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TLE7184F Datasheet, PDF (13/35 Pages) Infineon Technologies AG – System IC for B6 motor drives
TLE7184F
MOSFET Driver
5.3
Bootstrap Principle
The TLE7184F provides a bootstrap based supply for its high side output stages. The benefit of this principle is a
fast switching of the high side switches - supporting active freewheeling in high side.
The bootstrap capacitors are charged by switching on the external low side MOSFETs connecting the bootstrap
capacitor to GND. Under this condition the bootstrap capacitor will be charged from the VREG capacitor. If the low
side MOSFET is switched off and the high side MOSFET is switched on, the bootstrap capacitor will float together
with the SHx voltage to the supply voltage of the bridge. Under this condition the supply current of the high side
output stage will discharge the bootstrap capacitor. This current is specified. The size of the capacitor together
with this current will determine how long the high side MOSFET can be kept on without recharging the bootstrap
capacitor.
When all external MOSFETs are switched off, the SHx voltage can be undefined. Under this condition, the
bootstrap capacitors can be discharged, dependent on the SHx voltage.
5.4
Electrical Characteristics
Electrical Characteristics MOSFET Drivers
VS = 7.0 to 33 V, Tj = -40 °C to +150 °C all voltages with respect to ground, positive current flowing into pin
(unless otherwise specified)
Pos. Parameter
Symbol
Limit Values
Unit Conditions
Min. Typ. Max.
Inputs
5.4.1 Low level input voltage of ILx; IHx
5.4.2 High level input voltage of ILx; IHx
5.4.3 Input hysteresis of IHx; ILx1)
5.4.4 IHx pull-up resistors to VDD
5.4.5 ILx pull-down resistors to GND
MOSFET driver output
VI_LL
VI_HL
dVI
RIH
RIL
–
–
2.8
–
100 –
33.5 –
210 –
1.6
V
–
–
V
–
–
mV –
66.5 kΩ –
490 kΩ –
5.4.6 Output source resistance
RSou
2
–
5.4.7 Output sink resistance
RSink
2
–
5.4.8 High level output voltage Gxx vs. VGxx1
–
11
Sxx
5.4.9 High level output voltage GHx vs. VGxx2
6
–
SHx1)
5.4.10 High level output voltage GHx vs. VGxx3
SHx1)3)
6
–
+Vdiode
13.5 Ω
9
Ω
14
V
–
V
–
V
Iload=20mA
Iload=20mA
13,5V
<=VVS<=45V2),
VIOV<=VOVIOV,
VVDH<=VOVVDH
Iload=37,5mA
VVs=8V,
Cload=20nF,
dc=94%;
fPWM=20kHz
VVs=8V,
Cload=20nF,
dc=94%;
fPWM=20kHz;
passive
freewheeling
Data Sheet
13
Rev. 1.0, 2008-12-04