irs2111 International Rectifier Corp., irs2111 Datasheet - Page 3

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irs2111

Manufacturer Part Number
irs2111
Description
Half-bridge Driver
Manufacturer
International Rectifier Corp.
Datasheet

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Dynamic Electrical Characteristics
V
are measured using the test circuit shown in Fig. 3.
Static Electrical Characteristics
V
COM. The V
Symbol
Symbol
BIAS
BIAS
V
V
V
V
I
I
BSUV+
CCUV+
CCUV-
V
V
BSUV-
QBS
QCC
I
t on
t off
DT
MT
V
I
V
I
I
I
IN+
IN-
O+
LK
t r
t f
OH
OL
O-
IH
IL
(V
(V
CC
CC
, V
, V
O
BS
BS
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
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, V
Low level output voltage, V
Offset supply leakage current
Quiescent V
Quiescent V
Logic “1” input bias current
Logic “0” input bias current
V
V
V
V
Output high short circuit pulsed current
Output low short circuit pulsed current
and I
BS
BS
CC
CC
) = 15 V, C
) = 15 V and T
supply undervoltage positive going threshold
supply undervoltage negative going threshold
supply undervoltage positive going threshold
supply undervoltage negative going threshold
O
parameters are referenced to COM and are applicable to the respective output leads: HO or LO.
BS
CC
L
= 1000 pF and T
supply current
supply current
A
= 25 °C unless otherwise specified. The V
O
BIAS
A
- V
= 25 °C unless otherwise specified. The dynamic electrical characteristics
O
Min. Typ. Max. Units Test Conditions
Min. Typ. Max. Units Test Conditions
12.6
550
480
200
420
6.4
9.5
7.6
7.2
7.6
7.2
IN
, V
0.05
0.02
750
150
650
290
600
8.6
8.2
8.6
8.2
75
35
30
50
70
30
TH,
and I
950
180
130
820
100
180
IRS2111(S)PbF
65
3.8
6.0
8.3
0.2
0.1
5.0
9.6
9.2
9.6
9.2
50
50
IN
parameters are referenced to
µA
mA
ns
V
V
V
V
V
O
V
O
IN
B
= 15 V, V
= 0 V, V
PW
PW
V
V
V
V
V
V
V
= 0 V or V
= V
V
I
V
V
CC
CC
CC
CC
CC
CC
S
O
IN
IN
S
= 600 V
= 2 mA
S
= V
= 0 V
= 10 V
= 15 V
= 20 V
= 10 V
= 15 V
= 20 V
= 0 V
10 µs
10 µs
= 600 V
IN
CC
IN
= V
CC
= 0 V
CC
3

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