IR2184 International Rectifier, IR2184 Datasheet

IC DRIVER HIGH/LOW SIDE 8-DIP

IR2184

Manufacturer Part Number
IR2184
Description
IC DRIVER HIGH/LOW SIDE 8-DIP
Manufacturer
International Rectifier
Datasheet

Specifications of IR2184

Configuration
Half Bridge
Input Type
Non-Inverting
Delay Time
680ns
Current - Peak
1.9A
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
*IR2184

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Data Sheet No. PD60174 revG
IR2184
(
4
)( S ) & (PbF)
HALF-BRIDGE DRIVER
Features
Packages
Description
IR2181/IR2183/IR2184 Feature Comparison
Typical Connection

Related parts for IR2184

IR2184 Summary of contents

Page 1

... Features Description Typical Connection Data Sheet No. PD60174 revG IR2184 HALF-BRIDGE DRIVER Packages IR2181/IR2183/IR2184 Feature Comparison ( & (PbF) ...

Page 2

... IR2184 4 ( )(S) & (PbF) Absolute Maximum Ratings Symbol Recommended Operating Conditions Symbol Definition ° Definition Min. Max. Units ° ° Min. Max. Units ° ...

Page 3

... Dynamic Electrical Characteristics Symbol Definition Static Electrical Characteristics Symbol Definition IR2184 4 ( ° Min. Typ. Max. Units Test Conditions ° Min. Typ. Max. Units Test Conditions µ µ )(S) & (PbF) µ µ ...

Page 4

... IR2184 4 ( )(S) & (PbF) Functional Block Diagrams 2184 IN DEADTIME +5V SD 21844 IN DEADTIME DT +5V SD VSS PULSE HV FILTER LEVEL SHIFTER VSS/COM LEVEL PULSE SHIFT GENERATOR VSS/COM LEVEL DELAY SHIFT HV LEVEL SHIFTER VSS/COM LEVEL PULSE SHIFT GENERATOR VSS/COM LEVEL DELAY SHIFT VB UV DETECT VCC ...

Page 5

... Lead Definitions Symbol Description Lead Assignments IR2184 IR21844 IR2184 4 ( )(S) & (PbF) IR2184S IR21844S ...

Page 6

... IR2184 4 ( )(S) & (PbF) Figure 1. Input/Output Timing Diagram Figure 3. Shutdown Waveform Definitions Figure 5. Delay Matching Waveform Definitions Figure 2. Switching Time Waveform Definitions Figure 4. Deadtime Waveform Definitions ...

Page 7

... Temperature 700 600 500 400 M ax. 300 Typ. 200 100 -50 - Temperature ( o C) Figure 5A. Turn-off Propagation Delay vs. Temperature IR2184 1400 1200 M ax. 1000 Typ. 800 600 400 100 125 10 12 Figure4B. Turn-on Propagation Delay 700 600 500 M ax. 400 Typ. 300 200 ...

Page 8

... IR2184 4 ( )(S) & (PbF) 500 400 300 M ax. 200 Typ. 100 0 -50 - Temperature ( C) Figure 6A. SD Propagation Delay vs. Temperature 120 100 ax. Typ -50 - Temperature ( C) Figure 7A. Turn-on Rise Time vs. Temperature 500 400 M ax. 300 Typ. 200 100 100 125 120 100 M ax Typ 100 ...

Page 9

... Temperature ( C) Figure 8A. Turn-off Fall Time vs. Temperature 1100 900 700 M ax. 500 Typ 300 100 -50 - Temperature ( C) Figure 9A. Deadtime vs. Temperature IR2184 ax. 40 Typ 100 125 10 12 Figure 8B. Turn-off Fall Time vs. Supply Voltage 1100 900 700 M ax. 500 Typ 300 100 100 125 ...

Page 10

... IR2184 4 ( )(S) & (PbF 100 Figure 9C. Deadtime vs Supply Voltage (V) Figure 10B. Logic "1" Input Voltage vs. Supply Voltage 6 M ax. 5 Typ 150 200 -50 -25 DT Figure 10A. Logic "1" Input Voltage ax -50 -25 Figure 11A. Logic "0" Input Voltage 100 125 o Temperature ( C) vs. Temperature ...

Page 11

... M ax Supply Voltage (V) Figure 11B. Logic "0" Input Voltage vs. Supply Voltage Supply Voltage (V) Figure 12B. SD Input Positive Going Threshold vs. Supply Voltage IR2184 -50 -25 Figure 12A. SD Input Positive Going Threshold ax -50 -25 Figure 13A. SD Input Negative Going Threshold 4 ( )(S) & (PbF 100 125 o Temperature ( C) vs ...

Page 12

... IR2184 4 ( )(S) & (PbF ax Supply Voltage (V) Figure 13B. SD Input Negative Going Threshold vs. Supply Voltage ax Supply Voltage (V) Figure 14B. High Level Output vs. Supply Voltage ax -50 - Figure 14A. High Level Output vs. Temperature 0.5 0.4 0.3 0.2 M ax. 0.1 0.0 -50 - Figure 15A. Low Level Output vs. Temperature ...

Page 13

... Figure 15B. Low Level Output vs. Supply Voltage 500 400 300 200 100 M ax. 0 100 200 300 400 V Boost Voltage (V) B Figure 16B. Offset Supply Leakage Current vs. V Boost Voltage B IR2184 500 400 300 200 100 M ax. 0 -50 - Figure 16A. Offset Supply Leakage Current vs. 250 200 150 100 50 0 ...

Page 14

... IR2184 4 ( )(S) & (PbF) 250 200 150 100 Floating Supply Voltage (V) BS Figure 17B. V Supply Current BS vs. V Floating Supply Voltage Supply Voltage (V) CC Figure 18B. V Supply Current CC vs. V Supply Voltage ax ax. Typ. Typ -50 - Figure 18A. V vs. Temperature 120 100 ax. M ax. ...

Page 15

... M ax. 40 Typ Supply Voltage (V) Figure 19B. Logic "1" Input Bias Current vs. Supply Voltage ax Supply Voltage (V) Figure 20B. Logic "0" Input Bias Current vs. Supply Voltage IR2184 ax -50 - Figure 20A. Logic "0" Input Bias Current ax. Typ -50 - Figure 21 )(S) & (PbF 100 ...

Page 16

... IR2184 4 ( )(S) & (PbF ax. 9 Typ -50 - Temperature ( o Figure 22. V and V Undervoltage Threshold (-) CC BS vs. Temperature Typ Supply Voltage (V) Figure 23B. Output Source Current vs. Supply Voltage Typ 100 125 -50 -25 C) Figure 23A. Output Source Current 5.0 4.0 3.0 Typ. 2 1.0 -50 - 100 o Temperature ( C) vs. Temperature ...

Page 17

... Typ Supply Voltage (V) Figure 24B. Output Sink Current vs. Supply Voltage 140 120 100 100 Frequency (KHz 22 2181 vs . Fre 30 =15V gat IR2184 140 120 100 21 2181 vs . Fre 20), R 140 120 100 140v 80 70v 1000 23 2181 vs . Fre 40 )(S) & (PbF) 140v ...

Page 18

... IR2184 4 ( )(S) & (PbF) 140 120 100 100 Frequency (KHz 24 2181 vs . Fre E50 =15V gat 140 120 100 100 Frequency (KHz 26 21814 vs . Fre 30 =15V gat 140v 140 70v 0v 120 100 1000 25 21814 vs . Fre 20), R gat e 140 120 100 80 140v 60 70v ...

Page 19

... Frequency (KHz 28 21814 vs . Fre E50 =15V gat 140 120 100 100 Frequency (KHz 30 2181s vs . Fre 30 =15V gat IR2184 140v 140 120 70v 100 1000 Frequency (KHz 29 2181s vs . Fre 20 gat e 140 120 140v 100 70v 1000 Frequency (KHz ...

Page 20

... IR2184 4 ( )(S) & (PbF) 140 120 100 100 Frequency (KHz) Figure 32. IR2181s vs. Frequency (IRFPE50 =15V gate CC 140 120 100 100 Frequency (KHz) Figure 34. IR21814s vs. Frequency (IRFBC30 =15V gate CC 140V 70V 0V 140 120 100 1000 1 Figure 33. IR21814s vs. Frequency (IRFBC20), 140 120 100 ...

Page 21

... Frequency (KHz) Figure 36. IR21814s vs. Frequency (IRFPE50 =15V gate CC IR2184 4 ( )(S) & (PbF) 140v 70v 0v 1000 ...

Page 22

... IR2184 4 ( )(S) & (PbF 0.25 [.010 0.25 [.010 NOTES: 1. DIMENSIONING & TOLERANCING PER ASME Y14.5M-1994. 2. CONTROLLING DIMENSION: MILLIMETER 3. DIMENSIONS ARE SHOWN IN MILLIMETERS [INCHES]. 4. OUTLINE C ONFORMS TO JEDEC OUTLINE MS-012AA. 8-Lead PDIP FOOTPRINT 8X 0.72 [.028 6.46 [.255] 3X 1.27 [.050] 8X 1.78 [.070 45° 0.10 [.004] ...

Page 23

... IR2184 14-Lead PDIP 14-Lead SOIC (narrow body )(S) & (PbF) ...

Page 24

... Per SCOP 200-002 ORDER INFORMATION Leadfree Part 8-Lead PDIP IR2184 order IR2184PbF 8-Lead SOIC IR2184S order IR2184SPbF 14-Lead PDIP IR21844 order IR21844PbF 14-Lead SOIC IR21844 order IR21844SPbF Thisproduct has been designed and qualified for the industrial market. Qualification Standards can be found on IR’s Web Site http://www.irf.com Data and specifications subject to change without notice ...

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