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(R) STD5NE10 N - CHANNEL 100V - 0.32 - 5A TO-251/TO-252 STripFETTM POWER MOSFET TYPE STD5NE10 s s s s s V DSS 100 V R DS(o n) < 0.4 ID 5A s TYPICAL RDS(on) = 0.32 EXCEPTIONAL dv/dt CAPABILITY AVALANCHE TESTED 100% AVALANCHE TESTED APPLICATION ORIENTED CHARACTERIZATION ADD SUFFIX "T4" FOR ORDERING IN TAPE & REEL IPAK TO-251 (Suffix "-1") 3 2 1 1 3 DESCRIPTION This Power MOSFET is the latest development of STMicroelectronics unique "Single Feature SizeTM" strip-based process. The resulting transistor shows extremely high packing density for low on-resistance, rugged avalanche characteristics and less critical alignment steps therefore a remarkable manufacturing reproducibility. APPLICATIONS s MOTOR CONTROL (DISK DRIVES, etc.) s DC-DC & DC-AC CONVERTERS s SYNCHRONOUS RECTIFICATION DPAK TO-252 (Suffix "T4") INTERNAL SCHEMATIC DIAGRAM ABSOLUTE MAXIMUM RATINGS Symb ol V DS V DGR VGS ID ID I DM (*) P tot dv/dt(1 ) T st g Tj Parameter Drain-source Voltage (VGS = 0) Drain- gate Voltage (R GS = 20 k) Gate-source Voltage Drain Current (continuous) at Tc = 25 C Drain Current (continuous) at Tc = 100 C Drain Current (pulsed) Total Dissipation at T c = 25 oC Derating F actor Peak Diode Recovery voltage slope Storage T emperature Max. Operating Junction Temperature o o Value 100 100 20 5 3.5 20 25 0.17 0.6 -65 to 175 175 ( 1) ISD 5A, di/dt 200 A/s, VDD V(BR)DSS, Tj TJMAX Unit V V V A A A W W /o C V/ns o o C C (*) Pulse width limited by safe operating area May 1999 1/9 STD5NE10 THERMAL DATA R thj -case R thj -amb R thc-sink Tl Thermal Resistance Junction-case Thermal Resistance Junction-ambient Thermal Resistance Case-sink Maximum Lead Temperature F or Soldering Purpose Max Max T yp 6 100 1.5 275 o o C/W C/W o C/W o C AVALANCHE CHARACTERISTICS Symbo l IAR E AS Parameter Avalanche Current, Repetitive or Not-Repetitive (pulse width limited by Tj max) Single Pulse Avalanche Energy (starting Tj = 25 o C, ID = IAR , V DD = 30V) Max Value 5 25 Unit A mJ ELECTRICAL CHARACTERISTICS (Tcase = 25 oC unless otherwise specified) OFF Symbo l V (BR)DSS I DSS IGSS Parameter Drain-source Breakdown Voltage Test Con ditions I D = 250 A V GS = 0 Min. 100 1 10 100 Typ. Max. Unit V A A nA V DS = Max Rating Zero Gate Voltage Drain Current (V GS = 0) V DS = Max Rating Gate-body Leakage Current (VDS = 0) V GS = 20 V T c = 125 oC ON () Symbo l V GS(th) R DS(on) I D(o n) Parameter Gate Threshold Voltage V DS = V GS Static Drain-source On Resistance On State Drain Current V GS = 10V Test Con ditions ID = 250 A ID = 2.5 A 5 Min. 2 Typ. 3 0.32 Max. 4 0.4 Unit V A V DS > ID(o n) x R DS(on )ma x V GS = 10 V DYNAMIC Symbo l g f s () C iss C os s C rss Parameter Forward Transconductance Input Capacitance Output Capacitance Reverse Transfer Capacitance Test Con ditions V DS > ID(o n) x R DS(on )ma x V DS = 25 V f = 1 MHz ID = 2.5 A V GS = 0 Min. Typ. 2.5 305 45 21 Max. Unit S pF pF pF 2/9 STD5NE10 ELECTRICAL CHARACTERISTICS (continued) SWITCHING ON Symbo l t d(on) tr Qg Q gs Q gd Parameter Turn-on Delay T ime Rise Time Total G ate Charge Gate-Source Charge Gate-Drain Charge Test Con ditions V DD = 50 V I D = 3.5 A R G = 4.7 V GS = 10 V (Resistive Load, see fig. 3) V DD = 80 V ID = 5 A V GS = 10 V Min. Typ. 6.5 15 14 6 4 18 Max. Unit ns ns nC nC nC SWITCHING OFF Symbo l t d(of f) tf tr (Voff) tf tc Parameter Turn-off Delay T ime Fall T ime Off-voltage Rise T ime Fall T ime Cross-over Time Test Con ditions V DD = 50 V I D = 3.5 A V GS = 10 V R G = 4.7 (Resistive Load, see fig. 3) V DD = 80 V ID = 7 A V GS = 10 V R G = 4.7 (Induct ive Load, see fig. 5) Min. Typ. 25 7 7 8 16 Max. Unit ns ns ns ns ns SOURCE DRAIN DIODE Symbo l ISD I SDM (*) V SD () t rr Q rr I RRM Parameter Source-drain Current Source-drain Current (pulsed) Forward On Voltage Reverse Recovery Time Reverse Recovery Charge Reverse Recovery Current I SD = 8 A V GS = 0 75 210 5.5 I SD = 5 A di/dt = 100 A/s T j = 150 o C V DD = 50 V (see test circuit, fig. 5) Test Con ditions Min. Typ. Max. 5 20 1.5 Unit A A V ns nC A () Pulsed: Pulse duration = 300 s, duty cycle 1.5 % (*) Pulse width limited by safe operating area Safe Operating Area for Thermal Impedance 3/9 |
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