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TVS Fiches technique(PDF) 4 Page - Vishay Siliconix |
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TVS Fiches technique(HTML) 4 Page - Vishay Siliconix |
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4 / 4 page ![]() Transient Voltage Suppressors (TVS) for Automotive Electronic Protection www.vishay.com For technical questions within your region, please contact one of the following: Document Number: 88490 4 DiodesAmericas@vishay.com, DiodesAsia@vishay.com, DiodesEurope@vishay.com Revision: 09-Aug-10 Application Note Vishay General Semiconductor Two Groups of Load Dump TVS There are two kinds of load dump TVS for the primary protection of automotive electronics: EPI PAR TVS and Non-EPI PAR TVS. Both product groups have similar operating breakdown characteristics in reverse bias mode. The difference is that EPI-PAR TVSs have low forward voltage drop (VF) characteristics in forward mode, and non-EPI PAR TVSs have relatively high VF under the same conditions. This characteristic is important to the reverse voltage supplied to the power line. Most CMOS ICs and LSIs have very poor reverse voltage capabilities. The gates of MOSFETs are also weak in reverse voltage, at - 1 V or lower. In the reversed power input mode, the voltage of the power line is the same as the voltage of the TVS VF. This reverse bias mode causes electronic circuit failure. The low forward voltage drop of EPI PAR TVSs is a good solution to this problem. Another method to protect circuits from reversed power input is utilizing a polarity protection rectifier into the power line, as shown in Figure 7. A polarity protection rectifier should have sufficient forward current ratings, and forward surge and reverse voltage capabilities. Fig. 7 - Reverse Bias Status SECONDARY PROTECTION OF THE AUTOMOTIVE POWER LINE The primary target of protection circuits in automotive systems is high surge voltages, but the clamped voltage is still high. Secondary protection is especially important in 24 V powertrains, such as found in trucks and vans. The main reason for this is the maximum input voltages for most regulators and DC/DC converter ICs for automotive applications are 45 V to 60 V. For this kind of application, using secondary protection, as shown in Figure 8, is recommended. Fig. 8 - Secondary Protection Circuit Adding resistor R onto the power line reduces the transient current, allowing smaller power-rating TVSs as the secondary protection. Current requirements for microprocessor and logic circuits in electronic units are 150 mA to 300 mA, and the minimum output voltage of a 12 V battery is 7.2 V at - 18 °C, or 14.4 V for a 24 V battery under the same conditions. In a 24 V battery under the above conditions, the supply voltage at a 300 mA load is 8.4 V at R = 20 Ω, and 11.4 V at R = 10 Ω at a minimum voltage of battery of 14.4 V (24 V battery voltage in - 18 °C). Power rating of R = I2R This supply voltage is higher than the minimum input voltages for most voltage regulators and DC/DC converter ICs. Protected Load - TVS V F Current Reverse Power Input + Load Current Limiter Primary Protection + R Secondary Protection Power Line Transient Voltage Clamped Voltage Clamped Voltage V L V min. V min. IL ⁄ () ⁄ () V min. IL ⁄ () R – () × = V L: Voltage to load V min.: Minimum input voltage I L: Load current R: Resistor value |
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