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FFPF10UP20S Ultrafast Rectifier FFPF10UP20S Ultrafast Rectifier Features * Ultrafast with soft recovery (@ IF = 1A), < 35ns * Reverse Voltage, 200V * Forward Voltage (@ TC = 100C), < 1.1V * Enhanced Avalanche Energy Applications * Power switching circuits * Output rectifiers * Freewheeling diodes * Switching mode power supply TO-220F-2L 1 2 (per diode) Ta = 25C unless otherwise noted 1. Cathode 2. Anode Absolute Maximum Ratings Symbol VRRM IF(AV) IFSM TJ, TSTG Parameter Peak Repetitive Reverse Voltage Average Rectified Forward Current Non-repetitive Peak Surge Current 60Hz Single Half-Sine Wave Operating Junction and Storage Temperature = 25C unless otherwise noted Value 200 @ TC = 100C 10 100 - 65 to +150 Units V A A C Thermal Characteristics T Symbol RJC a Parameter Maximum Thermal Resistance, Junction to Case Value 4.3 Units C/W (c)2005 Fairchild Semiconductor Corporation 1 www.fairchildsemi.com FFPF10UP20S Rev. B FFPF10UP20S Ultrafast Rectifier Electrical Characteristics Symbol VFM * (per diode) Ta = 25C unless otherwise noted Parameter Maximum Instantaneous Forward Voltage IF = 10A IF = 10A Maximum Instantaneous Reverse Current @ rated VR Reverse Recovery Time Reverse Recovery Current Reverse Recovery Charge (IF =6A, di/dt = 200A/s) Maximum Reverse Recovery Time (IF =1A, di/dt = 100A/s) Avalanche Energy (L=40mH) TC = 25 C TC = 100 C TC = 25 C TC = 100 C Min. 5 Typ. 32 1.65 24.4 - Max. 1.15 1.10 Units V IRM * A 100 500 35 ns A nC ns mJ trr Irr Qrr trr WAVL * Pulse Test: Pulse Width=300s, Duty Cycle=2% FFPF10UP20S Rev. B 2 www.fairchildsemi.com FFPF10UP20S Ultrafast Rectifier Typical Performance Characteristics Figure 1. Typical Forward Voltage Drop vs. Forward Current 50 Figure 2. Typical Reverse Current vs. Reverse Voltage 10 Forward Current , IF [A] 10 TC = 25 C o Reverse Current , I R [A] TC = 100 C o 1 TC = 100 C o 0.1 1 0.01 TC = 25 C o 1E-3 0.1 0.0 0.5 1.0 1.5 2.0 0.001 0 50 100 150 200 Forward Voltage , VF [V] Reverse Voltage , VR [V] Figure 3. Typical Junction Capacitance 150 40 Figure 4. Typical Reverse Recovery Time vs. di/dt IF = 10A Tc = 25 C 35 o 100 Reverse Recovery Time , trr [ns] 100 Typical Capacitance at 0V = 141.46 pF Capacitance , Cj [pF] 30 50 25 0.1 1 10 20 100 500 Reverse Voltage , VR [V] di/dt [A/s] Figure 5. Typical Reverse Recovery Current vs. di/dt 5 Figure 6. Forward Current Derating Curve 16 14 12 10 Reverse Recovery Current , Irr [A] IF = 10A 4 TC = 25 C o 3 Average Forward Current , IF(AV) [A] DC 8 6 4 2 0 60 2 1 0 100 500 80 100 120 o 140 160 di/dt [A/s] Case Temperature , TC [ C] FFPF10UP20S Rev. B 3 www.fairchildsemi.com FFPF10UP20S Ultrafast Rectifier Mechanical Dimensions TO-220F-2L 10.16 0.20 o3.18 0.10 2.54 0.20 (0.70) 3.30 0.10 6.68 0.20 15.80 0.20 (1.00x45) (6.50) (1.80) 9.75 0.30 12.00 0.20 MAX1.47 0.80 0.10 2.76 0.20 0.35 0.10 2.54TYP [2.54 0.20] 2.54TYP [2.54 0.20] +0.10 0.50 -0.05 9.40 0.20 4.70 0.20 15.87 0.20 Dimensions in Millimeters FFPF10UP20S Rev. B 4 www.fairchildsemi.com FFPF10UP20S Ultrafast Rectifier 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 ActiveArrayTM BottomlessTM CoolFETTM CROSSVOLTTM DOMETM EcoSPARKTM E2CMOSTM EnSignaTM FACTTM FACT Quiet SeriesTM FAST(R) FASTrTM FPSTM FRFETTM GlobalOptoisolatorTM GTOTM HiSeCTM I2CTM i-LoTM ImpliedDisconnectTM Across the board. Around the world.TM The Power Franchise(R) Programmable Active DroopTM IntelliMAXTM ISOPLANARTM LittleFETTM MICROCOUPLERTM MicroFETTM MicroPakTM MICROWIRETM MSXTM MSXProTM OCXTM OCXProTM OPTOLOGIC(R) OPTOPLANARTM PACMANTM POPTM Power247TM PowerEdgeTM PowerSaverTM PowerTrench(R) QFET(R) QSTM QT OptoelectronicsTM Quiet SeriesTM RapidConfigureTM RapidConnectTM SerDesTM SILENT SWITCHER(R) SMART STARTTM SPMTM StealthTM SuperFETTM SuperSOTTM-3 SuperSOTTM-6 SuperSOTTM-8 SyncFETTM TinyLogic(R) TINYOPTOTM TruTranslationTM UHCTM UltraFET(R) UniFETTM VCXTM DISCLAIMER 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 systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, or (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in significant injury to the user. 2. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. PRODUCT STATUS DEFINITIONS Definition of Terms Datasheet Identification Advance Information Product Status Formative or In Design First Production 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. This datasheet contains specifications on a product that has been discontinued by Fairchild semiconductor. The datasheet is printed for reference information only. Preliminary No Identification Needed Full Production Obsolete Not In Production Rev. I15 5 FFPF10UP20S Rev. B www.fairchildsemi.com |
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