SMPS MOSFET. V DSS R DS(on) max I D
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1 PD- 9385A SMPS MOSFET IRFR8N5D IRFU8N5D HEXFET Power MOSFET Applications l High frequency DC-DC converters V DSS R DS(on) max I D 50V 0.25Ω 8A Benefits l Low Gate to Drain Charge to Reduce Switching Losses l Fully Characterized Capacitance Including Effective C OSS to Simplify Design, (See App. Note AN) l Fully Characterized Avalanche Voltage and Current D-Pak IRFR8N5D I-Pak IRFU8N5D Absolute Maximum Ratings Parameter Max. Units I T C = 25 C Continuous Drain Current, V V 8 I T C = C Continuous Drain Current, V V 3 A I DM Pulsed Drain Current 72 P C = 25 C Power Dissipation W Linear Derating Factor 0.7 W/ C V GS Gate-to-Source Voltage ± 30 V dv/dt Peak Diode Recovery dv/dt ƒ 3.3 V/ns T J Operating Junction and -55 to 75 T STG Storage Temperature Range Soldering Temperature, for seconds 300 (.6mm from case ) C Typical SMPS Topologies l Telecom 48V input DC-DC Active Clamp Reset Forward Converter Notes through are on page 2/23/00
2 T J = 25 C (unless otherwise specified) Parameter Min. Typ. Max. Units Conditions V (BR)DSS Drain-to-Source Breakdown Voltage 50 V V GS = 0V, I D = 250µA V (BR)DSS/ T J Breakdown Voltage Temp. Coefficient 0.7 V/ C Reference to 25 C, I D = ma R DS(on) Static Drain-to-Source On-Resistance 0.25 Ω V GS = V, I D = A V GS(th) Gate Threshold Voltage V V DS = V GS, I D = 250µA 25 V µa DS = 50V, V GS = 0V I DSS Drain-to-Source Leakage Current 250 V DS = 20V, V GS = 0V, T J = 50 C Gate-to-Source Forward Leakage V GS = 30V I GSS na Gate-to-Source Reverse Leakage - V GS = -30V T J = 25 C (unless otherwise specified) Parameter Min. Typ. Max. Units Conditions g fs Forward Transconductance 4.2 S V DS = 50V, I D = A Q g Total Gate Charge I D = A Q gs Gate-to-Source Charge 7.6 nc V DS = 20V Q gd Gate-to-Drain ("Miller") Charge 4 2 V GS = V, t d(on) Turn-On Delay Time 8.8 V DD = 75V t r Rise Time 25 ns I D = A t d(off) Turn-Off Delay Time 5 R G = 6.8Ω t f Fall Time 9.8 V GS = V C iss Input Capacitance 900 V GS = 0V C oss Output Capacitance 90 V DS = 25V C rss Reverse Transfer Capacitance 49 pf ƒ =.0MHz C oss Output Capacitance 60 V GS = 0V, V DS =.0V, ƒ =.0MHz C oss Output Capacitance 88 V GS = 0V, V DS = 20V, ƒ =.0MHz C oss eff. Effective Output Capacitance 95 V GS = 0V, V DS = 0V to 20V Avalanche Characteristics Parameter Typ. Max. Units E AS Single Pulse Avalanche Energy 200 mj I AR Avalanche Current A E AR Repetitive Avalanche Energy mj Thermal Resistance Parameter Typ. Max. Units R θjc Junction-to-Case.4 R θja Junction-to-Ambient (PCB mount)* 50 C/W R θja Junction-to-Ambient Diode Characteristics Parameter Min. Typ. Max. Units Conditions D I S Continuous Source Current MOSFET symbol 8 (Body Diode) showing the A G I SM Pulsed Source Current integral reverse 72 (Body Diode) p-n junction diode. S V SD Diode Forward Voltage.3 V T J = 25 C, I S = A, V GS = 0V t rr Reverse Recovery Time ns T J = 25 C, I F = A Q rr Reverse RecoveryCharge nc di/dt = A/µs t on Forward Turn-On Time Intrinsic turn-on time is negligible (turn-on is dominated by L S L D ) 2
3 I D, Drain-to-Source Current (A) VGS TOP 5V V 9.0V 8.0V 7.5V 7.0V 6.5V BOTTOM 6.0V 6.0V I D, Drain-to-Source Current (A) VGS TOP 5V V 9.0V 8.0V 7.5V 7.0V 6.5V BOTTOM 6.0V 6.0V 20µs PULSE WIDTH T J = 25 C V DS, Drain-to-Source Voltage (V) 20µs PULSE WIDTH T J = 75 C 0. V DS, Drain-to-Source Voltage (V) Fig. Typical Output Characteristics Fig 2. Typical Output Characteristics I D, Drain-to-Source Current (A) T J = 75 C T = 25 J C V DS= 50V 20µs PULSE WIDTH V GS, Gate-to-Source Voltage (V) R DS(on), Drain-to-Source On Resistance (Normalized) 3.0 I D = 8A V GS = V T J, Junction Temperature ( C) Fig 3. Typical Transfer Characteristics Fig 4. Normalized On-Resistance Vs. Temperature 3
4 C, Capacitance(pF) 00 0 V GS = 0V, f = MHZ C iss = C gs C gd, C ds SHORTED C rss = C gd C oss = C ds C gd Ciss Coss Crss 0 V DS, Drain-to-Source Voltage (V) V GS, Gate-to-Source Voltage (V) I = D A V DS = 20V V DS = 75V V DS = 30V FOR TEST CIRCUIT SEE FIGURE Q G, Total Gate Charge (nc) Fig 5. Typical Capacitance Vs. Drain-to-Source Voltage Fig 6. Typical Gate Charge Vs. Gate-to-Source Voltage 0 OPERATION IN THIS AREA LIMITED BY R DS(on) I SD, Reverse Drain Current (A) T J = 75 C T J = 25 C V GS = 0 V V SD,Source-to-Drain Voltage (V) I D, Drain Current (A) us us ms TC = 25 C TJ = 75 C Single Pulse ms 0 V DS, Drain-to-Source Voltage (V) Fig 7. Typical Source-Drain Diode Forward Voltage Fig 8. Maximum Safe Operating Area 4
5 20 V DS R D I D, Drain Current (A) Fig a. Switching Time Test Circuit V DS 90% R G V GS V GS Pulse Width µs Duty Factor 0. % D.U.T. - V DD T C, Case Temperature ( C) Fig 9. Maximum Drain Current Vs. Case Temperature % V GS t d(on) t r t d(off) t f Fig b. Switching Time Waveforms Thermal Response (Z thjc ) 0. D = SINGLE PULSE (THERMAL RESPONSE) Notes:. Duty factor D = t / t 2 2. Peak T J = P DM x Z thjc TC t, Rectangular Pulse Duration (sec) PDM t t2 Fig. Maximum Effective Transient Thermal Impedance, Junction-to-Case 5
6 R G V DS 20V tp Fig 2a. Unclamped Inductive Test Circuit tp L D.U.T I AS 0.0Ω V (BR)DSS 5V DRIVER - V DD A E AS, Single Pulse Avalanche Energy (mj) TOP BOTTOM I D 4.4A 9.0A A Starting T, Junction Temperature ( J C) I AS Fig 2b. Unclamped Inductive Waveforms Q G Fig 2c. Maximum Avalanche Energy Vs. Drain Current Q GS Q GD V G Current Regulator Same Type as D.U.T. Charge Fig 3a. Basic Gate Charge Waveform 2V.2µF 50KΩ.3µF D.U.T. V - DS V GS 3mA I G I D Current Sampling Resistors Fig 3b. Gate Charge Test Circuit 6
7 Peak Diode Recovery dv/dt Test Circuit D.U.T ƒ - Circuit Layout Considerations Low Stray Inductance Ground Plane Low Leakage Inductance Current Transformer - - R G dv/dt controlled by R G Driver same type as D.U.T. I SD controlled by Duty Factor "D" D.U.T. - Device Under Test - V DD Driver Gate Drive Period P.W. D = P.W. Period V GS =V * D.U.T. I SD Waveform Reverse Recovery Current Body Diode Forward Current di/dt D.U.T. V DS Waveform Diode Recovery dv/dt V DD Re-Applied Voltage Inductor Curent Body Diode Forward Drop Ripple 5% I SD * V GS = 5V for Logic Level Devices Fig 4. For N-Channel HEXFET Power MOSFETs 7
8 D-Pak (TO-252AA) Package Outline Dimensions are shown in millimeters (inches) 5.46 (.25) 5.2 (.205) 6.73 (.265) 6.35 (.250) - A -.27 (.050) 0.88 (.035) 2.38 (.094) 2.9 (.086).4 (.045) 0.89 (.035) 0.58 (.023) 0.46 (.08) 4.02 (.040).64 (.025) (.245) 5.97 (.235).42 (.4) 9.40 (.370) 6.45 (.245) 5.68 (.224) LEAD ASSIGNMENTS - G A TE.52 (.060).5 (.045) 2X.4 (.045) 0.76 (.030) 3X - B (.035) 0.64 (.025) 0.25 (.0) M A M B 0.5 (.020) M IN (.023) 0.46 (.08) 2 - D R A IN 3 - S O U R CE 4 - D R A IN 2.28 (.090) 4.57 (.80) NOTES: DIMENSIONING & TOLERANCING PER ANSI Y4.5M, CONTROLLING DIMENSION : INCH. 3 C O N FO R M S TO JE D E C O U TLIN E TO -252 AA. 4 DIMENSIONS SHOW N ARE BEFORE SOLDER DIP, SOLDER DIP MAX. 0.6 (.006). D-Pak (TO-252AA) Part Marking Information 8
9 I-Pak (TO-25AA) Package Outline Dimensions are shown in millimeters (inches) 5.46 (.25) 5.2 (.205) 6.73 (.265) 6.35 (.250) - A (.050) 0.88 (.035) 2.38 (.094) 2.9 (.086) 0.58 (.023) 0.46 (.08) LEAD ASSIGNMENTS - G ATE.52 (.060).5 (.045) 6.22 (.245) 5.97 (.235) 6.45 (.245) 5.68 (.224) 2 - D RA IN 3 - SOURCE 4 - D RA IN B (.090).9 (.075) 9.65 (.380) 8.89 (.350) NOTES: DIMENSIONING & TOLERANCING PER ANSI Y4.5M, CONTROLLING DIMENSION : INCH. 3 C O NF O R MS TO JEDE C O UTLINE TO -25 2AA. 4 D IM EN SIO N S S HO W N A R E BE FO RE SO L DE R D IP, SOLDER DIP MAX. 0.6 (.006). 3X.4 (.045) 0.76 (.030) 2.28 (.090) 2X 3X 0.89 (.035) 0.64 (.025) 0.25 (.0 ) M A M B.4 (.045) 0.89 (.035) 0.58 (.023) 0.46 (.08) I-Pak (TO-25AA) Part Marking Information 9
10 D-Pak (TO-252AA) Tape & Reel Information Dimensions are shown in millimeters (inches) TR TRR TRL 6.3 (.64 ) 5.7 (.69 ) 6.3 (.64 ) 5.7 (.69 ) 2. (.476 ).9 (.469 ) FEED DIRECTION 8. (.38 ) 7.9 (.32 ) FEED DIRECTION NOTES :. CONTROLLING DIMENSION : MILLIMETER. 2. ALL DIMENSIONS ARE SHOW N IN MILLIMETERS ( INCHES ). 3. OUTLINE CONFORMS TO EIA-48 & EIA INCH NOTES :. OUTLINE CONFORMS TO EIA mm Notes: Repetitive rating; pulse width limited by max. junction temperature. Starting T J = 25 C, L = 3.3mH R G = 25Ω, I AS = A. ƒ I SD A, di/dt 70A/µs, V DD V (BR)DSS, T J 75 C Pulse width 300µs; duty cycle 2%. C oss eff. is a fixed capacitance that gives the same charging time as C oss while V DS is rising from 0 to 80% V DSS * When mounted on " square PCB (FR-4 or G- Material). For recommended footprint and soldering techniques refer to application note #AN-994. WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, Tel: (3) IR GREAT BRITAIN: Hurst Green, Oxted, Surrey RH8 9BB, UK Tel: IR CANADA: 5 Lincoln Court, Brampton, Ontario L6T3Z2, Tel: (905) IR GERMANY: Saalburgstrasse 57, 6350 Bad Homburg Tel: IR ITALY: Via Liguria 49, 7 Borgaro, Torino Tel: IR JAPAN: K&H Bldg., 2F, 30-4 Nishi-Ikebukuro 3-Chome, Toshima-Ku, Tokyo Japan 7 Tel: IR SOUTHEAST ASIA: Kim Seng Promenade, Great World City West Tower, 3-, Singapore Tel: IR TAIWAN:6 Fl. Suite D. 207, Sec. 2, Tun Haw South Road, Taipei, 673, Taiwan Tel: Data and specifications subject to change without notice. 2/00
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l Advanced Process Technology l Ultra Low On-Resistance l Dynamic dv/dt Rating l 175 C Operating Temperature l Fast Switching l Fully Avalanche Rated l Lead-Free Description Seventh Generation HEXFET power
More informationV DSS R DS(on) max I D
PD - 95258A IRFL435PbF HEXFET Power MOSFET Applications l High frequency DC-DC converters V DSS R DS(on) max I D 50V 85mW@V GS = V 2.6A Benefits l Low Gate to Drain Charge to Reduce Switching Losses l
More informationSMPS MOSFET. V DSS R DS(on) max I D
PD 94270 SMPS MOSFET IRFB260N HEXFET Power MOSFET Applications l High frequency DCDC converters V DSS R DS(on) max I D 200V 0.040Ω 56A Benefits Low GatetoDrain Charge to Reduce Switching Losses Fully Characterized
More informationl Advanced Process Technology TO-220AB IRF630N
l Advanced Process Technology l Dynamic dv/dt Rating l 175 C Operating Temperature l Fast Switching l Fully Avalanche Rated l Ease of Paralleling l Simple Drive Requirements Description Fifth Generation
More informationLinear Derating Factor 0.02 W/ C V GS Gate-to-Source Voltage ± 20 V T J, T STG Junction and Storage Temperature Range -55 to C
P- 93768A Si4435Y HEXFET Power MOSFET l l l l Ultra Low On-Resistance P-Channel MOSFET Surface Mount Available in Tape & Reel S S S 2 3 8 7 6 A V SS = -30V G 4 5 R S(on) = 0.020Ω escription These P-channel
More informationSMPS MOSFET. V DSS R DS(on) max I D. Absolute Maximum Ratings Symbol Parameter Max 20 V V GS A I DM. 90 W P A = 70 C Maximum Power Dissipation e
l High Frequency Buck Converters for Computer Processor Power l 0% R G Tested l Lead-Free Benefits l Ultra-Low R DS(on) l Very Low Gate Impedance l Fully Characterized Avalanche Voltage and Current SMPS
More informationD-Pak TO-252AA. I-Pak TO-251AA. 1
l PChannel l Surface Mount (IRFR930) l Straight Lead (IRFU930) l Advanced Process Technology l Fast Switching l Fully Avalanche Rated l LeadFree Description Third Generation HEXFETs from International
More informationSMPS MOSFET. V DSS R DS(on) max I D
SMPS MOSFET PD 93918 IRF3703 Applications Synchronous Rectification Active ORing l l HEXFET Power MOSFET V DSS R DS(on) max I D 30V 2.8mΩ 2A Benefits l Ultra Low OnResistance l Low Gate Impedance to Reduce
More informationC Soldering Temperature, for 10 seconds 300 (1.6mm from case )
PD -95487A Typical Applications l Industrial Motor Drive Benefits l Ultra Low On-Resistance l Dynamic dv/dt Rating l 75 C Operating Temperature l Fast Switching l Repetitive Avalanche Allowed up to Tjmax
More informationAUTOMOTIVE MOSFET. C Soldering Temperature, for 10 seconds 300 (1.6mm from case )
PD -95487 Typical Applications 42 Volts Automotive Electrical Systems Electrical Power Steering (EPS) Integrated Starter Alternator Lead-Free Benefits Ultra Low On-Resistance Dynamic dv/dt Rating 75 C
More informationSMPS MOSFET. V DSS R DS(on) typ. Trr typ. I D. 600V 385mΩ 130ns 15A
Applications Zero Voltage Switching SMPS Telecom and Server Power Supplies Uninterruptible Power Supplies Motor Control applications SMPS MOSFET PD - 9445A HEXFET Power MOSFET V DSS R DS(on) typ. Trr typ.
More informationSMPS MOSFET. V DSS R DS(on) max I D
PD - 95071A SMPS MOSFET IRFR3708PbF IRFU3708PbF Applications l High Frequency DC-DC Isolated Converters with Synchronous Rectification for Telecom and Industrial Use l High Frequency Buck Converters for
More informationSMPS MOSFET. V DSS R DS(on) max I D
Benefits l Ultra-Low Gate Impedance l Very Low RDS(on) at 4.5V V GS l Fully Characterized Avalanche Voltage and Current Absolute Maximum Ratings SMPS MOSFET Applications l High Frequency Isolated DC-DC
More informationIRLR3915PbF IRLU3915PbF
Features l Advanced Process Technology l Ultra Low On-Resistance l 75 C Operating Temperature l Fast Switching l Repetitive Avalanche Allowed up to Tjmax l Lead-Free Description This HEXFET Power MOSFET
More informationSMPS MOSFET. V DSS R DS(on) typ. Trr typ. I D. 500V 0.125Ω 170ns 34A
Applications Zero Voltage Switching SMPS Telecom and Server Power Supplies Uninterruptible Power Supplies Motor Control applications SMPS MOSFET Features and Benefits SuperFast body diode eliminates the
More informationIRF530NSPbF IRF530NLPbF
l Advanced Process Technology l Ultra Low On-Resistance l Dynamic dv/dt Rating l 175 C Operating Temperature l Fast Switching G l Fully Avalanche Rated l Lead-Free Description Advanced HEXFET Power MOSFETs
More informationAUTOMOTIVE MOSFET. A I T C = 25 C Continuous Drain Current, V 10V (Package Limited)
Features Logic Level Advanced Process Technology Ultra Low On-Resistance 75 C Operating Temperature Fast Switching Repetitive Avalanche Allowed up to Tjmax AUTOMOTIVE MOSFET Description Specifically designed
More informationC Soldering Temperature, for 10 seconds 300 (1.6mm from case )
l Logic-Level Gate Drive l dvanced Process Technology l Surface Mount (IRLZ44NS) l Low-profile through-hole (IRLZ44NL) l 175 C Operating Temperature l Fast Switching l Fully valanche Rated Description
More informationV DSS R DS(on) max Qg. 560 P C = 25 C Maximum Power Dissipation g 140 P C = 100 C Maximum Power Dissipation g Linear Derating Factor
Applications l High Frequency Synchronous Buck Converters for Computer Processor Power l High Frequency Isolated DC-DC Converters with Synchronous Rectification for Telecom and Industrial Use Benefits
More informationC Soldering Temperature, for 10 seconds 300 (1.6mm from case )
Typical Applications l Industrial Motor Drive Benefits l Advanced Process Technology l Ultra Low On-Resistance l Dynamic dv/dt Rating l 75 C Operating Temperature l Fast Switching l Repetitive Avalanche
More informationAUTOMOTIVE MOSFET TO-220AB IRL1404Z. Absolute Maximum Ratings Max. I T C = 25 C Continuous Drain Current, V 10V (Silicon Limited)
Features l Logic Level l Advanced Process Technology l Ultra Low On-Resistance l 175 C Operating Temperature l Fast Switching l Repetitive Avalanche Allowed up to Tjmax AUTOMOTIVE MOSFET Description Specifically
More informationSMPS MOSFET. V DSS R DS(on) typ. I D
SMPS MOSFET Applications l Switch Mode Power Supply (SMPS) l Uninterruptible Power Supply l High Speed Power Switching l ZVS and High Frequency Circuit l PWM Inverters Benefits l Low Gate Charge Qg results
More informationIRF2204SPbF IRF2204LPbF HEXFET Power MOSFET
Typical Applications l Industrial Motor Drive Features l Advanced Process Technology l Ultra Low On-Resistance l Dynamic dv/dt Rating l 75 C Operating Temperature l Fast Switching l Repetitive Avalanche
More informationIRL3803VSPbF IRL3803VLPbF HEXFET Power MOSFET
l Logic-Level Gate Drive l Advanced Process Technology l Surface Mount (IRL3803VS) l Low-profile through-hole (IRL3803VL) l 175 C Operating Temperature l Fast Switching G l Fully Avalanche Rated l Lead-Free
More informationSMPS MOSFET. V DSS R DS(on) typ. I D
Absolute Maximum Ratings SMPS MOSFET PD 93923B IRFPS40N50L Applications HEXFET Power MOSFET l Switch Mode Power Supply (SMPS) l UninterruptIble Power Supply V DSS R DS(on) typ. I D l High Speed Power Switching
More informationD-Pak TO-252AA. I-Pak TO-251AA. 1
l Ultra Low OnResistance l PChannel l Surface Mount (IRFR54) l Straight Lead (IRFU54) l Advanced Process Technology l Fast Switching G l Fully Avalanche Rated l LeadFree Description Fifth Generation HEXFETs
More informationAUTOMOTIVE MOSFET. 240 P C = 25 C Power Dissipation 110 Linear Derating Factor V GS Gate-to-Source Voltage ± 20
Features Advanced Process Technology Ultra Low On-Resistance 175 C Operating Temperature Fast Switching Repetitive Avalanche Allowed up to Tjmax AUTOMOTIVE MOSFET Description Specifically designed for
More informationSMPS MOSFET. V DSS R DS(on) max I D
PD - 95549A SMPS MOSFET IRFR3N5DPbF IRFU3N5DPbF HEXFET Power MOSFET Appications High frequency DC-DC converters Lead-Free V DSS R DS(on) max I D 50V 8Ω 4A Benefits Low Gate-to-Drain Charge to Reduce Switching
More informationIRL540NS/L. HEXFET Power MOSFET V DSS = 100V. R DS(on) = 0.044Ω I D = 36A. Absolute Maximum Ratings. Thermal Resistance PD
l dvanced Process Technology l Surface Mount (IRL540NS) l Low-profile through-hole (IRL540NL) l 75 C Operating Temperature l Fast Switching l Fully valanche Rated Description Fifth Generation HEXFETs from
More informationIRFL9110 V DSS = -100V. R DS(on) = 1.2Ω I D = -1.1A
PD - 90864A IRFL9110 HEXFET Power MOSFET Surface Mount Avaiabe in Tape & Ree Dynamic dv/dt Rating Repetitive Avaanche Rated P-Channe Fast Switching Ease of Paraeing Description Third Generation HEXFETs
More informationAUTOMOTIVE MOSFET. A I T C = 25 C Continuous Drain Current, V 10V (Package Limited)
Features l Advanced Process Technology l Ultra Low On-Resistance l 175 C Operating Temperature l Fast Switching l Repetitive Avalanche Allowed up to Tjmax AUTOMOTIVE MOSFET Description Specifically designed
More informationl Advanced Process Technology
l Advanced Process Technology D l Dynamic dv/dt Rating l 75 C Operating Temperature l Fast Switching l Fully Avalanche Rated G l Ease of Paralleling l Simple Drive Requirements S l Lead-Free Description
More informationDescription Absolute Maximum Ratings Parameter Max. Units Thermal Resistance Parameter Typ. Max. Units
l l l l l Advanced Process Technology Optimized for 4.5V-7.0V Gate Drive Ideal for CPU Core DC-DC Converters Fast Switching Lead-Free Description These HEXFET Power MOSFETs were designed specifically to
More informationIRFL110 V DSS = 100V. R DS(on) = 0.54Ω I D = 1.5A SOT-223
PD - 90861A IRFL110 HEXFET Power MOSFET Surface Mount Avaiabe in Tape & Ree Dynamic dv/dt Rating Repetitive Avaanche Rated Fast Switching Ease of Paraeing Simpe Drive Requirements Description Third Generation
More informationIRF9240 THRU-HOLE (TO-204AA/AE) Absolute Maximum Ratings. Features: 1 PD REPETITIVE AVALANCHE AND dv/dt RATED.
PD - 90420 REPETITIVE AVALANCHE AND dv/dt RATED HEXFET TRANSISTORS THRU-HOLE (TO-204AA/AE) IRF9240 200V, P-CHANNEL Product Summary Part Number BVDSS RDS(on) ID IRF9240-200V 0.5Ω -11A The HEXFET technology
More informationC Soldering Temperature, for 10 seconds 300 (1.6mm from case )
l Logic-Level Gate Drive l dvanced Process Technology l Surface Mount (IRLZ24NS) l Low-profile through-hole (IRLZ24NL) l 75 C Operating Temperature l Fast Switching l Fully valanche Rated Description Fifth
More informationIRLR8729PbF IRLU8729PbF HEXFET Power MOSFET
Applications l High Frequency Synchronous Buck Converters for Computer Processor Power l High Frequency Isolated DC-DC Converters with Synchronous Rectification for Telecom and Industrial Use Benefits
More informationLinear Derating Factor W/ C V GS Gate-to-Source Voltage ± 12 V T J, T STG Junction and Storage Temperature Range -55 to C
Utra Low On-Resistance Dua P-Channe MOSFET Very Sma SOIC Package Low Profie (
More informationSMPS MOSFET. V DSS R DS(on) max I D
Benefits l Ultra-Low Gate Impedance l l Very Low R DS(on) Fully Characterized Avalanche Voltage and Current Absolute Maximum Ratings SMPS MOSFET Applications l High Frequency DC-DC Isolated Converters
More informationIRFU5305. HEXFET Power MOSFET V DSS = -55V. R DS(on) = 0.065Ω I D = -31A. Description. Absolute Maximum Ratings. Thermal Resistance PD A
l Ultra Low OnResistance l Surface Mount (IRFR5305) l Straight Lead (IRFU5305) l dvanced Process Technology l Fast Switching l Fully valanche Rated Description Fifth Generation HEXFETs from International
More information-280 P C = 25 C Power Dissipation 170 Linear Derating Factor. W/ C V GS Gate-to-Source Voltage ± 20
Features Advanced Process Technology Ultra Low On-Resistance 150 C Operating Temperature Fast Switching Repetitive Avalanche Allowed up to Tjmax Some Parameters Are Differrent from IRF4905S Lead-Free Description
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