STEVAL-ISA016V1 STMicroelectronics, STEVAL-ISA016V1 Datasheet - Page 10

BOARD EVAL L6565 EU220V BASED

STEVAL-ISA016V1

Manufacturer Part Number
STEVAL-ISA016V1
Description
BOARD EVAL L6565 EU220V BASED
Manufacturer
STMicroelectronics
Type
AC/DC Switching Convertersr
Datasheets

Specifications of STEVAL-ISA016V1

Mfg Application Notes
Quasi AppNote
Design Resources
STEVAL-ISA016V1 Gerber Files STEVAL-ISA016V1 Schematic STEVAL-ISA016V1 Bill of Materials
Main Purpose
AC/DC, Primary Side
Outputs And Type
6, Non-Isolated
Power - Output
17W
Voltage - Output
1.23V, 5V, 2.5V, 12V, 3.3V, 8V
Current - Output
1.7A, 1A, 700mA, 500mA, 450mA, 40mA
Voltage - Input
185 ~ 265VAC
Regulator Topology
Flyback
Board Type
Fully Populated
Utilized Ic / Part
L6565
Input Voltage
185 V to 265 V
Output Voltage
1.2 V to 12 V
Product
Power Management Modules
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Frequency - Switching
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With/related Products
L6565
Other names
497-6414
STEVAL-ISA016V1

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Part Number:
STEVAL-ISA016V1
Manufacturer:
ST
0
L6565
It acts on the clamp level of the control voltage V
of the converter's input voltage sensed through a dedicated pin (#3, VFF): the higher the input voltage, the lower
the setpoint. This is illustrated in the diagram of figure 17a that shows the relationship between the voltage at
the pin VFF and V
The schematic in figure 17b shows also how the function is included in the control loop. With a proper selection
of the external divider R1-R2 it is possible to achieve the optimum compensation described by the lower curve
in the diagram of figure 16.
In applications where this function is not wanted, e.g. because of a narrow input voltage range, the VFF pin can
be simply grounded, thus saving the resistor divider. The overcurrent setpoint will be then fixed at the maximum
value of about 1.4V (1.5V max.).
Line Feedforward is also beneficial to other characteristics of quasi-resonant converters: it improves their input
ripple rejection ability and limits the variation of the power stage's small-signal gain versus the line voltage.
Figure 17. a) Overcurrent setpoint vs. VFF voltage; b) Line Feedforward function block
10/17
INV
1
2.5V
csx
+
-
(with the error amplifier saturated high in the attempt of keeping output voltage regulation).
E/A
COMP
V
1.5
0.5
csx
+Vin
2
0
1
0
[V]
R1
R2
3
0.5
VFF
FORWARD
VOLTAGE
FEED
1
2 V
CS
4
csx
1.5
V
b)
, that is on the overcurrent setpoint, so that it is a function
+
+
Hiccup
VFF
-
-
PWM
ZCD
5
ZCD
V
[V]
COMP
2
STARTER
= Upper clamp
2.5
DISABLE
(reset-dominant)
Rs
starter STOP
R
S
Q
3
DRIVER
L6565
3.5
a)
7
GD

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