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VIPER22ADIP

STMicroelectronics
Part Number VIPER22ADIP
Manufacturer STMicroelectronics
Description LOW POWER OFF LINE SMPS PRIMARY SWITCHER
Published Apr 16, 2005
Detailed Description ® VIPer22ADIP VIPer22AS LOW POWER OFF LINE SMPS PRIMARY SWITCHER TYPICAL POWER CAPABILITY Mains type European (195 - 2...
Datasheet PDF File VIPER22ADIP PDF File

VIPER22ADIP
VIPER22ADIP


Overview
® VIPer22ADIP VIPer22AS LOW POWER OFF LINE SMPS PRIMARY SWITCHER TYPICAL POWER CAPABILITY Mains type European (195 - 265 Vac) US / Wide range (85 - 265 Vac) SO-8 12 W 7W DIP-8 20 W 12 W SO-8 DIP-8 ORDER CODES n n n n FIXED 60 KHZ SWITCHING FREQUENCY 9V TO 38V WIDE RANGE VDD VOLTAGE CURRENT MODE CONTROL AUXILIARY UNDERVOLTAGE LOCKOUT WITH HYSTERESIS SOURCE PACKAGE SO-8 DIP-8 TUBE T&R VIPer22AS VIPer22AS13TR VIPer22ADIP - n HIGH VOLTAGE START UP CURRENT n OVERTEMPERATURE, OVERCURRENT AND OVERVOLTAGE PROTECTION WITH AUTORESTART DESCRIPTION The VIPer22A combines a dedicated current mode PWM controller with a high voltage Power BLOCK DIAGRAM MOSFET on the same silicon chip.
Typical applications cover off line power supplies for battery charger adapters, standby power supplies for TV or monitors, auxiliary supplies for motor control, etc.
The internal control circuit offers the following benefits: – Large input voltage range on the VDD pin accommodates changes in auxiliary supply voltage.
This feature is well adapted to battery charger adapter configurations.
– Automatic burst mode in low load condition.
– Overvoltage protection in hiccup mode.
DRAIN ON/OFF REGULATOR 60kHz OSCILLATOR INTERNAL SUPPLY OVERTEMP.
DETECTOR R1 S FF PWM LATCH Q R2 R3 R4 VDD 8/14.
5V _ BLANKING + OVERVOLTAGE LATCH Q + _ 0.
23 V + 42V _ S R FF 230 Ω 1 kΩ FB SOURCE September 2002 1/15 VIPer22ADIP / VIPer22AS PIN FUNCTION Name Function Power supply of the control circuits.
Also provides a charging current during start up thanks to a high voltage current source connected to the drain.
For this purpose, an hysteresis comparator monitors the VDD voltage and provides two thresholds: - VDDon: Voltage value (typically 14.
5V) at which the device starts switching and turns off the start up current source.
- VDDoff: Voltage value (typically 8V) at which the device stops switching and turns on the start up current source.
Power MOSFET source and circuit ground reference.
Power MOSFE...



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