IR2213(S)PBF
High and Low Side Driver
Features
Product Summary
Floating channel designed for bootstrap operation
Fully operational to +1200 V
Tolerant to negative transient voltage
dV/dt immune
Gate drive supply range from 12 V to 20 V
Undervoltage lockout for both channels
3.3 V logic compatible
Separate logic supply range from 3.3 V to 20 V
Logic and power ground ±5 V offset
CMOS Schmitt-triggered inputs with pull-down
Cycle by cycle edge-triggered shutdown logic
Matched propagation delay for both channels
Outputs in phase with inputs
VOFFSET (max)
1200 V
IO+/-
1.7 A / 2 A
VOUT
12 V – 20 V
ton/off (typical)
280 ns / 225 ns
Delay Matching
30 ns
Description
Package Options
The IR2213(S) is a high voltage, high speed power
MOSFET and IGBT driver with independent high and low
side referenced output channels. Proprietary HVIC and
latch immune CMOS technologies enable ruggedized
monolithic construction. Logic inputs are compatible with
standard CMOS or LSTTL outputs, down to 3.3 V logic.
The output drivers feature a high pulse current buffer stage
designed
for
minimum
driver
cross-conduction.
Propagation delays are matched to simplify use in high
frequency applications. The floating channel can be used
to drive an N-channel power MOSFET or IGBT in the high
side configuration which operates up to 1200 V.
16 Lead SOIC
(Wide Body)
14 Lead PDIP
Ordering Information
Standard Pack
Base Part Number
Package Type
Form
Quantity
IR2213SPBF
SO16WB
Tube
45
IR2213SPBF
SO16WB
Tape and Reel
1000
IR2213PBF
PDIP14
Tube
25
1
www.irf.com
© 2016 International Rectifier
Orderable Part Number
IR2213SPBF
IR2213STRPBF
IR2213PBF
April 26, 2016
IR2213(S)PBF
Typical Connection Diagram
Refer to Lead Assignments for correct pin configuration. This/These diagram(s) show electrical connections
only. Please refer to our Application Notes and Design Tips for proper circuit board layout
2
www.irf.com
© 2016 International Rectifier
April 26, 2016
IR2213(S)PBF
Absolute Maximum Ratings
Absolute Maximum Ratings indicate sustained limits beyond which damage to the device may occur. All voltage
parameters are absolute voltages referenced to COM. The Thermal Resistance and Power Dissipation ratings are
measured under board mounted and still air conditions.
Symbol
VB
VS
VHO
VCC
VLO
VDD
VSS
VIN
dVs/dt
PD
RTHJA
Definition
High Side Floating Supply Voltage
High Side Floating Supply Offset Voltage
High Side Floating Output Voltage
Low Side Fixed Supply Voltage
Low Side Output Voltage
Logic Supply Voltage
Logic Supply Offset Voltage
Logic Input Voltage (HIN, LIN & SD)
Allowable Offset Supply Voltage Transient (Figure 2)
Package Power Dissipation
(14 Lead PIDP)
@ T A ≤ +25˚C
(16 Lead SOIC)
@
T
+25°C
(14
≥
A
(14Lead
LeadPDIP)
PDIP)
Thermal
Resistance, Junction to
Ambient
(14
(16Lead
LeadPDIP)
SOIC)
Junction Temperature
Storage Temperature
Lead Temperature (Soldering, 10 seconds)
TJ
TS
TL
Min.
-0.3
VB - 25
VS - 0.3
-0.3
-0.3
-0.3
VCC - 25
VSS - 0.3
—
—
—
—
—
—
-55
—
Max.
1225
VB + 0.3
VB + 0.3
25
VCC + 0.3
VSS + 25
VCC + 0.3
VDD + 0.3
50
1.3
1.0
75
100
125
150
300
Units
V
V/ns
W
°C/W
°C
Recommended Operating Conditions
The Input / Output logic timing diagram is shown in Figure 1. For proper operation the device should be used
within the recommended conditions. The VS and VSS offset ratings are tested with all supplies biased at 15 V
differential.
Symbol
VB
VS
VHO
VCC
VLO
VDD
VSS
VIN
†
††
Definition
High Side Floating Supply Absolute Voltage
High Side Floating Supply Offset Voltage
High Side Floating Output Voltage
Low Side Fixed Supply Voltage
Low Side Output Voltage
Logic Supply Voltage
Logic Supply Offset Voltage
Logic Input Voltage (HIN, LIN & SD)
Min.
VS + 12
†
VS
12
0
VSS + 3
††
-5
VSS
Max.
VS + 20
1200
VB
20
VCC
VSS + 20
5
VDD
Units
V
Logic operational for VS of -5 to +1200V. Logic state held for VS of -5V to -VBS. (Please refer to the Design Tip DT973 for more details).
When VDD
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