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DESIGN FOR EXCELLENCE: INDUCTOR FORM, FIT, FUNCTION EQUIVALENCE NEW DESIGN RULES

机译:卓越的设计:感应器形式,配合,功能等效和新的设计规则

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Today, it goes without saying; digital electronics are found nearly everywhere. Applications ranging from cellular/mobile markets to automotive electronics; from consumer electronics to avionics/military control systems; and from medical devices to enterprise server and storage "big data' compute systems. Although very different in application, they all have something in common; they nearly all contain inductors within their circuit design architectures. Inductors are passive electrical components that are used in analog, power, and signal processing. Electronic circuit designs and applications span power supplies, tuned circuits, transformers, limited switching currents, inductive sensors, inductive filters, chokes, and relays (among others). Over the past two years, significant work was conducted by the authors in the areas of inductor part equivalence, PCBA physical designs using inductors, and increased understanding of important reliability considerations. The paper discusses the findings from this work with focus on two critical elements important to the operation and reliability of coil inductors. These focus items address (1) the evaluation of component physical form and fit equivalence of inductors and (2) the implementation of new design review tools and rules intended to keep functionally unrelated vias. power/ground shapes, and signal traces outside of inductor body areas. The intent of the paper is to discuss the importance of properly determining inductor equivalence, and to discuss new automated software tool capability that has been developed to ensure highest quality implementation of inductors within Enterprise Class Server and Storage hardware.
机译:今天,不用说了。数字电子产品几乎随处可见。应用范围从蜂窝/移动市场到汽车电子;从消费电子产品到航空电子/军事控制系统;从医疗设备到企业服务器再到存储“大数据”计算系统,尽管它们在应用上有很大的不同,但它们都有共同点;它们几乎都在其电路设计架构中包含电感器。电感器是用于模拟的无源电气组件,电源和信号处理。电子电路的设计和应用涉及电源,调谐电路,变压器,有限的开关电流,电感传感器,电感滤波器,扼流圈和继电器(以及其他)。在过去的两年中,进行了大量工作作者在电感器零件等效性,使用电感器的PCBA物理设计以及对重要可靠性考虑的更多理解等方面进行了讨论,本文重点讨论了对线圈电感器的操作和可靠性至关重要的两个关键因素,从而讨论了这项工作的发现。重点项目解决(1)部件物理形式的评估和装配的等效性(2)实施新的设计审查工具和规则,以保持功能上不相关的通孔。电源/接地形状,以及电感器主体区域之外的信号走线。本文的目的是讨论正确确定电感器等效性的重要性,并讨论为确保在企业级服务器和存储硬件中实现电感器的最高质量而开发的新型自动化软件工具功能。

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