SC4431CSK-2.TR [SEMTECH]

Three Terminal Voltage Reference, 1 Output, 1.224V, BIPolar, PDSO5, SOT-23, 5 PIN;
SC4431CSK-2.TR
型号: SC4431CSK-2.TR
厂家: SEMTECH CORPORATION    SEMTECH CORPORATION
描述:

Three Terminal Voltage Reference, 1 Output, 1.224V, BIPolar, PDSO5, SOT-23, 5 PIN

光电二极管
文件: 总8页 (文件大小:160K)
中文:  中文翻译
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SC4431  
Shunt Regulator With  
Open Collector Output  
POWER MANAGEMENT  
Features  
Description  
The SC4431 is a four terminal device for regulating an  
isolated power supply with output voltages down to 1.5V.  
u Open Collector output drives Optoisolator with  
as little as 1.5V input voltage  
u Trimmed bandgap design - initial accuracies  
to + 0.5%  
u 40mA drive capability  
u Regulates output as low as 50mV  
u Wide supply voltage range - 1.5V to 15V  
u Low supply current - typically 110µA  
u Full industrial temperature range  
u SOT-23 5 lead package  
It is intended to be used as a replacement for three  
terminal shunt regulators such as SC431L where the  
output voltage is too low for the device to function in  
conjunction with an opto-isolator. SC4431 achieves this  
by having seperate supply and output pins, allowing the  
output to sink current at voltages as low as 0.1V, while  
the supply pin still has sufficient voltage for the device to  
function. In this way, allowing for a 1.4V drop through an  
opto-isolator diode, regulation down to 1.5V out can be  
achieved.  
Applications  
u Telecom Power Supplies  
u Opto driver for very low output voltage (1.5V)  
isolated power supplies  
The SC4431 shunt regulator is available with three  
initial reference voltage accuracies (0.5%, 1.0% and  
2.0%) in the space saving 5-lead SOT-23 package. The  
three voltage tolerances allow the designer the  
u Battery operated applications  
opportunity to select the proper cost/tolerance for their u Point of use power supplies  
application.  
Typical Application Circuit  
2V Output Isolated Power Supply  
2V OUT  
T1  
Primary Side  
Controller  
Secondary Side  
Rectification  
VIN  
and Filtering  
R1  
R2  
C1  
5.1k  
U1  
C3  
33nF  
R3  
SC4431  
VCC  
6.34k  
1
5
OUT  
4
4N25  
REF  
C2  
R4  
10k  
22nF  
3
NC  
2
GND  
1
www.semtech.com  
Revision: September 9, 2003  
SC4431  
POWER MANAGEMENT  
Absolute Maximum Rating  
Parameter  
Symbol  
VCC  
ICC  
Maximum  
Units  
V
Input Supply Voltage  
-0.5 to +16  
Vcc pin current  
8
-0.5 to VCC  
-0.5 to +4  
40  
mA  
V
Output Voltage  
Reference Voltage (1)  
VOUT  
VREF  
IOUT  
V
Continuous Output Current  
Reference Input Current  
mA  
mA  
°C  
IREF  
5
Operating Ambient Temperature Range  
Operating Junction Temperature Range  
Storage Temperature Range  
Thermal Impedance Junction to Ambient  
Thermal Impedance Junction to Case  
Power Dissipation at TA = 25°C  
Lead Temperature (Soldering) 10 seconds  
ESD Rating (Human Body Model)  
TA  
-40 to +85  
-40 to +150  
-65 to +150  
256  
TJ  
°C  
TSTG  
θJA  
°C  
°C/W  
°C/W  
mW  
°C  
81  
θJC  
PD  
475  
TLEAD  
ESD  
300  
2
kV  
(1) If Vref will be forced above 1.224V, a resistor must be placed in series with the Vcc to limit the Icc current  
below 5mA.  
Electrical Characteristics  
Unless specified, TA = 25°C, VCC = 2V, IOUT = 2mA. Values in bold apply over full operating temperature range.  
Parameter  
Symbol  
Test Conditions  
MIN  
TYP  
MAX  
Units  
VCC  
Input Supply Voltage  
VCC  
ICC  
1.5  
15  
V
Input Supply Current  
VREF = VOUT  
110  
65  
200  
100  
150  
µA  
µA  
Off State Input Supply Current  
ICC(OFF)  
VREF = 1.187V, VOUT = 2V  
REF  
Reference Voltage  
VREF  
SC4431-.5, VREF = VOUT  
SC4431-1, VREF = VOUT  
SC4431-2, VREF = VOUT  
VCC = 1.5V to 15V  
1.219  
1.207  
1.212  
1.200  
1.200  
1.187  
1.224  
1.224  
1.224  
8
1.231  
1.243  
1.236  
1.250  
1.250  
1.261  
15  
20  
28  
36  
V
V
V
Change in VREF due to change in  
Vcc  
dVREF/dVCC  
dVREF/dIOUT  
mV  
mV  
Change in VREF due to change in  
IOUT  
IOUT = 0.1mA to 40mA  
8
Reference Input Current  
IREF  
0.1mA IOUT 10mA  
0.3  
0.5  
µA  
1.0  
OUT  
Saturation Voltage  
VOUT(SAT)  
IOUT = 5mA, ICC = 500µA  
VREF = 1.261V, IOUT = 32mA  
VREF = 1.187V, VOUT = 2V  
50  
75  
100  
300  
400  
1
mV  
mV  
µA  
275  
0.50  
Off State Output Current  
IOUT(OFF)  
10  
www.semtech.com  
2003 Semtech Corp.  
2
SC4431  
POWER MANAGEMENT  
Pin Configurations  
Ordering Information  
Part Number(1)(2)  
Package  
SOT-23-5  
(TOP VIEW)  
SC4431CSK-X  
Notes: (1) Only available in tape and reel packaging.  
(Suffix ‘.TR’ e.g. SC4431CSK-X.TR).  
(2) Where “-X” denotes initial reference voltage toler-  
ance. Available options are ±0.5% (-.5), ±1% (-1) and  
±2% (-2).  
(SOT-23-5 Lead)  
Pin Descriptions  
Pin#  
Pin Name Pin Function  
1
VCC  
This is the input supply pin for the SC4431. A low ESR capacitor should be used to bypass this  
pin to GND right at the IC.  
2
3
4
5
GND  
NC  
Logic and power ground.  
No connection.  
REF  
OUT  
This is connected to the non-inverting input of the error amplifier.  
This is the output pin of the device, essentially an open collector.  
Note: A 22nF low ESR (ceramic) capacitor is required from  
this pin to GND for stable operation.  
Marking Information  
Block Diagram  
Top Mark  
4431  
Bottom Mark  
yyww  
yyww = Datecode(Example:9908)  
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2003 Semtech Corp.  
3
SC4431  
POWER MANAGEMENT  
Typical Characteristics  
Vref vs Ta Vcc = 2V  
Vref vs Ta Iout = 2mA  
1.236  
1.234  
1.232  
1.230  
1.228  
1.226  
1.224  
1.222  
1.228  
1.227  
1.226  
1.225  
1.224  
1.223  
1.222  
1.221  
1.220  
1.219  
1.218  
Vcc=1.5V  
Vcc=2V  
Vcc=5V  
Vcc=15V  
Iout=40ma  
Iout=2mA  
Iout=100uA  
-40 -30 -20 -10  
0
10 20 30 40 50 60 70 80  
-40 -30 -20 -10  
0
10 20 30 40 50 60 70 80  
Ta(Deg.C.)  
Ta(Deg.C.)  
Typical Vref vs Ta Vcc = 2V  
Typical Vref vs Ta Io = 2mA  
Icc Off vs Ta Vout = 2V  
Iref vs Ta Vout = 2V  
70E-6  
65E-6  
60E-6  
55E-6  
50E-6  
13E-9  
Icc_Off  
Iref  
12E-9  
11E-9  
10E-9  
9E-9  
8E-9  
7E-9  
6E-9  
5E-9  
4E-9  
-40 -30 -20 -10  
0
10 20 30 40 50 60 70 80  
-40 -30 -20 -10  
0
10 20 30 40 50 60 70 80  
Ta(Deg.C.)  
Ta(Deg.C.)  
Typical Iout vs Ta Vo = 2V  
Typical Icc Off vs Ta Vo = 2V  
Iref vs Ta Vcc = 2V  
Vsat vs Ta Vcc = 2V  
45E-9  
40E-9  
35E-9  
30E-9  
25E-9  
20E-9  
Iout=100uA  
350  
300  
250  
200  
150  
100  
50  
Iout=40ma  
Iout=5mA  
Iout=1mA  
Iout=2mA  
Iout=5mA  
Iout=10mA  
Iout=15mA  
0
-40 -30 -20 -10  
0
10 20 30 40 50 60 70 80  
Ta(Deg.C.)  
-40 -30 -20 -10  
0
10 20 30 40 50 60 70 80  
Ta(Deg.C.)  
Typical Vsat vs Ta Vcc = 2V  
Typical Iref vs Ta Vcc = 2V  
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2003 Semtech Corp.  
4
SC4431  
POWER MANAGEMENT  
Typical Characteristics  
3.5000  
3.0000  
2.5000  
2.0000  
1.5000  
1.0000  
0.5000  
0.0000  
-0.5000  
3.5000  
3.0000  
2.5000  
2.0000  
1.5000  
1.0000  
0.5000  
0.0000  
-0.5000  
1.2243  
1.2700  
1.3009  
1.7073  
3.0073  
1.2248  
1.2703  
1.3048  
1.7030  
3.0182  
Vref(v)  
Vref(v)  
Vcc=2V,Io=1.3mA  
Vcc=5V,Io=1.3mA  
Vcc=15V,Io=1.3mA  
Vcc=2V,Io=2mA  
Vcc=5V,Io=2mA  
Vcc=15V,Io=2mA  
Typical Icc vs Vref, Io = 1.3mA, Ta = 25 Deg.C.  
Typical Icc vs Vref, Io = 2mA, Ta = 25 Deg.C.  
+VCC  
J1  
+V adj  
C1  
10uF  
1
2
+Vref_Adjust  
R1  
4k  
C3  
R2  
Io  
J2  
3.9k  
1
2
U1  
R4  
1k  
C2  
10uF  
1
5
Vref  
Vo  
J3  
C4  
4
C5  
1
2
22nF  
10uF  
R5  
1k  
Vref  
SC4431  
2
Icc vs Vref Test Circuit  
www.semtech.com  
2003 Semtech Corp.  
5
SC4431  
POWER MANAGEMENT  
Typical Gain Phase  
SC4431 Gain / Phase Vin = 2V, Iout = 2mA, Vout = 1.6V  
70  
200  
150  
100  
50  
60  
50  
40  
30  
20  
10  
0
Gain  
Phase  
0
-50  
-100  
-150  
-10  
-20  
10  
100  
1000  
10000  
100000  
1000000  
Freq (Hz)  
SC4431 Gain / Phase Vin = 4V, Iout = 2mA, Vout = 2V  
80  
70  
60  
50  
40  
30  
20  
10  
0
200  
150  
100  
50  
Gain  
Phase  
0
-50  
-10  
-20  
-100  
10  
100  
1000  
10000  
100000  
1000000  
Freq (Hz)  
R1  
J1  
A
J2  
R
1
2
3
4
5
1 2 3 4 5  
1k for 2mA  
U1  
J3  
2V OUT  
1
5
4
1
VCC  
OUT  
REF  
2
GND  
4V IN  
3
R2  
3.16k  
NC  
SC4431  
R3  
C3  
C1  
10u  
C2  
0.1u  
C4  
22u  
C5  
22u  
C6  
22u  
5.1k  
R4  
4.99k  
33n  
C7  
22n  
J4  
1
J5  
GND  
1
2
3
4
5
Signal In  
Gain Phase Test Circuit  
www.semtech.com  
2003 Semtech Corp.  
6
SC4431  
POWER MANAGEMENT  
Typical Applications  
+V Monitor  
+Vcc  
Power Good  
R2  
R3  
C1  
R1  
R4  
R5  
U1  
1
5
Q1  
4
C3  
C2  
22nF  
C4  
Vref  
SC4431  
2
Power good Circuit  
+Vcc  
+Vout Secondary  
C1  
R1  
R2  
+Vprimary  
1
R4  
R5  
R3  
5
4
U2  
C3  
C2  
22n  
U1  
SC4431  
C4  
PWM disable  
Vref  
2
Isolated OVP Circuit  
+Vin  
+Vout  
Q1  
C1  
R1  
R2  
U1  
R3  
1
5
4
C2  
C3  
R4  
22nF  
Vref  
SC4431  
2
Linear Regulator Circuit  
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2003 Semtech Corp.  
7
SC4431  
POWER MANAGEMENT  
Outline Drawing - SOT-23-5L  
Land Pattern - SOT-23-5L  
Contact Information for Semtech International AG  
Taiwan Branch  
Korea Branch  
Shanghai Office  
Tel: 886-2-2748-3380  
Fax: 886-2-2748-3390  
Semtech Switzerland GmbH  
Japan Branch  
Tel: 81-3-6408-0950  
Fax: 81-3-6408-0951  
Tel: 82-2-527-4377  
Fax: 82-2-527-4376  
Semtech Limited (U.K.)  
Semtech France SARL  
Semtech Germany GmbH  
Tel: 44-1794-527-600  
Fax: 44-1794-527-601  
Tel: 86-21-6391-0830  
Fax: 86-21-6391-0831  
Tel: 33-(0)169-28-22-00  
Fax: 33-(0)169-28-12-98  
Semtech International AG is a wholly-owned subsidiary of  
Semtech Corporation, which has its headquarters in the U.S.A.  
Tel: 49-(0)8161-140-123  
Fax: 49-(0)8161-140-124  
www.semtech.com  
2003 Semtech Corp.  
8

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