VIPER53EDIP-E STMicroelectronics, VIPER53EDIP-E Datasheet - Page 15

IC OFFLINE SWIT PWM CM OTP 8DIP

VIPER53EDIP-E

Manufacturer Part Number
VIPER53EDIP-E
Description
IC OFFLINE SWIT PWM CM OTP 8DIP
Manufacturer
STMicroelectronics
Series
VIPER™r
Datasheet

Specifications of VIPER53EDIP-E

Output Isolation
Isolated
Frequency Range
93 ~ 300kHz
Voltage - Input
8.4 ~ 19 V
Voltage - Output
620V
Power (watts)
30W
Operating Temperature
25°C ~ 125°C
Package / Case
8-DIP (0.300", 7.62mm)
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 VIPER53E497-5865 - EVAL BOARD 24W POS OUT VIPER53E497-4933 - BOARD PWR SUPPLY 24W OUTPUT VIPE
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-6172-5

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
VIPER53EDIP-E
Quantity:
2 200
VIPer53EDIP - E / VIPer53ESP - E
9
Short-Circuit and Overload Protection
A V
goes above this level, the capacitor connected on the TOVL pin begins to charge. When
reaching typically V
switching. This state is latched because of to the regulation loop which maintains the COMP
pin voltage above the V
energy from the auxiliary winding, its voltage drops down until it reaches V
device is reset, recharging the V
below the VCOMPovl threshold for any reason during the VDD drop, the device resumes
switching immediately.
The device enters an endless restart sequence if the overload or short circuit condition is
maintained. The restart duty cycle D
to restart, thus delivering its full power capability to the output. In order to keep the whole
converter in a safe state during this event, D
compromising the real start-up of the converter. A typical value of about 10% is generally
sufficient. For this purpose, both V
following conditions:
Refer to the previous start-up section for the definition of tss, and C
checked against the limit given in this section. The maximum value of the two calculus will
be adopted.
All this behavior can be observed on
the drain current Id for V
the drain current to take into account for design purposes. Since I
maximum value for which the overload protection is not triggered, it defines the power
capability of the power supply.
COMPovl
threshold of about 4.4V has been implemented on the COMP pin. When V
OVLth
COMPovl
COMP
(4V), the internal MOSFET driver is disabled and the device stops
C
VDD
= V
threshold. Since the V
DD
8 10
COMPovl
DD
C
capacitor for a new restart cycle. Note: If VCOMP drops
DocRev1
RST
Figure 2 on page
OVL
and TOVL capacitors can be used to satisfy the
4
is defined as the time ratio for which the device tries
------------- - 1
D
12.5 10
is shown. The corresponding parameter I
RST
1
RST
must be kept as low as possible, without
Short-Circuit and Overload Protection
6
C
------------------------------------
tss
DD
7. In
OVL
V
DDhyst
pin does not receive any more
Figure 7 on page 20
I
D Dch2
Dmax
VDD
represents the
must also be
DD
off and the
the value of
Dmax
COMP
15/31
is

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