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Systematic top-down design of reconfigurable ΣΔ modulators for multi-standard transceivers

机译:用于多标准收发器的可重配置ΣΔ调制器的系统自上而下设计

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This paper addresses the design techniques of reconfigurable analog-to-digital converters for multi-standard wireless communication terminals. While most multi-standard converters reported so far follow an ad hoc design approach, which do not guarantee either efficient silicon area occupation or power efficiency in the different operation modes, the methodology presented here formulates a systematic design flow that ensures that both factors are considered at all hierarchical levels. Expandible cascade modulators are considered as the starting point to further reconfigurability at the architectural level. From here on, and using a combination of accurate behavioral modeling, statistical optimization techniques, and device-level simulation, the proposed methodology handles the design complexity of a reconfigurable converter while ensuring adaptive power consumption and boosting hardware sharing. A case study is presented where a reconfigurable modulator is designed to operate under three communication standards, GSM, Bluetooth, and UMTS, in a 130 nm-CMOS technology.
机译:本文介绍了用于多标准无线通信终端的可重构模数转换器的设计技术。尽管到目前为止报告的大多数多标准转换器都采用一种临时设计方法,该方法不能保证在不同工作模式下有效的硅面积占用或功率效率,但此处介绍的方法制定了系统的设计流程,可确保同时考虑这两个因素在所有层级上。可扩展的级联调制器被认为是在体系结构级别实现进一步可重构性的起点。从这里开始,结合使用精确的行为建模,统计优化技术和设备级仿真,所提出的方法论可以处理可重配置转换器的设计复杂性,同时确保自适应功耗并促进硬件共享。提出了一个案例研究,其中设计了一种可重配置的调制器,以130 nm-CMOS技术在GSM,蓝牙和UMTS这三种通信标准下运行。

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