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TVS Fiches technique(PDF) 3 Page - Vishay Siliconix |
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TVS Fiches technique(HTML) 3 Page - Vishay Siliconix |
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3 / 4 page ![]() Transient Voltage Suppressors (TVS) for Automotive Electronic Protection Application Note Vishay General Semiconductor Document Number: 88490 For technical questions within your region, please contact one of the following: www.vishay.com Revision: 09-Aug-10 DiodesAmericas@vishay.com, DiodesAsia@vishay.com, DiodesEurope@vishay.com 3 Fig. 6 - For ISO-7637-2 Test Conditions, the Standard Condition is a VS Range of 65 V to 87 V, and Ri (Line Impedance) Range of 0.5 Ω to 4 Ω Some vehicle manufactures apply different conditions for the load dump test based on ISO-7637-2 pulse 5. The peak clamped current of the load dump TVS will be estimated by the following equation: Calculation for peak clamping current Figure 6a shows the current and voltage waveforms of Vishay’s SM5S24A in the ISO 7637-2 test of 87 V VS, 13.5 V Vbatt., 0.75 Ω Ri and 400 ms pulse width. Fig. 6a - Clamped Voltage and Current of SM5A24A in ISO 7637-2 Test Figure 6b shows the clamped voltage and current of load dummp TVF fail in the ISO 7637-2 test of 87 V VS, 13.5 V Vbatt., 0.5 Ω Ri and 400 ms pulse width. The clamping voltage drops to near zero, and the current passed through the device is increased to the maximum allowed by the line impedance. Fig. 6b - Clamped Voltage and Current of Load Dump TVS Failures in ISO7637-2 Test Maximum clamping capability of Vishay load dump TVS of ISO 7637-2 pulse 5 test condition with 13.5 V Vbatt. and 400 ms pulse width is as Figure 6c. Fig. 6c - Maximum Clamping Capability of Vishay Load Dump TVS in ISO7637-2 Test 0 100 200 400 50 (ms) 300 Line Impedance and Pulse Duration JASO A-1: 0.8 Ω, 200 ms ISO-7637: 0.5 Ω min. (0.5 Ω to 4 Ω), 400 ms max. (40 ms to 400 ms) (V) ISO 7637 V r + 10 % of VS JASO A-1 36.8 % of V P V P V S V r 100 0 I PP V in V c – () R i ⁄ = I PP: Peak clamping current V in: Input voltage V c: Clamping voltage R i: Line impedance |
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