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IRS21084 查看數據表(PDF) - Infineon Technologies

零件编号
产品描述 (功能)
比赛名单
IRS21084
Infineon
Infineon Technologies Infineon
IRS21084 Datasheet PDF : 25 Pages
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IRS2108/IRS21084(S)PbF
Dynamic Electrical Characteristics
VBIAS (VCC, VBS) = 15 V, VSS = COM, CL = 1000 pF, TA = 25 °C, DT = VSS unless otherwise specified.
Symbol
ton
toff
MT
tr
tf
DT
MDT
Definition
Turn-on propagation delay
Turn-off propagation delay
Delay matching | ton - toff |
Turn-on rise time
Turn-off fall time
Deadtime: LO turn-off to HO turn-on(DTLO-HO) &
HO turn-off to LO turn-on (DTHO-LO)
| | Deadtime matching = DTLO-HO - DTHO-LO
Min.
400
4
Typ.
220
200
0
100
35
540
5
0
0
Max. Units Test Conditions
300
VS = 0 V
280
VS = 0 V or 600 V
30
220 ns
80
VS = 0 V
680
RDT= 0
6
µs RDT = 200 k(IR21084)
60 ns
RDT=0
600
RDT= 200 k(IR21084)
Static Electrical Characteristics
VBIAS (VCC, VBS) = 15 V, VSS = COM, DT= VSS 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: HIN and LIN. The VO, IO, and
Ron parameters are referenced to COM and are applicable to the respective output leads: HO and LO.
Symbol
VIH
VIL
VOH
VOL
ILK
IQBS
Definition
Logic “1” input voltage for HIN & logic “0” for LIN
Logic “0” input voltage for HIN & logic “1” for LIN
High level output voltage, VBIAS - VO
Low level output voltage, VO
Offset supply leakage current
Quiescent VBS supply current
IQCC
Quiescent VCC supply current
IIN+
IIN-
VCCUV+
VBSUV+
VCCUV-
VBSUV-
VCCUVH
VBSUVH
Logic “1” input bias current
Logic “0” input bias current
VCC and VBS supply undervoltage positive going
threshold
VCC and VBS supply undervoltage negative going
threshold
Hysteresis
IO+
Output high short circuit pulsed current
IO-
Output low short circuit pulsed current
Min. Typ. Max. Units Test Conditions
2.5 — —
— 0.8
— 0.05 0.2
— 0.02 0.1
VCC = 10 V to 20 V
V
IO = 2 mA
50
VB = VS = 600 V
20
75 130 µA
VIN = 0 V or 5 V
0.4 1.0 1.6 mA
VIN = 0 V or 5 V
RDT=0
5
20
HIN = 5 V, LIN = 0 V
5
µA HIN = 0 V, LIN = 5 V
8.0 8.9 9.8
7.4
8.2 9.0
V
0.3 0.7 —
120 290 —
mA
250 600 —
VO = 0 V,
PW 10 µs
VO = 15 V,
PW 10 µs
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