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Advanced Power MOSFET FEATURES Avalanche Rugged Technology Rugged Gate Oxide Technology Lower Input Capacitance Improved Gate Charge Extended Safe Operating Area 175 C Operating Temperature Lower Leakage Current : 10 A (Max.) @ VDS = 100V Lower RDS(ON) : 0.018 (Typ.) SSS70N10A BVDSS = 100 V RDS(on) = 0.023 ID = 28 A TO-220F 1 2 3 1.Gate 2. Drain 3. Source Absolute Maximum Ratings Symbol VDSS ID IDM VGS EAS IAR EAR dv/dt PD TJ , TSTG TL Characteristic Drain-to-Source Voltage Continuous Drain Current (TC=25 C) Value 100 28 19.8 1 O Units V A A V mJ A mJ V/ns W W/ C Continuous Drain Current (TC=100 C) Drain Current-Pulsed Gate-to-Source Voltage Single Pulsed Avalanche Energy Avalanche Current Repetitive Avalanche Energy Peak Diode Recovery dv/dt Total Power Dissipation (TC=25 C) 220 + 20 _ 1568 28 4.9 6.5 49 0.32 - 55 to +175 O 1 O 1 O 3 O 2 Linear Derating Factor Operating Junction and Storage Temperature Range Maximum Lead Temp. for Soldering Purposes, 1/8" from case for 5-seconds C 300 Thermal Resistance Symbol R JC R JA Characteristic Junction-to-Case Junction-to-Ambient Typ. --Max. 3.09 62.5 Units C /W Rev. B (c)1999 Fairchild Semiconductor Corporation SSS70N10A N-CHANNEL POWER MOSFET Electrical Characteristics (TC=25 C unless otherwise specified) Symbol BVDSS BV/ TJ VGS(th) IGSS IDSS RDS(on) gfs Ciss Coss Crss td(on) tr td(off) tf Qg Qgs Qgd Characteristic Drain-Source Breakdown Voltage Breakdown Voltage Temp. Coeff. Gate Threshold Voltage Gate-Source Leakage , Forward Gate-Source Leakage , Reverse Drain-to-Source Leakage Current Static Drain-Source On-State Resistance Forward Transconductance Input Capacitance Output Capacitance Reverse Transfer Capacitance Turn-On Delay Time Rise Time Turn-Off Delay Time Fall Time Total Gate Charge Gate-Source Charge Gate-Drain("Miller") Charge Min. Typ. Max. Units 100 -2.0 -----------------0.12 ------34.51 850 375 22 24 112 84 151 31 66 --4.0 100 -100 10 100 0.023 -980 430 60 60 240 180 195 --nC ns A pF V V/ C V nA Test Condition VGS=0V,ID=250 A ID=250 A See Fig 7 VDS=5V,ID=250 A VGS=20V VGS=-20V VDS=100V VDS=80V,TC=150 C VGS=10V,ID=14A VDS=40V,ID=14A 4 O 4 O 3750 4870 VGS=0V,VDS=25V,f =1MHz See Fig 5 VDD=50V,ID=70A, RG=5.3 See Fig 13 VDS=80V,VGS=10V, ID=70A See Fig 6 & Fig 12 45 OO 45 OO Source-Drain Diode Ratings and Characteristics Symbol IS ISM VSD trr Qrr Characteristic Continuous Source Current Pulsed-Source Current Diode Forward Voltage Reverse Recovery Time Reverse Recovery Charge 1 O 4 O Min. Typ. Max. Units --------143 0.72 28 220 1.6 --A V ns C Test Condition Integral reverse pn-diode in the MOSFET TJ=25 C ,IS=28A,VGS=0V TJ=25 C ,IF=70A diF/dt=100A/ s 4 O Notes ; 1 Repetitive Rating : Pulse Width Limited by Maximum Junction Temperature O 2 O L=3mH, I AS=28A, VDD=25V, RG=27 , Starting T J =25 oCo 3 _ _ _ O ISD < 70A, di/dt < 530A/s, VDD< BVDSS , Starting T J =25 C _ s, 4 O Pulse Test : Pulse Width = 250 Duty Cycle <2% 5 Essentially Independent of Operating Temperature O N-CHANNEL POWER MOSFET Fig 1. Output Characteristics VGS 15V 10 V 8.0 V 7.0 V 6.0 V 5.5 V 5.0 V Bottom : 4.5 V SSS70N10A Fig 2. Transfer Characteristics [A] ID , Drain Current [A] Top : 102 102 ID , Drain Current 175 oC 101 101 25 oC @ Notes : 1. V = 0 V GS 2. V = 40 V DS 3. 250 s Pulse Test 6 8 10 @ Notes : 1. 250 s Pulse Test 2. T = 25 oC C 100 10-1 100 101 - 55 oC 100 2 4 VDS , Drain-Source Voltage [V] [A] VGS , Gate-Source Voltage [V] Fig 3. On-Resistance vs. Drain Current RDS(on) , [ ] Drain-Source On-Resistance 00 .3 VGS = 10 V Fig 4. Source-Drain Diode Forward Voltage IDR , Reverse Drain Current 12 0 00 .2 VGS = 20 V 00 .1 11 0 1 5 oC 7 2 oC 5 10 0 04 . 06 . 08 . 10 . 12 . 14 . 16 . @Nts: oe 1 VGS = 0 V . 2 2 0 s P l e T s .5 us et 18 . 20 . 22 . 24 . 26 . @ N t : TJ oe 00 .0 0 50 10 0 10 5 20 0 = 2 oC 5 30 0 20 5 ID , Drain Current [A] VSD , Source-Drain Voltage [V] Fig 5. Capacitance vs. Drain-Source Voltage 80 00 Ciss= Cgs+ C ( Cds= s o t d ) hre gd Coss= Cds+ C gd Fig 6. Gate Charge vs. Gate-Source Voltage [V] [pF] VGS , Gate-Source Voltage Crss= Cgd 60 00 C iss 1 0 VDS = 2 V 0 0 VDS = 5 V V =8 V 0 DS Capacitance 40 00 C oss @Nts: oe 1 VGS = 0 V . 2 f=1Mz . H 5 20 00 C rss @Nts:I =00A oe D 7. 0 0 2 0 4 0 6 0 8 0 10 0 10 2 10 4 10 6 00 10 1 10 VDS , Drain-Source Voltage [V] QG , Total Gate Charge [nC] SSS70N10A BVDSS , (Normalized) Drain-Source Breakdown Voltage N-CHANNEL POWER MOSFET Fig 8. On-Resistance vs. Temperature RDS(on) , (Normalized) Drain-Source On-Resistance 3.0 Fig 7. Breakdown Voltage vs. Temperature 1.2 2.5 1.1 2.0 1.0 1.5 1.0 @ Notes : 1. V = 10 V GS 2. I = 35 A D 0.9 @ Notes : 1. V = 0 V GS 2. I = 250 A D 0.5 0.8 -75 -50 -25 0 25 50 75 100 125 150 175 200 0.0 -75 -50 -25 0 25 50 75 100 125 150 175 200 TJ , Junction Temperature [ oC] TJ , Junction Temperature [ oC] Fig 9. Max. Safe Operating Area [A] 3 10 Fig 10. Max. Drain Current vs. Case Temperature 30 Operation in This Area is Limited by R DS(on) 10 s [A] 25 100 s 1 ms 10 ms ID , Drain Current 2 10 ID , Drain Current 20 1 10 100 ms DC @ Notes : 1. T = 25 oC C 2. T = 175 oC J 3. Single Pulse 15 10 10 0 5 10-1 100 101 2 10 0 25 50 75 100 125 150 175 VDS , Drain-Source Voltage [V] Tc , Case Temperature [ oC] Fig 11. Thermal Response Thermal Response D=0.5 100 0.2 0.1 0.05 10- 1 0.02 0.01 single pulse 10- 2 10- 5 10- 4 10- 3 10- 2 10- 1 @ Notes : 1. Z J C (t)=3.09 o C/W Max. 2. Duty Factor, D=t /t2 1 3. TJ M -TC =PD M *Z J C (t) Z (t) , PDM t1 t2 100 101 JC t 1 , Square Wave Pulse Duration [sec] N-CHANNEL POWER MOSFET Fig 12. Gate Charge Test Circuit & Waveform SSS70N10A " Current Regulator " 50K 12V 200nF 300nF Same Type as DUT VGS Qg 10V VDS VGS DUT 3mA Qgs Qgd R1 Current Sampling (I G) Resistor R2 Current Sampling (I D) Resistor Charge Fig 13. Resistive Switching Test Circuit & Waveforms RL Vout Vin RG DUT 10V Vin 10% Vout VDD ( 0.5 rated V DS ) 90% td(on) t on tr td(off) t off tf Fig 14. Unclamped Inductive Switching Test Circuit & Waveforms LL VDS Vary tp to obtain required peak ID BVDSS 1 EAS = ---- LL IAS2 -------------------2 BVDSS -- VDD BVDSS IAS C VDD VDD tp ID RG DUT 10V tp ID (t) VDS (t) Time SSS70N10A N-CHANNEL POWER MOSFET Fig 15. Peak Diode Recovery dv/dt Test Circuit & Waveforms DUT + VDS -- IS L Driver RG VGS Same Type as DUT VGS VDD * dv/dt controlled by "RG" * IS controlled by Duty Factor "D" VGS ( Driver ) Gate Pulse Width D = -------------------------Gate Pulse Period 10V IFM , Body Diode Forward Current IS ( DUT ) IRM di/dt Body Diode Reverse Current VDS ( DUT ) Body Diode Recovery dv/dt Vf VDD Body Diode Forward Voltage Drop TRADEMARKS The following are registered and unregistered trademarks Fairchild Semiconductor owns or is authorized to use and is not intended to be an exhaustive list of all such trademarks. ACExTM CoolFETTM CROSSVOLTTM E2CMOSTM FACTTM FACT Quiet SeriesTM FAST(R) FASTrTM GTOTM HiSeCTM DISCLAIMER ISOPLANARTM MICROWIRETM POPTM PowerTrenchTM QSTM Quiet SeriesTM SuperSOTTM-3 SuperSOTTM-6 SuperSOTTM-8 TinyLogicTM UHCTM VCXTM FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. LIFE SUPPORT POLICY FAIRCHILD'S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF FAIRCHILD SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or 2. A critical component is any component of a life support device or system whose failure to perform can systems which, (a) are intended for surgical implant into be reasonably expected to cause the failure of the life the body, or (b) support or sustain life, or (c) whose support device or system, or to affect its safety or failure to perform when properly used in accordance with instructions for use provided in the labeling, can be effectiveness. reasonably expected to result in significant injury to the user. PRODUCT STATUS DEFINITIONS Definition of Terms Datasheet Identification Advance Information Product Status Formative or In Design Definition This datasheet contains the design specifications for product development. Specifications may change in any manner without notice. This datasheet contains preliminary data, and supplementary data will be published at a later date. Fairchild Semiconductor reserves the right to make changes at any time without notice in order to improve design. This datasheet contains final specifications. Fairchild Semiconductor reserves the right to make changes at any time without notice in order to improve design. Preliminary First Production No Identification Needed Full Production Obsolete Not In Production This datasheet contains specifications on a product that has been discontinued by Fairchild semiconductor. The datasheet is printed for reference information only. |
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