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SLD45U-017 Dataheets PDF



Part Number SLD45U-017
Manufacturers Littelfuse
Logo Littelfuse
Description TVS Diodes
Datasheet SLD45U-017 DatasheetSLD45U-017 Datasheet (PDF)

SLD Series TVS Diodes Axial Leaded – 2200W > SLD series RoHS Pb e3 Uni-directional Bi-directional Agency Approvals Agency Agency File Number E230531 Maximum Ratings and Thermal Characteristics (TA=25OC unless otherwise noted) Parameter Peak Pulse Power Dissipation 10ms x 150ms Test Waveform Peak Pulse Power Dissipation 10μs x 1000μs Test Waveform Steady STLte Power Dissipation on Infinite Heat Sink at TL=75ºC (Fig. 6) Peak Forward Surge Current, 8.3ms Single Half Sine Wave (Note 3) Maxi.

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SLD Series TVS Diodes Axial Leaded – 2200W > SLD series RoHS Pb e3 Uni-directional Bi-directional Agency Approvals Agency Agency File Number E230531 Maximum Ratings and Thermal Characteristics (TA=25OC unless otherwise noted) Parameter Peak Pulse Power Dissipation 10ms x 150ms Test Waveform Peak Pulse Power Dissipation 10μs x 1000μs Test Waveform Steady STLte Power Dissipation on Infinite Heat Sink at TL=75ºC (Fig. 6) Peak Forward Surge Current, 8.3ms Single Half Sine Wave (Note 3) Maximum Instlntlneous Forward Voltlge at 100A for Unidirectional Only Operating Junction and Storage Temperature Range Typical Thermal Resistlnce Junction to Lead Typical Thermal Resistlnce Junction to Ambient Symbol PPPM PPPM PD IFSM VF TJ, TSTG RƟJL RƟJA Value 2200 5000 8.0 600 3.5 -55 to 175 8.0 40 Unit W W W A V °C °C/W °C/W Description The AEC-Q101 qualified SLD Series is packaged in a highly reliable industry standard P600 axial leaded package and is designed to provide precision overvoltage protection for sensitive electronics. Features • High reliability application • IEC-61000-4-2 ESD and automotive grade 30kV(Air), 30kV (Contact) AEC-Q101 175°C qualified with TJ • ESD protection of data lines in accordance with • Vx(αBR(1T@:+TαeTmJT=pxVeB(rTRa@Jtu-2r25e5°C)) IEC 61000-4-2 • EFT protection of data lines in accordance with Coefficient, typical value IEC 61000-4-4 is 0.1%) • Low incremental surge • Glass passivated chip resistance junction in P600 package • High temperature • Meets ISO7637 and to reflow soldering ISO16750 load dump guaranteed: 260°C/10sec test; 2200W peak pulse / 0.375”, (9.5mm) lead capability at 10μs × 150ms length, 5 lbs., (2.3kg) waveform, repetition rate tension (duty cycles): 0.01% • UL Recognized case • Fast response time: material meeting typically less than 1.0ps flammability rating V-0. from 0 Volts to VBR min • Matte tin lead–free plated • Excellent clamping capability • Typical failure mode is short from over-specified voltage or current • Whisker test is conducted based on JEDEC JESD201A per its table 4a • Halogen free and RoHS compliant • Pb-free E3 means 2nd level interconnect is Pbfree and the terminal finish material is tin(Sn) (IPC/ JEDEC J-STD-609A.01) and 4c Functional Diagram Cathode Bi-directional Uni-directional Anode Applications Designed to protect sensitive electronics from: - Inductive Load Switching - Alternator Load Dump © 2019 Littelfuse, Inc. Specifications are subject to change without notice. Revised: 07/11/19 TVS Diodes Axial Leaded – 2200W > SLD series Electrical Characteristics (TA=25°C unless otherwise noted) Part Number (Uni) Part Number (Bi) Breakdown Voltage VBR @ IT (V) MIN MAX Test Current IT (mA) SLD10U-017 SLD10-018 11.8 13.0 5.0 SLD11U-017 SLD11-018 12.2 13.5 5.0 SLD12U-017 SLD12-018 13.3 14.7 5.0 SLD13U-017 SLD13-018 14.4 15.9 5.0 SLD14U-017 SLD14-018 15.6 17.2 5.0 SLD15U-017 SLD15-018 16.7 18.5 5.0 SLD16U-017 SLD16-018 18.0 19.3 5.0 SLD17U-017 SLD17-018 18.9 20.9 5.0 SLD18U-017 SLD18-018 20.0 22.1 5.0 SLD20U-017 SLD20-018 22.2 24.5 5.0 SLD22U-017 SLD22-018 24.4 26.9 5.0 SLD24U-017 SLD24-018 26.7 29.5 5.0 SLD26U-017 SLD26-018 28.9 31.9 5.0 SLD28U-017 SLD28-018 31.1 34.4 5.0 SLD30U-017 SLD30-018 33.3 36.8 5.0 SLD33U-017 SLD33-018 36.7 40.6 5.0 SLD36U-017 SLD36-018 40.0 44.2 5.0 SLD40U-017 SLD40-018 44.4 49.1 5.0 SLD43U-017 SLD43-018 49.0 54.2 5.0 SLD45U-017 SLD45-018 50.0 55.3 5.0 SLD48U-017 SLD48-018 53.3 58.9 5.0 SLD51U-017 SLD51-018 56.7 62.7 5.0 SLD54U-017 SLD54-018 60.0 66.3 5.0 SLD58U-017 SLD58-018 64.4 71.2 5.0 SLD60U-017 SLD60-018 68.4 75.6 5.0 Notes: 1. VBR measured after IT applied for 300µs, IT= square wave pulse or equivalent. 2. Surge current waveform per 10μs x 1000μs exponential wave and derated per Fig. 4. 3. All terms and symbols are consistent with ANSI/IEEE C62.35 Reverse Stand off Vo(Vltoagltes)VR 10 11 12 13 14 15 16 17 18 20 22 24 26 28 30 33 36 40 43 45 48 51 54 58 60 Maximum Reverse Leakage @ IR (µA) VR 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 Maximum Peak Pulse Current Ipp (A) 300.0 280.2 256.3 237.2 219.8 209.0 196.2 184.8 174.7 157.4 143.7 131.1 121.1 112.3 105.4 95.7 87.8 79.1 73.5 70.2 65.9 61.9 58.6 54.5 52.7 Maximum Clamping Voltage @ VC (V) IPP 17.0 18.2 19.9 21.5 23.2 24.4 26.0 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 Agency Approval x x x x x x x x x x x x x x x x x x x x x x x x x Load Dump Test Wave Form Parameter US Ri td tr 12V system 24V system 65v to 87V 123V to 174V 0.5Ω to 4Ω 1Ω to 8Ω 40 ms to 400 ms 100 ms to 350 ms (10 0 -5 )ms Note: LF use td=400ms for 12V system test; td=350ms for 24V system © 2019 Littelfuse, Inc. S.


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