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PDF L6564T Data sheet ( Hoja de datos )

Número de pieza L6564T
Descripción 10-pin transition-mode PFC controller
Fabricantes STMicroelectronics 
Logotipo STMicroelectronics Logotipo



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No Preview Available ! L6564T Hoja de datos, Descripción, Manual

L6564T
10-pin transition-mode PFC controller
Features
Guaranteed for extreme temperature range
(outdoor)
Fast “bi-directional” input voltage feedforward
(1/V2 correction)
Accurate adjustable output overvoltage
protection
Protection against feedback loop
disconnection (latched shutdown)
Inductor saturation protection
AC brownout detection
Low (100 µA) startup current
6 mA max. operating bias current
1% (@ TJ = 25 °C) internal reference voltage
-600/+800 mA totem pole gate driver with
active pull-down during UVLO
SSOP10 package
SSOP10
Applications
PFC pre-regulators for:
– High-end AC-DC adapter/charger
– Desktop PC, server, web server
– IEC61000-3-2 or JEITA-MITI compliant
SMPS
SMPS for LED luminaires
Figure 1.
Block diagram

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January 2012
Doc ID 022671 Rev 1
1/33
www.st.com
33

1 page




L6564T pdf
L6564T
1 Description
Description
The L6564T is a current-mode PFC controller operating in transition mode (TM) and
represents the compact version of the L6563S as it embeds the same driver, reference and
control stages in a very compact 10-pin SO package.
The highly linear multiplier, along with a special correction circuit that reduces crossover
distortion of the mains current, allows wide-range-mains operation with an extremely low
THD even over a large load range.
The output voltage is controlled by means of a voltage-mode error amplifier and an accurate
(1% @TJ = 25 °C) internal voltage reference. The loop stability is optimized by the voltage
feedforward function (1/V2 correction), which in this IC uses a proprietary technique that
also considerably improves line transient response in case of both mains drops and surges
(“bidirectional”).
In addition to overvoltage protection able to control the output voltage during transient
conditions, the IC also provides protection against feedback loop failures or erroneous
settings. Other on-board protection functions allow brownout conditions and boost inductor
saturation to be safely handled.
The totem-pole output stage, capable of a 600 mA source and 800 mA sink current, is
suitable for a high power MOSFET or IGBT drive. This, combined with the other features
and the possibility to operate with ST's proprietary fixed-off-time control, makes the device
an excellent solution for SMPS up to 400 W that requires compliance with EN61000-3-2 and
JEITA-MITI standards.
Doc ID 022671 Rev 1
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5 Page





L6564T arduino
L6564T
Table 4. Electrical characteristics (continued)
Symbol
Parameter
Test condition
Voltage feedforward
VVFF Linear operation range
V Dropout VMULTpk-VVFF
VVFF
VVFF
Line drop detection thresh.
Line drop detection thresh.
RDISCH Internal discharge resistor
Vcc < VccOn
Vcc > or = to VccOn
Below peak value
Below peak value Tj =25°C
Tj = 25 °C
VDIS
VEN
Disable threshold
Enable threshold
Zero current detector
(2) Voltage falling
(2) Voltage rising
VZCDH
VZCDL
VZCDA
Upper clamp voltage
Lower clamp voltage
Arming voltage
(positive-going edge)
Triggering voltage
VZCDT (negative-going edge)
IZCDb
IZCDsrc
IZCDsnk
Input bias current
Source current capability
Sink current capability
Gate driver
IZCD = 2.5 mA
IZCD = - 2.5 mA
VZCD = 1 to 4.5 V
VOL Output low voltage
Isink = 100 mA
VOH Output high voltage
Isource = 5 mA
Isrcpk Peak source current
Isnkpk Peak sink current
tf Voltage fall time
tr Voltage rise time
VOclamp Output clamp voltage
Isource = 5 mA; Vcc = 20 V
UVLO saturation
Vcc= 0 to VCCon, Isink= 2 mA
1. Parameters tracking each other.
( )2.
3.
The multiplier output is given by:
Parameters tracking each other.
Vcs
= VCS_Ofst
+
KM
VMULT VCOMP 2.5
VV2FF
Electrical characteristics
Min. Typ. Max. Unit
1 3V
850
mV
20
30 70 110 mV
50 70 90 mV
7.5 10 12.5
k
5 20
0.725 0.8 0.875 V
0.845 0.88 0.915 V
5.0 5.7
-0.3 0 0.3
V
V
1.1 1.4 1.9 V
0.5 0.7 1 V
-2.0 -4
2.0 5
1 µA
mA
mA
0.6 1.4
9.5 10.3
-0.6
0.8
30 60
45 150
10 12 15
1.2
V
V
A
A
ns
ns
V
V
Doc ID 022671 Rev 1
11/33

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