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首页> 外文期刊>Journal of Computational Electronics >Dual-chirality GAA-CNTFET-based SCPF-TCAM cell design for low power and high performance
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Dual-chirality GAA-CNTFET-based SCPF-TCAM cell design for low power and high performance

机译:基于双手性GAA-CNTFET的SCPF-TCAM电池设计可实现低功耗和高性能

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Ternary content-addressable memory (TCAM) is a type of associative memory used in many applications for high-speed data searching. We present herein a gate-all-around (GAA) carbon nanotube field-effect transistor (CNTFET)-based self-controlled TCAM cell design with a precharge-free match line. We compare the power-delay product (PDP) and static noise margin between the GAA-CNTFET-based traditional and proposed TCAM cell designs at the 11-nm technology node with a supply voltage of 0.8 V. The simulations are performed using the Virtuoso tool for different parameter values with the Stanford University GAA-CNTFET model. The simulation results show that, compared with the traditional design, the proposed design exhibits a significant reduction in power by 51.30%, delay by 17.16%, and PDP by 59.66% for a chiral vector of (20, 16, 0) with two channels. It is observed that the best chirality for the proposed design is (14, 20, 0) for a single channel, but (16, 16, 0) and (20, 16, 0) for a dual channel in terms of power, delay, stability, and PDP.
机译:三元内容可寻址存储器(TCAM)是一种关联存储器,在许多应用中用于高速数据搜索。我们在这里提出了一种具有无预充电匹配线的基于全栅(GAA)碳纳米管场效应晶体管(CNTFET)的自控TCAM电池设计。我们在电源电压为0.8 V的11纳米技术节点上比较了基于GAA-CNTFET的传统TCAM电池和拟议TCAM电池设计之间的功率延迟乘积(PDP)和静态噪声容限。使用Virtuoso工具进行了仿真使用斯坦福大学GAA-CNTFET模型获得不同的参数值。仿真结果表明,与传统设计相比,对于具有两个通道的(20、16、0)手征向量,所提出的设计在功耗方面显着降低了51.30%,延迟降低了17.16%,PDP降低了59.66%。 。可以看出,对于单通道,建议设计的最佳手征性是(14,20,0),而对于双通道,在功率,延迟方面则是(16,16,0)和(20,16,0) ,稳定性和PDP。

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