IRL7833 IRF | Alldatasheet
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www.irf.com 1 4/22/04 IRL7833 IRL7833S IRL7833L HEXFET /G174/G32Power MOSFET Notes/G32/G129/G32through /G134 are on page 12
Applications
/G108Very Low RDS(on) at 4.5V VGS /G108Ultra-Low Gate Impedance /G108Fully Characterized Avalanche Voltage and Current /G108High Frequency Synchronous Buck Converters for Computer Processor Power /G108High Frequency Isolated DC-DC Converters with Synchronous Rectification for Telecom and Consumer Use D 2Pak IRL7833S TO-220AB IRL7833 TO-262 IRL7833L VDSS R DS(on) max Qg 30V 3.8m/c58 32nC Absolute Maximum Ratings Parameter Units VDS Drain-to-Source Voltage V VGS Gate-to-Source Voltage ID @ TC = 25°C Continuous Drain Current, VGS @ 10V ID @ TC = 100°C Continuous Drain Current, VGS @ 10V A IDM Pulsed Drain Current /c99 PD @T C = 25°C Maximum Power Dissipation /c103 W PD @T C = 100°C Maximum Power Dissipation /c103 Linear Derating Factor W/°C TJ Operating Junction and °C TSTG Storage Temperature Range Mounting Torque, 6-32 or M3 screw Thermal Resistance Parameter Typ. Max. Units R θJC Junction-to-Case ––– 1.04 R θCS Case-to-Sink, Flat, Greased Surface /c104 0.50 ––– °C/W R θJA Junction-to-Ambient /c104 ––– 62 R θJA Junction-to-Ambient (PCB Mount) /c103/c3 ––– 40 Max. 150/c102 110/c102 600 ± 20 10 lbf/c121 in (1.1N/c121 m) -55 to + 175 140 0.96 /G80/G68/G32/G45/G32/G57/G52/G54/G54/G56/G66
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 2 www.irf.com S D G Static @ TJ = 25°C (unless otherwise specified) Parameter Min. Typ. Max. Units BV DSS Drain-to-Source Breakdown Voltage 30 ––– ––– V ∆ΒVDSS /∆TJ Breakdown Voltage Temp. Coefficient ––– 18 ––– mV/°C R DS(on) Static Drain-to-Source On-Resistance ––– 3.1 3.8 m Ω ––– 3.7 4.5 VGS(th) Gate Threshold Voltage 1.4 ––– 2.3 V ∆VGS(th)/∆TJ Gate Threshold Voltage Coefficient ––– -11 ––– mV/°C IDSS Drain-to-Source Leakage Current ––– ––– 1.0 µA IGSS Gate-to-Source Forward Leakage ––– ––– 100 nA Gate-to-Source Reverse Leakage ––– ––– -100 gfs Forward Transconductance 150 ––– ––– S Q g Total Gate Charge ––– 32 47 Q gs1 Pre-Vth Gate-to-Source Charge ––– 8.7 ––– Q gs2 Post-Vth Gate-to-Source Charge ––– 5.1 ––– nC Q gd Gate-to-Drain Charge ––– 13 ––– Q godr Gate Charge Overdrive ––– 5.3 ––– See Fig. 16 Q sw Switch Charge (Qgs2 + Qgd) ––– 18 ––– Q oss Output Charge ––– 22 ––– nC td(on) Turn-On Delay Time ––– 18 ––– td(off) Turn-Off Delay Time ––– 21 ––– C iss Input Capacitance ––– 4170 ––– C oss Output Capacitance ––– 950 ––– pF C rss Reverse Transfer Capacitance ––– 470 ––– Avalanche Characteristics Parameter Units EAS Single Pulse Avalanche Energy/c100/c104 mJ IAR Avalanche Current/c3/c99 A EAR Repetitive Avalanche Energy /c99 mJ Diode Characteristics Parameter Min. Typ. Max. Units IS Continuous Source Current ––– ––– 150/c102 (Body Diode) A ISM Pulsed Source Current ––– ––– 600 (Body Diode)/c3/c99 /c104 VSD Diode Forward Voltage ––– ––– 1.2 V trr Reverse Recovery Time ––– 42 63 ns Q rr Reverse Recovery Charge ––– 34 51 nC VGS = 20V VGS = -20V Conditions Max. 560 ƒ = 1.0MHz Conditions VGS = 0V, ID = 250µA Reference to 25°C, ID = 1mA VGS = 10V, ID = 38A /c102 VDS = VGS , ID = 250µA VDS = 24V, VGS = 0V VDS = 24V, VGS = 0V, TJ = 125°C Clamped Inductive Load VDS = 15V, ID = 30A VDS = 16V, VGS = 0V VDD = 15V, VGS = 4.5V /c102 ID = 26A VDS = 16V TJ = 25°C, IF = 30A, VDD = 15V di/dt = 100A/µs /c102 TJ = 25°C, IS = 30A, VGS = 0V /c102 showing the integral reverse p-n junction diode. MOSFET symbol VGS = 4.5V, ID = 30A /c102 ––– VGS = 4.5V Typ. ––– ––– ID = 30A VGS = 0V VDS = 15V
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 www.irf.com 3 Fig 4. Normalized On-Resistance Vs. Temperature Fig 2. Typical Output CharacteristicsFig 1. Typical Output Characteristics Fig 3. Typical Transfer Characteristics 0.1 1 10 100 1000 VDS , Drain-to-Source Voltage (V) 100 1000 ID, Drain-to-Source Current (A) 2.7V 20µs PULSE WIDTH Tj = 25°C VGS TOP 10V 7.0V 4.5V 3.7V 3.5V 3.3V 3.0V BOTTOM 2.7V 0.1 1 10 100 1000 VDS , Drain-to-Source Voltage (V) 100 1000 ID, Drain-to-Source Current (A) 2.7V 20µs PULSE WIDTH Tj = 175°C VGS TOP 10V 7.0V 4.5V 3.7V 3.5V 3.3V 3.0V BOTTOM 2.7V -60 -40 -20 0 20 40 60 80 100 120 140 160 180 TJ , Junction Temperature (°C) 0.5 1.0 1.5 2.0 RDS(on) , Drain-to-Source On Resistance (Norm alized) ID = 75A VGS = 10V VGS , Gate-to-Source Voltage (V) 100 1000 ID, Drain-to-Source Current (Α) TJ = 25°C TJ = 175°C VDS = 15V 20µs PULSE WIDTH
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 4 www.irf.com Fig 8. Maximum Safe Operating Area Fig 6. Typical Gate Charge Vs. Gate-to-Source Voltage Fig 5. Typical Capacitance Vs. Drain-to-Source Voltage Fig 7. Typical Source-Drain Diode Forward Voltage 1 10 100 VDS , Drain-to-Source Voltage (V) 100 1000 10000 100000 C, Capacitance(pF) VGS = 0V, f = 1 MHZ Ciss = Cgs + Cgd, Cds SHORTED Crss = Cgd Coss = Cds + Cgd C oss C rss C iss VSD , Source-to-Drain Voltage (V) 0.10 1.00 10.00 100.00 1000.00 ISD, Reverse Drain Current (A) TJ = 25°C TJ = 175°C VGS = 0V 1 10 100 VDS , Drain-to-Source Voltage (V) 0.1 100 1000 ID, Drain-to-Source Current (A) Tc = 25°C Tj = 175°C Single Pulse 1msec 10msec OPERATION IN THIS AREA LIMITED BY RDS (on) 100µsec 0 5 10 15 20 25 30 35 40 QG Total Gate Charge (nC) 0.0 2.0 4.0 6.0 8.0 10.0 12.0 VGS, Gate-to-Source Voltage (V) VDS = 24V VDS = 15V ID = 30A
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 www.irf.com 5 Fig 11. Maximum Effective Transient Thermal Impedance, Junction-to-Case Fig 9. Maximum Drain Current Vs. Case Temperature Fig 10. Threshold Voltage Vs. Temperature 25 50 75 100 125 150 175 120 160 I , Drain Current (A)D LIMITED BY PACKAGE /G84/G67/G44/G32/G67/G97/G115/G101/G32/G84/G101/G109/G112/G101/G114/G97/G116/G117/G114/G101/G32/G40/G176/G67/G41-75 -50 -25 0 25 50 75 100 125 150 175 TJ , Temperature ( °C ) 0.0 0.5 1.0 1.5 2.0 2.5 VGS(th) Gate threshold Voltage (V) ID = 250µA 0.01 0.1 Notes: 1. Duty factor D = t / t 2. Peak T = P x Z + T 1 2 J DM thJC C P t t DM t , Rectangular Pulse Duration (sec) Thermal Response (Z ) thJC 0.01 0.02 0.05 0.10 0.20 D = 0.50 SINGLE PULSE (THERMAL RESPONSE)
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 6 www.irf.com D.U.T. VD S IDIG 3mA VGS .3µF 50KΩ .2µF12V Current Regulator Same Type as D.U.T. Current Sampling Resistors Fig 13. Gate Charge Test Circuit Fig 12b. Unclamped Inductive Waveforms Fig 12a. Unclamped Inductive Test Circuit tp V(BR)DSS IAS Fig 12c. Maximum Avalanche Energy Vs. Drain Current R G IAS 0.01Ωtp D.U.T LVDS - VDD DRIVER A 15V 20VVGS 25 50 75 100 125 150 175 400 800 1200 1600 2000 E , Single Pulse Avalanche Energy (mJ)AS ID TOP BOTTOM 12A 21A 30A Fig 14a. Switching Time Test Circuit Fig 14b. Switching Time Waveforms VGS VDS 90% 10% td(on) td(off)tr tf VGS Pulse Width < 1µs Duty Factor < 0.1% VDD VDS LD D.U.T
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 www.irf.com 7 Fig 15. /G80/G101/G97/G107/G32/G68/G105/G111/G100/G101/G32/G82/G101/G99/G111/G118/G101/G114/G121/G32/G100/G118/G47/G100/G116/G32/G84/G101/G115/G116/G32/G67/G105/G114/G99/G117/G105/G116/G32for N-Channel HEXFET /G174/G32Power MOSFETs /G67/G105/G114/G99/G117/G105/G116/G32/G76/G97/G121/G111/G117/G116/G32/G67/G111/G110/G115/G105/G100/G101/G114/G97/G116/G105/G111/G110/G115
- /G32/G76/G111/G119/G32/G83/G116/G114/G97/G121/G32/G73/G110/G100/G117/G99/G116/G97/G110/G99/G101 /G32/G32 • /G71/G114/G111/G117/G110/G100/G32/G80/G108/G97/G110/G101 /G32/G32 • /G76/G111/G119/G32/G76/G101/G97/G107/G97/G103/G101/G32/G73/G110/G100/G117/G99/G116/G97/G110/G99/G101 /G32/G32/G32/G32/G32/G32/G67/G117/G114/G114/G101/G110/G116/G32/G84/G114/G97/G110/G115/G102/G111/G114/G109/G101/G114 P.W. Period di/dt Diode Recovery dv/dt Ripple ≤ 5% Body Diode Forward Drop R e-Applied Voltage Reverse Recovery Current Body Diode Forward Current VGS =10V VDD ISD Driver Gate Drive D.U.T. ISD Waveform D.U.T. VDS Waveform Inductor Curent D = P.W . Period /G42/G32/G86/G71/G83/G32/G61/G32/G53/G86/G32/G102/G111/G114/G32/G76/G111/G103/G105/G99/G32/G76/G101/G118/G101/G108/G32/G68/G101/G118/G105/G99/G101/G115 /G42 /G131 /G132/G130 /G82/G71 /G86/G68/G68• /G100/G118/G47/G100/G116/G32/G99/G111/G110/G116/G114/G111/G108/G108/G101/G100/G32/G98/G121/G32/G82/G71
- /G68/G114/G105/G118/G101/G114/G32/G115/G97/G109/G101/G32/G116/G121/G112/G101/G32/G97/G115/G32/G68/G46/G85/G46/G84/G46
- /G73/G83/G68/G32/G99/G111/G110/G116/G114/G111/G108/G108/G101/G100/G32/G98/G121/G32/G68/G117/G116/G121/G32/G70/G97/G99/G116/G111/G114/G32/G34/G68/G34
- /G68/G46/G85/G46/G84/G46/G32/G45/G32/G68/G101/G118/G105/G99/G101/G32/G85/G110/G100/G101/G114/G32/G84/G101/G115/G116 /G68/G46/G85/G46/G84 /G129 Fig 16. Gate Charge Waveform Vds Vgs Id Vgs(th) Qgs1 Qgs2 Qgd Qgodr
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 8 www.irf.com Control FET /G83/G112/G101/G99/G105/G97/G108/G32/G97/G116/G116/G101/G110/G116/G105/G111/G110/G32/G104/G97/G115/G32/G98/G101/G101/G110/G32/G103/G105/G118/G101/G110/G32/G116/G111/G32/G116/G104/G101/G32/G112/G111/G119/G101/G114/G32/G108/G111/G115/G115/G101/G115 /G105/G110/G32/G116/G104/G101/G32/G115/G119/G105/G116/G99/G104/G105/G110/G103/G32/G101/G108/G101/G109/G101/G110/G116/G115/G32/G111/G102/G32/G116/G104/G101/G32/G99/G105/G114/G99/G117/G105/G116/G32/G45/G32/G81/G49/G32/G97/G110/G100/G32/G81/G50/G46 /G80/G111/G119/G101/G114/G32/G108/G111/G115/G115/G101/G115/G32/G105/G110/G32/G116/G104/G101/G32/G104/G105/G103/G104/G32/G115/G105/G100/G101/G32/G115/G119/G105/G116/G99/G104/G32/G81/G49/G44/G32/G97/G108/G115/G111/G32/G99/G97/G108/G108/G101/G100 /G116/G104/G101/G32/G67/G111/G110/G116/G114/G111/G108/G32/G70/G69/G84/G44/G32/G97/G114/G101/G32/G105/G109/G112/G97/G99/G116/G101/G100/G32/G98/G121/G32/G116/G104/G101/G32/G82 /G100/G115/G40/G111/G110/G41/G32/G111/G102/G32/G116/G104/G101 /G77/G79/G83/G70/G69/G84/G44/G32/G98/G117/G116/G32/G116/G104/G101/G115/G101/G32/G99/G111/G110/G100/G117/G99/G116/G105/G111/G110/G32/G108/G111/G115/G115/G101/G115/G32/G97/G114/G101/G32/G111/G110/G108/G121/G32/G97/G98/G111/G117/G116 /G111/G110/G101/G32/G104/G97/G108/G102/G32/G111/G102/G32/G116/G104/G101/G32/G116/G111/G116/G97/G108/G32/G108/G111/G115/G115/G101/G115/G46 /G80/G111/G119/G101/G114/G32/G108/G111/G115/G115/G101/G115/G32/G105/G110/G32/G116/G104/G101/G32/G99/G111/G110/G116/G114/G111/G108/G32/G115/G119/G105/G116/G99/G104/G32/G81/G49/G32/G97/G114/G101/G32/G103/G105/G118/G101/G110 /G98/G121/G59 Ploss = Pconduction+ Pswitching+ Pdrive+ Poutput This can be expanded and approximated by; Ploss = Irms × Rds(on )() + I× Q gd ig × Vin × f + I× Q gs 2 ig × Vin × f + Q g × Vg × f() + Q oss 2 ×Vin × f /G84/G104/G105/G115/G32/G115/G105/G109/G112/G108/G105/G102/G105/G101/G100/G32/G108/G111/G115/G115/G32/G101/G113/G117/G97/G116/G105/G111/G110/G32/G105/G110/G99/G108/G117/G100/G101/G115/G32/G116/G104/G101/G32/G116/G101/G114/G109/G115/G32/G81/G103/G115/G50 /G97/G110/G100/G32/G81/G111/G115/G115/G32/G119/G104/G105/G99/G104/G32/G97/G114/G101/G32/G110/G101/G119/G32/G116/G111/G32/G80/G111/G119/G101/G114/G32/G77/G79/G83/G70/G69/G84/G32/G100/G97/G116/G97/G32/G115/G104/G101/G101/G116/G115/G46 /G81/G103/G115/G50/G32/G105/G115/G32/G97/G32/G115/G117/G98/G32/G101/G108/G101/G109/G101/G110/G116/G32/G111/G102/G32/G116/G114/G97/G100/G105/G116/G105/G111/G110/G97/G108/G32/G103/G97/G116/G101/G45/G115/G111/G117/G114/G99/G101 /G99/G104/G97/G114/G103/G101/G32/G116/G104/G97/G116/G32/G105/G115/G32/G105/G110/G99/G108/G117/G100/G101/G100/G32/G105/G110/G32/G97/G108/G108/G32/G77/G79/G83/G70/G69/G84/G32/G100/G97/G116/G97/G32/G115/G104/G101/G101/G116/G115/G46 /G84/G104/G101/G32/G105/G109/G112/G111/G114/G116/G97/G110/G99/G101/G32/G111/G102/G32/G115/G112/G108/G105/G116/G116/G105/G110/G103/G32/G116/G104/G105/G115/G32/G103/G97/G116/G101/G45/G115/G111/G117/G114/G99/G101/G32/G99/G104/G97/G114/G103/G101 /G105/G110/G116/G111/G32/G116/G119/G111/G32/G115/G117/G98/G32/G101/G108/G101/G109/G101/G110/G116/G115/G44/G32/G81/G103/G115/G49/G32/G97/G110/G100/G32/G81/G103/G115/G50/G44/G32/G99/G97/G110/G32/G98/G101/G32/G115/G101/G101/G110/G32/G102/G114/G111/G109 /G70/G105/G103/G32/G49/G54/G46 /G81/G103/G115/G50/G32/G105/G110/G100/G105/G99/G97/G116/G101/G115/G32/G116/G104/G101/G32/G99/G104/G97/G114/G103/G101/G32/G116/G104/G97/G116/G32/G109/G117/G115/G116/G32/G98/G101/G32/G115/G117/G112/G112/G108/G105/G101/G100/G32/G98/G121 /G116/G104/G101/G32/G103/G97/G116/G101/G32/G100/G114/G105/G118/G101/G114/G32/G98/G101/G116/G119/G101/G101/G110/G32/G116/G104/G101/G32/G116/G105/G109/G101/G32/G116/G104/G97/G116/G32/G116/G104/G101/G32/G116/G104/G114/G101/G115/G104/G111/G108/G100 /G118/G111/G108/G116/G97/G103/G101/G32/G104/G97/G115/G32/G98/G101/G101/G110/G32/G114/G101/G97/G99/G104/G101/G100/G32/G32/G97/G110/G100/G32/G116/G104/G101/G32/G116/G105/G109/G101/G32/G116/G104/G101/G32/G100/G114/G97/G105/G110/G32/G99/G117/G114/G45 /G114/G101/G110/G116/G32/G114/G105/G115/G101/G115/G32/G116/G111/G32/G73 /G100/G109/G97/G120/G32/G32/G97/G116/G32/G119/G104/G105/G99/G104/G32/G116/G105/G109/G101/G32/G116/G104/G101/G32/G100/G114/G97/G105/G110/G32/G118/G111/G108/G116/G97/G103/G101/G32/G98/G101/G45 /G103/G105/G110/G115/G32/G116/G111/G32/G99/G104/G97/G110/G103/G101/G46/G32/G77/G105/G110/G105/G109/G105/G122/G105/G110/G103/G32/G81/G103/G115/G50/G32/G105/G115/G32/G97/G32/G99/G114/G105/G116/G105/G99/G97/G108/G32/G102/G97/G99/G116/G111/G114/G32/G105/G110 /G114/G101/G100/G117/G99/G105/G110/G103/G32/G115/G119/G105/G116/G99/G104/G105/G110/G103/G32/G108/G111/G115/G115/G101/G115/G32/G105/G110/G32/G81/G49/G46 /G81/G111/G115/G115/G32/G105/G115/G32/G116/G104/G101/G32/G99/G104/G97/G114/G103/G101/G32/G116/G104/G97/G116/G32/G109/G117/G115/G116/G32/G98/G101/G32/G115/G117/G112/G112/G108/G105/G101/G100/G32/G116/G111/G32/G116/G104/G101/G32/G111/G117/G116/G45 /G112/G117/G116/G32/G99/G97/G112/G97/G99/G105/G116/G97/G110/G99/G101/G32/G111/G102/G32/G116/G104/G101/G32/G77/G79/G83/G70/G69/G84/G32/G100/G117/G114/G105/G110/G103/G32/G101/G118/G101/G114/G121/G32/G115/G119/G105/G116/G99/G104/G45 /G105/G110/G103/G32/G99/G121/G99/G108/G101/G46/G32/G70/G105/G103/G117/G114/G101/G32/G65/G32/G115/G104/G111/G119/G115/G32/G104/G111/G119/G32/G81/G111/G115/G115/G32/G105/G115/G32/G102/G111/G114/G109/G101/G100/G32/G98/G121/G32/G116/G104/G101 /G112/G97/G114/G97/G108/G108/G101/G108/G32/G99/G111/G109/G98/G105/G110/G97/G116/G105/G111/G110/G32/G111/G102/G32/G116/G104/G101/G32/G118/G111/G108/G116/G97/G103/G101/G32/G100/G101/G112/G101/G110/G100/G97/G110/G116/G32/G40/G110/G111/G110/G45 /G108/G105/G110/G101/G97/G114/G41/G32/G99/G97/G112/G97/G99/G105/G116/G97/G110/G99/G101/G146/G115/G32/G67/G100/G115/G32/G97/G110/G100/G32/G67/G100/G103/G32/G119/G104/G101/G110/G32/G109/G117/G108/G116/G105/G112/G108/G105/G101/G100/G32/G98/G121 /G116/G104/G101/G32/G112/G111/G119/G101/G114/G32/G115/G117/G112/G112/G108/G121/G32/G105/G110/G112/G117/G116/G32/G98/G117/G115/G115/G32/G118/G111/G108/G116/G97/G103/G101/G46 Synchronous FET The power loss equation for Q2 is approximated by; Ploss = Pconduction+ Pdrive+ Poutput Ploss = Irms × Rds(on)() + Q g × Vg × f() + Q oss 2 × Vin × f + Q rr × Vin × f( ) *dissipated primarily in Q1. For the synchronous MOSFET Q2, Rds(on) is an im- portant characteristic; however, once again the im- portance of gate charge must not be overlooked since it impacts three critical areas. Under light load the MOSFET must still be turned on and off by the con- trol IC so the gate drive losses become much more significant. Secondly, the output charge Q oss and re- verse recovery charge Qrr both generate losses that are transfered to Q1 and increase the dissipation in that device. Thirdly, gate charge will impact the MOSFETs’ susceptibility to Cdv/dt turn on. The drain of Q2 is connected to the switching node of the converter and therefore sees transitions be- tween ground and V in. As Q1 turns on and off there is a rate of change of drain voltage dV/dt which is ca- pacitively coupled to the gate of Q2 and can induce a voltage spike on the gate that is sufficient to turn the MOSFET on, resulting in shoot-through current . The ratio of Q gd/Qgs1 must be minimized to reduce the potential for Cdv/dt turn on. Power MOSFET Selection for Non-Isolated DC/DC Converters Figure A: Qoss Characteristic
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 www.irf.com 9 LEAD ASSIGNMENTS 1 - GATE 2 - DRAIN 3 - SOURCE 4 - DRAIN - B - 1.32 (.052) 1.22 (.048) 3X 0.55 (.022) 0.46 (.018) 2.92 (.115) 2.64 (.104) 4.69 (.185) 4.20 (.165) 3X 0.93 (.037) 0.69 (.027) 4.06 (.160) 3.55 (.140) 1.15 (.045) MIN 6.47 (.255) 6.10 (.240) 3.78 (.149) 3.54 (.139) - A - 10.54 (.415) 2.62 (.103) 15.24 (.600) 14.84 (.584) 14.09 (.555) 13.47 (.530) 3X 1.40 (.055) 1.15 (.045) 2.54 (.100) 0.36 (.014) M B A M 1 2 3 N OTES: 1 DIMENSIONING & TOLERANCING PER ANSI Y14.5M, 1982. 3 OUTLINE CONFORMS TO JEDEC OUTLINE TO-220AB. 2 CONTROLLING DIMENSION : INCH 4 HEATSINK & LEAD MEASUREMENTS DO NOT INCLUDE BURRS . /G84/G79/G45/G50/G50/G48/G65/G66/G32/G80/G97/G114/G116/G32/G77/G97/G114/G107/G105/G110/G103/G32/G73/G110/G102/G111/G114/G109/G97/G116/G105/G111/G110 /G84/G79/G45/G50/G50/G48/G65/G66/G32/G80/G97/G99/G107/G97/G103/G101/G32/G79/G117/G116/G108/G105/G110/G101 Dimensions are shown in millimeters (inches) PART NUMBE RINTERNATIONAL RECTIFIER LOGO EXAMPLE : THIS IS AN IRF1010 WITH ASSEMBLY LOT CODE 9B1M ASSEMBLY LOT CODE DATE CODE (YYWW) YY = YEAR WW = WEEK 9246 IRF1010 9B 1M A
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 10 www.irf.com /G68/G50/G80/G97/G107/G32/G80/G97/G99/G107/G97/G103/G101/G32/G79/G117/G116/G108/G105/G110/G101 /G68/G50/G80/G97/G107/G32/G80/G97/G114/G116/G32/G77/G97/G114/G107/G105/G110/G103/G32/G73/G110/G102/G111/G114/G109/G97/G116/G105/G111/G110 /c41 /c24 /c22 /c19 /c54 /c55 /c43 /c44 /c54 /c3 /c44 /c54 /c3 /c36 /c49 /c3 /c44 /c53 /c41 /c24 /c22 /c19 /c54 /c3 /c58 /c44 /c55 /c43 /c47 /c50 /c55 /c3 /c38 /c50 /c39 /c40 /c3 /c27 /c19 /c21 /c23 /c36 /c54 /c54 /c40 /c48 /c37 /c47 /c40 /c39 /c3 /c50 /c49 /c3 /c58 /c58 /c3 /c19 /c21 /c15 /c3 /c21 /c19 /c19 /c19 /c44 /c49 /c3 /c55 /c43 /c40 /c3 /c36 /c54 /c54 /c40 /c48 /c37 /c47 /c60 /c3 /c47 /c44 /c49 /c40 /c3 /c5 /c47 /c5 /c36 /c54 /c54 /c40 /c48 /c37 /c47 /c60 /c47 /c50 /c55 /c3 /c38 /c50 /c39 /c40 /c44 /c49 /c55 /c40 /c53 /c49 /c36 /c55 /c44 /c50 /c49 /c36 /c47 /c53 /c40 /c38 /c55 /c44 /c41 /c44 /c40 /c53 /c47 /c50 /c42 /c50 /c51 /c36 /c53 /c55 /c3 /c49 /c56 /c48 /c37 /c40 /c53 /c39 /c36 /c55 /c40 /c3 /c38 /c50 /c39 /c40 /c60 /c40 /c36 /c53 /c3 /c19 /c3 /c32 /c3 /c21 /c19 /c19 /c19 /c58 /c40 /c40 /c46 /c3 /c19 /c21 /c47 /c44 /c49 /c40 /c3 /c47
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 www.irf.com 11 TO-262 Part Marking Information /c40/c59/c36 /c48 /c51/c47/c40/c29 /c55/c43/c44/c54/c3/c44/c54/c3/c36/c49/c3/c44/c53/c47/c22 /c20/c19/c22 /c47 /c47/c50/c55/c3/c38/c50/c39/c40/c3/c20/c26/c27 /c28 /c36/c54/c54/c40/c48 /c37/c47/c60 /c51/c36/c53 /c55/c3/c49/c56 /c48 /c37/c40/c53 /c39/c36/c55/c40/c3/c38/c50/c39/c40 /c58 /c40/c40/c46 /c3/c20/c28 /c47/c44/c49/c40/c3/c38 /c47/c50/c55/c3/c38/c50/c39/c40 /c60/c40/c36 /c53/c3/c26/c3/c32 /c3/c20/c28/c28/c26 /c36/c54/c54/c40/c48 /c37/c47/c40/c39/c3/c50/c49/c3/c58 /c58 /c3/c20/c28/c15/c3/c20/c28 /c28/c26 /c44/c49/c3/c55/c43/c40/c3/c36/c54/c54/c40/c48 /c37/c47/c60/c3/c47/c44/c49/c40/c3/c5/c38/c5 /c47/c50/c42/c50 /c53/c40/c38/c55/c44/c41/c44/c40/c53 /c44/c49/c55/c40/c53/c49/c36/c55/c44/c50/c49/c36/c47
/G73/G82/G76/G55/G56/G51/G51/G47/G83/G47/G76 12 www.irf.com /G78/G111/G116/G101/G115/G58 /G129/G32Repetitive rating; pulse width limited by max. junction temperature. /G130 /G32Starting TJ = 25°C, L = 1.3mH, RG = 25Ω, IAS = 30A. /G131 Pulse width ≤ 400µs; duty cycle ≤ 2%. /G132 Calculated continuous current based on maximum allowable junction temperature. Package limitation current is 75A. /G133 When mounted on 1" square PCB (FR-4 or G-10 Material). For recommended footprint and soldering techniques refer to application note #AN-994. /G134 This is only applied to TO-220AB package. Data and specifications subject to change without notice. This product has been designed and qualified for the Industrial market. Qualification Standards can be found on IR’s Web site. IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, USA Tel: (310) 252-7105 TAC Fax: (310) 252-7903 Visit us at www.irf.com for sales contact information.04/04 /G68/G105/G109/G101/G110/G115/G105/G111/G110/G115/G32/G97/G114/G101/G32/G115/G104/G111/G119/G110/G32/G105/G110/G32/G109/G105/G108/G108/G105/G109/G101/G116/G101/G114/G115/G32/G40/G105/G110/G99/G104/G101/G115/G41 /G68/G50/G80/G97/G107/G32/G84/G97/G112/G101/G32/G38/G32/G82/G101/G101/G108/G32/G73/G110/G102/G111/G114/G109/G97/G116/G105/G111/G110 TRR FEED DIRECTION 1.85 (.073) 1.65 (.065) 1.60 (.063) 1.50 (.059) 4.10 (.161) 3.90 (.153) TRL FEED DIRECTION 10.90 (.429) 10.70 (.421) 16.10 (.634) 15.90 (.626) 1.75 (.069) 1.25 (.049) 11.60 (.457) 11.40 (.449) 15.42 (.609) 15.22 (.601) 4.72 (.136) 4.52 (.178) 24.30 (.957) 23.90 (.941) 0.368 (.0145) 0.342 (.0135) 1.60 (.063) 1.50 (.059) 13.50 (.532) 12.80 (.504) 330.00 (14.173) MAX. 27.40 (1.079) 23.90 (.941) 60.00 (2.362) MIN. 30.40 (1.197) MAX. 26.40 (1.039) 24.40 (.961) NOTES : 1. COMFORMS TO EIA-418. 2. CONTROLLING DIMENSION: MILLIMETER. 3. DIMENSION MEASURED @ HUB. 4. INCLUDES FLANGE DISTORTION @ OUTER EDGE. TO-220AB package isnot recommended for Surface Mount Application.