IR22141SSPBF International Rectifier, IR22141SSPBF Datasheet - Page 22

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IR22141SSPBF

Manufacturer Part Number
IR22141SSPBF
Description
IC DRIVER HALF BRIDGE SGL 24SSOP
Manufacturer
International Rectifier
Datasheet

Specifications of IR22141SSPBF

Configuration
Half Bridge
Input Type
Non-Inverting
Delay Time
440ns
Current - Peak
2A
Number Of Configurations
1
Number Of Outputs
2
High Side Voltage - Max (bootstrap)
1200V
Voltage - Supply
11.5 V ~ 20 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
24-SSOP
Family Hvic
General Purpose HVICs
Channels
2
Topology
Half Bridge
Application
General Purpose / Motor Control
Voffset
1200
Io+ (ma)
2000
Io- (ma)
3000
Separate Power And Logic Ground
Yes
Uvlo
Vcc / Vbs
Vbsuv+ / Vccuv+ Min (v)
9.3
Vbsuv+ / Vccuv+ Typ (v)
10.2
Vbsuv+ / Vccuv+ Max (v)
11.4
Vbsuv- / Vccuv- Min (v)
8.7
Vbsuv- / Vccuv- Typ (v)
9.3
Vbsuv- / Vccuv- Max (v)
10.3
Dt / Sdt Min (ns)
5700
Dt / Sdt Typ (ns)
9250
Dt / Sdt Max (ns)
13500
T On Min (ns)
220
T On Typ (ns)
440
T On Max (ns)
660
T Off Min (ns)
220
T Off Typ (ns)
440
T Off Max (ns)
660
Fault Reporting
Yes
Package
24 Lead
Part Status
Active & Preferred
Special Features
Soft Shutdown and Desaturation Detection
For Use With
IRMD2214SS - KIT DESIGN EVAL BOARD IR2214SSIRMD22141SS - KIT DESIGN EVAL BOARD/IR22141SS
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IR22141SSPBF
Manufacturer:
International Rectifier
Quantity:
135
Part Number:
IR22141SSPBF
Manufacturer:
IR
Quantity:
20 000
www.irf.com
Figures 25-83 provide information on the experimental performance of the IR21141/IR22141SSPbF HVIC. The line
plotted in each figure is generated from actual lab data. A large number of individual samples from multiple wafer lots
were tested at three temperatures (-40 ºC, 25 ºC, and 125 ºC) in order to generate the experimental (Exp.) curve. The
line labeled Exp. consist of three data points (one data point at each of the tested temperatures) that have been
connected together to illustrate the understood trend. The individual data points on the curve were determined by
calculating the averaged experimental value of the parameter (for a given temperature).
10.45
10.40
10.35
10.30
10.25
10.20
10.15
10.10
10.05
10.00
600
500
400
300
200
100
10.30
10.25
10.20
10.15
10.10
10.05
10.00
9.95
Figure 29. V
0
-50
Figure 27. V
Figure 25. V
-50
-50
Exp.
Exp.
Exp.
-25
-25
-25
BS
Quiescent Current vs. Temperature
CCUV+
BSUV+
0
0
0
Temperature (
Threshold vs. Temperature
Threshold vs. Temperature
Temperature (
Temperature (
25
25
25
50
50
50
o
C)
o
o
C)
C)
75
75
75
100
100
100
125
125
125
22
9.70
9.65
9.60
9.55
9.50
9.45
9.40
9.35
9.30
9.25
9.60
9.55
9.50
9.45
9.40
9.35
9.30
9.25
9.20
9.15
1.00
0.90
0.80
0.70
0.60
0.50
0.40
0.30
0.20
0.10
0.00
Figure 30. V
Figure 26. V
-50
-50
Figure 28. V
-50
Exp.
Exp.
Exp.
-25
-25
-25
CC
IR21141/IR22141SSPbF
BSUV-
Quiescent Current vs. Temperature
CCUV-
0
0
0
Threshold vs. Temperature
Threshold vs. Temperature
Temperature (
Temperature (
Temperature (
25
25
25
© 2009 International Rectifier
50
50
50
o
o
o
C)
C)
C)
75
75
75
100
100
100
125
125
125

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