高速低功耗可调改进型TSPC D触发器设计及与TSPC D触发器的性能比较

J. Shaikh, H. Rahaman
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引用次数: 15

摘要

正电子发射断层扫描(PET)是一种核功能成像技术,可以产生人体功能器官的三维图像。PET需要高分辨率、快速、低功耗的多通道模数转换器(ADC)。典型的PET扫描仪多通道ADC架构由几个模块组成。大多数模块都可以通过使用快速、低功耗的D触发器来设计。一个可预置的真单相时钟(TSPC) D触发器在输出端由于中间节点不必要的切换而显示出许多小故障(噪声)。可预置的修改TSPC (MTSPC) D触发器已被提出作为缓解这一问题的替代解决方案。然而,MTSPC D触发器需要一个额外的PMOS来暂停中间节点的切换。在这项工作中,我们利用提出的D触发器设计了一个7位可预置的灰度码计数器。本研究采用UMC 180 nm CMOS技术,在可预置的7位灰码计数器上实现了1 GHz的最大工作频率,在1.8 V电源下,最大有效位(MSB)延迟0.96 ns,功耗244.2 μW(微瓦)和功率延迟积(PDP) 0.23 pJ(皮焦耳)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High speed and low power preset-able modified TSPC D flip-flop design and performance comparison with TSPC D flip-flop
Positron emission tomography (PET) is a nuclear functional imaging technique that produces a three-dimensional image of functional organs in the body. PET requires high resolution, fast and low power multichannel analog to digital converter (ADC). A typical multichannel ADC for PET scanner architecture consists of several blocks. Most of the blocks can be designed by using fast, low power D flip-flops. A preset-able true single phase clocked (TSPC) D flip-flop shows numerous glitches (noise) at the output due to unnecessary toggling at the intermediate nodes. Preset-able modified TSPC (MTSPC) D flip-flop have been proposed as an alternative solution to alleviate this problem. However, the MTSPC D flip-flop requires one extra PMOS to suspend toggling of the intermediate nodes. In this work, we designed a 7-bit preset-able gray code counter by using the proposed D flip-flop. This work involves UMC 180 nm CMOS technology for preset-able 7-bit gray code counter where we achieved 1 GHz maximum operation frequency with most significant bit (MSB) delay 0.96 ns, power consumption 244.2 μW (micro watt) and power delay product (PDP) 0.23 pJ (Pico joule) from 1.8 V power supply.
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