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An Asynchronous Circuit Design Technique for a Flexible 8-Bit Microprocessor

机译:灵活的8位微处理器的异步电路设计技术

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This paper presents an asynchronous design technique, an enabler for the emerging technology of flexible microelectronics that feature low-temperature processed polysilicon (LTPS) thin-film transistors (TFT) and surface-free technology by laser annealing/ablation (SUFTLA~R). The first design instance chosen is an 8-bit microprocessor. LTPS TFTs are good for realizing displays having integrated VLSI circuit at lower costs. However, LTPS TFTs have drawbacks, including substantial deviations in characteristics and the self-heating phenomenon. To solve these problems, the authors adopted the asynchronous circuit design technique and developed an asynchronous design language called Verilog+, which is based on a subset of Verilog HDL~R and includes minimal primitives used for describing the communications between modules, and the dedicated tools including a translator called xlator and a synthesizer called ctrlsyn. The flexible 8-bit microprocessor stably operates at 500 kHz, drawing 180μA from a 5V power source. The microprocessor's electromagnetic emissions are 21 dB less than those of the synchronous counterpart.
机译:本文提出了一种异步设计技术,这是柔性微电子技术新兴技术的促成因素,该技术具有低温处理的多晶硅(LTPS)薄膜晶体管(TFT)和通过激光退火/烧蚀的无表面技术(SUFTLA〜R)。选择的第一个设计实例是8位微处理器。 LTPS TFT适用于以较低的成本实现具有集成VLSI电路的显示器。然而,LTPS TFT具有缺点,包括特性和自热现象的明显偏差。为了解决这些问题,作者采用了异步电路设计技术,并开发了一种名为Verilog +的异步设计语言,该语言基于Verilog HDL〜R的子集,并且包含用于描述模块之间通信的最小原语,以及专用工具,包括一个叫做xlator的翻译器和一个叫做ctrlsyn的合成器。灵活的8位微处理器以500 kHz的频率稳定运行,从5V电源汲取180μA电流。微处理器的电磁辐射比同步的电磁辐射小21 dB。

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