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IR2111SPBF Ver la hoja de datos (PDF) - International Rectifier

Número de pieza
componentes Descripción
Lista de partido
IR2111SPBF
IR
International Rectifier IR
IR2111SPBF Datasheet PDF : 15 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
IR2111(S) & (PbF)
Dynamic Electrical Characteristics
VBIAS (VCC, VBS) = 15V, CL = 1000 pF and TA = 25°C unless otherwise specified. The dynamic electrical characteristics
are measured using the test circuit shown in figure 3.
Symbol
ton
toff
tr
tf
DT
MT
Definition
Turn-on propagation delay
Turn-off propagation delay
Turn-on rise time
Turn-off fall time
Deadtime, LS turn-off to HS turn-on &
HS turn-off to LS turn-on
Delay matching, HS & LS turn-on/off
Min.
550
480
Typ. Max. Units Test Conditions
750 950
150 180
VS = 0V
VS = 600V
80 130
40 65
ns
650 820
30 —
Static Electrical Characteristics
VBIAS (VCC, VBS) = 15V and TA = 25°C unless otherwise specified. The VIN, VTH and IIN parameters are referenced to
COM. The VO and IO parameters are referenced to COM and are applicable to the respective output leads: HO or LO.
Symbol
VIH
VIL
VOH
VOL
ILK
IQBS
IQCC
IIN+
IIN-
VBSUV+
VBSUV-
VCCUV+
VCCUV-
IO+
IO-
Definition
Logic “1” input voltage for HO & logic “0” for LO
Logic “0” input voltage for HO & logic “1” for LO
High level output voltage, VBIAS - VO
Low level output voltage, VO
Offset supply leakage current
Quiescent VBS supply current
Quiescent VCC supply current
Logic “1” input bias current
Logic “0” input bias current
VBS supply undervoltage positive going threshold
VBS supply undervoltage negative going threshold
VCC supply undervoltage positive going threshold
VCC supply undervoltage negative going threshold
Output high short circuit pulsed current
Output low short circuit pulsed current
Min.
6.4
9.5
12.6
7.6
7.2
7.6
7.2
200
420
Typ. Max. Units Test Conditions
——
——
——
3.8
V
— 6.0
— 8.3
— 100
— 100 mV
— 50
50 100
70 180 µA
30 50
— 1.0
8.6 9.6
VCC = 10V
VCC = 15V
VCC = 20V
VCC = 10V
VCC = 15V
VCC = 20V
IO = 0A
IO = 0A
VB = VS = 600V
VIN = 0V or VCC
VIN = 0V or VCC
VIN = VCC
VIN = 0V
8.2 9.2
V
8.6 9.6
8.2 9.2
250 —
500 —
VO = 0V, VIN = VCC
PW 10 µs
mA
VO = 15V, VIN = 0V
PW 10 µs
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