15KP_04 PANJIT | Alldatasheet

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PAGE . 1STAD-JUN.23.2004 15KP SERIES GLASS PASSIVATED JUNCTION TRANSIENT VOLTAGE SUPPRESSOR NOTES: 3.8.3ms single half sine-wave, duty cycle= 4 pulses per minutes maximum.

FEATURES

  • Plastic package has Underwriters Laboratory Flammability Classification 94V-O
  • Glass passivated chip junction in P-600 package
  • 15000W Peak Pulse Power capability on 10/1000µs waveform
  • Excellent clamping capability
  • Low incremental surge resistance
  • Both normal and Pb free product are available : Normal : 80~95% Sn, 5~20% Pb Pb free: 98.5% Sn above MECHANICAL DATA Case: JEDEC P-600 Molded plastic Terminals: Axial leads, solderable per MIL-STD-750, Method 2026 Polarity: Color band denotes positive end (cathode ) Mounting Position: Any Weight: 0.07 ounce, 2.1 gram DEVICES FOR BIPOLAR APPLICATIONS For Bidirectional use C or CA Suffix for types Electrical characteristics apply in both directions. MAXIMUM RATINGS AND CHARACTERISTICS Rating at 25°Cambient temperature unless otherwise specified. Resistive or inductive load, 60Hz. For Capacitive load derate current by 20%. .052(1.3) 1.0(25.4)MIN. 1.0(25.4)MIN. .360(9.1) .360(9.1) .340(8.6) .340(8.6) .048(1.2) P-600 Unit: inch(mm) DATA SHEET VOLTAGE 17 to 220 Volts POWER 15000 Watts gnitaRl obmySe ulaVs tinU )1etoN(mrofevaws0001/01nonoitapissiDrewoPesluPkaeP PPPM 00051s ttaW )1etoN(mrofevaws0001/01notnerruCesluPkaeP IPPM 1ELBATEESs pmA TtanoitapissiDrewoPetatSydaetS L 05= O )2etoN()mm5.9(,"573.shtgneLdaeLCP M(AV) 01s pmA desopmirepuSevaW-eniSflaHelgniSsm3.8,tnerruCegruSdrawroFkaeP )3etoN()dohteMDECEJ(daoLdetaRno I FSM 004s pmA egnaRerutarepmeTegarotSdnanoitcnuJgnitarepO TJ,TSTG 571+ot55- OC

PAGE . 2STAD-JUN.23.2004 REBMUNTRAPV M WR VRBI @T M WRV@RI PPI@CV .NIM. XAMI T -INU- IB -INU- IBV V V A MA UA UVA ROSSERPPUSEGATLOVTNEISNARTW00051 71JPK51C 71JPK517 10 9.810 9.320 50 0050 0055 .030 25 A71PK51A C71PK517 10 9.810 7.120 50 0050 0056 .723 45 81PK51C 81PK518 10 0.020 3.520 50 0050 0052 .239 34 A81PK51A C81PK518 10 0.020 3.320 50 0050 0052 .925 84 02PK51C 02PK510 20 2.220 1.820 20 0510 0518 .536 93 A02PK51A C02PK510 20 2.220 5.520 20 0510 0514 .237 34 22PK51C 22PK512 20 4.420 9.030 10 090 094 .935 63 A22PK51A C22PK512 20 4.420 0.820 10 090 095 .534 04 42PK51C 42PK514 20 7.620 8.330 .50 080 080 .343 33 A42PK51A C42PK514 20 7.620 7.030 .50 080 089 .839 63 62PK51C 62PK516 20 9.820 6.630 .50 020 026 .648 03 A62PK51A C62PK516 20 9.820 2.330 .50 020 021 .241 43 82PK51C 82PK518 20 1.130 4.930 .55 215 210 .056 82 A82PK51A C82PK518 20 1.130 8.530 .55 215 214 .546 13 03PK51C 03PK510 30 3.330 2.240 .58 28 25 .357 62 A03PK51A C03PK510 30 3.330 3.830 .58 28 24 .846 92 33PK51C 33PK513 30 7.630 5.640 .50 10 10 .958 42 A33PK51A C33PK513 30 7.630 2.240 .50 10 13 .354 72 63PK51C 63PK516 30 0.040 7.050 .50 10 13 .467 22 A63PK51A C63PK516 30 0.040 0.640 .50 10 11 .851 52 04PK51C 04PK510 40 4.440 3.650 .50 10 14 .176 02 A04PK51A C04PK510 40 4.440 1.150 .50 10 15 .468 22 34PK51C 34PK513 40 8.740 5.060 .50 10 17 .675 91 A34PK51A C34PK513 40 8.740 9.450 .50 10 14 .965 12 54PK51C 54PK515 40 0.050 3.360 .50 10 13 .086 81 A54PK51A C54PK515 40 0.050 5.750 .50 10 17 .275 02 84PK51C 84PK518 40 3.350 5.760 .50 10 15 .585 71 A84PK51A C84PK518 40 3.350 3.160 .50 10 14 .773 91 15PK51C 15PK511 50 7.650 8.170 .50 10 11 .194 61 A15PK51A C15PK511 50 7.650 2.560 .50 10 14 .281 81 45PK51C 45PK514 50 0.060 0.670 .50 10 13 .695 51 A45PK51A C45PK514 50 0.060 0.960 .50 10 11 .781 71 85PK51C 85PK518 50 4.460 6.180 .50 10 13 014 41 A85PK51A C85PK518 50 4.460 1.470 .50 10 16 .390 61 06PK51C 06PK510 60 7.660 5.480 .50 10 17 010 41 A06PK51A C06PK510 60 7.660 7.670 .50 10 18 .694 51

PAGE . 3STAD-JUN.23.2004 REBMUNTRAPV MWR VRBI @T V @RI MWR PPI@CV .NIM. XAMI T -INU- IB -INU- IBV V V A MA UA UV A ROSSERPPUSEGATLOVTNEISNARTW00051 46PK51C 46PK514 61 .171 .090 .50 10 14 110 31 A46PK51A C46PK514 61 .178 .180 .50 10 13 014 41 07PK51C 07PK510 78 .776 .890 .50 10 15 219 11 A07PK51A C07PK510 78 .775 .980 .50 10 13 112 31 57PK51C 57PK515 73 .387 .5010 .50 10 14 311 11 A57PK51A C57PK515 73 .388 .590 .50 10 11 213 21 87PK51C 87PK518 77 .688 .9010 .50 10 19 317 01 A87PK51A C87PK518 77 .687 .990 .50 10 16 219 11 58PK51C 58PK515 84 .492 .9110 .50 10 11 519 9 A58PK51A C58PK515 84 .492 .8010 .50 10 17 319 01 09PK51C 09PK510 90 015 .6210 .50 10 10 614 9 A09PK51A C09PK510 90 015 .5110 .50 10 16 413 01 001PK51C 001PK510 011 110 .1410 .50 10 19 714 8 A001PK51A C001PK510 011 110 .8210 .50 10 12 613 9 011PK51C 011PK510 112 215 .4510 .50 10 16 917 7 A011PK51A C011PK510 112 215 .0410 .50 10 17 715 8 021PK51C 021PK510 213 310 .9610 .50 10 14 120 7 A021PK51A C021PK510 213 310 .3510 .50 10 13 918 7 031PK51C 031PK510 314 415 .2810 .50 10 11 325 6 A031PK51A C031PK510 314 415 .5610 .50 10 19 022 7 051PK51C 051PK510 517 615 .1120 .50 10 18 626 5 A051PK51A C051PK510 517 615 .2910 .50 10 13 422 6 061PK51C 061PK510 618 710 .6220 .50 10 17 822 5 A061PK51A C061PK510 618 710 .5020 .50 10 19 528 5 071PK51C 071PK510 719 815 .9320 .50 10 14 039 4 A071PK51A C071PK510 719 815 .7120 .50 10 15 725 5 081PK51C 081PK510 818 918 .3520 .15 5 2 237 4 A081PK51A C081PK510 818 914 .0320 .15 5 2 921 5 091PK51C 091PK510 919 029 .7620 .15 5 0 434 4 A091PK51A C091PK510 919 022 .3420 .15 5 8 039 4 002PK51C 002PK510 020 220 .2820 .15 5 8 532 4 A002PK51A C002PK510 020 220 .6520 .15 5 4 236 4 012PK51C 012PK510 121 321 .6920 .15 5 6 730 4 A012PK51A C012PK510 121 328 .8620 .15 5 0 434 4 022PK51C 022PK510 222 422 .0130 .15 5 4 938 3 A022PK51A C022PK510 222 426 .1820 .15 5 6 532 4

PAGE . 4STAD-JUN.23.2004 Fig.1 PEAK PULSE POWER RATING VERSUS PULSE TIME CURVE Fig.2 PULSE DERATING CURVE Fig.3 PULSE WAVEFORM Fig.5 STEADY STATE POWER DERATING Fig.6 MAXIMUN NON-REPETITEVE PEAK FORWARD SURGE CURRENT UNIDIRECTIONAL Fig.4 TYPICAL JUNCTION CAPACITANCE td,PULSE WIDTH,usec T,TIME,ms T , LEAD TEMPERATURE, CL O V(BR) , BREAKDOWN VOLTAGE, VOLTS T ,AMBIENT TEMPERATURE, CA O 0.1 1.0 1.0 100 100 1000 1000 10000P ,PEAK PULSE FORWARD,KW PPM I ,PEAK PULSE CURRENT,%PPM PEAK PULSE FORWARD (P ) OR CURRENT (I ) DERATING IN PERCENTAGE % PP PP 100 125 150 175 20025 50 75 1000 Non-Repetitve Pulse Wavefom Shown in Figure.3 T= 2 5 C A O 0 1.0 2.0 3.0 4.0 100 150 TA =2 5C P ulse Width (td) is D efined as t he P oint W here the P eak C u r r e n tD e cay st o5 0 %o fI p p tf= 10 use c 10/1000 use c Wa ve fo rm as D efined bye R .E .A . Pe a k Va l u e Ip p m Ha lf Va lue -Ip p e-kt td CJ,CAP ACIT ANCE ,pF Pm(AV)S T EADY S TA TE P O WER DI SSI PATI O N , WATTS 125 150 175 20025 50 75 1000 2.5 5.0 7.5 = 375"(9.5mm) 20mm 20mm 1mm Copper H eat Sinks (0.8" 0.8" 0 .40") + + I , PEAK FO RWARD SURG E CURRENT AMPERES FSM NUM BER OF CYC LES AT 60 Hz 40,000 20,000 10,000 6000 4000 2000 1000 500 200 100 1.0 2.0 5.0 10 20 50 100 200 Measured a t Stand-Off Vo l t a g e (V )RWM Tj = 2 5 C f= 1.0MHZ Vsig = 50m Vp -pMeasured a t Ze ro Bia s Tj = Tj m a x 8.3ms S INGL E H AL F s ince-WAVE JEDEC MET HOD 400 350 300 250 200 150 100 1 2 3 5 10 20 30 50 100