IR2132STR International Rectifier, IR2132STR Datasheet

no-image

IR2132STR

Manufacturer Part Number
IR2132STR
Description
IC DRIVER BRIDGE 3-PHASE 28-SOIC
Manufacturer
International Rectifier
Datasheet

Specifications of IR2132STR

Configuration
3 Phase Bridge
Input Type
Inverting
Delay Time
675ns
Current - Peak
250mA
Number Of Configurations
1
Number Of Outputs
3
High Side Voltage - Max (bootstrap)
600V
Voltage - Supply
10 V ~ 20 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
28-SOIC (7.5mm Width)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
IR2132STR
Quantity:
4 000
Part Number:
IR2132STRPBF
Manufacturer:
IR
Quantity:
20 000
Company:
Part Number:
IR2132STRPBF
Quantity:
12 677
Features
Description
MOSFET and IGBT driver with three independent high
and low side referenced output channels. Proprietary
HVIC technology enables ruggedized monolithic con-
struction. Logic inputs are compatible with 5V CMOS
or LSTTL outputs. A ground-referenced operational
amplifier provides analog feedback of bridge current
via an external current sense resistor. A current trip
function which terminates all six outputs is also de-
rived from this resistor. An open drain FAULT signal
indicates if an over-current or undervoltage shutdown
has occurred. The output drivers feature a high pulse
current buffer stage designed for minimum driver
cross-conduction. Propagation delays are matched
to simplify use at high frequencies. The floating chan-
nels can be used to drive N-channel power MOSFETs
or IGBTs in the high side configuration which oper-
ate up to 600 volts.
Typical Connection
The IR2132 is a high voltage, high speed power
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
Undervoltage lockout for all channels
Over-current shutdown turns off all six drivers
Independent half-bridge drivers
Matched propagation delay for all channels
Outputs out of phase with inputs
3-PHASE BRIDGE DRIVER
Product Summary
Packages
Deadtime (typ.)
t
on/off
V
OFFSET
V
I
O
OUT
+/-
(typ.)
Data Sheet No. PD-6.033E
200 mA / 420 mA
675 & 425 ns
600V max.
10 - 20V
0.8 µs

Related parts for IR2132STR

IR2132STR Summary of contents

Page 1

Features 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 Undervoltage lockout for all channels Over-current shutdown turns off all six drivers Independent half-bridge ...

Page 2

Absolute Maximum Ratings Absolute Maximum Ratings indicate sustained limits beyond which damage to the device may occur. All voltage param- eters are absolute voltages referenced to V under board mounted and still air conditions. Additional information is shown in Figures ...

Page 3

Dynamic Electrical Characteristics 15V, V BIAS CC BS1,2,3 S0,1,2,3 electrical characteristics are defined in Figures 3 through 5. Parameter Symbol Definition t Turn-On Propagation Delay on t Turn-Off Propagation Delay off t Turn-On Rise ...

Page 4

Static Electrical Characteristics -- Continued 15V, V BIAS CC BS1,2,3 S0,1,2,3 are referenced to V and are applicable to all six logic input leads: HIN1,2,3 & LIN1,2,3 . The V SS are referenced to ...

Page 5

Functional Block Diagram Lead Definitions Lead Symbol Description Logic inputs for high side gate driver outputs (HO1,2,3), out of phase HIN1,2,3 Logic inputs for low side gate driver output (LO1,2,3), out of phase LIN1,2,3 Indicates over-current or undervoltage lockout (low ...

Page 6

Device Information Process & Design Rule Transistor Count Die Size Die Outline Thickness of Gate Oxide Connections First Layer Second Layer Contact Hole Dimension Insulation Layer Passivation (1) Passivation (2) Method of Saw Method of Die Bond Wire Bond Leadframe ...

Page 7

HIN1,2,3 LIN1,2,3 ITRIP FAULT HO1,2,3 LO1,2,3 Figure 1. Input/Output Timing Diagram HIN1,2,3 50% 50% LIN1,2,3 LO1,2,3 50% HO1,2,3 DT Figure 3. Deadtime Waveform Definitions LIN1,2,3 50% ITRIP FAULT 50% LO1,2,3 50% t flt t itr ip Figure 5. Overcurrent Shutdown ...

Page 8

CA 90 SR Figure 7. Operational Amplifier Slew Rate Measurement 15V CA ...

Page 9

Max. Typ. 0.40 Min. 0.20 0.00 -50 - Temperature (°C) Figure 12A. Turn-Off Time vs. Temperature 250 200 150 Max. 100 Typ -50 - Temperature (°C) Figure 13A. Turn-On ...

Page 10

Max. 0.90 Typ. 0.60 Min. 0.30 0.00 -50 - Temperature (°C) Figure 15A. ITRIP to Output Shutdown Time vs. Temperature 1.50 1.20 Max. 0.90 Typ. 0.60 Min. 0.30 0.00 -50 - Temperature ...

Page 11

Max. Typ. 1.00 Min. 0.50 0.00 -50 - Temperature (°C) Figure 18A. Deadtime vs. Temperature 10.0 8.0 Typ. 6.0 Min. 4.0 2.0 0.0 -50 - Temperature (°C) Figure 19A. Amplifier Slew ...

Page 12

Min. 2.00 1.00 0.00 -50 - Temperature (°C) Figure 21A. Logic “0” Input Threshold vs. Temperature 5.00 4.00 3.00 2.00 1.00 Max. 0.00 -50 - Temperature (°C) Figure 22A. Logic “1” Input Threshold ...

Page 13

Max. 0.00 -50 - Temperature (°C) Figure 24A. High Level Output vs. Temperature 1.00 0.80 0.60 0.40 0.20 Max. 0.00 -50 - Temperature (°C) Figure 25A. Low Level Output ...

Page 14

Max. 20 Typ. 0 -50 - Temperature (°C) Figure 27A. V Supply Current vs. Temperature BS 10.0 8.0 6.0 4.0 Max. Typ. 2.0 0.0 -50 - Temperature (°C) Figure 28A. ...

Page 15

Max. 0.25 Typ. 0.00 -50 - Temperature (°C) Figure 30A. Logic “0” Input Current vs. Temperature 500 400 300 200 Max. 100 Typ. 0 -50 - Temperature (°C) Figure 31A. ...

Page 16

Max. 9.0 Typ. 8.0 Min. 7.0 6.0 -50 - Temperature (°C) Figure 33. V Undervoltage (+) vs. Temperature BS 11.0 10.0 Max. Typ. 9.0 Min. 8.0 7.0 6.0 -50 - Temperature (°C) ...

Page 17

Typ. Min. 200 100 0 -50 - Temperature (°C) Figure 38A. Output Source Current vs. Temperature 750 600 Typ. Min. 450 300 150 0 -50 - Temperature (°C) Figure 39A. Output ...

Page 18

Max. 4.0 2.0 0.0 -50 - Temperature (°C) Figure 41A. CA- Input Current vs. Temperature 100 80 Typ. 60 Min -50 - Temperature (°C) Figure 42A. Amplifier CMRR ...

Page 19

Max. Typ. 5.10 Min. 4.80 4.50 -50 - Temperature (°C) Figure 44A. Amplifier High Level Output vs. Temperature 100 Max -50 - Temperature (°C) Figure 45A. ...

Page 20

Typ. 2.00 Min. 1.00 0.00 -50 - Temperature (°C) Figure 47A. Amplifier Output Sink Current vs. Temperature 15.0 12.0 9.0 Max. 6.0 Typ. 3.0 0.0 -50 - Temperature (°C) Figure 48A. Amplifier Output ...

Page 21

Frequency (Hz) Figure 50. IR2132 T vs. Frequency (IRF820 15V GATE CC 100 1E+2 1E+3 1E+4 Frequency (Hz) Figure ...

Related keywords