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首页> 外文期刊>IEEE journal on electromagnetic compatibility practice and applications >On the Design of a Planetary Protection Shell for EMC Testing on Space Equipment
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On the Design of a Planetary Protection Shell for EMC Testing on Space Equipment

机译:一个行星保护壳的设计EMC测试空间设备

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摘要

This letter addresses on the design of a planetary protection shell for performing the Electro-Magnetic Compatibility (EMC) tests of the Anisotropic Magneto-Resistance (AMR) sensor of the ExoMars mission. This mission has strict bio-burden requirements. The ElectroMagnetic (EM) properties of several materials have been investigated for measuring their transmission coefficients and the novelty of this letter is the use of Fused Deposition Modeling (FDM) technology as the production method. Additive manufacturing is presented as a promising technology in the field of radiofrequency since it can use a wide range of materials (including thermoplastics) with high and low transmission coefficient. The investigation comprises the analysis of the electromagnetic properties of several 3D printer materials in order to study their transmission coefficients. Seeing the EM characterization results, it was decided to produce a shell using FDM technology because it provides control over the grounding of the instrument and makes easier the integration, cleaning and protection against impacts during the operation, with great versatility and low cost. To finish, the shell has been proved during the acceptance EMC tests of the flight model and flight spare AMR instrument.
机译:这封信地址一个行星的设计执行的保护壳电磁兼容性(EMC)的测试各向异性磁阻传感器(AMR)天外火星任务。bio-burden需求。一些材料的性质调查来衡量他们的传播系数和新奇的这封信使用熔融沉积成型(FDM)技术的生产方法。制造业是有前途的技术领域的射频它可以使用(包括范围广泛的材料热塑性塑料)与高、低传输系数。电磁特性的分析为了研究一些3 d打印机的材料他们的传输系数。表征的结果,它是决定产生一个shell使用FDM技术因为它提供控制的基础仪器,使更容易集成,清洁和保护的影响操作,伟大的多功能性和低成本。接受飞行模型和EMC测试飞行备用AMR乐器。

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