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Details, datasheet, quote on part number:IR21363
 
 
Part:IR21363
Category:Discrete
Description:3 Phase Driver, Soft Turn-on, Inverting Input Separate High And Low Side Inputs, 200ns Deadtime in a 28-pin Dip Package
Company:International Rectifier Corp.
Datasheet:Download IR21363 datasheet   File size : 391 kB
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Datasheet text preview:
Data Sheet No. PD60166_Q
IR2136/IR21362/IR21363/IR21365/ IR21366/IR21367/IR21368 (J&S)
Features
· · · · · · · · · · ·
3-PHASE BRIDGE DRIVER
Floating channel designed for bootstrap operation Packages Fully operational to +600V 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 28-Lead SOIC Over-current shutdown turns off all six drivers Independent 3 half-bridge drivers 28-Lead PDIP Matched propagation delay for all channels Cross-conduction prevention logic 44-Lead PLCC w/o 12 leads Lowside outputs out of phase with inputs. High side outputs out of phase (IR2136/IR21363/IR21365/ Feature Comparison: IR2136/IR21362/IR21363/ IR21366/IR21367/IR21368) or in phase IR21365/IR21366/IR21367/IR21368 (IR21362) with inputs. 3.3V logic compatible Part IR2136 IR21362 IR21363 IR21365 IR21366 IR21367 IR21368 Lower di/dt gate driver for Input Logic HIN, LIN HIN/LIN HIN, LIN HIN, LIN HIN, LIN HIN, LIN HIN,LIN better noise immunity 400ns Ton (typ.) 400ns 250ns 400ns 400ns 400ns 250ns Externally programmable Toff (typ.) 380ns 380ns 180ns 380ns 380ns 380ns 180ns delay for automatic fault VIH (typ.) 2.7V 2.0V 2.0V 2.7V 2.7V 2.7V 2.0V clear VIL (typ.) 1.7V 1.3V 1.3V 1.7V 1.7V 1.7V 1.3V
Vitrip+ 0.46V UV CC/BS+ 8.9V UV CC/BS- 8.2V 0.46V 10.4V 9.4V 0.46V 11.2V 11.0V 4.3V 11.2V 11.0V 0.46V 11.2V 11.0V 4.3V 11.2V 11.0V 4.3V 8.9V 8.2V
Description
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 FAULT VCC HIN1,2,3 / HIN1,2,3 LIN1,2,3 FAULT EN VB1,2,3 HO1,2,3 VS1,2,3
up to 600V
(Refer to Lead Assignments for correct pin conf i g u r a t i o n ) . This/These diagram(s) show electric a l connections only. Please refer to our Application Notes and DesignTips for proper circuit board layout.
EN
RCIN ITRIP VSS LO1,2,3 COM
TO LOAD
IR2136(2)(3)(5)(6)(7)(8)
GND
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1
IR2136(2)(3)(5)(6)(7)(8)(J&S)
Absolute Maximum Ratings
Absolute maximum ratings indicate sustained limits beyond which damage to the device may occur. All voltage parameters are absolute voltages referenced to COM. The thermal resistance and power dissipation ratings are measured under board mounted and still air conditions.
Symbol
VS V BS VHO VC C V SS VLO1,2,3 VIN
Definition
High side offset voltage High side floating supply voltage High side floating output voltage Low side and logic fixed supply voltage Logic ground Low side output voltage Input voltage LIN,HIN,ITRIP, EN, RCIN
Min.
VB1,2,3 - 25 -0.3 VS1,2,3 - 0.3 -0.3 VCC - 25 -0.3 VSS - 0.3
Max.
VB1,2,3 + 0.3 625 VB1,2,3 + 0.3 25 VCC + 0.3 VCC + 0.3 lower of (VSS + 15) or VCC + 0.3) VCC + 0.3 50 1.5 1.6 2.0 83 78 63 150 150 300
Units
V
VFLT dV/dt PD
FAULT output voltage Allowable offset voltage slew rate Package power dissipation @ TA +25°C
RthJA
Thermal resistance, junction to ambient
(28 lead PDIP) (28 lead SOIC) ( 44leadPLCC) (28 lead PDIP) (28 lead SOIC) (44 lead PLCC)
TJ TS TL
Junction temperature Storage temperature Lead temperature (soldering, 10 seconds)
VSS - 0.3 -- -- -- -- -- -- -- -- -55 --
V/ns W
°C/W
°C
Recommended Operating Conditions
The Input/Output logic timing diagram is shown in figure 1. For proper operation the device should be used within the recommended conditions. All voltage parameters are absolute referenced to COM. The VS offset rating is tested with all supplies biased at 15V differential.
Symbol
VB1,2,3
Definition
High side floating supply voltage IR2136(8) IR21362 IR2136(3)(5)(6)(7)
Min.
Max.
Units
VS1,2,3 VHO1,2,3 VLO1,2,3 VC C
High side floating supply offset voltage High side output voltage Low side output voltage Low side and logic fixed supply voltage
IR2136(8) IR21362 IR2136(3)(5)(6)(7)
V SS VFLT VRCIN
Logic ground FAULT output voltage RCIN input voltage
VS1,2,3 +10 VS1,2,3 +20 VS1,2,3 +11.5 VS1,2,3 +20 VS1,2,3 +12 VS1,2,3 +20 Note 1 600 VS1,2,3 VB1,2,3 0 VC C 10 20 11.5 20 12 20 -5 5 V SS VC C V SS VC C
V
Note 1: Logic operational for VS of COM -5V to COM +600V. Logic state held for VS of COM -5V to COM -VBS. (Please refer to the Design Tip DT97-3 for more details). Note 2: All input pins and the ITRIP pin are internally clamped with a 5.2V zener diode.
2
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IR2136(2)(3)(5)(6)(7)(8)(J&S)
Recommended Operating Conditions cont.
The Input/Output logic timing diagram is shown in figure 1. For proper operation the device should be used within the recommended conditions. All voltage parameters are absolute referenced to COM. The VS offset rating is tested with all supplies biased at 15V differential.
Symbol
VITRIP VIN TA
Definition
ITRIP input voltage Logic input voltage LIN , HIN (IR2136,IR21363(5)(6)(7)(8)), HIN(IR21362), EN Ambient temperature
Min.
V SS V SS -40
Max.
VSS +5 VSS +5 125
Units
V
o
C
-- Note 2: All input pins and the ITRIP pin are internally clamped with a 5.2V zener diode.
Static Electrical Characteristics
VBIAS (VCC, VBS 1,2,3) = 15V unless otherwise specified. The VIN, VTH and IIN parameters are referenced to VSS and are applicable to all six channels (HS1,2,3 and LS1,2,3). The VO and IO parameters are referenced to COM and VS1,2,3 and are applicable to the respective output leads: HO1,2,3 and LO1,2,3.
Symbol
VIH
Definition
Logic "0" input voltage LIN1,2,3, HIN1,2,3 IR2136(3)(5) Logic "1" input voltage HIN1,2,3 IR21362 Logic "0" input voltage LIN1,2,3, HIN1,2,3 IR21366(7)(8) Logic "1" input voltage LIN1,2,3, HIN1,2,3 IR2136(3)(5) Logic "0" input voltage HIN1,2,3 IR21362 Logic "0" input voltage LIN1,2,3, HIN1,2,3 IR21366(7)(8) EN positive going threshold EN negative going threshold ITRIP positive going threshold IR2136(2)(3)(6) IR21365(7)(8) ITRIP input hysteresis IR2136(2)(3)(6) IR21365(7)(8) RCIN positive going threshold RCIN input hysteresis High level output voltage, VBIAS - VO Low level output voltage, VO VCC and VBS supply undervoltage IR2136(8) positive going threshold IR21362 IR21363(5)(6)(7)
Min. Typ. Max. Units Test Conditions
3.0 -- --
2.5 --
-- --
-- 0.8
VIL
V EN,TH+ VEN,THVIT,TH+
-- -- 0.8 0.37 3.85 -- -- -- -- -- -- 8.0 9.6 10.6
-- -- -- 0.46 4.30 0.07 .15 8 3 0.9 0.4 8.9 10.4 11.1
0.8 3 -- 0.55 4.75 -- -- -- -- 1.4 0.6 9.8 11.2 11.6
V
VIT,HYS
VRCIN,TH+ VRCIN,HYS VOH VOL VCCUV+ V BSUV+
IO = 20 mA IO = 20 mA
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