC  
0.170(0.007)  
0.270(0.011)  
0.950(0.037)  
REF  
0.170(0.007)  
0.230(0.009)  
BASE METAL  
0.000(0.000)  
0.150(0.006)  
1.100(0.043)  
MAX.  
0.080(0.003)  
0.180(0.007)  
0.170(0.007)  
0.270(0.011)  
PLATING  
Note: 1. Eject hole, oriented hole and mold mark is optional.  
2. The figure of exposed pad is not restrained as regular rectangle.  
Mar. 2011 Rev. 1. 0  
BCD Semiconductor Manufacturing Limited  
10  
BCD Semiconductor Manufacturing Limited  
http://www.bcdsemi.com  
- Headquarters  
- Wafer Fab  
BCD Semiconductor Manufacturing Limited  
Shanghai SIM-BCD Semiconductor Manufacturing Co., Ltd.  
No. 1600, Zi Xing Road, Shanghai ZiZhu Science-based Industrial Park, 200241, China  
800 Yi Shan Road, Shanghai 200233, China  
Tel: +86-21-24162266, Fax: +86-21-24162277  
Tel: +86-21-6485 1491, Fax: +86-21-5450 0008  
REGIONAL SALES OFFICE  
Shenzhen Office  
Taiwan Office  
USA Office  
Shanghai SIM-BCD Semiconductor Manufacturing Co., Ltd., Shenzhen Office  
BCD Semiconductor (Taiwan) Company Limited  
BCD Semiconductor Corp.  
Unit A Room 1203, Skyworth Bldg., Gaoxin Ave.1.S., Nanshan District, Shenzhen,  
4F, 298-1, Rui Guang Road, Nei-Hu District, Taipei,  
30920 Huntwood Ave. Hayward,  
China  
Taiwan  
Tel: +886-2-2656 2808  
CA 94544, USA  
Tel: +86-755-8826 7951  
Tel : +1-510-324-2988  
Fax: +86-755-8826 7865  
Fax: +886-2-2656 2806  
Fax: +1-510-324-2788  

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