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  c/ j 20 stern ave. springfield, new jersey 07081 u.s.a. telephone: (973) 376-2922 (212)227-6005 fax: (973) 376-8960 stud/fltsvoe sc240 sc245 sc250 sc260 sc26s hermetic triacs 6a to 40a rms up to 600 volts press-fit SC241 sc246 sc251 sc261 sc266 maximum allowable ratings type sc240/24i sc245/246 sc250/25i sc260/261 sc.16.v266 rms on-state current 't(rms)<1> amperes 6 10 is 25 40 repetitive peak off-state voltage, vdrm(2) b "volts 200 200 200 200 200 d ' volts 400 400 400 400 400 e volts 500 500 500 500 500 ' m volts 600 600 600 600 600 peak one f surge (non-r current, it 50 hz amperes j ?''4 90 90 2.10 2'i* ull cycle ep) on-state m amperes 60 hz amperes 80 100 100 250 .300 in for fusing for times at(3) (rms amperes seconds, 1.0 milliseconds 18 20 20 150 300 (rms ampere)1 seconds, 8.3 milliseconds 26.5 41.5 41.5 260.0 375.0 peak (jute power dissipation, p,i-n) (4) sc240/sc24i, sc245/sc246. sc250/sc25 i, sc2mj/sc26i sc26s/sc266 average gate power dissipation, p(,(..\v) peak gate current, igm (4) peak gate voltage. vgm (4) storage temperature. '\\ operating temperature, tj sc240/SC241, s('245/sc:.46 sc250/sc251, sc260/sc26i. sc26.vsc266 stud torque (isolated and non-isolated stud types) insertion pressure (press-fit types) surge isolation voltage (5) 10 watts tor 10 microseconds (see figure 5a) 10 watts cor 20 microseconds (see figure sb) 0.5 watts (see figures 6a, 6b, 6c) (see figures 6a, 6b, 6c) -40cto+125c .-40ec lo+100c -40cio+115c 25 lb.-ln. (29 kg-cm) (2.8 n-m) (3.56 n x 103) 800 lbs. (364 kg) 1800 voitirms nj semi-conductors reserves the right to change test conditions, parameter limits and package dimensions without notice. information furnished by nj semi-conductors is believed to.be both accurate and reliable at the time of going to press. however, nj semi-conductors assumes no responsibility for any errors or omissions discovered in its use. nj semi-conductors encourages customers to verify that datasheets are current before placing orders. quality semi-conductors
stud/to-3 flange sc240, 45, 50, 60, 65 press-fit 80241,46,81,81,68 characteristics ti8t repetitive peak off- state current sc240/SC241 sc245/sc246 sc250/sc251 sc260/sc261 sc265/sc266 peak on-state voltage sc240/SC241 sc245/sc246 sc250/sc2s1 sc260/sc261 sc265/sc266 critical rate-of-rise of off-state voltage (higher values may cause device switching,) sc240/SC241 sc245/sc246 sc250/sc251 sc260/sc261 sc265/sc266 critical rate-of-rise of commutating off-state voltage (commutating dv/dt) sc240/SC241 sc245/sc246 sc250/sc2s1 sc260/sc261 sc265/sc266 dc gate trigger current sc240/SC241 sc245/sc246 sc250/sc251 sc260/sc261 sc265/sc266 symbol idrm vim dv/dt dv/dl(c) iot min. - _ 30 100 100 50 50 4 4 4 5 5 - - - ?!_- . - - - - _. - - typ, - - 100 150 250 150 150 _ - - - - - - _ - - - - r max. 0.1 0.5 0.2 1.0 .8.? .65 ,65 .58 .38 - - - - - ... - 50 50 50 80 80 . 80 80 80 80 120 120 120 units ma volts volts/jusec volts//jsec madc test conditions vhrm a maximum allowable repe- titive peak off-state voltage rating. gait open circuited. tc = +25cc tc = t., (max.) tc = +25c tc = tj (max.) tc = +25c, itm = 1 msec., wide i'nlse. duly cycle < 2%, i1m = 8,5 a peak iim =14 a peak 11m = 21 a peak itm ~ 35 a peak itm = 56 a peak tc = tj max. rated vdrm. gate open circuited, exponential voltage waveform. 't(ums) = kated maximum allow- able rms on-state current, vd?m * maximum rated peak off-state voltage. gate open circuited. vd = 12vdc trigger mode mt2+ gate+ mt2- gate- mt2+ gate- mt2+ gate+ mt2- gate- mt2+gate- mt2-f gate+ mt2~ gate- mt2+ gate- mt2+ gate+ mt2- gite- mt2+ gate- rl 100 ohms 100 ohms 50 ohms 50 ohms 50 ohms 25 ohms 100 ohms 100 ohms 50 ohms 50 ohms 50 ohms 25 ohmi tc +25c -40c +25c ?40c bip, noti i 1 1 2
stud/to-3 flange sc240, 45, 50, 60, 65 press-fit SC241,46,51,61,66 test sc260/sc261 sc265/sc266 apparent thermal resistance sc240/SC241 sc245/sc246 sc250/sc25! sc260/sc261 sc265/sc266 symbol rsjc rflk'(ac) min. - - - - - - - - - - - - - _ typ. - - ? - - - - - _. _ - - - - .. - _ - _. - max. 1.80 1.95 1.95 2.10 1.00 1.1.5 1.15 1.30 2.00 2.20 2.20 2.40 l.so 1.65 1.65 1.80 1.45 1.60 1.60 1.7s 1.25 1.40 1.40 1.55 0.80 0.95 .0.95 1.10 units 'c/watt c/wiitt test conditions non-isolated stud/press-fit isolated stud non-isolated to-3 flange isolated to-3 plunge non-isolated stud/press-fit isolated stud non-isolated to-3 flange isolated to-3 flange junction-to-case. this characteristic is useful in the calculation of junction temperature rise above case temperature for ac current conduction, non-isolated stud/press-fit isolated stud non-isolated to-3 flange isolated to-3 flange non-isolated stud/press-fit isolated stud non-isolated to-3 flange isolated to-3 flange non-isolated stud/press-fit isolated stud non-isolated to-3 flange isolated to-3 flange non-isolated stud/press-fit isolated stud non-isolated to-3 flange isolated to-3 flange non-isolated stud/press-fit isolated stud non-isolated to-3 flange isolated to-3 flange rep. note 1,5 6
notes: 1. characteristic values apply lor eithei polarity of main terminal 2 referenced to main terminal 1. 2. main terminal 1 is the reference terminal for main terminal 2 and gate terminal. 3. with vrj equal to maximum allowable off-state voltage. 4. the junction-to-ambient value is under worst case conditions; i.e., with no. 22 copper wire used for electrical contact to the terminals and natural convection moling. 5. lunction-lo-case steady-state thermal resistance (rgjc) is tested in accordance with fla-ni-ma standard rs-.w. section 3.3.2, which states: "thermal charactt'ristivs arc to be measured with the device uprrariiir in onlv one jin'clion." the values listed are the limiting value for either direction. 6. apparent thermal resistance applies for a 50 or 60 hz full sine wave of current. it can be calculated with the following formula: apparent thermal resistance =?jl.max) ... p'hav) where: tj(iliax) a maximum junction temperature t(" " case temperature p'i'(av) = average on-state power 7. values for these test conditions are: device c/"-)4n/^r?4i ^f^d ^/^f?dfi q*"^ ^r\/f 21 5 a/msec tc(c> 82 80 80 79 80 78 78 76 86 83 83 4o~ 80 75 75 71 81 74 74 68 six basic packages ? other packages available upon request. press-fit non-isolated f i stud :.'yj> c/ r type 1 isolated stud with press on mt2 terminal type 2 isolated stud with solder ring mt2 tflrminal type 3 isolated to-3 flange type 4 non-isolated to-3 flange type 5


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