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An overview of the technical policy developed by Renault to manage ESD risks in airbags

机译:雷诺制定的管理安全气囊ESD风险的技术政策概述

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In this paper, we present the technical policy developed at Renault in order to manage electrostatic discharges (ESD) hazards leading to airbag inadvertent deployment or airbag electronic control unit (ECU) failures. A wide set of experiments is presented in order to characterize ESD sources in an automotive environment. We show that the worst case is an induction charging mechanism, which corresponds to a "0 /spl Omega/" discharge, with an energy of 2 mJ transmitted to the pyrotechnic system. Hence, usual requirements, like human body model (HBM) discharges with a serial resistance of 150 /spl Omega/ or above, do not cover our most critical cases. Alternatively, the "0 /spl Omega/" discharges described in the machine model (MM) are more representative of induction charging mechanisms. We demonstrate that, for qualification tests, the serial resistance of the ESD generator has a great influence on the energy transmitted to the squib or to the ECU. This phenomenon makes almost impossible to specify a voltage level. Therefore, we define an energy level requirement of 9 mJ for the airbag and 2 mJ for each line of the airbag ECU instead. The discharge characteristics are specified in our requirement: capacitance of 330 pF, circuit impulse resistance (measured during ESD) below 30 /spl Omega/ in order to avoid the un-physical "0 /spl Omega/" criterion, and pulse duration between 1 /spl mu/s and 100 /spl mu/s to take electrical oscillations into account. Both the test methodology and the detailed procedure are given in the paper. At last, an ESD aging profile representative of the vehicle lifetime is proposed.
机译:在本文中,我们介绍了雷诺公司制定的技术政策,以管理导致安全气囊意外展开或安全气囊电子控制单元(ECU)故障的静电放电(ESD)危害。为了表征汽车环境中的ESD源,提出了一系列实验。我们表明最坏的情况是感应充电机制,相当于“ 0 / spl Omega /”放电,其中有2 mJ的能量传输到烟火系统。因此,通常的要求(例如人体模型(HBM)的串联电阻为150 / spl Omega /或更高的放电)不能涵盖我们最关键的情况。或者,在机器模型(MM)中描述的“ 0 / spl Omega /”放电更能代表感应充电机制。我们证明,对于资格测试,ESD发生器的串联电阻对传输到爆管或ECU的能量有很大的影响。这种现象几乎不可能指定电压电平。因此,我们为安全气囊定义了9 mJ的能量级别要求,而为安全气囊ECU的每条线定义了2 mJ的能量级别要求。在我们的要求中规定了放电特性:电容为330 pF,电路脉冲电阻(在ESD中测量)低于30 / spl Omega /,以避免非物理的“ 0 / spl Omega /”标准,脉冲持续时间介于1 / spl mu / s和100 / spl mu / s来考虑电气振荡。本文给出了测试方法和详细过程。最后,提出了代表车辆使用寿命的ESD老化曲线。

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