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VIPER06HN - STMICROELECTRONICS VIPER06LN

VIPER06HN

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STMicroelectronics

AC/DC CONVERTER, VIPERPLUS SERIES, BUCK, FLYBACK, 85V TO 265V AC IN, 4W, DIP-7

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VIPER06HN - STMICROELECTRONICS VIPER06LN

VIPER06HN

Active
STMicroelectronics

AC/DC CONVERTER, VIPERPLUS SERIES, BUCK, FLYBACK, 85V TO 265V AC IN, 4W, DIP-7

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Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationVIPER06HNVIPER06 Series
--
Duty Cycle70 %70 %
Fault ProtectionCurrent Limiting, Open Loop, Over TemperatureCurrent Limiting, Open Loop, Over Temperature
Frequency - Switching115 kHz30 - 115 kHz
Internal Switch(s)TrueTrue
Mounting TypeThrough HoleSurface Mount, Through Hole
Operating Temperature [Max]150 °C150 °C
Operating Temperature [Min]-40 °C-40 °C
Output IsolationEitherEither
Package / Case7.62 mm7.62 mm
Package / Case0.3 in, 7 Leads0.3 - 7 in
Package / Case8-DIP10-SOP, 8-DIP
Package / Case-0.154 in
Package / Case-3.9 mm
Power (Watts)8 W8 W
Supplier Device Package7-DIP10-SSOP, 7-DIP
Voltage - Breakdown800 V800 V
Voltage - Supply (Vcc/Vdd) [Max]23.5 V23.5 V
Voltage - Supply (Vcc/Vdd) [Min]11.5 V11.5 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTube 1$ 1.53
10$ 0.97
25$ 0.82
100$ 0.65
250$ 0.57
500$ 0.51
1000$ 0.47
2500$ 0.43
5000$ 0.40
NewarkEach 1$ 0.93
10$ 0.75
100$ 0.73
500$ 0.69
1000$ 0.67
4000$ 0.63
10000$ 0.63

VIPER06 Series

VIPerPlus family: Energy saving high voltage converter for direct feedback

PartVoltage - BreakdownPower (Watts)Operating Temperature [Max]Operating Temperature [Min]Fault ProtectionDuty CyclePackage / Case [x]Package / Case [y]Package / CaseMounting TypeSupplier Device PackageOutput IsolationVoltage - Supply (Vcc/Vdd) [Max]Voltage - Supply (Vcc/Vdd) [Min]Internal Switch(s)Frequency - SwitchingPackage / CasePackage / Case
STMicroelectronics
VIPER06XN
STMicroelectronics
VIPER06LS
800 V
8 W
150 °C
-40 °C
Current Limiting, Open Loop, Over Temperature
70 %
0.154 in
3.9 mm
10-SOP
Surface Mount
10-SSOP
Either
23.5 V
11.5 V
60 kHz
STMicroelectronics
VIPER06XSTR
800 V
8 W
150 °C
-40 °C
Current Limiting, Open Loop, Over Temperature
70 %
0.154 in
3.9 mm
10-SOP
Surface Mount
10-SSOP
Either
23.5 V
11.5 V
30 kHz
STMicroelectronics
VIPER06LS
STMicroelectronics
VIPER06XS
STMicroelectronics
VIPER06LS
STMicroelectronics
VIPER06XS
STMicroelectronics
VIPER06XSTR
STMicroelectronics
VIPER06LN
STMicroelectronics
VIPER06HN
STMicroelectronics
VIPER06LSTR
STMicroelectronics
VIPER06HSTR
STMicroelectronics
VIPER06LS
STMicroelectronics
VIPER06LN
STMicroelectronics
VIPER06HSTR
STMicroelectronics
VIPER06LN
STMicroelectronics
VIPER06XS
STMicroelectronics
VIPER06HS
STMicroelectronics
VIPER06XSTR
STMicroelectronics
VIPER06HN
STMicroelectronics
VIPER06HSTR
800 V
8 W
150 °C
-40 °C
Current Limiting, Open Loop, Over Temperature
70 %
0.154 in
3.9 mm
10-SOP
Surface Mount
10-SSOP
Either
23.5 V
11.5 V
115 kHz
STMicroelectronics
VIPER06HN
STMicroelectronics
VIPER06HN
800 V
8 W
150 °C
-40 °C
Current Limiting, Open Loop, Over Temperature
70 %
8-DIP
Through Hole
7-DIP
Either
23.5 V
11.5 V
115 kHz
7.62 mm
0.3 in, 7 Leads
STMicroelectronics
VIPER06LSTR
STMicroelectronics
VIPER06LSTR
800 V
8 W
150 °C
-40 °C
Current Limiting, Open Loop, Over Temperature
70 %
0.154 in
3.9 mm
10-SOP
Surface Mount
10-SSOP
Either
23.5 V
11.5 V
60 kHz
STMicroelectronics
VIPER06HS
STMicroelectronics
VIPER06HSTR
STMicroelectronics
VIPER06LSTR
STMicroelectronics
VIPER06XN
STMicroelectronics
VIPER06XN
STMicroelectronics
VIPER06XSTR

Description

General part information

VIPER06 Series

The VIPER06 is an offline converter with an 800 V avalanche rugged power section, a PWM controller, a user-defined overcurrent limit, open-loop failure protection, hysteretic thermal protection, soft startup and safe auto-restart after any fault condition. The device is able to power itself directly from the rectified mains, eliminating the need for an auxiliary bias winding. Advanced frequency jittering reduces EMI filter cost. Burst mode operation and the device’s very low power consumption both help to meet the standards set by energy-saving regulations.