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A 65 nm Programmable ANalog Device Array (PANDA) for Analog Circuit Emulation

机译:用于模拟电路仿真的65 nm可编程模拟设备阵列(PANDA)

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Reconfigurable analog/mixed signal (AMS) platforms in scaled CMOS technology nodes are gaining importance due to the increased design cost, effort and shrinking time-to-market. Similar to field programmable gate arrays (FPGA) for digital designs, a Programmable ANalog Device Array (PANDA) provides a flexible and versatile solution with transistor-level granularity and reconfiguration capability for rapid prototyping and validation of analog circuits. This paper presents design and synthesis methodology of a PANDA design on 65 nm CMOS technology, consisting of a 24 25 cell array, reconfigurable interconnect, configuration memory and serial programming interface. To implement AMS circuits on the PANDA platform, this paper further proposes a CAD tool for technology mapping, placement, routing and configuration bit-stream generation. Several representative building blocks of AMS circuits, such as amplifiers, voltage and current references, filters, are successfully implemented on the PANDA platform. Dynamic reconfiguration capability of PANDA is demonstrated through input offset cancellation of an operational amplifier using an FPGA in a closed loop. Initial measurement results of PANDA implemented circuits demonstrate the potential of the methodology for rapid prototyping and hardware validation of analog circuits.
机译:由于增加了设计成本,工作量和缩短了上市时间,因此在规模化CMOS技术节点中的可重配置模拟/混合信号(AMS)平台变得越来越重要。类似于用于数字设计的现场可编程门阵列(FPGA),可编程模拟设备阵列(PANDA)提供具有晶体管级粒度和重新配置功能的灵活多功能解决方案,用于快速原型设计和验证模拟电路。本文介绍了基于65 nm CMOS技术的PANDA设计的设计和综合方法,包括24个25个单元阵列,可重配置互连,配置存储器和串行编程接口。为了在PANDA平台上实现AMS电路,本文还提出了一种CAD工具,用于技术映射,布局,路由和配置位流生成。 AMS电路的几个代表性构建模块,例如放大器,电压和电流基准,滤波器,已在PANDA平台上成功实现。 PANDA的动态重配置功能通过在闭环中使用FPGA消除运算放大器的输入失调来证明。 PANDA实现的电路的初始测量结果证明了该方法在模拟电路快速原型开发和硬件验证中的潜力。

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