L6566A STMicroelectronics, L6566A Datasheet - Page 17

IC CTRLR OVP UVLO 16SOIC

L6566A

Manufacturer Part Number
L6566A
Description
IC CTRLR OVP UVLO 16SOIC
Manufacturer
STMicroelectronics
Datasheet

Specifications of L6566A

Output Isolation
Isolated
Frequency Range
93 ~ 107kHz
Voltage - Input
8 ~ 23 V
Power (watts)
750mW
Operating Temperature
-40°C ~ 150°C
Package / Case
16-SOIC (0.154", 3.90mm Width)
Output Current
800 mA
Output Power
750 mW
Input Voltage
8 V to 23 V
Operating Temperature Range
- 40 C to + 150 C
Mounting Style
SMD/SMT
Duty Cycle (max)
75 %
Universal Input Mains Range
90÷264Vac - Frequency 45 ÷ 65 Hz
Output Voltage
19 V@4 A continuous operation
Mains Harmonics
Acc. to EN61000-3-2 Class-D
St-by Mains Consumption
Less than 0.25 W @265Vac
Overall Efficiency
Better than 86%
Emi
According to EN55022-Class-B
Safety
According to EN60950
Low Profile Design
25 mm maximum height
Pcb Single Layer
single side, 70 μm, CEM-1, 78x174 mm, Mixed PTH/SMT
For Use With
497-8834 - BOARD DEMO FOR L6563/LL6566A497-6452 - BOARD EVAL FOR L6566B497-6451 - BOARD EVAL FOR L6566B497-6450 - BOARD EVAL FOR L6566B497-6449 - BOARD EVAL FOR L6566A
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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L6566A
5
Application information
The L6566A is a versatile peak-current-mode PWM controller specific for offline flyback
converters. The device allows either fixed-frequency (FF) or quasi-resonant (QR) operation,
selectable with the pin MODE/SC (12): forcing the voltage on the pin over 3 V (e.g. by tying
it to the 5 V reference externally available at pin VREF, 10) will activate QR operation,
otherwise the device will be FF-operated.
Irrespective of the operating option selected by pin 12, the device is able to work in different
modes, depending on the converter's load conditions. If QR operation is selected (see
Figure 4
1.
2.
3.
Figure 4.
QR mode at heavy load. Quasi-resonant operation lies in synchronizing MOSFET's
turn-on to the transformer's demagnetization by detecting the resulting negative-going
edge of the voltage across any winding of the transformer. Then the system works
close to the boundary between discontinuous (DCM) and continuous conduction
(CCM) of the transformer. As a result, the switching frequency will be different for
different line/load conditions (see the hyperbolic-like portion of the curves in
Minimum turn-on losses, low EMI emission and safe behavior in short circuit are the
main benefits of this kind of operation.
Valley-skipping mode at medium/ light load. The externally programmable oscillator of
the L6566A, synchronized to MOSFET's turn-on, enables the designer to define the
maximum operating frequency of the converter. As the load is reduced MOSFET's turn-
on will not any more occur on the first valley but on the second one, the third one and
so on. In this way the switching frequency will no longer increase (piecewise linear
portion in
Burst-mode with no or very light load. When the load is extremely light or disconnected,
the converter will enter a controlled on/off operation with constant peak current.
Decreasing the load will then result in frequency reduction, which can go down even to
few hundred hertz, thus minimizing all frequency-related losses and making it easier to
comply with energy saving regulations or recommendations. Being the peak current
very low, no issue of audible noise arises.
):
Multi-mode operation with QR option active
f
sw
Figure 4
0
0
f
osc
Burst-mode
).
Valley-skipping
mode
Quasi-resonant mode
P
in
Input voltage
Application information
Pinmax
Figure 4
17/51
).

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