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PDF IR2113 Data sheet ( Hoja de datos )

Número de pieza IR2113
Descripción HIGH AND LOW SIDE DRIVER
Fabricantes International Rectifier 
Logotipo International Rectifier Logotipo



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Data Sheet No. PD-6.030C
IR2113
HIGH AND LOW SIDE DRIVER
Features
Product Summary
n Floating channel designed for bootstrap operation
Fully operational to +600V
Tolerant to negative transient voltage
dV/dt immune
n Gate drive supply range from 10 to 20V
n Undervoltage lockout for both channels
n Separate logic supply range from 5 to 20V
Logic and power ground ±5V offset
n CMOS Schmitt-triggered inputs with pull-down
n Cycle by cycle edge-triggered shutdown logic
n Matched propagation delay for both channels
n Outputs in phase with inputs
Description
VOFFSET
IO+/-
VOUT
ton/off (typ.)
Delay Matching
Packages
600V max.
2A / 2A
10 - 20V
120 & 94 ns
10 ns
The IR2113 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.
The output drivers feature a high pulse current buffer
stage designed for minimum driver cross-conduc-
tion. 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 600 volts.
Typical Connection
up to 600V
HO
VDD
V DD
VB
HIN HIN VS
SD SD
LIN LIN VCC
VSS VSS COM
VCC LO
TO
LOAD
To Order
CONTROL INTEGRATED CIRCUIT DESIGNERS’ MANUAL B-61

1 page




IR2113 pdf
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Device Information
Process & Design Rule
Transistor Count
Die Size
Die Outline
Index
Next Data Sheet
IR2113
HVDCMOS 4.0 µm
220
98 X 126 X 26 (mil)
Thickness of Gate Oxide
Connections
First
Layer
Second
Layer
Contact Hole Dimension
Insulation Layer
Passivation
Method of Saw
Method of Die Bond
Wire Bond
Leadframe
Package
Remarks:
Material
Width
Spacing
Thickness
Material
Width
Spacing
Thickness
Material
Thickness
Material
Thickness
Method
Material
Material
Die Area
Lead Plating
Types
Materials
800Å
Poly Silicon
4 µm
6 µm
5000Å
Al - Si (Si: 1.0% ±0.1%)
6 µm
9 µm
20,000Å
8 µm X 8 µm
PSG (SiO2)
1.5 µm
PSG (SiO2)
1.5 µm
Full Cut
Ablebond 84 - 1
Thermo Sonic
Au (1.0 mil / 1.3 mil)
Cu
Ag
Pb : Sn (37 : 63)
14 & 16 Lead PDIP / 16 Lead SOIC
EME6300 / MP150 / MP190
To Order
CONTROL INTEGRATED CIRCUIT DESIGNERS’ MANUAL B-65

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IR2113 arduino
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IR2113
100
80
60
40
Max.
20
Typ.
0
-50
-25
0 25 50 75
Temperature (°C)
100 125
Figure 19A. VDD Supply Current vs. Temperature
100
80
60
40
Max.
20
Typ.
0
5 7.5 10 12.5 15 17.5
VDD Logic Supply Voltage (V)
Figure 19B. VDD Supply Current vs. Voltage
20
100
80
60
40
Max.
20
Typ.
0
-50
-25
0 25 50 75
Temperature (°C)
100 125
Figure 20A. Logic “1” Input Current vs. Temperature
100
80
60
40
20 Max.
T yp.
0
5 7.5 10 12.5 15 17.5 20
VDD Logic Supply Voltage (V)
Figure 20B. Logic “1” Input Current vs. Voltage
5.0 0
5.0 0
4.0 0
4.0 0
3.0 0
3.0 0
2.0 0
Max.
1.0 0
2.0 0
Max.
1.0 0
0.0 0
-50
-25
0 25 50 75
Temperature (°C)
100 125
Figure 21A. Logic “0” Input Current vs. Temperature
0.0 0
5 7.5 10 12.5 15 17.5 20
VDD Logic Supply Voltage (V)
Figure 21B. Logic “0” Input Current vs. Voltage
To Order
CONTROL INTEGRATED CIRCUIT DESIGNERS’ MANUAL B-71

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