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Minimizing ECO routing for FIB

机译:最小化FIB的ECO路由

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摘要

Engineering Change Order (ECO) routing is often requested in later design stages even after chip manufacturing. We propose an ECO routing method that can reuse most existing routing pattern to implement the modifications. In current industrial design methodologies, designers often take advantage of FIB (Focused Ion Beam) process when they need functional changes and/or bug fixings as soon as possible after chip manufacturing. Therefore, we apply our method to do circuit modifications in the FIB system, which is commonly used to slightly modify an existing circuit by cutting unwanted electrical connections and depositing conductive material to make a connection. However the exact coordinates on the circuit are necessary before using the FIB system, because the FIB system cuts and re-wires connections according to the given coordinates, and those FIB locations must be conformed to pre-specified conditions and follow certain guidelines. As design complexity increases rapidly, ECO routing in designs with high metal density becomes more and more difficult, and the successful rate is becoming lower. The ECO routing method we proposed can effectively apply to the FIB system for finding the layout locations and using the minimum FIB processes, which leads to successful FIB results.
机译:即使在芯片制造之后,通常在后期设计阶段也需要工程变更单(ECO)布线。我们提出了一种ECO路由方法,该方法可以重用大多数现有的路由模式来实施修改。在当前的工业设计方法中,设计人员在芯片制造后需要尽快进行功能更改和/或错误修复时,经常会利用FIB(聚焦离子束)工艺。因此,我们将我们的方法应用于FIB系统中的电路修改,该方法通常用于通过切断不需要的电连接并沉积导电材料以进行连接来稍微修改现有电路。但是,在使用FIB系统之前,必须在电路上提供精确的坐标,因为FIB系统会根据给定的坐标来切断和重新连接连接,并且这些FIB的位置必须符合预先指定的条件并遵循某些准则。随着设计复杂度的迅速提高,金属密度高的设计中的ECO布线变得越来越困难,成功率越来越低。我们提出的ECO路由方法可以有效地应用于FIB系统,以查找布局位置并使用最少的FIB流程,从而获得成功的FIB结果。

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