IR2106 International Rectifier, IR2106 Datasheet

IC DRIVER HIGH/LOW DRIVER 8-DIP

IR2106

Manufacturer Part Number
IR2106
Description
IC DRIVER HIGH/LOW DRIVER 8-DIP
Manufacturer
International Rectifier
Datasheet

Specifications of IR2106

Configuration
High and Low Side, Independent
Input Type
Non-Inverting
Delay Time
180ns
Current - Peak
200mA
Number Of Configurations
1
Number Of Outputs
2
High Side Voltage - Max (bootstrap)
600V
Voltage - Supply
10 V ~ 20 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Through Hole
Package / Case
8-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
*IR2106

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Features
Description
The IR2106(4)(S) are high voltage,
high speed power MOSFET and
IGBT drivers with independent high
and low side referenced output chan-
nels. Proprietary HVIC and latch
immune CMOS technologies enable
ruggedized monolithic construction.
The logic input is compatible with
standard CMOS or LSTTL output,
down to 3.3V logic. The output drivers feature a high pulse current buffer stage designed for minimum driver
cross-conduction. 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.
www.irf.com
Typical Connection
(Refer to Lead Assignments for cor-
rect pin configuration). This/These
diagram(s) show electrical connec-
tions only. Please refer to our Appli-
cation Notes and DesignTips for
proper circuit board layout.
HIN
V
LIN
Floating channel designed for bootstrap operation
Fully operational to +600V
Tolerant to negative transient voltage
dV/dt immune
Gate drive supply range from 10 to 20V (IR2106(4))
Undervoltage lockout for both channels
3.3V, 5V and 15V input logic compatible
Matched propagation delay for both channels
Logic and power ground +/- 5V offset.
Lower di/dt gate driver for better noise immunity
Outputs in phase with inputs (IR2106)
Also available LEAD-FREE
CC
V
HIN
LIN
COM
CC
HO
LO
V
V
B
S
IR2106
2106/2301
2109/2302
21064
21084
21094
2108
2304
Part
2106/2301//2108//2109/2302/2304 Feature Comparison
V
HIN
LIN
V
CC
SS
up to 600V
HIN/LIN
HIN/LIN
HIN/LIN
IN/SD
Input
logic
HIGH AND LOW SIDE DRIVER
LOAD
Packages
TO
V
HIN
LIN
V
CC
SS
conduction
prevention
8-Lead SOIC
Cross-
logic
yes
yes
yes
COM
14-Lead SOIC
no
HO
LO
V
V
B
S
IR2106(4)(S) & (PbF)
Programmable 0.54~5 s
Programmable 0.54~5 s
Data Sheet No. PD60162 Rev. W
Internal 100ns
Internal 540ns
Internal 540ns
Dead-Time
none
IR21064
8-Lead PDIP
Ground Pins
VSS/COM
VSS/COM
VSS/COM
COM
COM
COM
COM
14-Lead PDIP
up to 600V
Ton/Toff
220/200
220/200
750/200
160/140
LOAD
TO
1

Related parts for IR2106

IR2106 Summary of contents

Page 1

... Floating channel designed for bootstrap operation Fully operational to +600V Tolerant to negative transient voltage dV/dt immune Gate drive supply range from 10 to 20V (IR2106(4)) Undervoltage lockout for both channels 3.3V, 5V and 15V input logic compatible Matched propagation delay for both channels Logic and power ground +/- 5V offset. ...

Page 2

... High side floating output voltage HO V Low side and logic fixed supply voltage CC V Low side output voltage LO V Logic input voltage IN V Logic ground (IR21064 only /dt Allowable offset supply voltage transient S P Package power dissipation @ T D Rth Thermal resistance, junction to ambient JA ...

Page 3

... VB High side floating supply absolute voltage IR2106(4) V High side floating supply offset voltage S V High side floating output voltage HO V Low side and logic fixed supply voltage IR2106( Low side output voltage LO V Logic input voltage IN V Logic ground (IR21064 only) ...

Page 4

... BS SS referenced to V /COM and are applicable to the respective input leads. The V SS COM and are applicable to the respective output leads: HO and LO. Symbol Definition V Logic “1” input voltage (IR2106(4 Logic “0” input voltage (IR2106(4 High level output voltage Low level output voltage, V ...

Page 5

... Functional Block Diagrams IR2106 HIN LIN IR21064 HIN LIN VSS www.irf.com IR2106(4) PULSE HV FILTER LEVEL SHIFTER VSS/COM LEVEL PULSE SHIFT GENERATOR VSS/COM LEVEL DELAY SHIFT PULSE HV FILTER LEVEL SHIFTER VSS/COM LEVEL PULSE SHIFT GENERATOR VSS/COM LEVEL DELAY SHIFT ( S & (PbF DETECT ...

Page 6

... Lead Definitions Symbol Description HIN Logic input for high side gate driver output (HO), in phase LIN Logic input for low side gate driver output (LO), in phase VSS Logic Ground (IR21064 only) V High side floating supply B HO High side gate drive output V ...

Page 7

... HIN LIN HO LO Figure 1. Input/Output Timing Diagram HIN LIN HO LO Figure 2. Switching Time Waveform Definitions www.irf.com 50% 50 off 90% 90% 10% 10% 50% HIN LIN LO MT Figure 3. Delay Matching Waveform Definitions IR2106( & (PbF) ) 50% HO 10 ...

Page 8

... IR2106( & (PBF) 500 400 300 M ax 200 Typ. 100 Temperature ( Figure 4A. Turn-on Propagation Delay vs. Temperature 500 400 300 M ax. 200 Typ. 100 0 -50 - Temperature ( Figure 5A. Turn-off Propagation Delay vs. Temperature 8 500 400 M ax. 300 Typ. 200 100 0 75 100 125 Figure 4B. Turn-on Propagation Delay ...

Page 9

... Temperature www.irf.com 500 400 300 M ax. Typ. 200 100 100 125 C) 200 150 M ax. 100 Typ 100 125 10 C) IR2106( & (PbF Supply Voltage (V) BIAS Figure 6B. Turn-on Rise Time vs. Supply Voltage Supply Voltage (V) BIAS Figure 7B. Turn-off Fall Time ge vs. Supply Volta ...

Page 10

... IR2106( & (PBF ax Temperature ( Figure 8A. Logic “1” Input Voltage vs. Temperature Temperature ( Figure 9A. Logic “0” Input Voltage vs. Temperature ax 100 125 100 125 Supply Voltage (V) CC Figure 8B. Logic “1” Input Voltage vs. Supply Voltage Supply Voltage (V) CC Figure 9B. Logic “0” Input Voltage ge vs ...

Page 11

... Figure 11A. Low Level Output Voltage vs. Temperature www.irf.com ax. 2 Typ 100 125 ax Typ 100 125 IR2106( & (PbF Supply Voltage (V) BIAS Figure 10B. High Level Output Voltage vs. Supply Voltage Supply Voltage (V) BIAS Figure 11B. Low Level Output Voltage ge vs. Supply Volta ...

Page 12

... IR2106( & (PBF) 500 400 300 200 100 M ax. 0 -50 - Temperature ( Figure 12A. Offset Supply Leakage Current vs. Temperature 400 300 200 M ax. 100 Typ - Temperature ( Figure 13A Supply Current vs. Temperature 12 500 400 300 200 100 M ax 100 125 Figure 12B. Offset Supply Leakage Current ...

Page 13

... Figure 15A. Logic “1” Input Current vs. Temperature www.irf.com 400 300 200 100 0 75 100 125 Figure 14B. Quiescent V CC Supply Current ax Typ 100 125 IR2106( & (PbF ax. Typ Supply Voltage ( Supply Voltage Supply Voltage (V) CC Figure 15B. Logic “1” Bias Current ge vs. Supply Volta ...

Page 14

... IR2106( & (PBF ax -50 - Temperature ( Figure 16A. Logic “0” Input Current vs. Temperature ax. Typ - Temperature ( Figure 17 Undervoltage Threshold (+) vs. Temperature ax 100 125 Figure 16B. Logic “0” Input Currentt ax. 9 Typ 100 125 - Figure 18 Undervoltage Threshold (-) Supply Voltage (V) CC 16B L i "0" ...

Page 15

... Figure 21A. Output Source Current vs. Temperature www.irf.com ax. 9 Typ 100 125 o C) Figure 20 Undervoltage Threshold (-) 500 400 300 200 Typ. 100 100 125 o C) Figure 21B. Output Source Current IR2106( & (PbF 100 o Temperature ( C) vs. Temperature Supply Voltage (V) BIAS ge vs. Supply Volta 125 20 15 ...

Page 16

... Figure 23. Maximum V S Negative Offset vs. Supply Voltage 16 600 500 400 300 Typ. 200 100 0 75 100 125 Figure 22B. Output Sink Currentt 140 120 100 Figure 24. IR2106 vs. Frequency (IRFBC20 Supply Voltage (V) BIAS vs. Supply Voltage 140V 70V 0V 10 100 1000 Frequency (KHz) Rgate=33 , VCC=15V www.irf.com 20 ...

Page 17

... Figure 26. IR2106 vs. Frequency (IRFBC40), 140V 70V 140 0V 120 100 100 1000 1 Figure 28. IR21064 vs. Frequency (IRFBC20), =15V IR2106( & (PbF) ) 140V 70V 0V 10 100 Frequency (KHz =15V gate CC 10 100 Frequency (KHz =15V gate CC 1000 140V ...

Page 18

... Figure 30. IR21064 vs. Frequency (IRFBC40), 140V 140 70V 120 100 100 1000 1 Figure 32. IR2106S vs. Frequency (IRFBC20), 140V 70V 0V 10 100 1000 Frequency (KHz =15V gate CC 140V 70V 0V 10 100 1000 Frequency (KHz =15V gate CC www.irf.com ...

Page 19

... Figure 34. IR2106S vs. Frequency (IRFBC40), 140V 70V 0V 140 120 100 1000 1 Figure 36. IR21064S vs. Frequency (IRFBC20), =15V CC IR2106( & (PbF) ) 140V 70V 0V 10 100 Frequency (KHz =15V gate CC 140V 70V 10 100 Frequency (KHz =15V gate CC ...

Page 20

... Figure 37. IR21064S vs. Frequency (IRFBC30 =15V gate CC 140 120 100 140 120 100 80 140V 70V 100 1000 Figure 38. IR21064S vs. Frequency (IRFBC40 100 Frequency (KHz) Figure 39. IR21064S vs. Frequency (IRFPE50 =15V gate CC 140V 70V 10 100 Frequency (KHz =15V gate CC 140V 70V 0V 1000 www.irf.com 0V 1000 ...

Page 21

... DIMENSION DOES NOT INCLUDE MOLD PROTRUSIONS. MOLD PROTRUSIONS NOT TO EXCEED 0.15 [.006]. 6 DIMENSION DOES NOT INCLUDE MOLD PROTRUSIONS. MOLD PROTRUSIONS NOT TO EXCEED 0.25 [.010]. 7 DIMENSION IS THE LENG TH OF LEAD FOR SOLDERING TO A SUBSTRATE. 8 Lead SOIC IR2106( & (PbF) ) 01-6014 01-3003 01 (MS-001AB) INCHES MILLIMETERS ...

Page 22

... IR2106( & (PBF Lead PDIP 14 Lead SOIC (narrow body) 01-6010 01-3002 03 (MS-001AC) 01-6019 01-3063 00 (MS-012AB) www.irf.com ...

Page 23

... SPN code) Assembly site code Per SCOP 200-002 Leadfree Part 8-Lead PDIP IR2106 order IR2106PbF 8-Lead SOIC IR2106S order IR2106SPbF 14-Lead PDIP IR21064 order IR21064PbF 14-Lead SOIC IR21064S order IR21064SPbF This product has been qualified per industrial level Data and specifications subject to change without notice & ...

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