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PDF IR21366 Data sheet ( Hoja de datos )

Número de pieza IR21366
Descripción 3-PHASE BRIDGE DRIVER
Fabricantes International Rectifier 
Logotipo International Rectifier Logotipo



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Data Sheet No. PD60166 revS
IR2136/IR21362/IR21363/IR21365/
IR21366/IR21367/IR21368 (J&S) & (PbF)
Features
3-PHASE BRIDGE DRIVER
Floating channel designed for bootstrap operation
Fully operational to +600V
Packages
Tolerant to negative transient voltage - dV/dt immune
Gate drive supply range from 10 to 20V (IR2136/IR21368),
11.5 to 20V (IR21362) or 12 to 20V (IR21363/IR21365/
IR21366/IR21367)
Undervoltage lockout for all channels
Over-current shutdown turns off all six drivers
Independent 3 half-bridge drivers
Matched propagation delay for all channels
Cross-conduction prevention logic
Lowside outputs out of phase with inputs. High side
28-Lead SOIC
28-Lead PDIP
44-Lead PLCC w/o 12 leads
outputs out of phase (IR2136/IR21363/IR21365/
IR21366/IR21367/IR21368) or in phase
Feature Comparison: IR2136/IR21362/IR21363/
(IR21362) with inputs.
IR21365/IR21366/IR21367/IR21368
3.3V logic compatible
Lower di/dt gate driver for
Part IR2136 IR21362 IR21363 IR21365 IR21366 IR21367 IR21368
Input Logic HIN, LIN HIN/LIN HIN, LIN HIN, LIN HIN, LIN HIN, LIN HIN,LIN
better noise immunity
Externally programmable
Ton (typ.) 400ns
Toff (typ.) 380ns
400ns
380ns
400ns
380ns
400ns 250ns
380ns 180ns
250ns
180ns
400ns
380ns
delay for automatic fault
clear
Also available LEAD-FREE
VIH (typ.)
VIL (typ.)
Vitrip+
2.7V
1.7V
0.46V
2.7V
1.7V
0.46V
2.7V
1.7V
0.46V
2.7V
1.7V
4.3V
2.0V
1.3V
0.46V
2.0V
1.3V
4.3V
2.0V
1.3V
4.3V
UV CC/BS+ 8.9V
10.4V 11.2V 11.2V 11.2V 11.2V 8.9V
Description
UV CC/BS- 8.2V
9.4V
11.0V 11.0V 11.0V 11.0V 8.2V
The IR2136/IR21362/IR21363/IR21365/IR21366/IR21367/IR21368(J&S) are high votage, high speed power MOSFET
and IGBT drivers with three independent high and low side referenced output channels for 3-phase applications.
Proprietary HVIC technology enables ruggedized monolithic construction. Logic inputs are compatible with CMOS
or LSTTL outputs, down to 3.3V logic. A current trip function which terminates all six outputs can be derived from
an external current sense resistor. An enable function is available to terminate all six outputs simultaneously. An
open-drain FAULT signal is provided to indicate that an overcurrent or undervoltage shutdown has occurred.
Overcurrent fault conditions are cleared automatically after a delay programmed externally via an RC network
connected to the RCIN input. The output drivers feature a high pulse current buffer stage designed for minimum
driver cross-conduction. Propagation delays are matched to simplify use in high frequency applications. The
floating channel can be used to drive N-channel power MOSFETs or IGBTs in the high side configuration which
operates up to 600 volts.
Typical Connection
VCC
HIN1,2,3 / HIN1,2,3
LIN1,2,3
(Refer to Lead Assign-
ments for correct pin con-
figuration). This/These
diagram(s) show electri-
cal connections only.
Please refer to our Appli-
cation Notes and
DesignTips for proper cir-
cuit board layout.
FAULT
EN
GND
VCC
HIN1,2,3 / HIN1,2,3
LIN1,2,3
FAULT
EN
RCIN
ITRIP
VSS
VB1,2,3
HO1,2,3
VS1,2,3
LO1,2,3
COM
up to 600V
TO
LOAD
IR2136(2)(3)(5)(6)(7)(8)
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IR21366 pdf
IR2136(2)(3)(5)(6)(7)(8)(J&S) & (PbF)
Dynamic Electrical Characteristics
VCC = VBS = VBIAS = 15V, VS1,2,3 = VSS = COM, TA = 25oC and CL = 1000 pF unless otherwise specified.
Symbol
Definition
Min. Typ. Max. Units Test Conditions
ton Turn-on propagation delay IR2136(2)(3)(5)(8) 300 425 550
IR21366(7) —
250
toff Turn-off propagation delay IR2136(2)(3)(5)(8) 250 400 550
IR21366(7) —
180
VIN = 0 & 5V
tr Turn-on rise time
— 125 190
tf Turn-off fall time
— 50 75
tEN ENABLE low to output
IR2136(2)(3)(5)(8)
300 450
600 nS VIN, VEN = 0V or 5V
shutdown propagation delay
IR21366(7) 100 250 400
tITRIP
tbl
ITRIP to output shutdown propagation delay
ITRIP blanking time
tFLT ITRIP to FAULT propagation delay
tFILIN
Input filter time (HIN, LIN, EN)
(IR2136(2)(3)(5)(8) only)
500 750
100 150
1000
400 600 800
100 200
VITRIP = 5V
VIN = 0V or 5V
VITRIP = 5V
VIN = 0V or 5V
VITRIP = 5V
VIN = 0 & 5V
tFLTCLR FAULT clear time RCIN: R=2meg, C=1nF
DT
MT
MDT
Deadtime
Matching delay ON and OFF
Matching delay, max (ton,toff) - min (ton,toff),
(ton,toff are applicable to all 3 channels)
1.3 1.65
220 290
— 40
— 25
2 mS
360
75
70 nS
VIN = 0V or 5V
VITRIP = 0V
VIN = 0 & 5V
External dead
time
>400nsec
PM Output pulse width matching, PWin -PWout (fig.2) — 40 75
NOTE: For high side PWM, HIN pulse width must be ≥ 1µsec
VCC
<UVCC
15V
15V
15V
15V
VBS
X
<UVBS
15V
15V
15V
ITRIP
X
0V
0V
>VITRIP
0V
ENABLE
X
5V
5V
5V
0V
FAULT
0 (note 1)
high imp
high imp
0 (note 2)
high imp
LO1,2,3
0
LIN1,2,3
LIN1,2,3
0
0
HO1,2,3
0
0
HIN1,2,3
0
0
Note: A shoot-through prevention logic prevents LO1,2,3 and HO1,2,3 for each channel from turning on simultaneously.
Note 1: UVCC is not latched, when VCC>UVCC, FAULT returns to high impedance.
Note 2: When ITRIP <VITRIP, FAULT returns to high-impedance after RCIN pin becomes greater than 8V (@ VCC = 15V)
www.irf.com
5

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IR21366 arduino
IR2136(2)(3)(5)(6)(7)(8)(J&S) & (PbF)
HIN1,2,3
HIN1,2,3
LIN1,2,3
EN
ITRIP
FAULT
RCIN
HO1,2,3
LO1,2,3
Figure 1. Input/Output Timing Diagram
LIN1,2,3
HIN1,2,3
50%
P W IN
50%
LIN1,2,3
HIN1,2,3
50%
ton tr
HO1,2,3
LO1,2,3
90%
10%
50%
P W OUT
toff tf
90%
10%
Figure 2. Switching Time Waveforms
EN
50%
ten
HO1,2,3
LO1,2,3
90%
Figure 3. Output Enable Timing Waveform
www.irf.com
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