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  60612 tkim/62005ac msim tb-00001588/22004 tsim ta-101143/52501 tsim ta-3247 no.6962-1/8 http://onsemi.com semiconductor components industries, llc, 2013 august, 2013 CPH5902 n-channel jfet and npn bipolar transistor 15v, 10 to 32ma, 50v, 150ma, composite type cph5 stresses exceeding maximum ratings may damage the device. maximum ratings are stress ratings only. functional operation above t he recommended operating conditions is not implied. extended exposure to stresses above the recommended operating conditions may affect device reliabili ty. ordering number : en6962c features ? composite type with j-fet and npn transistors contained in the cph5 package, improving the mounting ef ciency greatly ? the CPH5902 contains a 2sk2394-equivalent chip and a 2sc4639-equivalent chip in one package ? drain and emitter are shared speci cations absolute maximum ratings at ta=25c parameter symbol conditions ratings unit [fet] drain-to-source voltage v dsx 15 v gate-to-drain voltage v gds --15 v gate current i g 10 ma drain current i d 50 ma allowable power dissipation p d mounted on a ceramic board (600mm 2 0.8mm) 350 mw [tr] collector-to-base voltage v cbo 55 v collector-to-emitter voltage v ceo 50 v emitter-to-base voltage v ebo 6v collector current i c 150 ma collector current (pulse) i cp 300 ma base current i b 30 ma collector dissipation p c mounted on a ceramic board (600mm 2 0.8mm) 350 mw [tr] total power dissipation p t mounted on a ceramic board (600mm 2 0.8mm) 500 mw junction temperature tj 150 c storage temperature tstg --55 to +150 c package dimensions unit : mm (typ) 7017a-007 product & package information ? package : cph5 ? jeita, jedec : sc-74a, sot-25 ? minimum packing quantity : 3,000 pcs./reel packing type : tl marking electrical connection 1 : collector 2 : gate 3 : source 4 : emitter/drain 5 : base cph5 2 1 4 53 2.9 0.05 0.4 2.8 1.6 0.2 0.6 0.6 0.9 0.2 0.15 0.95 rb lot no. rank tl CPH5902g-tl-e CPH5902h-tl-e 5 3 12 4
CPH5902 no.6962-2/8 electrical characteristics at ta=25c parameter symbol conditions ratings unit min typ max [fet] gate-to-drain breakdown voltage v (br)gds i g =--10 a, v gs =0v --15 v gate cutoff current i gss v gs =--10v, v ds =0v --1.0 na cutoff voltage v gs (off) v ds =5v, i d =100 a --0.4 --0.7 --1.5 v drain current i dss v ds =5v, v gs =0v 10.0* 32.0* ma forward transfer admittance | yfs | v ds =5v, v gs =0v, f=1khz 24 38 ms input capacitance ciss v ds =5v, v gs =0v, f=1khz 10.0 pf reverse transfer capacitance crss v ds =5v, v gs =0v, f=1khzz 2.9 pf noise figure nf v ds =5v, rg=1k , i d =1ma, f=1khz 1.0 db [tr] collector cutoff current i cbo v cb =35v, i e =0a 0.1 a emitter cutoff current i ebo v eb =4v, i c =0a 0.1 a dc current gain h fe v ce =6v, i c =1ma 135 400 gain-bandwidth product f t v ce =6v, i c =10ma 200 mhz output capacitance cob v cb =6v, f=1mhz 1.7 pf collector-to-emitter saturation voltage v ce (sat) i c =50ma, i b =5ma 0.08 0.4 mv base-to-emitter saturation voltage v be (sat) i c =50ma, i b =5ma 0.8 1.0 v collector-to-base breakdown voltage v (br)cbo i c =10 a, i e =0a 55 v collector-to-emitter breakdown voltage v (br)ceo i c =1ma, r be = 50 v emitter-to-base breakdown voltage v (br)ebo i e =10 a, i c =0a 6 v turn-on time t on see speci ed test circuit. 0.15 ns storage time t stg 0.75 ns fall time t f 0.20 ns * : the CPH5902 is classi ed by i dss as follows : (unit : ma) rank g h i dss 10.0 to 20.0 16.0 to 32.0 the speci cations shown above are for each individual fet or transistor. switching time test circuit ordering information device package shipping memo CPH5902g-tl-e cph5 3,000pcs./reel pb free CPH5902h-tl-e cph5 3,000pcs./reel v r 1k v cc =20v v be = --5v + + 50 input outpu t r l 2k 220 f 470 f pc=20 s i b1 d.c. 1% i b2 10i b1 = --10i b2 =i c =10ma
CPH5902 no.6962-3/8 [fet] [fet] 0 0 i d -- v ds 20 16 12 8 4 0.4 0.8 1.2 1.6 2.0 itr10364 i d -- v ds --0.1v v gs =0v --0.2v --0.3v --0.4v --0.5v --0.6v - -0.7v 0 0 20 16 12 8 4 24 6810 --0.1v v gs =0v --0.2v --0.3v --0.4v --0.5v --0.6v --0.7v itr10365 drain-to-source voltage, v ds -- v drain current, i d -- ma drain-to-source voltage, v ds -- v drain current, i d -- ma [fet] [fet] [fet] [fet] i d -- v gs it03287 i d -- v gs itr10367 | y fs | -- i d it03288 | y fs | -- i dss it03289 --1.4 --1.2 --1.0 --0.8 --0.6 --0.4 --0.2 0 0 22 20 18 16 14 12 10 8 6 4 2 i dss =20ma 15ma 10ma --1.2 --1.0 --0.8 --0.6 --0.4 --0.2 0 0 4 2 6 8 12 10 14 16 75 c v ds =5v i dss =15ma 25 c ta= --25 c 10 5 3 7 2 3 5 7 3 1.0 10 7 5235723 5 2 v ds =5v f=1khz i dss =15ma 30ma v ds =5v v gs =0v f=1khz 7 10 23 5 10 2 3 5 7 100 v ds =5v gate-to-source voltage, v gs -- v drain current, i d -- ma gate-to-source voltage, v gs -- v drain current, i d -- ma drain current, i d -- ma forward transfer admittance, | y fs | -- ms drain current, i dss -- ma forward transfer admittance, | y fs | -- ms [fet] [fet] it03290 ciss -- v ds itr10371 v gs (off) -- i dss 7 10 23 5 --0.1 2 --1.0 7 5 3 2 v ds =5v i d =100 a 7235723 1.0 3 1.0 10 10 2 3 5 7 2 v gs =0v f=1mhz drain current, i dss -- ma cutoff voltage, v gs(off) -- v drain-to-source voltage, v ds -- v input capacitance, ciss -- pf
CPH5902 no.6962-4/8 [fet] [fet] crss -- v ds itr10372 nf -- f itr10373 73 5 10 1.0 2 10 2 357 7 5 3 2 1.0 7 v gs =0v f=1mhz 10 8 6 4 2 0.01 2 0.1 1.0 10 100 0 357 2357 2357 2357 v ds =5v i d =1ma rg=1k drain-to-source voltage, v ds -- v reverse transfer capacitance, crss -- pf frequency, f -- khz noise figure, nf -- db 50 30 20 40 10 0 0 0.4 1.0 0.8 0.6 0.2 i c -- v ce [tr] [tr] 50 a 100 a 150 a 200 a 250 a 300 a 350 a 400 a 45 0 a 500 a itr10376 020 50 40 10 30 i c -- v ce itr10377 12 10 6 4 8 2 0 i b =0 a 10 a 15 a 20 a 25 a 30 a 35 a 40 a 45 a 50 a 5 a i b =0 a [fet] [fet] nf -- rg itr10374 p d -- ta 10 8 6 4 2 0.1 2 1.0 10 100 1000 0 357235723572357 v ds =5v i d =1ma f=1khz signal source resistance, rg -- k noise figure, nf -- db ambient temperature, ta -- c allowable power dissipation, p d -- mw collector-to-emitter voltage, v ce -- v collector current, i c -- ma collector-to-emitter voltage, v ce -- v collector current, i c -- ma it09864 400 300 200 50 100 350 250 150 0 0 20 40 60 80 100 160 120 140 mounted on a ceramic board (600mm 2 ? 0.8mm) [tr] [tr] ta=75 c --25 c 100 3 2 7 5 1000 2 7 5 3 0.1 3 25 1.0 3 23 25 100 3 2 5 10 h fe -- i c 25 c v ce =6v itr10379 ta=75 c -- 2 5 c 160 120 140 20 80 100 40 60 0 v ce =6v 25 c 0 0.2 0.4 0.8 0.6 1.0 1.4 1.2 i c -- v be itr10378 base-to-emitter voltage, v be -- v collector current, i c -- ma collector current, i c -- ma dc current gain, h fe
CPH5902 no.6962-5/8 [tr] [tr] 3 100 2 5 7 3 2 5 7 1.0 10 52 7 3 2 100 57 3 2 3 1.0 10 2 3 2 5 5 7 1.0 10 57 57 3 2 f t -- i c itr10380 c ib -- v eb itr10381 v ce =6v f=1mhz collector current, i c -- ma gain-bandwidth product, f t -- mhz emitter-to-base voltage, v eb -- v input capacitance, c ib -- pf p c -- ta [tr] [tr] 1.0 7 23 5 7 22 35 10 100 5 3 1.0 10 7 5 3 2 7 v be (sat) -- i c i c / i b =10 itr10384 75 c ta= --25 c 25 c [tr] [tr] 3 10 2 3 2 5 5 7 1.0 5 7 1.0 10 57 57 3 2 100 57 3 2 cob -- v cb itr10382 f=1mhz 1.0 7 23 5 7 22 35 10 100 5 3 2 0.1 1.0 7 5 3 2 3 2 7 v ce (sat) -- i c i c / i b =10 itr10383 ta=75 c --25 c collector-to-base voltage, v cb -- v output capacitance, cob -- pf collector current, i c -- ma collector-to-emitter saturation voltage, v ce (sat) -- v collector current, i c -- ma base-to-emitter saturation voltage, v be (sat) -- v ambient temperature, ta -- c collector dissipation, p c -- mw it09865 25 c 400 300 200 50 100 350 250 150 0 0 20 40 60 80 100 160 120 140 mounted on a ceramic board (600mm 2 ? 0.8mm)
CPH5902 no.6962-6/8 embossed taping speci cation CPH5902g-tl-e, CPH5902h-tl-e
CPH5902 no.6962-7/8 outline drawing land pattern example CPH5902g-tl-e, CPH5902h-tl-e mass (g) unit 0.02 * for reference mm unit: mm 0.6 2.4 1.4 0.95 0.95
CPH5902 ps no.6962-8/8 on semiconductor and the on logo are registered trademarks of semiconductor components industries, llc (scillc). scillc owns th e rights to a number of patents, trademarks, copyrights, trade secrets, and other intellectual property. a listing of scillc?s product/patent covera ge may be accessed at www.onsemi.com/site/pdf/patent-marking.pdf. scillc reserves the right to make changes without further notice to any products herein. scillc makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does scillc ass ume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation sp ecial, consequential or incidental damages. ?typical? parameters which may be provided in scillc data sheets and/or specifications can and do vary in different ap plications and actual performance may vary over time. all operating parameters, including ?typicals? must be validated for each customer application by customer?s technical experts. scillc does not convey any license under its patent rights nor the rights of others. scillc products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life , or for any other application in which the failure of the scillc product could create a situation where personal injury or death may occur. should buyer purchas e or use scillc products for any such unintended or unauthorized application, buyer shall indemnify and hold scillc and its officers, employees, subsidiarie s, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that scillc was negligent regarding the d esign or manufacture of the part. scillc is an equal opportunity/affirmative action employer. this literature is subject to all applicable copyright laws a nd is not for resale in any manner.


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