STSR2P STMicroelectronics, STSR2P Datasheet

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STSR2P

Manufacturer Part Number
STSR2P
Description
FORWARD SYNCHRONOUS RECTIFIERS SMART DRIVERS
Manufacturer
STMicroelectronics
Datasheet

Specifications of STSR2P

Supply Voltage Range
4.5V TO 5.5V
Typical Peak Output Current
SOURCE -2A, SINK 3.5A
Operating Frequency
20 TO 750 KHZ

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DESCRIPTION
STSR2P
complementary high current outputs to drive
Power Mosfets. The IC is dedicated to properly
drive
medium power, low output voltage, high efficiency
Forward Converters. From a synchronizing clock
input, STSR2P generates two driving signals with
the
complementary pulses. The IC operation prevents
secondary
providing proper timing at the outputs turn-off
transition. This smart function operates through a
fast cycle-after-cycle control logic mechanism
based on an internal high frequency oscillator,
synchronized by the clock signal. A fixed
SCHEMATIC DIAGRAM
September 2003
SUPPLY VOLTAGE RANGE: 4.5V TO 5.5V
TYPICAL PEAK OUTPUT CURRENT:
SOURCE -2A, SINK 3.5A
OPERATING FREQUENCY: 20 TO 750 KHZ
SMART TURN-OFF ANTICIPATION TIMING
OPERATION INDEPENDENT FROM THE
FORWARD MAGNETIC RESET TECHNIQUE
POSSIBILITY TO OPERATE IN
DISCONTINUOUS MODE
self-setting
secondary
Smart
side
Synchronous
of
Driver
shoot-through
INHIBIT
dead
CK
IC
4
5
time
provides
FREQUENCY
OSCILLATOR
DETECTOR
Rectifiers
PEAK
HIGH
+
25mV
+
-
conditions
between
SGLGND
two
in
Vcc
UVLO
BIAS
6
2
CONTROL
DIGITAL
RECTIFIERS SMART DRIVER
+
anticipation in turning-off the OUT
respect to the clock signal transition is provided,
while the anticipation in turning off the OUT
can be set through external components. The
adopted transitions revelation mechanism makes
circuit operation independent by the forward
magnetic reset technique used, avoiding most of
the common problems inherent in self-driven
synchronous rectifiers. A special Inhibit function
allows the shut-off of OUT
makes discontinuous conduction mode possible
and prevents the freewheeling mosfet from
sinking current from the output.
STSR2P automatically turns off the outputs when
duty-cycle is lower than 13%, while STSR2PM
works even at very low duty-cycle values.
FORWARD SYNCHRONOUS
PWRGND
ANTICIPATION
8
BUFFERS
OUTPUT
SET
5.7V
+
3
1
7
OUTGate1
SETANT2
OUTGate2
SO-8
STSR2PM
GATE2
STSR2P/
. This feature
GATE1
GATE2
with
1/12

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STSR2P Summary of contents

Page 1

... OUT makes discontinuous conduction mode possible conditions and prevents the freewheeling mosfet from sinking current from the output. STSR2P automatically turns off the outputs when duty-cycle is lower than 13%, while STSR2PM works even at very low duty-cycle values. Vcc 2 + BIAS ...

Page 2

... CONNECTION DIAGRAM (top view) 2/12 Parameter =105°C without heatsink A Pins 1, Pin 3 Parameter SO-8 STSR2PCD STSR2PMCD Value Unit - 270 0.9 KV -55 to +150 °C -40 to +125 °C SO-8 Unit 40 °C/W 160 °C/W SO-8 (T&R) STSR2PCD-TR STSR2PMCD-TR ...

Page 3

... Gate Drive signal for Freewheeling MOSFET. Anticipation [t OUT is provided when the clock input goes to high level. GATE2 Reference for power signals, this pin carries the full peak currents for the two outputs. STSR2P/STSR2PM ) in turning off ANT1 ) in turning off the OUT ANT1 >V ...

Page 4

... 25° 200mV INHIBIT V = -200mV INHIBIT V = 200mVNo Load INHIBIT T = 25° 25°C for STSR2P 25°C for STSR2P J STSR2PM is measured between 90% and 10% on the initial voltage F =-200mV, T =-40 to 125°C, unless J Min. Typ. Max. Unit 3.8 4 3.5 3.6 5.5 5 ...

Page 5

... D2 could be necessary to protect INHIBIT pin from voltages higher than could be necessary to protect CK pin from voltages higher than V 8) SGLGND layout trace must not include OUT 9) A capacitor in parallel with R4 could be necessary to eliminate turn off voltage spike. voltage current paths. GATE1,2 STSR2P/STSR2PM 5/12 ...

Page 6

... STSR2P/STSR2PM EXAMPLE OF COMPONENTS SELECTION FOR A FORWARD CONVERTER Forward Specification: V =36-72V IN V =3.3V OUT n=Np/Ns=4.5 R and R are calculated assuring a minimum voltage of 2. pin. At 36V input, the voltage on the 3 4 secondary winding is 36/4.5=8V. Choosing --------------------------------------------------------------- - – 2.8 R =1k is chosen. At 72V input the current at CK pin is calculated as: ...

Page 7

... INHIBIT OPERATION OF OUT NOTE: V =+200mV INHIBIT GATE2 STSR2P/STSR2PM 7/12 ...

Page 8

... STSR2P/STSR2PM TYPICAL PERFORMANCE CHARACTERISTICS (unless otherwise specified T Figure 1 : Zener Characteristics Figure 2 : Rise and Fall Time vs Load Capacitor Figure 3 : OUT vs Characteristics GATE1,2 8/12 = 25°C j Figure 4 : Sink-Source ON Resistance vs Temperature Figure 5 : Clock Threshold Voltage vs Temperature Figure 6 : INHIBIT Threshold Voltage vs Temperature ...

Page 9

... Figure 7 : Supply Current vs Load Capacitor (each output) Figure 8 : Supply Current vs Clock Frequency Figure Temperature ON(GATE2) STSR2P/STSR2PM Figure 10 : Duty Cycle Shut Down vs Temperature Figure 11 : Duty Cycle Turn ON After Shut Down vs Temperature Figure 12 : Clock Leakage Current vs Clock Voltage 9/12 ...

Page 10

... STSR2P/STSR2PM DIM. MIN. A 1.35 A1 0.10 A2 1.10 B 0.33 C 0.19 D 4. 5.80 h 0.25 L 0.40 k ddd 10/12 SO-8 MECHANICAL DATA mm. TYP MAX. 1.75 0.25 1.65 0.51 0.25 5.00 4.00 1.27 6.20 0.50 1.27 ˚ (max.) 8 0.1 inch MIN. TYP. MAX. 0.053 0.069 0.04 0.010 0.043 0.065 0.013 0.020 0.007 0.010 0.189 0.197 0.150 0.157 0.050 0.228 0.244 0.010 0.020 0.016 0.050 0016023/C ...

Page 11

... Tape & Reel SO-8 MECHANICAL DATA mm. DIM. MIN 12 8.1 Bo 5.5 Ko 2.1 Po 3.9 P 7.9 TYP MAX. MIN. 330 13.2 0.504 0.795 2.362 22.4 8.5 0.319 5.9 0.216 2.3 0.082 4.1 0.153 8.1 0.311 STSR2P/STSR2PM inch TYP. MAX. 12.992 0.519 0.882 0.335 0.232 0.090 0.161 0.319 11/12 ...

Page 12

... STSR2P/STSR2PM 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 ...

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