EVL6564-100W STMicroelectronics, EVL6564-100W Datasheet - Page 24

BOARD EVAL PFC FOR L6564D

EVL6564-100W

Manufacturer Part Number
EVL6564-100W
Description
BOARD EVAL PFC FOR L6564D
Manufacturer
STMicroelectronics
Type
Power Factor Correctionr
Datasheets

Specifications of EVL6564-100W

Main Purpose
AC/DC, Primary Side
Outputs And Type
1, Non-Isolated
Power - Output
100W
Voltage - Output
400V
Voltage - Input
90 ~ 265VAC
Regulator Topology
Boost
Frequency - Switching
40kHz
Board Type
Fully Populated
Utilized Ic / Part
L6564
Input Voltage
90 V to 265 V
Output Voltage
400 V
Dimensions
90 mm x 83 mm
Product
Power Management Modules
Lead Free Status / RoHS Status
Lead free by exemption / RoHS compliant by exemption
Current - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With/related Products
L6564
Other names
497-10164

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
EVL6564-100W
Manufacturer:
ST
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Application information
Figure 32. Effect of boost inductor saturation on the MOSFET current and detection method
24/33
However, in some applications such as ac-dc adapters, where the PFC pre-regulator is
turned off at light load for energy saving reasons, even a well-designed boost inductor may
occasionally slightly saturate when the PFC stage is restarted because of a larger load
demand. This happens when the restart occurs at an unfavorable line voltage phase, i.e.
when the output voltage is significantly below the rectified peak voltage. As a result, in the
boost inductor the inrush current coming from the bridge rectifier adds up to the switched
current and, furthermore, there is little or no voltage available for demagnetization.
To cope with a saturated inductor, the L6564 is provided with a second comparator on the
current sense pin (CS, pin 4) that stops the IC if the voltage, normally limited within 1.1 V,
exceeds 1.7 V. After that, the IC will be attempted to restart by the internal starter circuitry;
the starter repetition time is twice the nominal value to guarantee lower stress for the
inductor and boost diode. Hence, the system safety will be considerably increased.
Doc ID 16202 Rev 2
L6564

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