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A case study: Leverage IEEE 1687 based method to automate modeling, verification, and test access for embedded instruments in a server processor

机译:一个案例研究:利用基于IEEE 1687的方法自动化建模,验证和在服务器处理器中的嵌入式仪器进行建模,验证和测试访问

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IEEE 1149.1-based top-level access to IEEE 1500-compliant IP cores is commonly used in industrial designs as the underlying infrastructure to provide test access, control, instrumentation, and ease of use. Validating the test infrastructure and its usage in the early design stages is critical to the success of the project. The new Internal Joint Test Action Group (IJTAG or IEEE 1687???2014) standard is a valuable component of this test infrastructure and is designed to promote efficient embedded instrument access. This paper describes one of first comprehensive applications of an IJTAG-based method to a state-of-the-art server microprocessor design from specification to production. We leveraged IJTAG to automate design modeling, enable faster and more advanced verification, and optimize manufacturing test access. In this work, we demonstrate a very high degree of optimization and automation, which is cost-efficiently enabled by IJTAG, and goes beyond the capabilities of typical in-house IJTAG-like system, currently in use in industry.
机译:基于IEEE 1149.1的顶级访问IEEE 1500标准的IP核心通常用于工业设计中,作为基础设施,提供测试访问,控制,仪器和易用性。验证测试基础设施及其在早期设计阶段的使用对于项目的成功至关重要。新的内部联合测试动作组(IJTAG或IEEE 1687 ??? 2014)标准是该测试基础架构的有价值的组成部分,旨在促进有效的嵌入式仪器访问。本文介绍了基于IJTAG的方法到最先进的服务器微处理器设计的第一综合应用之一,从规范到生产。我们利用IJTAG自动化设计建模,实现更快,更高级的验证,并优化制造测试访问。在这项工作中,我们展示了非常高度的优化和自动化,由IJTAG实现了成本效益,超出了当前在工业中使用的典型内部IJTAG系统的功能。

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