2ED21091S06F
650 V half bridge gate driver with integrated bootstrap diode
4.3
Static electrical characteristics
(VCC – COM) = (VB – VS) = 15 V, and TA = 25 °C unless otherwise specified. The VIL, VIH and IIN parameters are referenced
to Vss / COM and are applicable to the respective input leads: IN and DT/SD. The VO and IO parameters are
referenced to VS / COM and are applicable to the respective output leads HO or LO. The VCCUV parameters are
referenced to COM. The VBSUV parameters are referenced to VS.
Table 5
Static electrical characteristics
Symbol
Definition
VBSUV+ VBS supply undervoltage positive going
threshold
VBSUV- VBS supply undervoltage negative going
threshold
VBSUVHY VBS supply undervoltage hysteresis
VCCUV+
VCC supply undervoltage positive going
threshold
VCCUV-
VCC supply undervoltage negative going
threshold
VCCUVHY VCC supply undervoltage hysteresis
ILK High-side floating well offset supply leakage
IQBS Quiescent VBS supply current
IQCC Quiescent VCC supply current
VOH High level output voltage drop, Vcc - VLO , VB - VHO
VOL Low level output voltage drop, VO
Io+mean Mean output current from 3 V to 6 V
Io+ Peak output current turn-on1
Io-mean Mean output current from 12 V to 9 V
Io- Peak output current turn-off1
VIH Logic “1” input voltage
VIL Logic “0” input voltage
VSD,TH /SD input threshold
IIN+ Input bias current (Output = High)
IIN- Input bias current (Output = Low)
ISD+ /SD input bias current
Bootstrap diode forward voltage between Vcc
VFBSD and VB
Bootstrap diode forward current between Vcc
IFBSD and VB
RBSD Bootstrap diode resistance
Allowable Negative VS pin voltage for IN Signal
VS propagation to HO
Min.
7.6
6.7
—
8.4
7.5
—
—
—
—
—
—
180
—
450
—
1.7
0.7
0.7
—
—
—
—
45
20
—
Typ.
8.2
7.2
1.0
9.1
8.2
0.9
1
170
600
0.05
0.02
230
290
650
700
2.1
0.9
0.9
25
—
—
1
85
30
-11
1 Not subjected to production test, verified by characterization.
Max.
8.9
Units Test Conditions
8.1
—
V
9.8
8.9
—
12.5
—
—
0.2
0.1
—
—
—
—
2.4
1.1
1.1
50
10
- 400
1.2
VB = VS = 650 V
uA VIN = 0 V or 5 V
VIN = 0 V or 5 V
V
IO = 2 mA
CL = 22 nF
VO = 0 V
mA
CL = 22 nF
VO = 15 V
V Vcc = 10 V to 20 V
IN = 5 V
µA
IN = 0 V
VDT/SD = 0 V
V
IF = 0.3 mA
125
mA
VCC - VB = 4 V
45
Ω VF1 = 4 V,VF2 = 5 V
-10
V
Vcc = 15 V
Datasheet
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V 2.22
2020-07-02