EVLVIP27-7WLED STMicroelectronics, EVLVIP27-7WLED Datasheet - Page 15

EVAL BOARD FOR VIPER27

EVLVIP27-7WLED

Manufacturer Part Number
EVLVIP27-7WLED
Description
EVAL BOARD FOR VIPER27
Manufacturer
STMicroelectronics
Series
VIPer™ plusr
Datasheet

Specifications of EVLVIP27-7WLED

Features
3.5 ~ 7 W
Utilized Ic / Part
VIPer27
Maximum Operating Temperature
+ 150 C
Output Power
3.5 W to 7 W
Product
Power Management Development Tools
Supply Current
25 mA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Output
-
Voltage - Input
-
Current - Output / Channel
-
Outputs And Type
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With/related Products
VIPer27
Other names
497-10607
VIPER27
7.3
Power-up and soft-start up
If the input voltage rises up till the device start threshold, V
begins to grow due to the I
high voltage start up circuit. If the V
page 6
See
The IC is powered by the energy stored in the capacitor on the VDD pin, C
the self-supply circuit (typically an auxiliary winding of the transformer and a steering diode)
develops a voltage high enough to sustain the operation.
C
value higher than V
switching operation before the controller receives any energy from the auxiliary winding.
The following formula can be used for the V
Equation 1
The t
estimated by applicator according to the output stage configurations (transformer, output
capacitances, etc.).
During the converter start up time, the drain current limitation is progressively increased to
the maximum value. In this way the stress on the secondary diode is considerably reduced.
It also helps to prevent transformer saturation. The soft-start time lasts 8.5 ms and the
feature is implemented for every attempt of start up converter or after a fault.
Figure 22. I
VDD
Figure 23 on page 16
SSaux
capacitor must be sized enough to avoid fast discharge and keep the needed voltage
) the power MOSFET starts switching and the HV current generator is turned OFF.
is the time needed for the steady state of the auxiliary voltage. This time is
I
DDch
DD
V
(-3 mA)
DRAIN
V
V
V
V
V
current during start-up and burst mode
V
FBbm
DDon
DDoff
V
FBolp
FBlin
I
I
I
DD
DD1
DD0
DD
START- UP
FB
DDoff
threshold. In fact, a too low capacitance value could terminate the
.
DDch
NORMAL MODE
Doc ID 15133 Rev 5
current (see
C
DD
VDD
voltage reaches V
=
----------------------------------------
V
I
DD
DDch
DDon
Table 7 on page 6
capacitor calculation:
×
BURST MODE
t
V
SSaux
DDoff
DDon
DRAIN_START
threshold (see
) coming from the internal
Operation descriptions
, the V
NORMAL MODE
VDD
t
t
t
t
V
FBbmhys
Table 7 on
DD
, until when
voltage
15/31

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