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Peripheral circuit design for field programmable MCM systems

机译:现场可编程MCM系统的外围电路设计

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A field programmable multichip module (MCM) architecture utilizing an array of modified field-programmable gate arrays (FPGAs) is proposed. Interconnections are provided by a fixed wiring network on the MCM, and by programmable interconnection frames on each FPGA. It is shown that full-swing CMOS peripheral circuits are faster than low-swing CMOS circuits. Buffering configurations for the interconnection frame which exploit the MCM performance benefits were selected and optimized. Bidirectional bus implementations using the frame are presented.
机译:提出了一种利用经修改的现场可编程门阵列(FPGA)的阵列的现场可编程多芯片模块(MCM)架构。互连由MCM上的固定布线网络以及每个FPGA上的可编程互连框架提供。结果表明,全摆幅CMOS外围电路比低摆幅CMOS电路要快。选择并优化了利用MCM性能优势的互连框架的缓冲配置。介绍了使用框架的双向总线实现。

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