SMCJ EVVOSEMI | Alldatasheet
Document overview
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Technical content
FEATURES
- 1500W peak pulse power capability at 10/1000 μs waveform
- For surface mounted applications to optimize board space
- Glass passivated chip junction
- Halogen free and RoHS compliant MECHANICAL DATA Case: SMC Terminals: Solderable per MIL-STD-750, Method 2026 pprox. Weight:
- A 0.22g (0.0077oz) The SMCJ series is designed specifically to protect sensitive electronic equipment from voltage transients induced by lightning and other transient voltage events. Parameter Symbol Value Unit PPPM 1500 W IFSM 200 A Peak Pulse Current on 10/1000 us waveform IPPM See Next Table Typical Thermal Resistance Junction to Ambient(Note 1) Operating Junction Temperature and Storage Temperature Range RθJA RθJL T , Tj stg °C-55 ~ +150 °C/W A Peak Pulse Power Dissipation on 10/1000 us waveform Peak Forward Surge Current,8.3ms Single Half Sine-Wave Superimposed on Rated Load (JEDEC Method) (UNI) Maximum instantaneous forward voltage at 100 A for unidirectional only VF 3.5 V Power dissipation on Infinite heat sink at T A=50°C W6.5PD NOTES : 1. 2 Mounted on 8 mm (0.13mm thick) land areas. PINNING PIN
DESCRIPTION
Simplified outline SMC and symbol Unipolar Bipolar SMCJ Series Rev:2022A2
Characteristics at Ta = 25°C Type Reverse Stand-off Voltage Breakdown Voltage VRMW VBR @ IT Min(V) Max(V) A Test Current Max Clamping Voltage Peak Pulse Current IT mA VC @ IPP IPP UNI BI μA Marking SMCJ5.0A SMCJ6.0A SMCJ6.5A SMCJ7.0A SMCJ7.5A SMCJ8.0A SMCJ8.5A SMCJ9.0A SMCJ10A SMCJ11A SMCJ12A SMCJ13A SMCJ14A SMCJ15A SMCJ16A SMCJ17A SMCJ18A SMCJ20A SMCJ22A SMCJ24A SMCJ26A SMCJ28A SMCJ30A SMCJ33A SMCJ36A SMCJ40A SMCJ43A SMCJ45A SMCJ48A SMCJ51A SMCJ54A SMCJ58A SMCJ60A SMCJ64A SMCJ70A SMCJ75A SMCJ78A SMCJ85A SMCJ90A SMCJ100A SMCJ110A SMCJ120A SMCJ130A SMCJ150A SMCJ160A SMCJ170A SMCJ180A SMCJ200A SMCJ220A SMCJ250A SMCJ300A SMCJ350A SMCJ400A SMCJ440A SMCJ5.0CA SMCJ6.0CA SMCJ6.5CA SMCJ7.0CA SMCJ7.5CA SMCJ8.0CA SMCJ8.5CA SMCJ9.0CA SMCJ10CA SMCJ11CA SMCJ12CA SMCJ13CA SMCJ14CA SMCJ15CA SMCJ16CA SMCJ17CA SMCJ18CA SMCJ20CA SMCJ22CA SMCJ24CA SMCJ26CA SMCJ28CA SMCJ30CA SMCJ33CA SMCJ36CA SMCJ40CA SMCJ43CA SMCJ45CA SMCJ48CA SMCJ51CA SMCJ54CA SMCJ58CA SMCJ60CA SMCJ64CA SMCJ70CA SMCJ75CA SMCJ78CA SMCJ85CA SMCJ90CA SMCJ100CA SMCJ110CA SMCJ120CA SMCJ130CA SMCJ150CA SMCJ160CA SMCJ170CA SMCJ180CA SMCJ200CA SMCJ220CA SMCJ250CA SMCJ300CA SMCJ350CA SMCJ400CA SMCJ440CA GDE GDG GDK GDM GDP GDR GDT GDV GDX GDZ GEE GEG GEK GEM GEP GER GET GEV GEX GEZ GFE GFG GFK GFM GFP GFR GFT GFV GFX GFZ GGE GGG GGK GGM GGP GGR GGT GGV GGX GGZ GHE GHG GHK GHM GHP GHR GHT GHV GHX GHZ GJE GJG GJK GJM BDE BDG BDK BDM BDP BDR BDT BDV BDX BDZ BEE BEG BEK BEM BEP BER BET BEV BEX BEZ BFE BFG BFK BFM BFP BFR BFT BFV BFX BFZ BGE BGG BGK BGM BGP BGR BGT BGV BGX BGZ BHE BHG BHK BHM BHP BHR BHT BHV BHX BHZ BJE BJG BJK BJM Maximum Reverse Leakage UNI BI V IR V 6.5 7.5 8.5 100 110 120 130 150 160 170 180 200 220 250 300 350 400 440 6.4 6.67 7.22 7.78 8.33 8.89 9.44 11.1 12.2 13.3 14.4 15.6 16.7 17.8 18.9 22.2 24.4 26.7 28.9 31.1 33.3 36.7 44.4 47.8 53.3 56.7 64.4 66.7 71.1 77.8 83.3 86.7 94.4 100 111 122 133 144 167 178 189 201 224 246 279 335 391 447 492 7.37 7.98 8.6 9.21 9.83 10.4 11.1 12.3 13.5 14.7 15.9 17.2 18.5 19.7 20.9 22.1 24.5 26.9 29.5 31.9 34.4 36.8 40.6 44.2 49.1 52.8 55.3 58.9 62.7 66.3 71.2 73.7 78.6 92.1 95.8 104 111 123 135 147 159 185 197 209 222 247 272 309 371 432 494 543 9.2 10.3 11.2 12.9 13.6 14.4 15.4 18.2 19.9 21.5 23.2 24.4 27.6 29.2 32.4 35.5 38.9 42.1 45.4 48.4 53.3 58.1 64.5 69.4 72.7 77.4 82.4 87.1 93.6 96.8 103 113 121 126 137 146 162 177 193 209 243 259 275 292 324 356 405 486 567 648 713 163 145.7 134 125 116.3 110.3 104.2 97.4 88.3 82.5 75.4 69.8 64.7 61.5 57.7 54.4 51.4 46.3 42.3 38.6 35.7 33.1 28.2 25.9 23.3 21.7 20.6 19.4 18.2 17.3 16.1 15.5 14.6 13.3 12.4 11.9 10.3 9.3 8.5 7.8 7.2 6.2 5.8 5.5 5.1 4.6 4.2 3.7 3.1 2.6 2.3 2.1 800 800 500 200 100
Fig.3 Forward Current Derating Curve Fig.5 Maximum Non-Repetitive Peak Forward Surge Current 10 1001 120 200 160 240 I ,PEAK FORWARD SURGE CURRENT,FSM AMPERES Number of Cycles at 60Hz PEAK PULSE POWER(P )OR CURRENT(I )PP PP DERATINGIN PERCENTAGE% T ,AMBIENT TEMPERATURE,A °C 100 Fig.2 Pulse Waveform 0 1.0 2.0 3.0 4.0 150 I ,Peak Pulse Current (%)ppm T,TIME,ms Peak Value I ppm Half Value-I pp/2 10/1000usec Waveform as Defined bye R.E.A. Pulse Width (td) is Defined as the Point where the Peak. Current Decayst to 50% of Ipp TA=25 t =10us f TJ=TJmax 8.3ms Single Half Sinepwave JEDEC Method Fig.1 Peak Pulse Power Rating Curve 10.1 100 10 100 1000 10000 P ,PEAK PULSE FORWARD ,kWPPM t ,PULSE WIDTH ,usd Non-Repetive Pulse.Wavefom Shown in Figure.3 T =25A °C 0.31x0.31" (80 x 80mm) Copper pad Area Uni-directional @ V R Uni-directional V=0V Bi-directional V= 0V Bi-directional @ V R Fig.4 Typical Junction Capacitance 1000 10000 100000 100 Cj (pF) 1 10 100 1000 V - Reverse Breakdown Voltage (V)BR td Tj=25℃ f=1MHz Vsig=mVp-p SMCJ Series Rev:2022A2
The recommended mounting pad size 3.8 (150) 4.1 (160) 4.3 (170) Unit :mm (mil) 4.1 (160) PACKAGE OUTLINE Plastic surface mounted package; 2 leads SMC D E1 V AM A C E A b UNIT mm max min A CE D E1 L 0.9 1.6 b 2.75 3.25 mil max min 0.21 0.05 103 276 244 315 79 256 220 299 5.9 35 108 1288.3 2.0 SMC mechanical data L SMCJ Series Rev:2022A2