IR2235 International Rectifier, IR2235 Datasheet
IR2235
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IR2235 Summary of contents
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... Lead Assignments for correct pin configuration). This/These diagram(s) show electrical connections only. Please refer to our Application Notes and DesignTips for proper circuit board layout. www.irf.com Data Sheet No. PD60107 revX IR2133/IR2135(J & IR2233 IR2235 J & 3-PHASE BRIDGE DRIVER Product Summary V 600V or 1200V max. OFFSET I ...
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... V B1,2,3 V S1,2 — 25ºC (28 Lead PDIP) — A (28 Lead SOIC) — (44 lead PLCC) — — (28 Lead SOIC) — (44 lead PLCC) — — -55 — Min. V S1,2,3 Note 1 (IR2233/IR2235) Note 1 V S1,2 Max. Units 625 1225 - 0.3 B1,2 0.3 B1 0.3 ...
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... IR2235 & (PbF) & 1000 & 950 600V S1,2,3 150 or 1200V 70 1000 & 1100 & ITRIP — ...
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... IR2133/IR2233) — 0.4 (for IR2135/IR2235) — 1 (for IR2133/IR2233) 7.6 8.6 (for IR2135/IR2235) 9.2 10.4 11.6 (for IR2133/IR2233) 7.2 8.2 (for IR2135/IR2235) 8.3 9.4 10.5 (for IR2133/IR2233) — 0.4 (for IR2135/IR2235) — 1 — 70 100 200 250 420 500 — ...
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... Positive input of current amplifier. V Logic ground. SS COM Low side return. V High side floating supplies. B1,2,3 HO1,2,3 High side gate drive outputs. V High side floating supply returns. S1,2,3 LO1,2,3 Low side gate drive outputs www.irf.com IR2133/IR2135/IR2233 Lead Description / IR2235 & (PbF) & 5 ...
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... IR2235J Part Number Figure 1. Input/Output Timing Diagram ITRIP FAULT FLT-CLR LIN3 CAO LIN2 CA- LIN1 CA+ HIN3 SD HIN2 VSS HIN1 COM VCC LO3 VB1 LO2 HO1 LO1 VS1 VS3 VB2 HO3 HO2 VB3 VS2 28 Lead SOIC (Wide Body) IR2133S IR2135S IR2233S IR2235S www.irf.com ...
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... HIN/LIN high HO/LO Figure 4.5. Input Filter Function www.irf.com IR2133/IR2135/IR2233 HIN LIN 10% Figure 3. Deadtime Waveform Definitions 50% 50% 50% 50% t flt t fltclr t itrip Figure 4. Overcurrent Shutdown Waveform t in,fil U on off off low Figure 5. Shutdown Waveform Definitions / IR2235 & (PbF) & 50% 50% 50% 50 50 ...
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... Input Voltage (V) Figure 6C. Turn-On Time vs. Input Voltage 1500 1200 M ax. 900 Typ. 600 300 0 10 12.5 15 Supply Voltage (V) Figure 7B. Turn-Off Time vs. Voltage 8 / IR2235 & (PbF) & 1500 1200 M ax. 900 Typ. 600 300 100 125 Figure 6B. Turn-On Time vs. Voltage ...
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... C) o Figure 9B. Turn-Off Fall Time vs. Voltage 1500 1200 M ax. 900 Typ. 600 300 100 125 C) o Figure 10B Output shutdown Time / IR2235 & (PbF) & 12.5 15 17.5 20 Supply Voltage (V) 12.5 15 17.5 20 Supply Voltage (V) 12.5 15 17.5 20 Supply Voltage (V) vs. Voltage 9 ...
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... Temperature ( Figure 12A. ITRIP to output shutdow n Time vs. Temperature 1800 1500 1200 M ax. 900 Typ. 600 300 -50 - Temperature ( ________ Figure 13A. FLT-CLR to FAULT clear Time vs. Temperature 10 / IR2235 & (PbF) & 1500 1200 M ax. 900 Typ. 600 300 100 125 C) o _____ 1800 1500 M ax ...
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... Figure 14B. Deadtime vs. Voltage Typ 100 125 o C) Figure 15B. Amplifier slew rate (+) Typ 100 125 o C) Figure 16B. Amplifier slew rate (-) / IR2235 & (PbF) & 12.5 15 17.5 20 Supply Voltage (V) 12.5 15 17.5 20 Supply Voltage (V) vs. Voltage 12.5 15 17.5 20 Supply Voltage (V) vs. Voltage 11 ...
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... Figure 18A. Logic "1" Input (OUT=HI), Fault Clear Input Voltage vs. Temperature 3.0 2.5 M ax. 2.0 Typ 1.5 1.0 -50 - Temperatre ( Figure 21A. SD Input TH(+) vs. Temperature 12 / IR2235 & (PbF) & 100 125 o C) Figure 17B. Logic "0" Input Voltage (OUT=LO), Fault Clear Voltage vs. Voltage ...
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... C) Figure 23B. I 900 700 M ax. 500 Typ 300 100 50 75 100 125 Figure 24B IR2235 & (PbF) & 12.5 15 17.5 20 Supply Voltage (V) 12.5 15 17.5 20 Supply Voltage (V) Input TH(+) vs. Voltage ITRIP 12.5 15 17.5 20 Supply Voltage (V) Input TH(-) vs. Voltage ITRIP 13 ...
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... Temperature ( Figure 26A. Low Level Output vs. Temperature 500 400 300 200 100 M ax. 0 -50 - Temperature ( Figure 27A. Offset Supply Leakage Current vs. Temperature 14 / IR2235 & (PbF) & 0.5 0.4 0.3 0.2 M ax. 0.1 0 100 125 o C) Figure 25B. High Level Output vs. Voltage ...
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... C) Figure 29B. V 800 600 400 M ax. 200 Typ 100 125 Figure 30B. Logic "1" Input Bais Current / IR2235 & (PbF) & 12.5 15 17.5 20 Supply Voltage (V) Figure 28B. V Supply Current BS vs. Voltage 12.5 15 17.5 20 Supply Voltage (V) Supply Current vs. Voltage cc 12 ...
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... Figure 32A. "High" Shutdow n Bais Current vs. Temperature 500 400 300 200 M ax. 100 0 -50 - Temperature ( Figure 33A. "Low" Shutdow n Bais Current vs. Temperature 16 / IR2235 & (PbF) & 800 600 400 200 M ax. Typ 100 125 Figure 31B. Logic "0" Input Bais Current ...
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... Bais Current Figure 35B. "Low " I 800 600 400 M ax. 200 Typ 100 125 Figure 36B. "High" Fault Clear Input Bais Current / IR2235 & (PbF) & 12.5 15 17.5 20 Supply Voltage (V) Bais Current ITRIP vs. Supply Voltage 12.5 15 17.5 20 Supply Voltage (V) Bais Current ITRIP vs ...
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... M ax. Typ. 0 -50 - Temperature ( Figure 37A. "Low" Fault Clear Input Bais Current vs. Temperature ax. Typ -50 - Temperature ( Figure 38A. IR2135/IR2235 V Threshold (+) vs. Temperature ax. 10 Typ -50 - Temperature ( Figure 39A. IR2135/IR2235 V Threshold (-) vs. Temperature 18 / IR2235 & (PbF) & 800 600 400 200 M ax. ...
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... M ax. 11 Typ -50 - Temperature ( Figure 40A. IR2135/IR2235 V Threshold (+) vs. Temperature 12 M ax. 11 Typ -50 - Temperature ( Figure 41A. IR2135/IR2235 V Threshold (-) vs. Temperature 200 150 100 M ax. Typ -50 - Temperature ( Figure 42A. FAULT- Low On Resistance vs. Temperature www.irf.com IR2133/IR2135/IR2233 ax. 9 Typ 100 125 -50 - Undervoltage Figure 40B. IR2133/IR2233 V cc Threshold (+) vs. Temperature ...
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... Temperature ( Figure 44A. Ourput Sink Current vs. Temperature ax Typ. -10 -50 - Temperature ( Figure 45A. Amplifier Input Offest Voltage vs. Temperature 20 / IR2235 & (PbF) & 500 400 300 Typ. 200 100 100 125 o C) Figure 43B. Output Source Current 1000 800 600 Typ. 400 ...
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... Typ 100 125 Figure 47B. Amplifier Power Supply Rejection ax 17.5 20 Figure 49. Amplifier Low Level Output Voltage / IR2235 & (PbF) & 12.5 15 17.5 20 Supply Voltage (V) Ratio vs. Supply Voltage 12.5 15 17.5 20 Supply Voltage (V) Ratio vs. Supply Voltage 12.5 15 17.5 20 Supply Voltage (V) vs. Supply Voltage 21 ...
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... Supply Voltage (V) Figure 50. Amplifier Output Source Current vs. Supply Voltage Typ 12.5 15 Supply Voltage (V) Figure 52. Amplifier Output High Short Circuit Current vs. Supply Voltage 22 / IR2235 & (PbF) & 2.5 2.0 1.5 1.0 Typ. 0 0.0 17 12.5 Figure 51. Amplifier Output Sink Current vs. Supply Voltage 20 16 ...
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... Figure 10. IR2133J Junction Temperature vs Frequency Driving (IRGPC50KD2) Rgate = 5 IR2235 & (PbF) & 480 320V 160 0V 1E+3 1E+4 1E+5 Frequency (Hz) Vcc = 15V 480V 320V 160V 0V 1E+3 1E+4 1E+5 Frequency (Hz) Vcc = 15V ...
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... Frequency (Hz) Figure 11. IR2233J Junction Temperature vs Frequency Driving (IRG4PH30KD) Rgate = 20 @ Vcc = 15V 120 110 100 1E+2 1E+3 Frequency (Hz) Figure 13. IR2233J Junction Temperature vs Frequency Driving (IRG4PH50KD) Rgate = 10 @ Vcc = 15V 24 / IR2235 & (PbF) & 900V 1 120 1 110 1 100 500 90 80 300V 1E+5 1E+2 Figure 12 ...
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... Package Dimensions www.irf.com IR2133/IR2135/IR2233 28-Lead PDIP (wide body) NOTES 28-Lead SOIC (wide body) / IR2235 & (PbF) & 01-6011 01-3024 02 (MS-011AB) 01-6013 01-3040 02 (MS-013AE) 25 ...
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... IR2133/IR2135/IR2233 26 / IR2235 & (PbF) & 44-Lead PLCC w/o 12 leads 01-6009 00 01-3004 02(mod. ) (MS-018AC) www.irf.com ...
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... PLCC IR2133J order IR2133JPbF 44-Lead PLCC IR2135J order IR2135JPbF 44-Lead PLCC IR2233J order IR2233JPbF 44-Lead PLCC IR2235J order IR2235JPbF IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245 Tel: (310) 252-7105 This product has been qualified per industrial level Data and specifications subject to change without notice. ...