首页> 外文会议>International Conference on Nuclear Engineering >IONIZING/DISPLACEMENT SYNERGISTIC EFFECTS IN BIPOLAR OPERATIONAL AMPLIFIERS INDUCED BY MIXED REACTOR NEUTRON AND GAMMA IRRADIATION
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IONIZING/DISPLACEMENT SYNERGISTIC EFFECTS IN BIPOLAR OPERATIONAL AMPLIFIERS INDUCED BY MIXED REACTOR NEUTRON AND GAMMA IRRADIATION

机译:混合反应器中子和γ辐照诱导的双极运算放大器中的电离/位移协同作用

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The bipolar operational amplifier is an important kind of electronic device used in the nuclear reactor control system and its radiation damage threatens the reliability of nuclear operation. In order to explore the degradation of the bipolar operational amplifier induced by reactor neutron and gamma irradiation, radiation experiments were accomplished on particular bipolar operational amplifiers OP07 manufactured by Texas Instruments and Analog Devices. The amplifiers were irradiated in three different environments respectively: individual neutrons, individual gamma rays and mixed irradiation of reactor neutrons and gamma rays simultaneously. The results indicate that for both types of bipolar operational amplifiers, the degradations of the input bias current and the input offset voltage induced by the mixed irradiation of reactor neutrons and gamma rays simultaneously are notably more severe than the simple sum of neutron and gamma degradations measured individually. The mixed irradiation of reactor neutron and gamma rays simultaneously leads to degradation enhancement compared to individual ones and induce ionizing/displacement synergistic effects in the amplifiers. Enough attention should be paid to the degradation enhancement induced by the mixed irradiation for devices may exhibit unexpected failure during reactor operation and accelerate the aging of the nuclear reactor control system.
机译:双极运算放大器是核反应堆控制系统中使用的重要电子设备,其辐射损坏威胁核运行的可靠性。为了探讨由反应器中子和γ辐射诱导的双极运算放大器的降解,辐射实验是由德州仪器和模拟设备制造的特定双极运算放大器OP07完成的辐射实验。放大器分别在三种不同的环境中照射:单独的中子,单独的γ射线和反应器中子和γ射线的混合照射。结果表明,对于两种类型的双极运算放大器,通过相同的反应器中子和伽马射线的混合照射引起的输入偏置电流和输入偏移电压的降解显着严重比测量的简单中子和伽马降解的简单和γ降解更严重单独。与个体的相比,反应器中子和γ射线的混合照射同时导致降解增强,并诱导放大器中的电离/位移协同效应。应对通过在反应器操作期间的混合辐射引起的抗解辐射诱导的降解增强来支付足够的注意力,并加速核反应堆控制系统的老化。

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