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SMDJ16A Dataheets PDF



Part Number SMDJ16A
Manufacturers RUILON
Logo RUILON
Description Transient Voltage Suppressors
Datasheet SMDJ16A DatasheetSMDJ16A Datasheet (PDF)

Transient Voltage Suppressors - SMDJ Series Features 1. Halogen-free 2. Rohs compliant 3. Typical maximum temperature coefficient 4. ΔVBR = 0.1% x VBR@25°C x ΔT 5. Glass passivated Chip junction in DO-214AB package 6. 3000W peak pulse capadility at 10×1000μs waveform, repetition rate (duty cycles):0.01% 7. Fast response time:typically less than 1.0ps from 0 Volts to BV min 8. Excellent clamping capability 9. Low incremental surge resistance 10. Typical IR less than 5μA above 12V 11. High temper.

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Transient Voltage Suppressors - SMDJ Series Features 1. Halogen-free 2. Rohs compliant 3. Typical maximum temperature coefficient 4. ΔVBR = 0.1% x VBR@25°C x ΔT 5. Glass passivated Chip junction in DO-214AB package 6. 3000W peak pulse capadility at 10×1000μs waveform, repetition rate (duty cycles):0.01% 7. Fast response time:typically less than 1.0ps from 0 Volts to BV min 8. Excellent clamping capability 9. Low incremental surge resistance 10. Typical IR less than 5μA above 12V 11. High temperature soldering guaranteed: 260°C/40 seconds / 0.375”, 12. (9.5mm) lead length, 5lbs., (2.3kg) tension 13. Plastic package has underwriters laboratory flammability classification 94v-0 UNI Cathode BI BI Anode UNI Applications TVS devices are ideal for the protection of I/O interfaces,VCC bus and other vulnerable circuits used in telecom, computer, industrial and consumer electronic applications. Mechanical Characteristics Rating Peak Pulse Power Dissipation by 10x1000μs test waveform (Fig.1)(Note 1) Steady State Power Dissipation on inifinite heat sink at TL=75°C (Fig. 5) Peak Forward Surge Current, 8.3ms Single Half Sine Wave Unidirectional only (Note 2) Maximum Instantaneous Forward Voltage at 25A for Unidirectional only (Note 3) Symbol PPPM PD IFSM VF Value 3000 6.5 300 3.5 Units Watts Watts Amps V Operating junction and Storage Temperature Range. TJ,TSTG -55°C to 175°C °C Typical Thermal Resistance Junction to Lead RuJL 15 °C/W Typical Thermal Resistance Junction to Ambient RuJA 75 °C/W Notes: 1. Non-repetitive current pulse , per Fig. 3 and derated above TA = 25°C per Fig. 2. 2. Mounted on copper pad area of 0.31x0.31” (8.0 x 8.0mm) to each terminal. 3. Measured on 8.3ms single half sine wave or equivalent square wave for unidirectional device only, duty cycle=4 per minute maximum. Circuit Protection System Specifications are subject to change without notice. Please refer to http://www.ruilon.com for current information. Page:1 Electriacl ChTarraacntesriiestnictsVoltage Suppressors - SMDJ Series Type Number Device Marking Code (UNI) SMDJ5.0A SMDJ6.0A SMDJ6.5A SMDJ7.0A SMDJ7.5A SMDJ8.0A SMDJ8.5A SMDJ9.0A SMDJ10A SMDJ11A SMDJ12A SMDJ13A SMDJ14A SMDJ15A SMDJ16A SMDJ17A SMDJ18A SMDJ20A SMDJ22A SMDJ24A SMDJ26A SMDJ28A SMDJ30A SMDJ33A SMDJ36A SMDJ40A SMDJ43A SMDJ45A SMDJ48A SMDJ51A SMDJ54A SMDJ58A SMDJ60A SMDJ64A SMDJ70A SMDJ75A SMDJ78A SMDJ85A SMDJ90A SMDJ100A SMDJ110A SMDJ120A SMDJ130A SMDJ150A SMDJ160A SMDJ170A SMDJ180A SMDJ190A SMDJ200A SMDJ210A SMDJ220A (BI) SMDJ5.0CA SMDJ6.0CA SMDJ6.5CA SMDJ7.0CA SMDJ7.5CA SMDJ8.0CA SMDJ8.5CA SMDJ9.0CA SMDJ10CA SMDJ11CA SMDJ12CA SMDJ13CA SMDJ14CA SMDJ15CA SMDJ16CA SMDJ17CA SMDJ18CA SMDJ20CA SMDJ22CA SMDJ24CA SMDJ26CA SMDJ28CA SMDJ30CA SMDJ33CA SMDJ36CA SMDJ40CA SMDJ43CA SMDJ45CA SMDJ48CA SMDJ51CA SMDJ54CA SMDJ58CA SMDJ60CA SMDJ64CA SMDJ70CA SMDJ75CA SMDJ78CA SMDJ85CA SMDJ90CA SMDJ100CA SMDJ110CA SMDJ120CA SMDJ130CA SMDJ150CA SMDJ160CA SMDJ170CA SMDJ180CA SMDJ190CA SMDJ200CA SMDJ210CA SMDJ220CA UNI HDE HDG HDK HDM HDP HDR HDT HDV HDX HDZ HEE HEG HEK HEM HEP HER HET HEV HEX HEZ HFE HFG HFK HFM HFP HFR HFT HFV HFX HFZ HGE HGG HGK HGM HGP HGR HGT HGV HGX HGZ HHE HHG HHK HHM HHP HHR HHT HHV HHX HHZ HIE BI IDE IDG IDK IDM IDP IDR IDT IDV IDX IDZ IEE IEG IEK IEM IEP IER IET IEV IEX IEZ IFE IFG IFK IFM IFP IFR IFT IFV IFX IFZ IGE IGG IGK IGM IGP IGR IGT IGV IGX IGZ IHE IHG IHK IHM IHP IHR IHT IHV IHX IHZ IIE Reverse Stand-Off Voltage VRWM(V) 5.0 6.0 6.5 7.0 7.5 8.0 8.5 9.0 10.0 11.0 12.0 13.0 14.0 15.0 16.0 17.0 18.0 20.0 22.0 24.0 26.0 28.0 30.0 33.0 36.0 40.0 43.0 45.0 48.0 51.0 54.0 58.0 60.0 64.0 70.0 75.0 78.0 85.0 90.0 100.0 110.0 120.0 130.0 150.0 160.0 170.0 180.0 190.0 200.0 210.0 220.0 Breakdown Voltage@IT VBR MIN.(V) VBR MAX.(V) 6.40 7.25 6.67 7.67 7.22 8.30 7.78 8.95 8.33 9.58 8.89 10.23 9.44 10.82 10.00 11.50 11.10 12.80 12.20 14.00 13.30 15.30 14.40 16.50 15.60 17.90 16.70 19.20 17.80 20.50 18.90 21.70 20.00 23.30 22.20 25.50 24.40 28.00 26.70 30.70 28.90 33.20 31.10 35.80 33.30 38.30 36.70 42.20 40.00 46.00 44.40 51.10 47.80 54.90 50.00 57.50 53.30 61.30 56.70 65.20 60.00 69.00 64.40 74.10 66.70 76.70 71.10 81.80 77.80 89.50 83.30 95.80 86.70 99.70 94.40 108.20 100.00 115.50 111.00 128.00 122.00 140.50 133.00 153.00 144.00 165.50 167.00 192.50 178.00 205.00 189.00 217.50 198.00 230.40 209.00 243.20 220.00 256.00 231.00 268.80 242.00 281.00 Test Current IT(mA) 10 10 10 10 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 Maximum Clamping Voltage@IPP Peak Pulse Current VC(V) IPP(A) 9.2 326.1 10.3 291.3 11.2 267.9 12.0 250.0 12.9 232.6 13.6 220.6 14.4 208.3 15.4 194.8 17.0 176.5 18.2 164.8 19.9 150.8 21.5 139.5 23.2 129.3 24.4 123.0 26.0 115.4 27.6 108.7 29.2 102.7 32.4 92.6 35.5 84.5 38.9 77.1 42.1 71.3 45.4 66.1 48.4 62.0 53.3 56.3 58.1 51.6 64.5 46.5 69.4 43.2 72.7 41.3 77.4.


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