1.5SMC SERIES Surface Mount Transient Voltage Suppressor Voltage Range 6.8 to 200 Volts 1500 Watts Peak Power Features SMC/DO-214AB For surface mounted application in order to optimize board space .129(3.27) .118(3.0) Low profile package .245(6.22) Built-in strain relief .220(5.59) Glass passivated junction Excellent clamping capability Fast response time: Typically less than 1.0ps from 0 volt to BV min. Typical IR less than 1μA above 10V .280(7.11).260(6.60) High temperature soldering guaranteed: 260OC / 10 seconds at terminals .012(.31).006(.15) Plastic material used carries Underwriters Laboratory Flammability Classification 94V-0 1500 watts peak pulse power capability with a 10 X 1000 us .103(2.62)waveform by 0.01% duty cycle .079(2.00) Mechanical Data .008(.20) .060(1.52) .004(.10).030(0.76) Case: Molded plastic Terminals: Solder plated .320(8.13) .305(7.75) Polarity: Indicated by cathode band Standard packaging: 16mm tape (EIA STD RS-481) Weight: 0.21gramDimensions in inches and (millimeters) Maximum Ratings and Electrical Characteristics Rating at 25℃ambient temperature unless otherwise specified. Type Number Symbol Value Units Peak Power Dissipation at TOA=25C, Tp=1ms (Note 1) PPK Minimum 1500 Watts Power Dissipation on Intinite Heatsink, TA=50OC PM(AV) 6.5 W Peak Forward Surge Current, 8.3 ms Single Half Sine-wave Superimposed on Rated Load I(JEDEC method) (Note 2, 3) - Unidirectional Only FSM 200 Amps Thermal Resistance Junction to Ambient Air (Note 4) RθJA 50 OC/W Thermal Resistance Junction to Leads RθJL 15 OC/W Operating and Storage Temperature Range TJ, TSTG -55 to + 150 OC Notes: 1. Non-repetitive Current Pulse Per Fig. 3 and Derated above TAO 2. Mounted on 8.0mm2
=25C Per Fig. 2. (.013mm Thick) Copper Pads to Each Terminal.
3. 8.3ms Single Half Sine-wave or Equivalent Square Wave, Duty Cycle=4 Pulses Per Minute Maximum.
4. Mounted on 5.0mm2
(.013mm thick) land areas. Devices for Bipolar Applications
1. For Bidrectional Use C or CA Suffix for Types 1.5SMC6.8 through Types 1.5SMC200A. 2. Electrical Characteristics Apply in Both Directions.
- 554 -REV.1 Jan.-2004
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ELECTRICAL CHARACTERISTICS (TA=25OC unless otherwise noted)Breakdown VoltageTestStand-OffMaximumMaximumMaximumMaximumGENERALDeviceVBRCurrentVoltageReverse LeakagePeak SurgeClampingTemperaturePARTMarking(Volts) (Note 1) @ITVWMat VwmCurrent IPPMVoltage at IPPMCoefficientNUMBERCodeMinMax(mA)(Volts)ID (uA)(Note 2)(Amps)VC(Volts)of VBR(% / OC)1.5SMC6.8DDJ6.127.48105.50100014510.80.0571.5SMC6.8ADEJ6.457.14105.80100015010.50.0571.5SMC7.5DFJ6.758.25106.0550013411.70.0611.5SMC7.5ADGJ7.137.88106.4050013911.30.0611.5SMC8.2DHJ7.389.02106.6320012612.50.0651.5SMC8.2ADKJ7.798.61107.0220013012.10.0651.5SMC9.1DLJ8.1910.01.07.375011413.80.0681.5SMC9.1ADMJ8.659.551.07.785011713.40.0681.5SMC10DNJ9.0011.01.08.101010515.00.0731.5SMC10ADPJ9.5010.51.08.551010814.50.0731.5SMC11DQJ9.9012.11.08.925.09716.20.0751.5SMC11ADRJ10.511.61.09.405.010015.60.0751.5SMC12DSJ10.813.21.09.725.09117.30.0781.5SMC12ADTJ11.412.61.010.25.09416.70.0781.5SMC13DUJ11.714.31.010.55.08219.00.0811.5SMC13ADVJ12.413.71.011.15.08618.20.0811.5SMC15DWJ13.516.51.012.15.07122.00.0841.5SMC15ADXJ14.315.81.012.85.07421.20.0841.5SMC16DYJ14.417.61.012.95.06723.50.0861.5SMC16ADZJ15.216.81.013.65.07022.50.0861.5SMC18EDJ16.219.81.014.55.05926.50.0881.5SMC18AEEJ17.118.91.015.35.06025.20.0881.5SMC20EFJ18.022.01.016.25.05429.10.0901.5SMC20AEGJ19.021.01.017.15.05627.70.0901.5SMC22EHJ19.824.21.017.85.04931.90.0921.5SMC22AEKJ20.923.11.018.85.05130.60.0921.5SMC24ELJ21.626.41.019.45.04534.70.0941.5SMC24AEMJ22.825.21.020.55.04733.20.0941.5SMC27ENJ24.329.71.021.85.04039.10.0961.5SMC27AEPJ25.728.41.023.15.04237.50.0961.5SMC30EQJ27.033.01.024.35.03643.50.0971.5SMC30AERJ28.531.51.025.65.03841.40.0971.5SMC33ESJ29.736.31.026.85.03347.70.0981.5SMC33AETJ31.434.71.028.25.03445.70.0981.5SMC36EUJ32.439.61.029.15.03052.00.0991.5SMC36AEVJ34.237.81.030.85.03149.90.0991.5SMC39EWJ35.142.91.031.65.02756.40.1001.5SMC39AEXJ37.141.01.033.35.02953.90.1001.5SMC43EYJ38.747.31.034.85.02561.90.1011.5SMC43AEZJ40.945.21.036.85.02659.30.1011.5SMC47FDJ42.351.71.038.15.02367.80.1011.5SMC47AFEJ44.749.41.040.25.02464.80.1011.5SMC51FFJ45.956.11.041.35.02173.50.1021.5SMC51AFGJ48.553.61.043.65.02270.10.1021.5SMC56FHJ50.461.81.045.45.01980.50.1031.5SMC56AFKJ53.258.81.047.85.02077.00.1031.5SMC62FLJ55.868.21.050.25.01789.00.1041.5SMC62AFMJ58.965.11.053.05.01885.00.1041.5SMC68FNJ61.274.81.055.15.01698.00.1041.5SMC68AFPJ64.671.41.058.15.01792.00.1041.5SMC75FQJ67.582.51.060.75.014108.00.1051.5SMC75AFRJ71.378.81.064.15.015103.00.1051.5SMC82FSJ73.890.21.066.45.013118.00.1051.5SMC82AFTJ77.986.11.070.15.013.9113.00.1051.5SMC91FUJ81.9100.01.073.75.012131.00.1061.5SMC91AFVJ86.595.501.077.85.012.6125.00.106- 555 -
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ELECTRICAL CHARACTERISTICS (TA=25OC unless otherwise noted) Breakdown VoltageStand-OffMaximumMaximumMaximumMaximumGENERALDevice VBRTest CurreVoltageReverse LeakagePeak SurgeClampingTemperaturePARTMarking (Volts) (Note 1) @IT(mA)VWMat VwmCurrent IPPMVoltage at IPPMCoefficientONUMBERCodeDMinMax(Volts)I (uA)(Note 2)(Amps)VC(Volts)of VBR(% / C)1.5SMC1001.5SMC100A1.5SMC1101.5SMC110A1.5SMC1201.5SMC120A1.5SMC1301.5SMC130A1.5SMC1501.5SMC150A1.5SMC1601.5SMC160A1.5SMC1701.5SMC170A1.5SMC1801.5SMC180A1.5SMC2001.5SMC200AFWJFXJFYJFZJGDJGEJGFJGGJGHJGKJGLJGMJGNJGPJGQJGRJGSJGTJ90.095.099.0105.0108.0114.0117.0124.0135.0143.0144.0152.0153.0162.0162.0171.0180.0190.0110.0105.0121.0116.0132.0126.0143.0137.0165.0158.0176.0168.0187.0179.0198.0189.0220.0210.01.01.01.01.01.01.01.01.01.01.01.01.01.01.01.01.01.01.081.085.589.294.097.2102.0106.0111.0121.0128.0130.0136.0138.0145.0146.0154.0162.0171.05.05.05.05.05.05.05.05.05.05.05.05.05.05.05.05.05.05.010.911.49.910.39.19.58.48.77.37.66.87.16.46.76.16.45.45.7144.0137.0158.0152.0173.0165.0187.0179.0215.0207.0230.0219.0244.0234.0258.0246.0287.0274.00.1060.1060.1070.1070.1070.1070.1070.1070.1080.1080.1080.1080.1080.1080.1080.1080.1080.108Notes:
1. VBR measured after IT applied for 300us, IT =square wave pulse or equivalent.2. Surge current waveform per Figure 3 and derate per Figure 2.
3. For bipolar types having VWM of 10 volts and under, the ID limit is doubled.
4. For bidirectional use C or Ca suffix for types 1.5SMC 6.8 through 1.5SMC200A.5. All terms and symbols are consistent with ANSI/IEEE C62.35.
- 556 -
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RATINGSANDCHARACTERISTICCURVES(1.5SMCSERIES)FIG.1-PEAKPULSEPOWERRATINGCURVEFIG.2-PULSEDERATINGCURVE)100MPNON-REPETITIVEP200I(PULSEWAVEFORMTN%WSHOWNinFIG.3E.KRE,T25OA=CRG150RUE10CTAWNrOoE)CPPREPPE100S(PLUR1.0ENIPWGKONAIEP50PEATSR,MLEPUDPP0.1P0.1s1s10s100s1.0ms10msKA0tp,PULSEWIDTH,sec.E0255075100125150175200PTA,AMBIENTTEMPERATURE.(OC)FIG.3-PULSEWAVEFORMFIG.4-TYPICALJUNCTIONCAPACITANCE150PULSEWIDTH(td)isDEFINEDUNIDIRECTIONAL10,000asthePOINTWHEREthePEAKUNIDIRECTIONAL%tr=10secCURRENTDECAYSBIDIRECTIONA-Tto50%ofIPPMNPeakValue)E100IPPMFRp(R.UCHalfValue-IPPMEE2CNVR=0SL10/1000sec.WAVEFORMTAI1,000UP50asDEFINEDbyR.E.A.CPAKAACEPNOIT0tdCNOUTj=25C01.02.03.04.0J100f=1.0MHzt,TIME,ms,JVsig=50mVp-pCVFIG.5-MAXIMUMNON-REPETITIVEFORWARDSURGER-RATEDT,NSTAND-OFFERCURRENTUNIDIRECTIONALONLYVOLTAGERU200C8.3msSingleHalfSineWaveEGJEDECMethod10R1.010100200USSE100Tj=Tjmax.V(BR),BREAKDOWNVOLTAGE.VOLTSDRREPWAMRAOFKAEP,MSFI10110100NUMBEROFCYCLESAT60Hz-557-
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