TDA4863-2G Infineon Technologies, TDA4863-2G Datasheet - Page 11

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TDA4863-2G

Manufacturer Part Number
TDA4863-2G
Description
IC PFC CONTROLLER DCM DSO8
Manufacturer
Infineon Technologies
Datasheet

Specifications of TDA4863-2G

Mode
Discontinuous Conduction (DCM)
Current - Startup
20µA
Voltage - Supply
12.5 V ~ 20 V
Operating Temperature
-40°C ~ 150°C
Mounting Type
Surface Mount
Package / Case
DSO-8
Switching Frequency
30 KHz to 300 KHz
Maximum Operating Temperature
+ 150 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 40 C
For Use With
EVALPFC1-TDA4863-2IN - BOARD DEMO 160W DCM-PFC SMPS
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Frequency - Switching
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
SP000014793
SP000081016
TDA4863-2G

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To prevent false tripping the zero current detector is designed as a Schmitt-Trigger with
a hysteresis of 0.5 V. An internal 5 V clamp protects the input from overvoltage
breakdown, a 0.6 V clamp prevents substrate injection. An external resistor has to be
used in series with the auxiliary winding to limit the current through the clamps.
2.8
The restart timer function eliminates the need of an oscillator. The timer starts or restarts
the TDA4863-2 when the driver output has been off for more than 150 µs after the
inductor current reaches zero.
2.9
An undervoltage lockout circuitry switches the IC on when V
threshold V
During start up the supply current is less then 100 µA.
An internal voltage clamp has been added to protect the IC from V
condition. When using this clamp special care must be taken on power dissipation.
Start up current is provided by an external start up resistor which is connected from the
AC line to the input supply voltage V
V
the application board. Otherwise the IC can be destroyed due to the high capacitor
voltage.
Bootstrap power supply is created with the previous mentioned auxiliary winding and a
diode (see
2.10
The TDA4863-2 totem pole output stage is MOSFET compatible. An internal protection
ciruitry is activated when V
is turned off. The totem pole output has been optimized to achieve minimized cross
conduction current during high speed operation.
Compared to TDA4863 a bigger MOS Transistor can be driven by the TDA4863-2. When
a big MOSFET is used in applications with TDA4863, for example SPP20N60C3, the
falling edge of the gate drive voltage can swing under GND and can cause false
triggering of the IC. To prevent false traiggering the gate drive voltage of theTDA4863-2
at low state and gate current I
The difference between TDA4863-2 and TDA4863 is also depicted in the diagram: gate drive
voltage low state on page 20.
Version 2.1
CC
to ground. Be aware that this capacitor is discharged before the IC is plugged into
CCH
“Application Circuit” on Page
Restart Timer
Undervoltage Lockout
Gate Drive
and switches the IC off when V
CC
is within the start up phase and ensures that the MOSFET
GT
= 0mA is set to V
CC
and a storage capacitor which is connected from
11
21).
CC
is falling below the lower threshold V
GTL
= 0.85V (TDA4863: V
Functional Description
CC
reaches the upper
CC
GTL
TDA4863-2
overvoltage
=0.25V).
22 Feb 2005
CCL
.

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