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  advanced power n-channel enhancement mode electronics corp. power mosfet lower gate charge bv dss 30v simple drive requirement r ds(on) 50m fast switching characteristic i d 12.5a description absolute maximum ratings symbol units v ds v v gs v i d @t c =25 a i d @t c =100 a i dm a p d @t c =25 w w/ t stg t j symbol value unit rthj-c thermal resistance junction-case max. 10 /w rthj-a thermal resistance junction-ambient max. 110 /w data & specifications subject to change without notice ap20t03gh/j parameter rating pb free plating product drain-source voltage 30 gate-source voltage continuous drain current 12.5 continuous drain current 8 pulsed drain current 1 40 operating junction temperature range -55 to 150 linear derating factor 0.1 storage temperature range total power dissipation 12.5 -55 to 150 200107041 thermal data parameter the to-252 package is universally preferred for all commercial- industrial surface mount applications and suited for low voltage applications such as dc/dc converters. the through-hole version (ap20t03gj) is available for low-profile applications. g d s to-251(j) g d s to-252(h) g d s 20
electrical characteristics@t j =25 o c(unless otherwise specified) symbol parameter test conditions min. typ. max. units bv dss drain-source breakdown voltage v gs =0v, i d =250ua 30 - - v b v dss / t j breakdown voltage temperature coefficient reference to 25 , i d =1ma - 0.02 -v/ r ds(on) static drain-source on-resistance 2 v gs =10v, i d =8a - - 50 m v gs =4.5v, i d =5a - - 80 m v gs(th) gate threshold voltage v ds =v gs , i d =250ua 1 - 3 v g fs forward transconductance v ds =5v, i d =5a - 6 - s i dss drain-source leakage current (t j =25 o c) v ds =30v, v gs =0v - - 1 ua drain-source leakage current (t j =150 o c) v ds =24v, v gs =0v - - 25 ua i gss gate-source leakage v gs =-- na q g total gate charge 2 i d =10a - 4 7 nc q gs gate-source charge v ds =24v - 1.5 - nc q gd gate-drain ("miller") charge v gs =4.5v - 2.3 - nc t d(on) turn-on delay time 2 v ds =15v - 6 - ns t r rise time i d =10a - 30 - ns t d(off) turn-off delay time r g =3.3 , v gs =10v - 10 - ns t f fall time r d =1.5 -3- ns c iss input capacitance v gs =0v - 270 430 pf c oss output capacitance v ds =25v - 70 - pf c rss reverse transfer capacitance f=1.0mhz - 50 - pf source-drain diode symbol parameter test conditions min. typ. max. units v sd forward on voltage 2 i s =5a, v gs =0v - - 1.3 v t rr reverse recovery time 2 i s =10a, v gs =0 v , - 16 - ns q rr reverse recovery charge di/dt=100a/s - 9 - nc notes: 1.pulse width limited by safe operating area. 2.pulse width < 300us , duty cycle < 2%. ap20t03gh/j 100 20v 100
ap20t03gh/j fig 1. typical output characteristics fig 2. typical output characteristics fig 3. on-resistance v.s. gate voltage fig 4. normalized on-resistance v.s. junction temperature fig 5. forward characteristic of fig 6. gate threshold voltage v.s. reverse diode junction temperature 0 2 4 6 8 10 12 14 16 18 20 0.0 0.5 1.0 1.5 2.0 2.5 v ds , drain-to-source voltage (v) i d , drain current (a) t c =25 o c 10v 7.0v 5.0v 4.5v v g =3.0v 0 2 4 6 8 10 12 14 16 18 0112233 v ds , drain-to-source voltage (v) i d , drain current (a) 10v 7.0v 5.0v 4.5v v g =3.0v t c =150 o c 0.5 0.8 1.0 1.3 1.5 1.8 -50 0 50 100 150 t j , junction temperature ( o c) normalized r ds(on) i d =8a v g =10v 0 2 4 6 8 10 0 0.2 0.4 0.6 0.8 1 1.2 1.4 1.6 v sd , source-to-drain voltage (v) is (a) t j =25 o c t j =150 o c 1.0 1.5 2.0 2.5 -50 0 50 100 150 t j ,junction temperature ( o c) v gs(th) (v) 35 45 55 65 75 357911 v gs , gate-to-source voltage (v) r ds(on) (m ) i d =5a t c =25 o c
ap20t03gh/j fig 7. gate charge characteristics fig 8. typical capacitance characteristics fig 9. maximum safe operating area fig 10. effective transient thermal impedance fig 11. switching time waveform fig 12. gate charge waveform t d(on) t r t d(off) t f v ds v gs 10% 90% q v g 4.5v q gs q gd q g charge 0 2 4 6 8 10 12 14 036912 q g , total gate charge (nc) v gs , gate to source voltage (v) v ds =15v v ds =20v v ds =24v i d =10a 10 100 1000 1 5 9 1317212529 v ds ,drain-to-source voltage (v) c (pf) f=1.0mhz ciss coss crss 0.01 0.1 1 10 100 0.1 1 10 100 v ds ,drain-to-source voltage (v) i d (a) t c =25 o c s ingle pulse 100us 1ms 10ms 100ms 1s dc 0.01 0.1 1 0.00001 0.0001 0.001 0.01 0.1 1 10 t , pulse width (s) normalized thermal response (r thjc ) p dm duty factor = t/t peak t j = p dm x r thjc + t c t t 0.02 0.01 0.05 0.1 0.2 duty factor=0.5 single pulse


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