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STV8163
+3.3 V, +5 V and Adjustable Triple-Voltage Regulator with Disable and Reset Functions
FEATURES
s Input Voltage range between 5V and 18V, limited to VOUT + 6.5V s Maximum Available Output Currents greater than 0.8 A s Fixed Precision Output 1 voltage of 3.3 V 2% (at 10 mA) s Fixed Precision Output 2 voltage of 5 V 2% (at 10 mA) s Programmable Output 3 voltage: 2.5 to 16 V 2% s Output 1 with Reset facility s Outputs 2 and 3 can be disabled by digital input s Short Circuit Protection on each output s Thermal Protection s Low Dropout Voltages
Clipwatt11
(Plastic Package)
DESCRIPTION
The STV8163 is a monolithic triple positive voltage regulator designed to provide fixed precision output voltages of 3.3 V, 5 V and an adjustable voltage for currents up to 0.6 A. The adjustable value of the third output can be fixed from 2.5 V to 16 V. An internal reset circuit generates a reset pulse when the voltage of Output 1 drops below the regulated voltage value. Order Code: STV8163
Outputs 2 and 3 can be disabled by a digital input. Short-circuit and thermal protections are included in all versions.
11 10 9 8 7 6 5 4 3 2 1 September 2003
PROGRAM DISABLE INPUT3 OUTPUT3 INPUT2 GROUND OUTPUT2 INPUT1 OUTPUT1 DELAY CAPACITOR RESET 1/11
STV8163
TABLE OF CONTENTS
Chapter 1 Chapter 2
2.1 2.2 2.3
GENERAL INFORMATION
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .3
ELECTRICAL CHARACTERISTICS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .4
Absolute Maximum Ratings ................................................................................................ 4 Thermal Data ...................................................................................................................... 4 Electrical Characteristics ...................................................................................................... 4
Chapter 3
3.1
CIRCUIT DESCRIPTION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .6
Currents versus Maximum Power Limitation ........................................................................ 6
Chapter 4 Chapter 5 Chapter 6
APPLICATION DIAGRAM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .8 PACKAGE MECHANICAL DATA . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .9
REVISION HISTORY . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .10
2/11
STV8163
GENERAL INFORMATION
1
GENERAL INFORMATION
Figure 1: STV8163 Block Diagram
DELAY CAPACITOR 2 1 Reference RESET
INPUT1
4
Regulator 1
3
OUTPUT1
Protections
INPUT2
7
Regulator 2
5
OUTPUT2
INPUT3
9
Regulator 3
8
OUTPUT3
DISABLE 10
11 6 GROUND
PROGRAM
3/11
ELECTRICAL CHARACTERISTICS
STV8163
2
2.1
ELECTRICAL CHARACTERISTICS
Absolute Maximum Ratings
Parameter
DC Input Voltage at pins INPUT1, INPUT2 and INPUT3 Disable Input Voltage at pin DISABLE Output Voltage at pin RESET Output Currents Power Dissipation Storage Temperature Junction Temperature
Symbol
VIN VDIS VRST IOUTPUT Pt TSTG TJ
Value
20 20 20 Internally Limited Internally Limited -65 to +150 0 to +150
Unit
V V V
C C
2.2
Thermal Data
Parameter
Thermal Resistance (Junction-to-Case) Thermal Resistance (Junction-to-Ambient) Maximum Recommended Junction Temperature Operating Free Air Temperature Range
Symbol
RthJC RthJA TJ TOPER
Value
3 101 140 0 to +70
Unit
C/W C/W C C
1. Depending on heat sink conditions.
2.3
Electrical Characteristics
TAMB = 25 C, VIN1 = 5.3 V, VIN2 = 7 V and VIN3 = 10 V, unless otherwise specified.
Symbol
VOUT1 VOUT2 VOUT3 VOUT1
Parameter
Output Voltage Output Voltage Output Voltage Output Voltage
Test Conditions
IOUT1 = 10 mA IOUT2 = 10 mA IOUT3 = 10 mA 5.3 V < VIN1 < 10 V 5 mA < IOUT1 < 600 mA 7 V < VIN2 < 12 V 5 mA < IOUT2 < 600 mA IOUT1 = 0.6 A IOUT2 = 0.6 A IOUT3 = 0.6 A
Min.
3.24 4.90 2.5 3.18
Typ.
3.30 5.00
Max.
3.36 5.10 16 3.42
Unit
V V V V
VOUT2 VIO1 VIO2 VIO3
Output Voltage Dropout Voltage Dropout Voltage Dropout Voltage
4.80 1 1 1
5.20 1.4 1.4 1.4
V V V V
4/11
STV8163
Symbol
VOUT1LI
ELECTRICAL CHARACTERISTICS
Parameter
Line Regulation
Test Conditions
5.3 V < VIN1 < 10 V, IOUT1 = 200 mA 7 V < VIN2 < 12 V, IOUT2 = 200 mA 10 V < VIN3 < 15 V, IOUT3 = 200 mA, VOUT3 = 8 V 5 mA < IOUT1 < 600 mA 5 mA < IOUT2 < 600 mA 5 mA < IOUT3 < 600 mA, VOUT3 = 8 V IOUT1 = 10 mA Outputs 2 and 3 disabled K = VOUT1, IOUT1 > 50 mA See circuit description. CE = 100 nF See circuit description. IRESET = 5 mA VRESET = 10 V TJ = 0 to 125C
Min.
Typ.
Max.
30
Unit
mV
VOUT2LI
Line Regulation
50
mV
VOUT3LI VOUT1LO VOUT2LO VOUT3LO
Line Regulation Load Regulation Load Regulation Load Regulation
80 100 100 160
mV mV mV mV
IQ VO1RST VRTH tRD VRL IRH KOUT1 KOUT2 KOUT3 IOUT1SC IOUT2SC IOUT3SC VPROG IPROG VDISH VDISL IDIS TJSD TSDH
Quiescent Current Reset Threshold Voltage1 Reset Threshold Hysteresis Reset Pulse Delay Saturation Voltage in Reset Condition Leakage Current in Normal Condition, at RESET pin
2.2 K-0.4 30 K-0.25 75 25
3.0 K-0.10 120
mA V mV ms
0.4 10
V A
Output Voltage Thermal Drift
V OUT 10 K OUT = -------------------------------T V OUT VIN1 = 5.3 V VIN2 = 7 V VIN3 = VOUT3 + 2V
6
100
ppm/C
Short Circuit Output Current Short Circuit Output Current Short Circuit Output Current Input Voltage at PROGRAM pin Input Current at PROGRAM pin
0.8 0.8 0.8
1.3 1.3 1.3 2
1.8 1.8 1.8
A A A V
5 2 0.8 -100 150 15 2
A V V A C C
Voltage High Level at DISABLE pin (Outputs 2 and 3 active) Voltage Low Level at DISABLE pin (Outputs 2 and 3 disabled) Bias Current at DISABLE pin 0 V < VDISABLE < 5.3 V
Junction Temperature for Thermal Shutdown Thermal Shutdown Temperature Hysteresis
1. This reset signal is activated by a decrease of VOUT1 voltage which can be due to an overload of pin OUT1 or by a lack of Input Voltage (VIN1).
5/11
CIRCUIT DESCRIPTION
STV8163
3
CIRCUIT DESCRIPTION
The STV8163 is a triple-voltage regulator with Reset and Disable functions. The three regulation parts are supplied from a single voltage reference circuit trimmed by zener zapping during EWS testing. Since the supply voltage of this voltage reference is connected to pin INPUT1 (VIN1), the second and third regulators will not work if pin INPUT1 is not supplied. The output stages are designed using a Darlington configuration with a typical dropout voltage of 1.0 V. The adjustable voltage of pin OUTPUT3 is defined by output bridge resistors (R1 and R2). The values of these resistors are calculated to obtain, with the targeted value for pin OUTPUT3, the VPROG voltage (2.0 V) on the median point connected to pin PROGRAM.
IMPORTANT:
In all applications, all three inputs must be polarized. If Outputs 2 or 3 are not used, the corresponding inputs must be connected to Input 1.
The Disable circuit will switch off pins OUTPUT2 and OUTPUT3 if a voltage less than 0.8 V is applied to pin DISABLE. The Reset circuit checks the voltage at pin OUTPUT1. If this voltage drops below VOUT1-0.25 V (3.05 V Typ.), the "a" comparator (Figure 2) rapidly discharges the external capacitor (Ce) and the reset output immediately switches to low. When the voltage at pin OUTPUT1 exceeds VOUT1-0.175 V (3.125 V Typ.), the VCe voltage increases linearly to the reference voltage (VREF = 2.5 V) corresponding to a Reset Pulse Delay (tRD) as shown in Figure 3.
C e x 2.5V t R D = ------------------------10A
Afterwards, the reset output returns to high. To avoid glitches in the reset output, the second comparator "b" has a large hysteresis (1.9 V).
3.1
Currents versus Maximum Power Limitation
The currents provided by the three outputs can reach 1.6 A. However, the power dissipation in the STV8163 must be established so as not to activate the automatic thermal shutdown (TJ = 150 C). It is recommended not to have all three currents at their maximum value simultaneously. For example, if TAMB(MAX.) = 70 C, the maximum power dissipation in the STV8163 will be (with RthJA = 12 C/W):
140C - 70 C ---------------------------------- = 5.8W 12C W
This means that the following conditions apply to input voltages and currents: (VIN1 - 3.3 V) x IIO1 + (VIN2 - 5 V) x IIO2 + (VIN3 - VOUT3) x IIO3 < 5.8 W
6/11
STV8163
CIRCUIT DESCRIPTION
Figure 2: Reset Diagram
10 A VREF OUTPUT1 3 REG VREF = 2.5 V b 1 RESET
+a 2 Ce VREF
+
0.6V
Figure 3: Internal Reset Voltage
VOUT1 K VO1RST VRTH
RESET
K = Actual Value of VOUT1
Power On
tRD
tRD
Power Off
7/11
APPLICATION DIAGRAM
STV8163
4
APPLICATION DIAGRAM
Figure 4: STV8163 Typical Application
C1 to C6 = 10 F
Ce
1
RESET
0.1 F
R1 + R2 V O3 = V PROG x --------------------R1
2 DELAY CAPACITOR OUTPUT1 3 OUTPUT2 5 OUTPUT3 8
VPROG = 2.0 V
VOUT1 VOUT2 VOUT3 C4 C5 C6
VIN1 VIN2 VIN3 C1 C2 C3
4 INPUT1 7 INPUT2 9 INPUT3
GROUND DISABLE PROGRAM 11 6 10
R2 R1
8/11
STV8163
PACKAGE MECHANICAL DATA
5
PACKAGE MECHANICAL DATA
Figure 5: 11-Pin Plastic Clipwatt Package
C A H1
H3
L
E F M1 M G1 G
D
mm Dim. Min.
A B C D E F G H1 H2 H3 L L1 L2 L3 M M1 N 10.70 19.85 17.90 14.45 11.00 5.50 2.54 2.54 Number of Pins 11 11.20 0.421 0.49 0.80 1.57 1.70 12.00 18.60 0.781 0.15 1.50 0.55 0.91 1.83 0.019 0.031 0.062
L1
B
L2
Inches Max.
3.20 1.05 0.006 0.059 0.002 0.036 0.067 0.480 0.732 0.700 0.569 0.433 0.217 0.100 0.100 0.441 0.072
Typ.
Min.
Typ.
Max.
0.126 0.041
9/11
REVISION HISTORY
STV8163
6
REVISION HISTORY
Main Changes
New Edition New edition. Pin name changed from DISABLE to DISABLE. Reset Threshold values updated. Update of Quiescent Current value in Chapter 2.3: Electrical Characteristics on page 4. Update of reset voltage characteristics. Update of IQ, IDIS and VO1RST values in Chapter 2.3: Electrical Characteristics on page 4. Document level changes from Preliminary Data to Datasheet. Modification of Short Circuit Output Current values in Section 2.3: Electrical Characteristics. Output voltages and current further specified on Title page
Revision
1.2 1.3
Date
June 2000 8 January 2002
1.4
31 January 2002
1.5 1.6
21 May 2002 12 June 2002
10/11
STV8163
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics. The ST logo is a registered trademark of STMicroelectronics (c) 2003 STMicroelectronics - All Rights Reserved STMicroelectronics GROUP OF COMPANIES Australia - Brazil - Canada - China - Finland - France - Germany - Hong Kong - India - Israel - Italy - Japan Malaysia - Malta - Morocco - Singapore - Spain - Sweden - Switzerland - United Kingdom - U.S.A. www.st.com
11/11


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