FSP3122K50E [FOSLINK]

150KHZ 3A PWM BUCK DC/DC CONVERTER; 150KHZ 3A PWM降压型DC / DC转换器
FSP3122K50E
型号: FSP3122K50E
厂家: FOSLINK SEMICONDUCTOR CO.,LTD    FOSLINK SEMICONDUCTOR CO.,LTD
描述:

150KHZ 3A PWM BUCK DC/DC CONVERTER
150KHZ 3A PWM降压型DC / DC转换器

转换器
文件: 总11页 (文件大小:321K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
„ FEATURES  
„
GENERAL DESCRIPTION  
z
Output voltage: 3.3V, 5.0V, 12V, and adjustable  
output version  
The FSP3123 series are monolithic IC that design for  
a step-down DC/DC converter, and own the ability of  
driving a 3A load without additional transistor  
component. Due to reducing the number of external  
component, the board space can be saved easily.  
The external shutdown function can be controlled by  
logic level and then come into standby mode. The  
internal compensation makes feedback control have  
good line and load regulation without external design.  
Regarding protected function, thermal shutdown is to  
prevent over temperature operating from damage,  
and current limit is against over current operating of  
the output switch. If current limit function occurred and  
VFB is down to 0.5V below, the switching frequency  
will be reduced. The FSP3123 series operates at a  
switching frequency of 150 KHz thus allowing smaller  
sized filter components than what would be needed  
with lower frequency switching regulators. Other  
features include a guaranteed ±4% tolerance on  
output voltage under specified input voltage and  
output load conditions, and ±15% on the oscillator  
frequency. The output version included fixed 3.3V,  
5V, 12V, and an adjustable type. The packages are  
available in a standard 5-lead TO-220 package, a  
5-lead TO-263 package or 8-lead PDIP.  
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Adjustable version output voltage range:1.23V to  
18V±4%  
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150KHz±15% fixed switching frequency  
Voltage mode non-synchronous PWM control  
Thermal-shutdown and current-limit protection  
ON/OFF shutdown control input  
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Operating voltage can be up to 22V  
Output load current: 3A  
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Low power standby mode  
Built-in switching transistor on chip  
TO220-5LTO263-5L and PDIP8L packages  
„ APPLICATIONS  
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z
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Simple High-efficiency step-down regulator  
On-card switching regulators  
Positive to negative converter  
„ PIN CONFIGURATION  
(1) TO220-5L  
(2) TO263-5L  
(Top View)  
(Top View)  
5
4
3
2
1
SD  
5 SD  
FB  
4 FB  
3 GND  
2 OUTPUT  
1 VIN  
GND  
OUTPUT  
VIN  
Metal Tab Gnd  
Metal Tab Gnd  
(3) PDIP8L  
(Top View)  
GND  
8
GND GND  
GND  
7
6
5
Symbol  
TO220/TO263  
Name  
Vin  
Descriptions  
PDIP  
1
2
5~8  
3
4
1
2
3
4
5
Operating Voltage Input  
Output Switching Output  
Gnd  
FB  
Ground  
Output Voltage Feedback Control  
ON/OFF Shutdown  
1
2
3
4
SD  
VIN OUTPUT FB  
SD  
2007-6-12  
1/11  
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
„ ABSOLUTE MAXIMUM RATINGS  
Symbol  
VCC  
Paramrter  
Supply Voltage  
Rating  
+24  
Unit  
V
VSD  
VFB  
VOUT  
PD  
TST  
ON/OFF Pin input Voltage  
Feedback Pin Voltage  
Output Voltage to Ground  
Power Dissipation  
Storage Temperature  
Operating Temperature  
Operating Voltage  
-0.3 to +18  
-0.3 to +18  
-1  
V
V
V
W
V
Internally Limited  
-65 to +150  
-40 to +125  
+4.5 to +22  
TOP  
VOP  
„ ELECTRICAL CHARACTERISTICS (ALL OUTPUT VOLTAGE VERSIONS)  
Unless otherwise specified, VIN=12V for 3.3V,5V, adjustable version and VIN=18V for the 12V version. ILOAD=0.5A  
Symbol  
Paramrter  
Conditions  
VFB=1.3V(Adjustable  
version only)  
Min.  
Typ.  
-10  
Max.  
-50  
-100  
173  
173  
Unit  
IB  
Feedback bias current  
nA  
127  
110  
150  
FOSC  
FCSP  
Oscillator frequency  
KHz  
kHz  
When Current Limit  
Occur and  
VFB 0.5V, TA=25°C  
Short Circuit Oscillator  
Frequency  
10  
30  
50  
IOUT=3A  
1.4  
VSAT  
DC  
ICL  
Saturation voltage  
no outside circuit  
VFB=0V force driver on  
VFB=0V force driver on  
VFB=12V force driver off  
Peak current  
no outside circuit  
VFB=0V force driver on  
no outside circuit  
VFB=12V force driver off  
VIN=22V  
V
%
A
1.5  
Max.Duty Cycle(ON)  
Min.Duty Cycle(OFF)  
100  
0
3.6  
3.4  
6.9  
Current limit  
7.5  
Output  
Output=0  
-50  
µA  
IL  
leakage  
current  
Output=-1  
-30  
10  
200  
250  
mA  
mA  
IQ  
Quiescent Current  
Standby Quiesient  
Current  
VFB=12V force driver off  
ON/OFF Pin=5V  
VIN=22V  
5
ISTBY  
70  
µA  
VIL  
VIH  
IH  
Low(regultaor ON)  
High(regultaor OFF)  
0.6  
ON/OFF pin logic input  
threshold voltage  
1.3  
V
2.0  
ON/OFF pin logic input  
current  
ON/OFF pin input  
current  
VLOGIC=2.5V(OFF)  
-15  
-5  
µA  
IL  
VLOGIC=0.5V(ON)  
TO220-5L  
TO263-5L  
2.5  
3.5  
Thermal Resistence  
Junction  
to case  
θJC  
/W  
/W  
PDIP8L  
12  
28  
Thermal Resistence  
with Copper Area of  
Approximately 3 in2  
TO220-5L  
Junction  
to ambient  
θJA  
TO263-5L  
PDIP8L  
23  
35  
Specifications with boldface type are for full operating temperature range, the other type are for TJ=25ºC.  
2007-6-12  
2/11  
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
„
ELECTRICAL CHARACTERISTICS (CONTINUED)  
Symbol  
Parameter  
Conditions  
5VVIN22V  
0.2AILOAD3A  
OUT programmed for  
3V  
Typ.  
Limit  
Unit  
V
VMIN  
VMAX  
1.193/1.18  
1.267/1.28  
VFB  
Output Feedback  
1.23  
FSP3123-ADJ  
V
η
VOUT  
η
Efficiency  
Output voltage  
Efficiency  
VIN =12V, ILOAD =3A  
75  
3.3  
75  
5
%
V
VMIN  
VMAX  
%
5.5VVIN22V  
0.2AILOAD3A  
3.168/3.135  
3.432/3.465  
FSP3123-3.3V  
FSP3123-5.0V  
FSP3123-12V  
VIN =12V, ILOAD =3A  
V
8VVIN22V  
0.2AILOAD3A  
4.8/4.75  
5.2/5.25  
VOUT  
η
VOUT  
η
Output voltage  
Efficiency  
VMIN  
VMAX  
%
VIN =12V, ILOAD =3A  
80  
12  
90  
V
15VVIN22V  
0.2AILOAD3A  
11.52/11.4  
12.48/12.6  
Output voltage  
VMIN  
VMAX  
%
Efficiency  
VIN =15V, ILOAD =3A  
Specifications with boldface type are for full operating temperature range, the other type are for TJ=25ºC.  
„ BLOCK DIAGRAM  
2007-6-12  
3/11  
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
„ FUNCTION DESCRIPTION  
Pin Function  
VIN  
This is the positive input supply for the IC switching regulator. A suitable input bypass capacitor must be present at  
this pin to minimize voltage transients and to supply the switching currents needed by the regulator.  
Ground  
Circuit ground.  
Output  
Internal switch. The voltage at this pin switches between (VIN – VSAT) and approximately – 0.5V, with a duty cycle  
of approximately VOUT / VIN. To minimize coupling to sensitive circuitry, the PC board copper area connected to  
this pin should be kept a minimum.  
Feedback  
Senses the regulated output voltage to complete the feedback loop.  
ON/OFF  
Allows the switching regulator circuit to be shutdown using logic level signals thus dropping the total input supply  
current to approximately 150uA. Pulling this pin below a threshold voltage of approximately 1.3V turns the  
regulator on, and pulling this pin above 1.3V (up to a maximum of 18V) shuts the regulator down. If this shutdown  
feature is not needed, the ON/OFF pin can be wired to the ground pin.  
Thermal Considerations  
The FSP3123 is available in three packages, a 5-pin TO-220, 5-pin TO263 and a 8-pin PDIP Package. The  
TO-220 package needs a heat sink under most conditions. The size of the heat sink depends on the input voltage,  
the output voltage, the load current and the ambient temperature. The FSP3123 junction temperature rises above  
ambient temperature for a 3A load and different input and output voltages. The data for these curves was taken  
with the FSP3123 (TO-220 package) operating as a buck switching regulator in an ambient temperature of 25oC  
(still air). These temperature rise numbers are all approximate and there are many factors that can affect these  
temperatures. Higher ambient temperatures require more heat sinking.  
The TO-263 surface mount package tab is designed to be soldered to the copper on a printed circuit board. The  
copper and the board are the heat sink for this package and the other heat producing components, such as the  
catch diode and inductor. The PC board copper area that the package is soldered to should be at least 0.4 in2,  
and ideally should have 2 or more square inches of 2 oz. Additional copper area improves the thermal  
characteristics, but with copper areas greater than approximately 6 in2, only small improvements in heat  
dissipation are realized. If further thermal improvements are needed, double sided, multilayer PC board with large  
copper areas and/or airflow are recommended.  
The FSP3123 (TO-263 package) junction temperature rise above ambient temperature with a 3A load for  
various input and output voltages. This data was taken with the circuit operating as a buck switching regulator  
with all components mounted on a PC board to simulate the junction temperature under actual operating  
conditions. This curve can be used for a quick check for the approximate junction temperature for various  
conditions, but be aware that there are many factors that can affect the junction temperature. When load  
currents higher than 2A are used, double sided or multilayer PC boards with large copper areas and/or airflow  
might be needed, especially for high ambient temperatures and high output voltages.  
For the best thermal performance, wide copper traces and generous amounts of printed circuit board copper  
should be used in the board layout. (Once exception to this is the output (switch) pin, which should not have  
large areas of copper.) Large areas of copper provide the best transfer of heat (lower thermal resistance) to the  
surrounding air, and moving air lowers the thermal resistance even further.  
Package thermal resistance and junction temperature rise numbers are all approximate, and there are many  
factors that will affect these numbers. Some of these factors include board size, shape, thickness, position,  
location, and even board temperature. Other factors are, trace width, total printed circuit copper area, copper  
thickness, single or double-sided, multilayer board and the amount of solder on the board. The effectiveness of  
the PC board to dissipate heat also depends on the size, quantity and spacing of other components on the board,  
as well as whether the surrounding air is still or moving. Furthermore, some of these components such as the  
catch diode will add heat to the PC board and the heat can vary as the input voltage changes. For the inductor,  
depending on the physical size, type of core material and the DC resistance, it could either act as a heat sink  
taking heat away from the board, or it could add heat to the board.  
2007-6-12  
4/11  
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
„ TYPICAL APPLICATION CIRCUITS  
(1) Fixed Output Circuit  
(2) Adjustable Output Circuit  
2007-6-12  
5/11  
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
„ TYPICAL PERFORMANCE CHARACTERISTICS  
2007-6-12  
6/11  
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
„ TYPICAL PERFORMANCE CHARACTERISTICS (CONTINUED)  
2007-6-12  
7/11  
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
„ ORDERING INFORMATION  
FSP3123XXXX  
Packing:  
Blank: Tube or Bulk  
A: Tape & Reel  
Temperature Grade:  
E: -40~125℃  
Output Voltage:  
Blank: ADJ  
33: 3.3V  
Package:  
T: TO220-5L  
K: TO263-5L  
N: PDIP8L  
50: 5.0V  
12: 12V  
„ MARKING INFORMATION  
1) TO220-5L  
2) TO263-5L  
Logo  
Logo  
Part Number:  
3123-ADJ: ADJ  
3123-33: 3.3V  
3123-50: 5.0V  
3123-12: 12V  
Part Number:  
3123-ADJ: ADJ  
3123-33: 3.3V  
3123-50: 5.0V  
3123-12: 12V  
3123-VV  
3123-VV  
YYWWXX  
YYWWXX  
Internal Code  
Internal Code  
Date Code:  
Date Code:  
YY: Year (01=2001)  
WW: Nth week (01~52)  
YY: Year (01=2001)  
WW: Nth week (01~52)  
(3) PDIP8L  
Logo  
Part number:  
3123-ADJ: ADJ  
3123-33: 3.3V  
3123-50: 5.0V  
3123-12: 12V  
3123-VV  
YYWWXX  
Internal code  
Date code:  
YY: Year (01=2001)  
WW: Nth week (01~52)  
2007-6-12  
8/11  
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
„ PACKAGE INFORMATION  
1) TO220-5L  
A
F
E
P
J1  
C
e
b
e1  
Dimensions In Millimeters  
Dimensions In Inches  
Symbol  
Min.  
4.07  
0.76  
0.36  
14.22  
9.78  
1.57  
6.68  
1.14  
5.46  
2.29  
13.21  
3.68  
2.54  
Nom.  
4.45  
0.89  
0.50  
14.86  
10.16  
1.71  
6.81  
1.27  
6.16  
2.74  
13.97  
3.81  
2.73  
Max.  
4.82  
1.02  
0.64  
15.50  
10.54  
1.85  
6.93  
1.40  
6.86  
3.18  
14.73  
3.94  
2.92  
Min.  
Nom.  
0.175  
0.035  
0.020  
0.585  
0.400  
0.067  
0.268  
0.050  
0.243  
0.108  
0.550  
0.150  
0.107  
Max.  
0.190  
0.040  
0.025  
0.610  
0.415  
0.073  
0.273  
0.055  
0.270  
0.125  
0.580  
0.155  
0.115  
A
b
C
D
E
e
e1  
F
H1  
J1  
L
P
Q
0.160  
0.030  
0.014  
0.560  
0.385  
0.062  
0.263  
0.045  
0.215  
0.090  
0.520  
0.145  
0.100  
2007-6-12  
9/11  
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
2) TO263-5L  
E
10.90  
L2  
D
15.70  
L
2.50  
1.00  
1.70  
e
B
Land Pattern Recommendation (Unit: mm)  
A
C2  
C
L1  
Dimensions In Millimeters  
Dimensions In Inches  
Symbol  
Min.  
Nom.  
4.46  
0.84  
0.50  
1.27  
9.15  
10.16  
1.71  
15.24  
2.54  
Max.  
4.85  
1.02  
0.74  
1.65  
9.65  
10.67  
1.85  
15.88  
2.79  
2.92  
Min.  
Nom.  
0.176  
0.033  
0.020  
0.050  
0.360  
0.400  
0.068  
0.600  
0.100  
Max.  
0.194  
0.041  
0.030  
0.066  
0.380  
0.427  
0.074  
0.635  
0.110  
0.115  
A
B
C
C2  
D
E
e
L
L1  
L2  
4.07  
0.51  
0.36  
1.14  
8.20  
9.65  
1.57  
14.45  
1.78  
0.163  
0.020  
0.014  
0.046  
0.328  
0.386  
0.063  
0.578  
0.071  
2007-6-12  
10/11  
150KHZ 3A PWM BUCK DC/DC CONVERTER  
FSP3123  
(3) PDIP8L  
D
E-PIN 0.018inch  
E
PIN #1INDENT 0.025 DEEP 0.006-0.008 Inch  
15°(4х)  
7°(4х)  
C
eB  
L
S
B
e
B2  
B1  
Dimensions In Millimeters  
Nom.  
Dimensions In Inches  
Symbol  
Min.  
Max.  
Min.  
Nom.  
Max.  
A
A1  
A2  
B
B1  
B2  
C
D
E
E1  
e
L
5.33  
0.210  
0.38  
3.1  
0.36  
1.4  
0.81  
0.20  
9.02  
7.62  
6.15  
0.015  
0.122  
0.014  
0.055  
0.032  
0.008  
0.335  
0.300  
0.242  
3.30  
0.46  
1.52  
0.99  
0.25  
9.27  
7.94  
6.35  
2.54  
3.3  
3.5  
0.130  
0.018  
0.060  
0.039  
0.010  
0.365  
0.313  
0.250  
0.100  
0.130  
0.350  
0.033  
0.138  
0.022  
0.065  
0.045  
0.014  
0.375  
0.325  
0.258  
0.56  
1.65  
1.14  
0.36  
9.53  
8.26  
6.55  
2.92  
8.38  
0.71  
3.81  
9.40  
0.97  
0.115  
0.330  
0.028  
0.150  
0.370  
0.038  
eB  
S
8.89  
0.84  
2007-6-12  
11/11  

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