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Verification strategy for integration 3G baseband SoC

机译:集成3G基带SoC的验证策略

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The verification strategy of the second generation Motorola baseband chip for the 3G wireless phone market is presented. The next generation of wireless phones supports multiple wireless protocols, high data bandwidth and a full range of multi-media applications running on an open OS. The baseband chip provides the integrated processing platform for such terminals. Baseband chips are among the most complex System-on-Chip (SoC) of this industry. The verification strategy to integrate such highly complex SoC is multi-fold and adaptive; hierarchical across the different abstraction levels with special emphasis on verification corners related to the abstraction level. The SoC architecture validation and optimization step should occur early-on in the design cycle but require high level modeling methodology to capture the complete hardware and mission critical use cases and deliver quantitative data on the architecture. Adaptive verification scenarios are discussed across the abstraction level and the SoC hierarchy, from stand-alone IP verification, through sub platforms and to the SoC level. A collection of metrics are presented and illustrate the efforts required to verify such complex SoC. We conclude with proposals and opportunities to enhance the SoC verification strategies based on the lessons learned.
机译:提出了针对3G无线电话市场的第二代摩托罗拉基带芯片的验证策略。下一代无线电话支持多种无线协议,高数据带宽以及在开放OS上运行的各种多媒体应用程序。基带芯片为此类终端提供了集成处理平台。基带芯片是该行业最复杂的片上系统(SoC)。集成这种高度复杂的SoC的验证策略是多重的和自适应的。跨不同抽象级别进行分层,并特别强调与抽象级别相关的验证角。 SoC架构的验证和优化步骤应在设计周期的早期进行,但需要高级建模方法来捕获完整的硬件和关键任务用例,并提供有关架构的定量数据。从独立IP验证到子平台再到SoC级别,将在抽象级别和SoC层次上讨论自适应验证方案。提出了一组度量标准,并说明了验证这种复杂SoC所需的工作。在总结的基础上,我们提出了一些建议和机会,以增强SoC验证策略。

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