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International IOR Rectifier IRS2111(S)PbF Manual

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1. 320 V 320 V 0v 150 E 160 V 150 e T 30 V gt 125 9 125 o 5 100 100 T w 8 75 9 15 E E Ps Nx 50 c 2 o 9 25 2 5 5 3 5 0 0 1E 2 E 3 E 4 E 5 E 6 1E 2 E 3 EH 45 46 Frequency kHz Frequency kHz Figure 31 IRS2111S TJ vs Frequency IRFBC20 Figure 32 IRS2111S TJ vs Frequency IRFBC30 Recarte 33 Q Vcc 15 V Reate 22 Q Vcc 2 15 V 320 V 140 V 320 V 140 V 3071 150 30 V 150 g 125 o 125 es e 9 100 2 100 2 2 o 75 2 15 5 50 2 s 5 S 25 25 3 0 2 0 1E 2 E 3 E 4 E 5 E 6 1E 2 E 3 E 4 E 5 E 6 Frequency kHz Frequency kHz Figure 33 IRS2111S TJ vs Frequency IRFBC40 Figure 34 IRS2111S TJ vs Frequency IRFPC50 Reate 15 Q Vcc 15V Reate 10 Q Vcc 15V www irf com 13 International IRS2111 S PbF TOR Rectifier Case outlines MEASURE PERPENDICULAR TO DATUM PLANE C DIMENSION DOES NOT INCLUDE MOLD PROTUSIONS SHALL NOT EXCI 25 01 6014 8 Lead PDIP 01 3003 01 MS 001AB INCHES MILLIMETERS MIN MAX MN MAX FOOTPRINT 0532 0688 135 1 75 0040 0098 0 10 0 25 013 020 033 050 gleefs 0075 0098 0 19 0 25
2. 11 gt z 10 110 Max wee ede eee cette 5 3 RE e Ros Max I RE PONTE OL 8 Typ is sm d o Typ Seni S co mam RR UR I S Min LET 5 S SE AE 5 Min PRC SERE er Po o 7 g esse E 5 2 o 8 6 gt 6 gt s5 5 0 5 3 7 10 15 50 25 0 25 50 75 100 125 Temperature C Temperature C Figure 23 Vcc Undervoltage vs Temperature Figure 24 Vcc Undervoltage vs Temperature 500 500 T T E E 400 E 400 2 Typ p 300 S 300 Se Min o dia 9 2 Typ 3 200 e 2 200 na CD lt 05 Leg a 100 a 100 Le 5 5 Min O O 0 0 50 25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature C Veias Supply Voltage V Figure 25A Output Source Current vs Temperature Figure 25B Output Source Current vs Voltage 900 900 750 750 E Typ t 9 600 600 3 Min 7 a O Typ e Q 450 nell 450 retta c D sie sw d e g ADE e 2 300 See O goy no gt gt 2 E 2 150 a 150 0 0 50 25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature C Veias Supply Voltage V Figure 26A Output Sink Current vs Temperature Figure 26B Output Sink Current vs Voltage www irf com 11 International TOR Rectifier
3. o 320 V e 125 2 1100 D 160 V 5 75 30 V c 2 50 o c 2 2 45 0 1E 2 E 3 E 4 E 5 E 6 Frequency kHz Figure 27 IRS2111 TJ vs Frequency IRFBC20 Reate 33 Q Vcc 15 V 320 V 160 V 150 S 125 300 e 5 100 amp 75 E e c 50 2 2 25 2 3 0 1E 2 E 3 E 4 E 5 E 6 Frequency kHz Figure 29 IRS2111 TJ vs Frequency IRFBC40 Recarte 15 Q Vcc 15 V www irf com Junction Temperature C Junction Temperature C IRS2111 S PbF 1E 2 E 3 E 4 Frequency kHz E 5 E 6 Figure 28 IRS2111 TJ vs Frequency IRFBC30 Reate 22 Q Vcc 15 V 150 320 V 160 V 30 v 125 1E 2 E 3 Frequency kHz E 4 1815 E 6 Figure 30 IRS2111 TJ vs Frequency IRFPC50 Reate 10 Q Vcc 15 V 12 E IRS2114 S PbF
4. 50 25 0 25 50 75 100 125 Temperature C Figure 9A Turn On Rise Time vs Temperature www irf com IRS2111 S PbF Turn On Delay Time ns 10 12 14 16 18 20 Veias Supply Voltage V Figure 7B Turn On Time vs Voltage 400 350 300 250 Max Turn Off Delay Time ns 10 12 14 16 18 20 VBIAS Supply Voltage V Figure 8B Turn Off Time vs Voltage 400 350 300 250 200 Turn On Rise Time ns 10 12 14 16 18 20 VBIAS Supply Voltage V Figure 9B Turn On Rise Time vs Voltage International IRS2111 S PbF TOR Rectifier 200 200 150 A a eo 100 50 Pes Turn Off Fall Time ns Turn Off Fall Time ns I 50 25 O 2 50 75 100 125 10 12 14 16 18 20 Temperature C Veias Supply Voltage Figure 10A Turn Off Fall Time vs Temperature Figure 10B Turn Off Fall Time vs Voltage 1250 1250 DS 1000 Max 1000 Vax E herr E Ee bia 2 750 Typ q 0 JP 500 n 500 preces a 250 250 0 0 50 25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature C Veias Supply Voltage V Figure 11A Deadt
5. Description Logic input for high side and low side gate driver outputs HO amp LO in phase with HO High side floating supply High side gate drive output High side floating supply return Low side and logic fixed supply Low side gate drive output Low side return Part Number www irf com 4 International IRS2111 S PbF TOR Rectifier Voc 15 HY 10 to 600V IN so 9 I T 1000 Te 1 8 H dl 8 HO gt 7 10 2 We 4 1066 gt 50 18 Dem OUTPUT S SR SG SR dp MONITOR qn walie 4 9 Figure 1 Input Output Timing Diagram Figure 2 Floating Supply Voltage Transient Test Circuit 90 Figure 3 Switching Time Test Circuit Figure 4 Switching Time Waveform Definition 50 50 LO HO 10 MT 4 gt MT 90 LO HO Figure 5 Deadtime Waveform Definitions Figure 6 Delay Matching Waveform Definitions www irf com 5 International TOR Rectifier 1500 12 E E Max g vom rede H S Ge Min Beppe eaa Eton MP 6 250 5 0 Fig 400 350 300 250 200 Turn Off Delay Time ns 50 25 0 25 50 75 100 125 Temperature C ure 7A Turn On Time vs Temperature 50 25 0 25 50 75 100 125 Fig 200 Temperature C ure 8A Turn Off Time vs Temperature
6. 046 0484 D 545 555 0214 0218 Jk REEL DIMENSIONS FOR 8SOICN Code B 2095 2145 0 824 0844 p 195 245 0767 0096 15 International IRS2111 S PbF TOR Rectifier LEADFREE PART MARKING INFORMATION Part number RSxxxx Date code YWW T 4R 4 IR logo Identifier Lot Code i MARKING CODE Prod mode 4 digit SPN code P Lead Free Released Non Lead Free Released Assembly site code Per SCOP 200 002 ORDER INFORMATION 8 Lead PDIP IRS2111PbF 8 Lead SOIC IRS2111SPbF 8 Lead SOIC Tape amp Reel IRS2111STRPbF International IOR Rectifier The SOIC 8 is MSL2 qualified The SOIC 14 is MSL3 qualified This product has been designed and qualified for the industrial level Qualification standards can be found at www irf com IR WORLD HEADQUARTERS 233 Kansas St El Segundo California 90245 Tel 310 252 7105 Data and specifications subject to change without notice 12 4 2006 www irf com 16
7. 1111 189 1968 480 5 00 71 1497 1574 3 80 4 00 646 255 050 BASIC 1 27 BASIC i In d uiu I 8X 0 72 028 H 0 25 010 AW 025 BASIC 0 635 BASIC 2284 2440 5 80 6 20 0099 0196 0 25 0 50 016 050 040 127 3127105014 gx 1 781 070 os L VIO Es Le Kx45 A c y A Aforoa JL a pe 80 0 25 010 0 C alB 7 NOTES 8 DIMENSION DOES NOT INCLUDE MOLD PROTRUSIONS 1 DIMENSIONING amp TOLERANCING PER ASME Y14 5M 1994 __ MOLD PROTRUSIONS NOT TO EXCEED 0 15 006 2 CONTROLLING DIMENSION MILLIMETER 6 DIMENSION DOES NOT INCLUDE MOLD PROTRUSIONS 3 DIMENSIONS ARE SHOWN IN MILLIMETERS INCHES MOLD ERO TRUSIONS NO IO EXCEED 029010 4 OUTLINE CONFORMS TO J EDEC OUTLINE MS 012AA EE 01 6027 8 Lead SOIC 01 0021 11 MS 012AA www irf com 14 International ISR Rectifier Tape amp Reel 8 lead SOIC www irf com IRS2111 S PbF LOADED TA PE FEED DIRECTION NOTE CONTROLLING DIMENSION IN MM CARRIER TAPE DIMENSION FOR 8SOICN Ei EE Code Min Max ax ip sso one 3 90 4 10 m 153 e 4 61 IC 11 70 1230
8. vs Voltage International TOR Rectifier gt Input Bias Current uA Logic 1 Logic 0 Input Bias Current uA VBS UVLO Threshold V 120 100 50 25 0 25 50 75 100 125 Temperature C Figure 19A Logic 1 Input Current vs Temperature 50 25 0 25 50 75 100 125 Temperature C Figure 20A Logic 0 Input Bias Current vs Temperature 12 11 Max UE 9 Typ y_ m_ _ ____ __ _ mg RE 8 7 Min 6 50 25 0 25 50 75 100 125 Temperature C Figure 21 Vps Undervoltage Threshold vs Temperature www irf com Input Bias Current uA Logic 1 Logic 0 Input Bias Current uA CD IRS2111 S PbF 120 100 80 60 Max i NM rS 20 Typ 0 10 12 14 16 18 20 VCC Supply Voltage V Figure 19B Logic 1 Input Current vs Vcc Voltage 10 12 14 16 18 20 Supply Voltage V Figure 20B Logic 0 Input Bias Current vs Vcc Voltage 12 11 10 Max VBS UVLO Threshold V o 50 25 0 2 50 75 100 125 Temperature C Figure 22 Vps Undervoltage Threshold vs Temperature 10 International IRS2111 S PbF TOR Rectifier 11
9. Int tional Data Sheet No PD60253 nrernano TER Rectifier IRS2111 S PbF HALF BRIDGE DRIVER Features Product Summary Floating channel designed for bootstrap operation Fully operational to 600 V VOFFSET 600 V max Tolerant to negative transient voltage dV dt immune 10 200 mA 420 mA Gate drive supply range from 10 V to 20 V Undervoltage lockout for both channels VOUT 10V 20V CMOS Schmitt triggered inputs with pull down Matched propagation delay for both channels ton off typ 750 ns amp 150 ns Internally set deadtime e High side output in phase with input Deadtime typ 650 ns RoHS compliant Description Packages The IRS2111 is a high voltage high speed power MOSFET and IGBT driver with dependent high side and low side referenced output channels designed for half bridge applications Propri etary HVIC and latch immune CMOS technologies enable ruggedized monolithic construction Logic input is compatible H with standard CMOS outputs The output drivers feature a high pulse current buffer stage designed for minimum driver cross conduction Internal deadtime is provided to avoid shoot through ii bi 8 Lead SOIC in the output half bridge The floating channel can be used to IRS21111SP bF drive an N channel power MOSFET or IGBT in the high side con figuration which operates up to 600 V Typical Connection up to 600 V Refer to Lead Assi
10. e 1 0 0 8 0 6 0 4 Max 0 2 Typ 0 0 10 12 14 16 18 20 Voc Supply Voltage V Figure 14B High Level Output vs Supply Voltage Max Typ 12 14 16 18 20 Voc Supply Voltage V Figure 15B Low Level Output vs Voltage International TOR Rectifier Offset Supply Current uA 0 25 50 75 100 125 Temperature C Figure 16A Offset Supply Current vs Temperature 200 lt 3 150 E Max 6 gt 100 a Typ gr loss 0 gt 0 50 25 0 25 50 75 100 125 Temperature C Figure 17A Vps Supply Current vs Temperature 500 st 3 E 400 3 300 gt Q 2 200 CD 8 100 gt 0 50 Figure 18A Vcc Supply Current vs Temperature www irf com 0 25 50 75 100 12 Temperature C IRS2111 S PbF Offset Supply Current uA VB Boost Voltage V Figure 16B Offset Supply Current vs Voltage 200 150 100 50 Vgs Supply Current uA Max E d 10 12 14 16 18 20 VBS Floating Supply Voltage V Figure 17B Vps Supply Current vs Voltage 500 400 300 200 Vcc Supply Current uA 12 14 16 18 A Vcc Fixed Supply Voltage V Figure 18B Vcc Supply Current
11. gnments for correct pin configuration This diagram shows electrical connections only PI refer to our Application Notes and DesignTips for proper circuit board layout www irf com 1 International IRS2111 S PbF TOR Rectifier 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 COM The thermal resistance and power dissipation ratings are measured under board mounted and still air conditions Additional information is shown in Figs 7 through 10 Definition in Max High side floating supply voltage 625 Note 1 High side floating supply offset voltage Vp 0 3 High side floating output voltage Vp 0 3 Low side and logic fixed supply voltage 25 Note 1 Low side output voltage Voc 0 3 Logic input voltage Vcc 4 0 3 Allowable offset supply voltage transient Fig 2 50 8 Lead PDIP 1 0 8 lead SOIC 0 625 8 lead PDIP 125 8 lead SOIC 200 Junction temperature 150 Package power dissipation Ta lt 25 C Thermal resistance junction to ambient Storage temperature 150 Lead temperature soldering 10 seconds 300 Note 1 All supplies are fully tested at 25 V and an internal 20 V clamp exists for each supply Recommended Operating Conditions The input output logic timing diagram is shown in Fig 1 For prope
12. ime vs Temperature Figure 11B Deadtime vs Voltage 15 to gt o NC lt p 9 12 3 Min ZE pe Min e s x o dium 5 NET E 6 a 3 E o 3 D o o B 0 8 o 50 25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature VBiAs Supply Voltage Figure 12A Logic I Input voltage for HO Figure 12B Logic I Input voltage for HO amp Logic 0 for LO vs Temperature amp Logic 0 for LO vs Voltage www irf com 7 International TER Rectifier s 15 12 gen E 9 E M amp 6 SAN RM USER P a 2 D a 0 50 25 0 25 50 75 100 125 Temperature High Level Output Voltage V Low Level Output Voltage V Figure 13A Logic 0 Input voltage for HO amp Logic I for LO vs Temperature 1 0 0 8 0 6 0 4 o2 Max E Typ 0 0 50 25 0 25 50 75 100 125 Temperature C Figure 14A High Level Output vs Temperature 0 5 0 4 0 3 0 2 Max 0 1 fa E Typ 0 50 25 0 25 50 75 100 125 Temperature C Figure 15A Low Level Output vs Temperature www irf com Logic 0 Input Threshold V High Level Output Voltage V Low Level Output Voltage V IRS2111 S PbF 15 12 Max 10 12 14 16 18 20 Vcc Logic Supply Voltage V Figure 13B Logic 0 Input voltage for HO amp Logic I for LO vs Voltag
13. r operation the device should be used within the recommended conditions The Vs offset rating is tested with all supplies biased at a 15 V differential Definition High side floating supply absolute voltage High side floating supply offset voltage High side floating output voltage Low side and logic fixed supply voltage Low side output voltage Logic input voltage Ambient temperature Note 2 Logic operational for Vs of 5 V to 600 V Logic state held for Vs of 5 V to Vps Please refer to the Design Tip DT97 3 for more details www irf com 2 International IRS2111 S PbF TOR Rectifier Dynamic Electrical Characteristics VBIAS Vcc VBs 15 V CL 1000 pF and Ta 25 C unless otherwise specified The dynamic electrical characteristics are measured using the test circuit shown in Fig 3 Definition in i Test Conditions Turn on propagation delay Vs 0V Turn off propagation delay Vs 600 V Turn on rise time Turn off fall time Deadtime LS turn off to HS turn on amp HS turn off to LS turn on Delay matching HS amp LS turn on off Static Electrical Characteristics VBiAS Vcc Vgs 15 V and Ta 25 C unless otherwise specified The Vin Vru and lin parameters are referenced to COM The Vo and lo parameters are referenced to COM and are applicable to the respective output leads HO or LO Definition in Tes
14. t Conditions Voc 10V Logic 1 input voltage for HO amp logic 0 for LO f Vcc 15V Vcc 20 V Voc 10V VIL Logic 0 input voltage for HO amp logic 1 for LO Voc 15V Vcc 20 V VOH High level output voltage VBIAS Vo lo 2mA VoL Low level output voltage Vo ILK Offset supply leakage current VB Vs 600 V loss Quiescent VBs supply current ViN 20Vor Vi lacc Quiescent Vcc supply current IN gt IN Logic 1 input bias current VIN 7 Vcc lN Logic 0 input bias current Vin 0V VBSUV VBS supply undervoltage positive going threshold VBSUV Ves supply undervoltage negative going threshold VCCUV Vcc supply undervoltage positive going threshold VCCUV Vcc supply undervoltage negative going threshold Vo 0V Vin Vec PW lt 10 us Vo 15V Vin 0V PW lt 10 us Output high short circuit pulsed current Output low short circuit pulsed current www irf com 3 International IRS2111 S PbF TOR Rectifier Functional Block Diagram e ss Ve 3 UV R n DETECT a d e R un sn t FUSE Seege TIME e S PR E E PULSE f GEN R UV n OS DETECT T vo DEAD TIME P

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