VIPER53SP13TR STMicroelectronics, VIPER53SP13TR Datasheet

no-image

VIPER53SP13TR

Manufacturer Part Number
VIPER53SP13TR
Description
IC OFFLINE SWIT PWM CM POWERSO10
Manufacturer
STMicroelectronics
Series
VIPER™r
Datasheet

Specifications of VIPER53SP13TR

Output Isolation
Isolated
Frequency Range
93 ~ 300kHz
Voltage - Input
8.4 ~ 19 V
Voltage - Output
620V
Power (watts)
40W
Operating Temperature
25°C ~ 125°C
Package / Case
PowerSO-10 Exposed Bottom Pad
For Use With
497-8435 - BOARD EVAL FOR VIPER53 28W497-6458 - BOARD EVAL BASED ON VIPER53-E497-6262 - BOARD REF SGL VIPER53 90-264VAC497-5866 - EVAL BOARD 24W NEG OUT VIPER53E497-4933 - BOARD PWR SUPPLY 24W OUTPUT VIPE
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
VIPER53SP13TR
Manufacturer:
TI/NSC
Quantity:
230
Part Number:
VIPER53SP13TR
Manufacturer:
ST
0
TYPICAL OUTPUT POWER CAPABILITY
Note:
FEATURES
n
n
n
n
n
n
n
n
n
BLOCK DIAGRAM
June 2004
DIP-8
PowerSO-10
SWITCHING FREQUENCY UP TO 300 kHz
CURRENT LIMITATION
CURRENT MODE CONTROL WITH
ADJUSTABLE LIMITATION
SOFT START AND SHUT DOWN CONTROL
AUTOMATIC BURST MODE IN STAND-BY
CONDITION (“BLUE ANGEL” COMPLIANT)
UNDERVOLTAGE LOCKOUT WITH
HYSTERESIS
HIGH VOLTAGE STARTUP CURRENT
SOURCE
OVERTEMPERATURE PROTECTION
OVERLOAD AND SHORT-CIRCUIT CONTROL
TYPE
Above power capabilities are given under adequate
thermal conditions
®
VDD
(195 - 265 Vac)
11.5V
8.4/
15V
18V
European
OVERVOLTAGE
COMPARATOR
COMPARATOR
50W
65W
AMPLIFIER
ERROR
UVLO
US / Wide range
ON/OFF
4.35V
0.5V
(85 - 265 Vac)
OVERTEMP.
DETECTOR
COMPARATOR
COMPARATOR
OVERLOAD
STANDBY
30W
40W
LATCH
PWM
OSCILLATOR
R1
R2
R3
OSC
FF
R4
S
R5
Q
DESCRIPTION
The VIPer53 combines in the same package an
enhanced current mode PWM controller with a
high voltage MDMesh Power Mosfet. Typical
applications cover off line power supplies with a
secondary power capability ranging up to 30W in
wide range input voltage or 50W in single
European voltage range and DIP-8 package, with
the following benefits:
– Overload
– Efficient standby mode by enhanced pulse
– Primary regulation or secondary loop failure
OFF LINE PRIMARY SWITCH
feedback monitoring and delayed device reset.
skipping.
protection through high gain error amplifier.
4.5V
BLANKING
150/400ns
4V
DIP-8
BLANKING TIME
TOVL
8V
SELECTION
COMPARATOR
and
125k
PWM
short circuit
1V
0.5V
VIPer53DIP
COMP
VIPer53SP
PowerSO-10™
10
AMPLIFIER
CURRENT
H
COMP
SOURCE
DRAIN
controlled
1
1/24
by

Related parts for VIPER53SP13TR

VIPER53SP13TR Summary of contents

Page 1

TYPICAL OUTPUT POWER CAPABILITY European TYPE (195 - 265 Vac) DIP-8 50W ™ 65W PowerSO-10 Note: Above power capabilities are given under adequate thermal conditions FEATURES n SWITCHING FREQUENCY UP TO 300 kHz n CURRENT LIMITATION n CURRENT MODE ...

Page 2

... DIP-8 PowerSO-10™ 2/24 Function capacitor VDD I OSC OSC 15V TOVL COMP SOURCE DD I TOVL V OSC I COMP V TOVL V COMP 8 TOVL DRAIN NC 7 VDD VDD TOVL 5 DRAIN TUBE VIPer53DIP VIPer53SP I D DRAIN SOURCE OSC 5 6 COMP PowerSO-10™ TAPE and REEL - VIPer53SP13TR ...

Page 3

ABSOLUTE MAXIMUM RATINGS Symbol V Continuous Drain Source Voltage ( Continuous Drain Current D V Supply Voltage DD V OSC Input Voltage Range OSC I COMP COMP and TOVL Input Current Range I TOVL Electrostatic Discharge: V Machine ...

Page 4

VIPer53DIP / VIPer53SP ELECTRICAL CHARACTERISTICS (T POWER SECTION Symbol Parameter BV Drain-Source Voltage DSS I Off State Drain Current DSS Static Drain-Source R DS(on) On State Resistance t Fall Time fv t Rise Time rv C Drain Capacitance oss Effective ...

Page 5

ELECTRICAL CHARACTERISTICS (T SUPPLY SECTION Symbol Parameter Drain Voltage Starting V DSstart Threshold I Startup Charging Current DDch1 I Startup Charging Current DDch2 Startup Charging Current I DDchoff in Thermal Shutdown Operating Supply Current I DD0 Not Switching Operating Supply ...

Page 6

VIPer53DIP / VIPer53SP ELECTRICAL CHARACTERISTICS (T PWM COMPARATOR SECTION Symbol Parameter COMP COMP DPEAK V V Offset COMPos COMP Peak Drain Current I Dlim Limitation I Drain Current Capability Dmax Current Sense Delay ...

Page 7

Figure 1: Rise and Fall Time 90 10% Figure 2: Start-up VDD Current DD0 V DDhyst V DDoff I DDch2 DDch1 Figure 3: Output Characteristics I COMP I ...

Page 8

VIPer53DIP / VIPer53SP Figure 5: Thermal Shutdown HYST DDon Automatic V COMP Figure 6: Shut Down Action V OSC V OSChi V OSClo V COMP V COMPoff I D 8/24 ...

Page 9

Figure 9: Oscillator Schematic and Settings Vcc VDD Rt OSC 320 Ct SOURCE Frequency (kHz) 300 100 10 1 The switching frequency settings shown on the graphic here below is valid within the following boundaries PWM section ...

Page 10

VIPer53DIP / VIPer53SP Figure 10: Error Amplifier Transfer Function Vin VDD OSC 15V TOVL COMP 2.5 V Gain (dB -20 -40 -60 1 Figure 11: Blanking Time COMPbl 10/24 ...

Page 11

Figure 12: Typical Frequency Variation vs. Junction Temperature Normalised Frequency 1.04 1.02 1 0.98 0.96 -20 Figure 13: Typical Current Limitation vs. Junction Temperature Normalised IDlim 1.04 1.02 1 0.98 0.96 - Temperature (° ...

Page 12

VIPer53DIP / VIPer53SP Figure 14: Off Line Power Supply With Auxiliary Supply Feedback OSC C4 C5 PRIMARY REGULATION CONFIGURATION EXAMPLE The schematic on figure 14 delivers a fixed output voltage by using the ...

Page 13

Figure 15: Off Line Power Supply With Optocoupler Feedback VIPer73 R3 OSC 15V C4 C5 SECONDARY FEEDBACK CONFIGURATION EXAMPLE When a more accurate output voltage is needed, the definitive way is to monitor ...

Page 14

VIPer53DIP / VIPer53SP provides a soft start-up of the converter. The rising speed of the output voltage can be set through the value of C7. C4 and C6 values must be adjusted accordingly in order to ensure a correct start-up. ...

Page 15

Figure 16: Standby Mode Implementation ton 3 600ns Minimum turn on 2 350ns V V COMPsd COMPbl V COMPoff RST 3 P STBY F SWstby actually an equivalent number of switching pulses per second, rather than a ...

Page 16

VIPer53DIP / VIPer53SP charging current is reduced down about 0.6 mA. This lower current leads to a slope change on the V rise. The device starts DD switching for a V equal auxiliary winding ...

Page 17

This configuration is illustrated in figure 18 Figure 19: Typical Transfer Functions Gain (dB -10 1 Phase (°) 0 -10 -20 -30 -40 -50 ...

Page 18

VIPer53DIP / VIPer53SP Figure 20: Complete Converter Transfer Function --------------------------------------- - 3.2 ------------------- - --------------------------------------- - ...

Page 19

SPECIAL RECOMMENDATIONS As stated in the error amplifier section, a capacitor (minimum value: 8 nF) should always be connected to the COMP pin to insure a correct stability of the internal error amplifier. This is represented on ...

Page 20

VIPer53DIP / VIPer53SP Plastic DIP-8 MECHANICAL DATA DIM Package Weight 20/24 mm. MIN. TYP 0.38 2.92 3.30 0.36 0.46 1.14 1.52 0.20 0.25 9.02 9.27 7.62 7.87 ...

Page 21

PowerSO-10™ MECHANICAL DATA DIM. MIN. A 3.35 A (*) 3.4 A1 0.00 B 0.40 B (*) 0.37 C 0.35 C (*) 0.23 D 9.40 D1 7.40 E 9.30 E2 7.20 E2 (*) 7.30 E4 5.90 E4 (*) 5. ...

Page 22

VIPer53DIP / VIPer53SP SUGGESTED PAD LAYOUT PowerSO-10™ 14.6 - 14 TAPE AND REEL SHIPMENT (suffix “13TR”) TAPE DIMENSIONS According to Electronic Industries Association (EIA) Standard ...

Page 23

DIP-8 TUBE SHIPMENT (no suffix Base Q.ty Bulk Q.ty Tube length (± 0. (± 0.1) All dimensions are in mm. VIPer53DIP / VIPer53SP 20 1000 532 8.4 11.2 0.8 23/24 1 ...

Page 24

... 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. All other names are the property of their respective owners 2004 STMicroelectronics - Printed in ITALY- All Rights Reserved ...

Related keywords