VIPER20A STMicroelectronics, VIPER20A Datasheet - Page 3

Switching Converters, Regulators & Controllers 700V 0.5A SMPS

VIPER20A

Manufacturer Part Number
VIPER20A
Description
Switching Converters, Regulators & Controllers 700V 0.5A SMPS
Manufacturer
STMicroelectronics
Datasheet

Specifications of VIPER20A

Mounting Style
Through Hole
Package / Case
Pentawatt HV
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

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VIPer20/SP/DIP - VIPer20A/ASP/ADIP
ORDERING NUMBERS
PINS FUNCTIONAL DESCRIPTION
DRAIN PIN:
Integrated Power MOSFET drain pin. It provides
internal bias current during start-up via an
integrated high voltage current source which is
switched off during normal operation. The device
is able to handle an unclamped current during its
normal operation, assuring self protection against
voltage surges, PCB stray inductance, and
allowing a snubberless operation for low output
power.
SOURCE Pin:
Power MOSFET source pin. Primary side circuit
common ground connection.
VDD Pin:
This pin provides two functions:
3/25
1
- It corresponds to the low voltage supply of the
- This pin is also connected to the error amplifier,
in order to allow primary as well as secondary
regulation configurations. In case of primary
regulation, an internal 13V trimmed reference
voltage is used to maintain V
secondary regulation, a voltage between 8.5V
and 12.5V will be put on V
design, in order to stick the output of the
transconductance amplifier to the high state.
The COMP pin behaves as a constant current
control part of the circuit. If V
the start-up current source is activated and the
output power MOSFET is switched off until the
V
the internal current consumption is reduced,
the V
and the COMP pin is shorted to ground. After
that, the current source is shut down, and the
device tries to start up by switching again.
DD
PENTAWATT HV
voltage reaches 11V. During this phase,
DD
VIPer20A
VIPer20
pin sources a current of about 2mA
PENTAWATT HV (022Y)
DD
DD
VIPer20A (022Y)
pin by transformer
VIPer20 (022Y)
DD
goes below 8V,
at 13V. For
COMP PIN:
This pin provides two functions:
OSC PIN:
An R
define the switching frequency. Note that despite
the connection of R
frequency change occurs for V
to 15V. It also provides a synchronization
capability, when connected to an external
frequency source.
- It is the output of the error transconductance
- When the COMP voltage goes below 0.5V, the
source, and can easily be connected to the
output of an optocoupler. Note that any
overvoltage due to regulation loop failure is still
detected by the error amplifier through the V
voltage, which cannot overpass 13V. The
output voltage will be somewhat higher than the
nominal one, but still under control.
amplifier, and allows for the connection of a
compensation network to provide the desired
transfer function of the regulation loop. Its
bandwidth can easily be adjusted to the
needed value with usual components value. As
stated
configurations are also implemented through
the COMP pin.
shut-down of the circuit occurs, with a zero
duty cycle for the power MOSFET. This feature
can be used to switch off the converter, and is
automatically activated by the regulation loop
(whatever is the configuration) to provide a
burst mode operation in case of negligible
output power or open load condition.
PowerSO-10™
t
VIPer20ASP
-C
VIPer20SP
t
network must be connected on that pin to
above,
t
secondary
to V
DD
DD
VIPer20ADIP
VIPer20DIP
, no significant
varying from 8V
DIP-8
regulation
DD

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