EVL6566B-40WSTB STMicroelectronics, EVL6566B-40WSTB Datasheet - Page 29

BOARD EVAL FOR L6566B

EVL6566B-40WSTB

Manufacturer Part Number
EVL6566B-40WSTB
Description
BOARD EVAL FOR L6566B
Manufacturer
STMicroelectronics
Datasheet

Specifications of EVL6566B-40WSTB

Main Purpose
AC/DC, Primary Side
Outputs And Type
4, Isolated
Power - Output
40W
Voltage - Output
5V, 12V, 1.8V, 3.3V
Current - Output
2.4A, 1.9A, 1.73A, 500mA
Voltage - Input
90 ~ 264VAC
Regulator Topology
Flyback
Frequency - Switching
62kHz
Board Type
Fully Populated
Utilized Ic / Part
L6566B
Product
Power Management Modules
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-6450

Available stocks

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Part Number
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Quantity
Price
Part Number:
EVL6566B-40WSTB
Manufacturer:
ST
0
L6566B
Figure 17. Left: overcurrent setpoint vs VFF voltage; right: line feedforward function block
V
1.2
0.8
0.6
0.4
0.2
csx
1
0
0
[V]
0.5
Experience shows that this value is typically lower than the real one. Once the maximum
peak primary current, I
the value of Rs can be determined from (5):
Equation 7
The converter is then tested on the bench to find the output power level Pout
regulation is lost (because overcurrent is being tripped) both at Vin = Vin
Vin = Vin
If Pout
increasing; if Pout
needs decreasing. This will go on until the difference between the two values is acceptably
low. Once found the true k
from the target; to correct this, the sense resistor Rs needs adjusting and the above tuning
process will be repeated with the new Rs value. Typically a satisfactory setting is achieved in
no more than a couple of iterations.
In applications where this function is not wanted, e.g. because of a narrow input voltage
range, the VFF pin can be simply grounded, directly or through a resistor, depending on
whether one wants the OVP function to be auto-restart or latched mode (see “
OVP block on page 35
1V. If a lower setpoint is desired to reduce the power dissipation on Rs, the pin can be also
biased at a fixed voltage using a divider from VREF (pin 10).
If the FF option is selected the line feedforward function can be still used to compensate for
the total propagation delay Td of the current sense chain (internal propagation delay td
plus the turn-off delay of the external MOSFET), which in standard current mode PWM
controllers is done by adding an offset on the current sense pin proportional to the input
voltage. In that case the divider ratio k, which will be much smaller as compared to that used
with the QR option selected, can be calculated with the following equation:
1
lim
1.5
V
max
@ Vin
VFF
[V]
.
V
COMP
2
= Upper clamp
max
lim
2.5
> Pout
@ Vin
”). The overcurrent setpoint will be then fixed at the maximum value of
PKpmax
3
lim
opt
max
@ Vin
in this way, it is possible that Pout
, occurring at minimum input voltage Vinmin has been found,
3.5
< Pout
min
Rs
lim
the system is still undercompensated and k needs
=
COMP
Rectif ied Line Voltage
@ Vin
1
R1
R2
9
I
L6566B
k
PKp
opt
3
min
15
max
V
VFF
the system is overcompensated and k
in
FORWARD
VOLTAGE
min
OVP settings
Optional for
FEED
Vcsx
1.5 V
CS
7
+
+
+
Hiccup
-
-
-
PWM
OCP
lim
turns out slightly different
Rs
Application information
Clock/ZCD
min
R
S
Q
and
lim
DISABLE
Section 5.11:
where
DRIVER
4
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GD

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