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A practical method for selecting partial scan flip-flops for large circuits

机译:一种为大型电路选择部分扫描触发器的实用方法

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This paper describes a method of flip-flop selection (for BIST or Partial Scan) where the selection process proceeds in a module by module basis. A complete circuit is assumed to be made up of different modules. The method uses the circuit graph of an individual module and uses the top level connectivity information in between modules to select flip-flops in that module. It then deletes the module from the top level graph, keeping only the combinational paths through that module to select flip-flops in the next module and so on until all modules are exhausted. The advantage of this process lies in the fact that partial scan or BIST can be inserted in a circuit on a module by module basis which is how circuits are designed usually. This means that test logic insertion need not wait for the availability of the complete circuit. This can reduce the turnaround time of a design. Also the redesign time after test logic insertion will go down as the design optimization can be carried out with the test logic already inserted. A number of experiments were conducted using different circuits which showed that the percentage of extra flip-flops selected by this method as opposed to selection over the global circuit, was quite small (around 3%). Also the processing time went down as the number of flip-flops increased.
机译:本文介绍了一种触发器选择的方法(用于BIST或部分扫描),其中选择过程通过模块基于模块进行。假设完整的电路由不同的模块组成。该方法使用各个模块的电路图,并在模块之间使用顶层连接信息来选择该模块中的触发器。然后,它从顶层图删除模块,只能通过该模块保持组合路径,以在下一个模块中选择触发器,直到所有模块都耗尽。该过程的优点在于,可以通过模块的基础将部分扫描或BIST插入模块上的电路中,这是如何通常设计电路。这意味着测试逻辑插入不需要等待完整电路的可用性。这可以减少设计的周转时间。此外,在测试逻辑插入后的重新设计时间将下降,因为可以使用已插入的测试逻辑进行设计优化。使用不同电路进行了许多实验,该实验表明,通过该方法选择的额外触发器的百分比与全局电路选择相反,非常小(约3%)。随着触发器的数量增加,处理时间也下降了。

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