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  august 2015 docid028164 rev 1 1 / 12 this is information on a product in full production. www.st.com STW65N65DM2AG automotive - grade n - channel 650 v, 0.042 typ., 60 a power mosfet mdmesh? dm2 in a to-247 package datasheet - production data figure 1 : internal schematic diagram features order code v ds r ds(on) max. i d p tot STW65N65DM2AG 650 v 0.05 60 a 446 w ? designed for automotive applications and aec - q101 qualified ? fast - recovery body diode ? extremely low gate charge and input capacitance ? low on - resistance ? 100% avalanche tested ? extremely high dv/dt ruggedness ? zener - protected applications ? switching applications description this high voltage n - channel power mosfet is part of the mdmesh? dm2 fast recovery diode series. it offers very low recovery charge (q rr ) and time (t rr ) combined with low r ds(on) , rendering it suitable for the most demanding high efficiency converters and ideal for bridge topologies and zvs phase - shift converters. table 1: device summary order code marking package packing STW65N65DM2AG 65n65dm2 to -247 tube t o-247 1 2 3
contents STW65N65DM2AG 2 / 12 docid028164 rev 1 contents 1 electrical ratings ............................................................................. 3 2 electrical characteristics ................................................................ 4 2.1 electrical characteristics (curves) ...................................................... 6 3 test circuits ..................................................................................... 8 4 package information ....................................................................... 9 4.1 to - 247 package information ............................................................. 9 5 revision history ............................................................................ 11
STW65N65DM2AG electrical ratings docid028164 rev 1 3 / 12 1 electrical ratings table 2: absolute maximum ratings symbol parameter value unit v gs gate - source voltage 25 v i d drain current (continuous) at t case = 25 c 60 a drain current (continuous) at t case = 100 c 38 i dm (1) drain current (pulsed) 240 a p tot total dissipation at t case = 25 c 446 w dv/dt (2) peak diode recovery voltage slope 50 v/ns dv/dt (3) mosfet dv/dt ruggedness 50 t stg storage temperature - 55 to 150 c t j operating junction temperature notes: (1) pulse width is limited by safe operating area. (2) i sd 60 a, di/dt=800 a/s; v ds peak < v (br)dss , v dd = 80% v (br)dss . (3) v ds 520 v. table 3: th ermal data symbol parameter value unit r thj -case thermal resistance junction - case 0.28 c/w r thj - amb thermal resistance junction - ambient 50 table 4: avalanche characteristics symbol parameter value unit i ar avalanche current, repetitive or not repeti tive 8 a e as (1) single pulse avalanche energy 1100 mj notes: (1) starting t j = 25 c, i d = i ar , v dd = 50 v.
electrical characteristics stw65n65d m2ag 4 / 12 docid028164 rev 1 2 electrical characteristics (t case = 25 c unless otherwise specified) table 5: static symbol parameter test conditions min. typ. max. unit v (br)dss drain - source breakdown voltage v gs = 0 v, i d = 1 ma 650 v i dss zero gate voltage drain current v gs = 0 v, v ds = 650 v 10 a v gs = 0 v, v ds = 650 v, t case = 125 c 100 i gss gate - body leakage current v ds = 0 v, v gs = 25 v 5 a v gs(th) gate threshold voltage v ds = v gs , i d = 250 a 3 4 5 v r ds(on) static drain - source on- resistance v gs = 10 v, i d = 30 a 0.042 0.05 table 6: dynamic symbol parameter test conditions min. typ. max. unit c iss input capacitance v ds = 100 v, f = 1 mhz, v gs = 0 v - 5500 - pf c oss output capacitance - 210 - c rss reverse transfer capacitance - 3 - c oss eq. (1) equivalent output capacitance v ds = 0 to 520 v, v gs = 0 v - 456 - pf r g intrinsic gate resistance f = 1 mhz, i d = 0 a - 3.3 - q g total gate charge v dd = 520 v, i d = 60 a, v gs = 10 v (see figure 15: "gate cha rge test circuit" ) - 120 - nc q gs gate - source charge - 27 - q gd gate - drain charge - 58 - notes: (1) c oss eq. is defined as a constant equivalent capacitance giving the same charging time as c oss when v ds increases from 0 to 80% v dss . table 7: s witching times symbol parameter test conditions min. typ. max. unit t d(on) turn - on delay time v dd = 325 v, i d = 30 a r g = 4.7 , v gs = 10 v (see figure 14: "switching times test circuit for resistive load" and figure 19: "switching time waveform" ) - 33 - ns t r rise time - 13.5 - t d(off) turn - off delay t ime - 114 - t f fall time - 11.5 -
STW65N65DM2AG electrical characteris tics docid028164 rev 1 5 / 12 table 8: source - drain diode symbol parameter test conditions min. typ. max. unit i sd source- drain current - 60 a i sdm (1) source- drain current (pulsed) - 240 a v sd (2) forward on voltage v gs = 0 v, i sd = 60 a - 1.6 v t rr reverse recovery time i sd = 60 a, di/dt = 100 a/s, v dd = 60 v (see figure 16: "test circuit for inductive load switching and diode recovery times" ) - 154 ns q rr reverse recovery charge - 0.94 c i rrm reverse recovery current - 12.2 a t rr reverse recovery time i sd = 60 a, di/dt = 100 a/s, v dd = 60 v, t j = 150 c (see figure 16: "test circuit for induct ive load switching and diode recovery times" ) - 288 ns q rr reverse recovery charge - 3.65 c i rrm reverse recovery current - 25.4 a notes: (1) pulse width is limited by safe operating area. (2) pulse test: pulse duration = 300 s, duty cycle 1.5 %.
electrical characteristics stw65n65d m2ag 6 / 12 docid028164 rev 1 2.1 electrical characteristics (curves) figure 2 : safe operating area figure 3 : thermal impedance figure 4 : output characteristics figure 5 : transfer characteristics figure 6 : gate charge vs gate - source voltage figure 7 : static drain - source on - resistanc e
STW65N65DM2AG electrical characteristics docid028164 rev 1 7 / 12 figure 8 : capacitance variations figure 9 : normalized gate threshold voltage vs temperature figure 10 : normalized on - resistance vs temperature figure 11 : normalized v(br)dss vs temperature figure 12 : output capacitance stored energy figure 13 : source - drain diode forward characteristics
test circuits stw65n65d m2ag 8 / 12 docid028164 rev 1 3 test circuits figure 14 : switching times test circuit for resistive load figure 15 : gate charge test circuit figure 16 : test circu it for inductive load switching and diode recovery times figure 17 : unclamped inductive load test circuit figure 18 : unclamped inductive waveform figure 19 : switching time w aveform
STW65N65DM2AG package information docid028164 rev 1 9 / 12 4 package information in order to meet environmental requirements, st offers these devices in different grades of ecopack ? packages, depending on their level of environmental compliance. ecopack ? specifications, grade definitions and product status are available at: www.st.com . ecopack ? is an st trademark. 4.1 to - 247 package information figure 20 : to - 247 package outline 0075325_h
pac kage information stw65n65d m2ag 10 / 12 docid028164 rev 1 table 9: to - 247 package mechanical data dim. mm. min. typ. max. a 4.85 5.15 a1 2.20 2.60 b 1.0 1.40 b1 2.0 2.40 b2 3.0 3.40 c 0.40 0.80 d 19.85 20.15 e 15.45 15.75 e 5.30 5.45 5.60 l 14.20 14.80 l1 3.70 4.30 l2 18.50 ?p 3.55 3.65 ?r 4.50 5.50 s 5.30 5.50 5.70
STW65N65DM2AG revision history docid028164 rev 1 11 / 12 5 revision history table 10: document revision history date revision changes 04-a ug- 2015 1 in itial release.
STW65N65DM2AG 12 / 12 docid028164 rev 1 important notice ? please read carefully stmicroelectronics nv and its subsidiaries (?st?) reserve the right to make changes, corrections, enhancements, mo difications, and improvements to st products and/or to this document at any time without notice. purchasers should obtain the latest relevant information on st products before placing orders. st products are sold pursuant to st?s terms and conditions of sa le in place at the time of order acknowledgement. purchasers are solely responsible for the choice, selection, and use of st products and st assumes no liability for application assistance or the design of purchasers? products. no license, express or implied, to any intellectual property right is granted by st herein. resale of st products with provisions different from the information set forth herein shall void any warranty granted by st f or such product. st and the st logo are trademarks of st. all other product or service names are the property of their respective owners. information in this document supersedes and replaces information previously supplied in any prior versions of this document. ? 2015 stmicroelectronics ? all rights reserved


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