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IR2110L6 Schematic ( PDF Datasheet ) - International Rectifier

Teilenummer IR2110L6
Beschreibung HIGH AND LOW SIDE DRIVER
Hersteller International Rectifier
Logo International Rectifier Logo 




Gesamt 14 Seiten
IR2110L6 Datasheet, Funktion
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Data Sheet No. PD-6.074
IR2110L6
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
Absolute Maximum Ratings
VOFFSET
IO+/-
VOUT
ton/off (typ.)
Delay Matching
600V max.
2A / 2A
10 - 20V
120 & 94 ns
10 ns
Description
The IR2110L6 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 rugge-
dized monolithic construction. Logic inputs are com-
patible with standard CMOS or LSTTL outputs. The
output drivers feature a high pulse current buffer stage
designed for minimum driver cross-conduction. Propa-
gation delays are matched to simplify use in high fre-
quency 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.
Absolute Maximum Ratings indicate sustained limits beyond which damage to the device may occur. All voltage parameters are absolute volt-
ages referenced to COM. The Thermal Resistance and Power Dissipation ratings are measured under board mounted and still air conditions.
VB
VS
VHO
VCC
VLO
VDD
VSS
VIN
dVs/dt
PD
RθJA
TJ
TS
TL
Parameter
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 SupplyVoltage
Logic Supply Offset Voltage
Logic Input Voltage (HIN, LIN & SD)
Allowable Offset SupplyVoltageTransient (Figure 2)
Package Power Dissipation @TA +25°C
Thermal Resistance, Junction to Ambient
Junction Temperature
Storage Temperature
LeadTemperature (Soldering, 10 seconds)
Weight
Min. Max.
-0.5 VS + 20
— 600
VS - 0.5
-0.5
VB + 0.5
20
-0.5
-0.5
VCC - 20
VSS - 0.5
VCC + 0.5
VSS + 20
VCC + 0.5
VDD + 0.5
50
— 1.6
— 75
-55 125
-55 150
— 300
1.5 (typical)
Units
V
V/ns
W
°C/W
°C
g
To Order






IR2110L6 Datasheet, Funktion
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IR2110L6
Index
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100
80
60
40
Max.
Typ.
20
0
-50
-25
0 25 50 75
Temperature (°C)
100 125
Figure 10A. Turn-On Rise Time vs. Temperature
100
80
60
Max.
40
Typ.
20
0
10
12 14 16 18
VBIAS Supply Voltage (V)
Figure 10B. Turn-On Rise Time vs. Voltage
20
50
40
30
Max.
20
Typ.
10
0
-50
-25
0 25 50 75
Temperature (°C)
100 125
Figure 11A. Turn-Off Fall Time vs. Temperature
50
40
30
20
Max.
10 Typ.
0
10
12 14 16 18
VBIAS Supply Voltage (V)
Figure 11B. Turn-Off Fall Time vs. Voltage
20
15. 0
15. 0
12. 0
Min.
9.0
12. 0
9.0
6.0 6.0
Min.
3.0 3.0
0.0
-50
-25
0 25 50 75
Temperature (°C)
100 125
Figure 12A. Logic “1” Input Threshold vs. Temperature
0.0
5
7.5 10 12.5 15 17.5
VDD Logic Supply Voltage (V)
20
Figure 12B. Logic “1” Input Threshold vs. Voltage
To Order

6 Page









IR2110L6 pdf, datenblatt
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IR2110L6
150
320V
140V
125
100
75 10V
50
25
0
1E+2
1E+3
1E+4
Frequency (Hz)
1E+5
1E+6
Figure 32. IR2110L6STJ vs. Frequency (IRFBC20)
RGATE = 33, VCC = 15V
150
320V 140V
125
100
10V
75
50
25
0
1E+2
1E+3
1E+4
Frequency (Hz)
1E+5
1E+6
Figure 33. IR2110L6STJ vs. Frequency (IRFBC30)
RGATE = 22, VCC = 15V
150
320V 140V
125
10V
100
75
50
25
0
1E+2
1E+3
1E+4
1E+5
1E+6
Frequency (Hz)
Figure 34. IR2110L6STJ vs. Frequency (IRFBC40)
RGATE = 15, VCC = 15V
150
320V 140V 10V
125
100
75
50
25
0
1E+2
1E+3
1E+4
1E+5
1E+6
Frequency (Hz)
Figure 35. IR2110L6STJ vs.Frequency (IRFPE50)
RGATE = 10, VCC = 15V
0.0 20.0
-2.0
Typ.
-4.0
16. 0
12. 0
-6.0 8.0
Typ.
-8.0 4.0
-10.0
10
12 14 16 18
VBS Floating Supply Voltage (V)
20
0.0
10
12 14 16 18
VCC Fixed Supply Voltage (V)
Figure 36. Maximum VS Negative Offset vs.
Figure 37. Maximum VSS Positive Offset vs.
VBS Supply Voltage
VCC Supply Voltage
To Order
20

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